WO2023179618A1 - 传输方法、装置、终端及存储介质 - Google Patents
传输方法、装置、终端及存储介质 Download PDFInfo
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- WO2023179618A1 WO2023179618A1 PCT/CN2023/082843 CN2023082843W WO2023179618A1 WO 2023179618 A1 WO2023179618 A1 WO 2023179618A1 CN 2023082843 W CN2023082843 W CN 2023082843W WO 2023179618 A1 WO2023179618 A1 WO 2023179618A1
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- uplink transmission
- target uplink
- target
- symbol
- time slot
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- 230000005540 biological transmission Effects 0.000 title claims abstract description 983
- 238000000034 method Methods 0.000 title claims abstract description 118
- 230000001360 synchronised effect Effects 0.000 claims description 67
- 230000011664 signaling Effects 0.000 claims description 21
- 238000013475 authorization Methods 0.000 claims description 12
- 238000011144 upstream manufacturing Methods 0.000 claims description 9
- 230000004044 response Effects 0.000 claims description 7
- 238000004891 communication Methods 0.000 abstract description 27
- 230000006870 function Effects 0.000 description 26
- 230000001960 triggered effect Effects 0.000 description 18
- 230000006399 behavior Effects 0.000 description 15
- 238000010586 diagram Methods 0.000 description 14
- 230000000694 effects Effects 0.000 description 10
- 238000005516 engineering process Methods 0.000 description 8
- 238000007726 management method Methods 0.000 description 8
- 238000004590 computer program Methods 0.000 description 6
- 230000003190 augmentative effect Effects 0.000 description 2
- 238000004364 calculation method Methods 0.000 description 2
- 238000006243 chemical reaction Methods 0.000 description 2
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- 241000699670 Mus sp. Species 0.000 description 1
- 238000012517 data analytics Methods 0.000 description 1
- 238000013523 data management Methods 0.000 description 1
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- 239000004973 liquid crystal related substance Substances 0.000 description 1
- 230000007774 longterm Effects 0.000 description 1
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- 230000002441 reversible effect Effects 0.000 description 1
- 239000004984 smart glass Substances 0.000 description 1
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Classifications
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/50—Allocation or scheduling criteria for wireless resources
- H04W72/51—Allocation or scheduling criteria for wireless resources based on terminal or device properties
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
- H04L5/003—Arrangements for allocating sub-channels of the transmission path
- H04L5/0048—Allocation of pilot signals, i.e. of signals known to the receiver
- H04L5/0051—Allocation of pilot signals, i.e. of signals known to the receiver of dedicated pilots, i.e. pilots destined for a single user or terminal
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
- H04L5/14—Two-way operation using the same type of signal, i.e. duplex
- H04L5/16—Half-duplex systems; Simplex/duplex switching; Transmission of break signals non-automatically inverting the direction of transmission
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/04—Wireless resource allocation
- H04W72/044—Wireless resource allocation based on the type of the allocated resource
- H04W72/0446—Resources in time domain, e.g. slots or frames
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/04—Wireless resource allocation
- H04W72/044—Wireless resource allocation based on the type of the allocated resource
- H04W72/0457—Variable allocation of band or rate
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/20—Control channels or signalling for resource management
- H04W72/21—Control channels or signalling for resource management in the uplink direction of a wireless link, i.e. towards the network
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/20—Control channels or signalling for resource management
- H04W72/23—Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal
- H04W72/231—Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal the control data signalling from the layers above the physical layer, e.g. RRC or MAC-CE signalling
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/20—Control channels or signalling for resource management
- H04W72/23—Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal
- H04W72/232—Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal the control data signalling from the physical layer, e.g. DCI signalling
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W8/00—Network data management
- H04W8/22—Processing or transfer of terminal data, e.g. status or physical capabilities
- H04W8/24—Transfer of terminal data
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W88/00—Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
- H04W88/02—Terminal devices
Definitions
- This application belongs to the field of communication technology, and specifically relates to a transmission method, device, terminal and storage medium.
- terminals need to reduce complexity in terms of the number of receiving antennas, transmitting antennas, supported bandwidth, and the time and ability of the terminal to process data and signals.
- this type of terminal is called a low-capability terminal (Redcued Capability User Equipment, RedCap UE).
- the terminal when a terminal does not have full-duplex capability, the terminal cannot perform uplink transmission and downlink reception at the same time, and a certain switching time is required between the terminal's uplink transmission and downlink reception or between downlink reception and uplink transmission. .
- uplink transmission and downlink reception resources conflict or when the switching time between the terminal's uplink transmission and downlink reception is less than the terminal's switching capability or the time specified by the protocol, the terminal gives up uplink transmission, resulting in poor uplink coverage.
- Embodiments of the present application provide a transmission method, device, terminal and storage medium, which can solve the problem of poor uplink coverage.
- the first aspect provides a transmission method, which includes:
- the terminal reports first capability information to the network side device; the first capability information is used to indicate that the terminal does not expect the network side device to enable or configure available time slot counts for the terminal;
- the terminal performs at least one of the following:
- the terminal has half-duplex capability or does not have full-duplex capability.
- the second aspect provides a transmission method, which includes:
- the network side device receives the first capability information reported by the terminal; the first capability information is used to indicate that the terminal does not expect the network side device to enable or configure available time slot counting for the terminal; the network side device is The terminal does not enable or configure available time slot counting;
- the network-side device performs at least one of the following:
- the terminal has half-duplex capability or does not have full-duplex capability.
- a transmission device which device includes:
- the first transmission module is configured to report first capability information to the network side device; the first capability information is used to indicate that the terminal does not expect the network side device to enable or configure the available time slot count for the terminal;
- the terminal has half-duplex capability or does not have full-duplex capability.
- a transmission device which device includes:
- the second transmission module is used to receive the first capability information reported by the terminal; the first capability information is used to indicate that the terminal does not expect the network side device to enable or configure the available time slot count for the terminal; the processing module , used to disable or configure available time slot counting for the terminal;
- the second transmission module is configured to perform at least one of the following when the target condition is met:
- the terminal has half-duplex capability or does not have full-duplex capability.
- a terminal in a fifth aspect, includes a processor and a memory.
- the memory stores programs or instructions that can be run on the processor.
- the program or instructions are executed by the processor, the following implementations are implemented: The steps of the method described in one aspect.
- a terminal including a processor and a communication interface; wherein:
- the communication interface is used to report first capability information to the network side device; the first capability information is used to indicate that the terminal does not expect the network side device to enable or configure available time slot counts for the terminal;
- the processor is configured to perform at least one of the following when the target condition is met:
- the terminal has half-duplex capability or does not have full-duplex capability.
- a network side device in a seventh aspect, includes a processor and a memory.
- the memory stores programs or instructions that can be run on the processor.
- the program or instructions are implemented when executed by the processor. The steps of the method as described in the second aspect.
- a network side device including a processor and a communication interface; wherein:
- the communication interface is used to receive the first capability information reported by the terminal; the first capability information is used to indicate that the terminal does not expect the network side device to enable or configure available time slot counts for the terminal; the processing The device is used to disable or configure available time slot counting for the terminal;
- the processor is configured to perform at least one of the following when the target condition is met:
- the terminal has half-duplex capability or does not have full-duplex capability.
- a transmission system including: a terminal and a network side device.
- the terminal can be used to perform the steps of the method described in the first aspect
- the network side device can be used to perform the steps of the method described in the second aspect. steps of the method.
- a readable storage medium In a tenth aspect, a readable storage medium is provided. Programs or instructions are stored on the readable storage medium. When the programs or instructions are executed by a processor, the steps of the method described in the first aspect are implemented, or the steps of the method are implemented as described in the first aspect. The steps of the method described in the second aspect.
- a chip in an eleventh aspect, includes a processor and a communication interface.
- the communication interface is coupled to the processor.
- the processor is used to run programs or instructions to implement the method described in the first aspect. Method, or steps for implementing a method as described in the second aspect.
- a computer program/program product is provided, the computer program/program product is stored in a storage medium, and the computer program/program product is executed by at least one processor to implement the method as described in the first aspect steps, or steps to implement the method described in the second aspect.
- the terminal when the terminal reports the first capability information to the network side device, the terminal does not expect the network side device to enable or configure the available time slot count for the terminal; or has half-duplex capability or does not have full-duplex capability.
- the terminal with duplex capability performs at least one of the following: determines that the target time slot in which the terminal's target uplink transmission is located is an unavailable time slot for the target uplink transmission, or determines that the target time slot is not included in the target uplink transmission.
- the transmission method provided by the embodiment of the present application can realize unified processing when there is resource overlap between the target uplink transmission and downlink reception or the switching time between the target uplink transmission and downlink reception is insufficient, simplifying the behavior and complexity of the terminal, and by determining The target time slot where the terminal's target uplink transmission is located is an unavailable time slot for the target uplink transmission, or the target time slot is determined not to be included in the number of transmissions of the target uplink transmission, and then the target uplink transmission is transmitted in the next available time slot. This can improve uplink coverage.
- Figure 1 is a schematic diagram of a wireless communication system applicable to the embodiment of the present application.
- FIG. 2 is one of the flow diagrams of the transmission method provided by the embodiment of the present application.
- FIG. 3 is the second schematic flowchart of the transmission method provided by the embodiment of the present application.
- Figure 4 is one of the structural schematic diagrams of the transmission device provided by the embodiment of the present application.
- Figure 5 is the second structural schematic diagram of the transmission device provided by the embodiment of the present application.
- Figure 6 is a schematic structural diagram of a communication device provided by an embodiment of the present application.
- Figure 7 is a schematic structural diagram of a terminal provided by an embodiment of the present application.
- Figure 8 is a schematic structural diagram of a network-side device provided by an embodiment of the present application.
- first, second, etc. in the description and claims of this application are used to distinguish similar objects and are not used to describe a specific order or sequence. It is to be understood that the terms so used are interchangeable under appropriate circumstances so that the embodiments of the present application can be practiced in sequences other than those illustrated or described herein, and that "first" and “second” are distinguished objects It is usually one type, and the number of objects is not limited.
- the first object can be one or multiple.
- “and/or” in the description and claims indicates at least one of the connected objects, and the character “/" generally indicates that the related objects are in an "or” relationship.
- LTE Long Term Evolution
- LTE-Advanced, LTE-A Long Term Evolution
- LTE-A Long Term Evolution
- CDMA Code Division Multiple Access
- TDMA Time Division Multiple Access
- FDMA Frequency Division Multiple Access
- OFDMA Orthogonal Frequency Division Multiple Access
- SC-FDMA Single-carrier Frequency Division Multiple Access
- NR New Radio
- FIG 1 is a schematic diagram of a wireless communication system applicable to the embodiment of the present application.
- the wireless communication system shown in Figure 1 includes a terminal 11 and a network side device 12.
- the terminal 11 can be a mobile phone, a tablet computer (Tablet Personal Computer), a laptop computer (Laptop Computer), or a notebook computer, a personal digital assistant (Personal Digital Assistant, PDA), a handheld computer, a netbook, or a super mobile personal computer.
- Tablet Personal Computer Tablet Personal Computer
- laptop computer laptop computer
- PDA Personal Digital Assistant
- PDA Personal Digital Assistant
- UMPC ultra-mobile personal computer
- UMPC mobile Internet device
- Mobile Internet Device MID
- augmented reality augmented reality, AR
- VR virtual reality
- robots wearable devices
- VUE vehicle-mounted equipment
- PUE pedestrian terminal
- smart home home equipment with wireless communication functions, such as refrigerators, TVs, washing machines or furniture, etc.
- game consoles personal computers (personal computers, PC), teller machines or self-service Terminal devices
- wearable devices include: smart watches, smart bracelets, smart headphones, smart glasses, smart jewelry (smart bracelets, smart bracelets, smart rings, smart necklaces, smart anklets, smart anklets, etc.), Smart wristbands, smart clothing, etc. It should be noted that the embodiment of the present application does not limit the specific type of the terminal 11.
- the network side device 12 may include an access network device or a core network device, where the access network device may also be called a radio access network device, a radio access network (Radio Access Network, RAN), a radio access network function or a wireless device. access network unit. Access network equipment may include base stations, WLAN access points or WiFi nodes, etc.
- the base stations may be called Node B, Evolved Node B (eNB), Access Point, Base Transceiver Station (BTS), Radio Base Station , radio transceiver, Basic Service Set (BSS), Extended Service Set (ESS), Home B-Node, Home Evolved B-Node, Transmitting Receiving Point (TRP) or the above
- eNB Evolved Node B
- BTS Base Transceiver Station
- ESS Extended Service Set
- Home B-Node Home Evolved B-Node
- TRP Transmitting Receiving Point
- Core network equipment may include but is not limited to at least one of the following: core network nodes, core network functions, mobility management entities (Mobility Management Entity (MME), Access and Mobility Management Function (AMF), Session Management Function (SMF), User Plane Function (UPF), Policy Control Function , PCF), Policy and Charging Rules Function (PCRF), Edge Application Server Discovery Function (EASDF), Unified Data Management (UDM), Unified Data Warehousing (Unified Data Repository, UDR), Home Subscriber Server (HSS), Centralized network configuration (CNC), Network Repository Function (NRF), Network Exposure Function, NEF), local NEF (LocalNEF, or L-NEF), binding support function (Binding Support Function, BSF), application function (Application Function, AF), location management function (LMF), enhanced service mobile positioning Center (Enhanced Serving Mobile Location Centre, E-SMLC), network data analytics function (NWDAF), etc.
- MME Mobility Management Entity
- AMF Access and Mobility Management Function
- SMF Session Management
- FIG 2 is one of the flow diagrams of the transmission method provided by the embodiment of the present application. As shown in Figure 2, the method includes:
- Step 201 The terminal reports first capability information to the network side device; the first capability information is used to indicate that the terminal does not expect the network side device to enable or configure available time slot counts for the terminal;
- the terminal performs at least one of the following:
- the terminal has half-duplex capability or does not have full-duplex capability.
- the terminal includes a low-capability terminal (RedCap UE), such as RedCap half-duplex (Half Duplex-frequency-division duplex, HD-FDD) UE.
- RedCap UE low-capability terminal
- Network-side devices include but are not limited to the types of network-side devices 12 listed above, and this application is not limited thereto.
- the first capability information is used to indicate that the terminal does not expect the network side device to enable or configure the available time slot count for the terminal.
- the first capability information may include at least one of the following: 1) having half-duplex capability; 2) not having full-duplex capability.
- the terminal reports the first capability information to the network side device, the terminal does not expect the network side device to enable available slot counting (AvailableSlotCounting) for the terminal.
- the network side device receives the first capability information reported by the terminal, and the network side device does not enable or configure available time slot counting for the terminal.
- Terminals with half-duplex capability or terminals without full-duplex capability do not support a mechanism in which the number of uplink repeated transmissions (such as PUSCH repetition Type A or PUCCH) is based on the available slot count.
- the terminal reports to the network side device that the terminal is a half-duplex terminal, assuming that the terminal reports: RedCap UE with Half-duplex FDD operation type A (operation type A), the terminal does not expect the network
- the side device configures or enables available time slot counting.
- the target conditions in the embodiment of this application may include at least one of the following:
- the network side device enables or configures available time slot counting for the terminal's uplink transmission.
- the network side device disables or does not configure available time slot counting for the terminal's uplink transmission.
- the switching time between the target uplink transmission and the downlink reception may include at least one of the following: a) the time interval between the last symbol of the target uplink transmission and the first symbol of the downlink reception; b ) The time interval between the last symbol received in the downlink and the first symbol transmitted in the target uplink.
- uplink and downlink switching time overlap when there is no resource overlap between target uplink transmission and downlink reception, and the switching time between target uplink transmission and downlink reception is less than the target time, it can also be referred to as: uplink and downlink switching time overlap.
- the downlink transmission is Synchronization Signal/PBCH block (SSB) as an example.
- SSB and uplink transmission (such as PUSCH) do not overlap, but the switching time between uplink transmission and downlink reception is less than the first time, or the switching time between downlink reception and uplink transmission is less than the second time.
- the value of the target time may include the first time or the second time.
- the number of transmissions is greater than 1, or the number of transmissions is equal to 1;
- the target uplink transmission is an uplink transmission configured semi-statically by Radio Resource Control (RRC); or the target uplink transmission is a dynamically scheduled uplink transmission.
- RRC Radio Resource Control
- the uplink transmission of the RRC semi-static configuration may include at least one of the following:
- PUSCH Type 1 (CG PUSCH Type 1) of RRC semi-statically configured grant scheduling (configured grant);
- Physical Random Access Channel Physical Random Access Channel, PRACH
- the dynamically scheduled uplink transmission may include at least one of the following:
- uplink grant includes: DCI format 0_0, DCI format 0_1 or DCI format 0_2, etc.
- TC-RNTI Temporary Cell Radio Network Temporary Identifier
- Dynamically scheduled PRACH for example, dynamically scheduled PRACH is the transmission of PRACH scheduled by PDCCH order.
- SRS Dynamically scheduled Sounding Reference Signal
- the downlink reception may include at least one of the following:
- Type0 Common Search Space Type0 CSS, Type0A CSS, Type1 CSS and Type2 CSS;
- the SSB may include at least one of the following:
- SSB configured by the position of the synchronized broadcast block in the set (ssb-PositionsInBurst);
- SSB configured by non-cell defining SSB (nonCellDefiningSSB) related signaling
- SSB configured by dedicated downlink partial bandwidth (BWP-DownlinkDedicated) signaling
- the terminal determines that the target time slot in which the terminal's target uplink transmission is located is an unavailable time slot for the target uplink transmission, or determines that the target time slot is not included in the number of transmissions of the target uplink transmission. Under this condition, the terminal transmits the target uplink transmission in the next available time slot. line uplink transmission.
- the terminal when the terminal reports the first capability information to the network side device, the terminal does not expect the network side device to enable or configure the available time slot count for the terminal; or has half-duplex capability or When the target conditions are met, the terminal without full-duplex capability performs at least one of the following: determines that the target time slot in which the terminal's target uplink transmission is located is an unavailable time slot for the target uplink transmission, or determines that the target time slot is not included in the calculation Among the number of transmissions of the target uplink transmission; resource overlap between the target uplink transmission and downlink reception is not expected, or the switching time between the target uplink transmission and downlink reception is not expected to be less than the target time; the target uplink transmission is abandoned; and downlink reception is performed.
- the transmission method provided by the embodiment of the present application can realize unified processing when there is resource overlap between the target uplink transmission and downlink reception or the switching time between the target uplink transmission and downlink reception is insufficient, simplifying the behavior and complexity of the terminal, and by determining The target time slot where the terminal's target uplink transmission is located is an unavailable time slot for the target uplink transmission, or the target time slot is determined not to be included in the number of transmissions of the target uplink transmission, and then the target uplink transmission is transmitted in the next available time slot. This can improve uplink coverage.
- the terminal behavior performed by the terminal based on different target conditions may correspond to at least one of the following situations:
- the terminal behavior may include the following At least one way:
- Tc represents the basic time unit (Basic time unit);
- NRX-TX represents the switching time between downlink reception and uplink transmission;
- NTX-RX represents the switching time between uplink transmission and downlink reception.
- SSB Synchronous Broadcast Signal Block
- the terminal behavior may include at least one of the following ways:
- SSB Synchronous Broadcast Signal Block
- the terminal behavior may include at least one of the following methods:
- Method 3-1 For the repeated transmission of PUSCH configured and authorized by the half-duplex terminal or the PUCCH transmitted by the semi-static configuration or the repeated transmission of other PRACH not triggered by the PDCCH order:
- the terminal behavior may include at least one of the following methods:
- Method 4-1 For half-duplex terminals, PUSCH repeated transmission scheduled by uplink DCI format, or PUCCH transmission scheduled by DCI, or PRACH triggered by PDCCH order:
- the space between the last symbols of symbols is less than/less than NRX-TX*Tc, and/or HD-FDD UE does not expect the interval between the last symbol of a PUSCH or PUCCH or PRACH repeated transmission and the first symbol of a Synchronous Broadcast Signal Block (SSB) transmission symbol to be smaller/less than NTX-RX*Tc.
- the interval between the last symbol of the symbol is smaller/less than NRX-TX*Tc, and/or the HD-FDD UE does not expect a PUSCH or PUCCH or PRACH repeated transmission of the last symbol and the Synchronous Broadcast Signal Block (SSB) transmission symbol
- the spacing between the first symbols is smaller/less than NTX-RX*Tc.
- Method 4-3 For half-duplex terminals, PUSCH repeated transmission scheduled by uplink DCI format, or PUCCH transmission scheduled by DCI, or PRACH triggered by PDCCH order:
- the interval between the last symbol of the symbol is smaller/less than NRX-TX*Tc, and/or the HD-FDD UE does not expect a PUSCH or PUCCH or PRACH repeated transmission of the last symbol and the Synchronous Broadcast Signal Block (SSB) transmission symbol
- the spacing between the first symbols is smaller/less than NTX-RX*Tc.
- the terminal behavior may include at least one of the following methods:
- Method 5-1 for PUSCH repeated transmission of configuration authorization of half-duplex terminal, or PUCCH of semi-static configuration transmission, or repeated transmission of other PRACH not triggered by PDCCH order:
- the HD-FDD UE determines that the PUSCH or The time slot in which PUCCH or PRACH is located is an unavailable time slot, or the time slot is not included in the K time slots for PUSCH, PUCCH or PRACH transmission. HD-FDD UE will postpone the repeated transmission of PUSCH, PUCCH or PRACH to the next available time. gap.
- the HD-FDD UE does not transmit the PUSCH Or PUCCH or PRACH, that is, the HD-FDD UE determines that the time slot in which the PUSCH or PUCCH or PRACH is located is an available time slot, or the time slot is included in the In K time slots of PUSCH or PUCCH or PRACH transmission.
- the HD-FDD UE does not transmit the PUSCH, PUCCH or PRACH, that is, the HD-FDD UE determines that the time slot where the PUSCH, PUCCH or PRACH is located is an available time slot, or the time slot is included in the PUSCH or PRACH. In K time slots of PUCCH or PRACH transmission.
- the terminal behavior may include at least one of the following methods:
- Method 6-1 For half-duplex terminals, PUSCH repeated transmission scheduled by uplink DCI format, or PUCCH transmission scheduled by DCI, or PRACH triggered by PDCCH order:
- the HD-FDD UE does not expect that the interval between the first symbol of a PUSCH or PUCCH or PRACH repeated transmission and the last symbol of the Synchronous Broadcast Signal Block (SSB) transmission symbol is less than/less than For NRX-TX*Tc, and/or HD-FDD UEs do not expect the interval between the last symbol of a PUSCH or PUCCH or PRACH repeat transmission and the first symbol of a Synchronous Broadcast Signal Block (SSB) transmission symbol to be less/less on NTX-RX*Tc.
- SSB Synchronous Broadcast Signal Block
- the interval between the last symbol of the symbol is smaller/less than NRX-TX*Tc, and/or the HD-FDD UE does not expect a PUSCH or PUCCH or PRACH repeated transmission of the last symbol and the Synchronous Broadcast Signal Block (SSB) transmission symbol
- the spacing between the first symbols is smaller/less than NTX-RX*Tc.
- Method 6-2 For half-duplex terminals, PUSCH repeated transmission scheduled by uplink DCI format, or PUCCH transmission scheduled by DCI, or PRACH triggered by PDCCH order:
- the HD-FDD UE does not expect that the interval between the first symbol of a PUSCH or PUCCH or PRACH repeated transmission and the last symbol of the Synchronous Broadcast Signal Block (SSB) transmission symbol is less than/less than For NRX-TX*Tc, and/or HD-FDD the UE does not expect the interval between the last symbol of a PUSCH or PUCCH or PRACH repeat transmission and the first symbol of a Synchronous Broadcast Signal Block (SSB) transmission symbol to be less than/less than on NTX-RX*Tc.
- SSB Synchronous Broadcast Signal Block
- the interval between the last symbol of the symbol is smaller/less than NRX-TX*Tc, and/or the HD-FDD UE does not expect a PUSCH or PUCCH or PRACH repeated transmission of the last symbol and the Synchronous Broadcast Signal Block (SSB) transmission symbol
- the spacing between the first symbols is smaller/less than NTX-RX*Tc.
- Method 6-3 For half-duplex terminals, PUSCH repeated transmission scheduled by uplink DCI format, or PUCCH transmission scheduled by DCI, or PRACH triggered by PDCCH order:
- the interval between the last symbol of the symbol is smaller/less than NRX-TX*Tc, and/or the HD-FDD UE does not expect a PUSCH or PUCCH or PRACH repeated transmission of the last symbol and the Synchronous Broadcast Signal Block (SSB) transmission symbol
- the spacing between the first symbols is smaller/less than NTX-RX*Tc.
- Method 6-4 For half-duplex terminals, PUSCH repeated transmission scheduled by uplink DCI format, or PUCCH transmission scheduled by DCI, or PRACH triggered by PDCCH order:
- the transmission method provided by the embodiment of the present application realizes the joint operation of the half-duplex RedCap terminal and the uplink coverage enhancement mechanism based on effective slot count, and particularly provides the uplink and downlink conversion time between PUSCH repetition type A and SSB resources.
- Figure 3 is a second schematic flowchart of a transmission method provided by an embodiment of the present application. As shown in Figure 3, the method includes:
- Step 301 The network side device receives the first capability information reported by the terminal; the first capability information is used to indicate that the terminal does not expect the network side device to enable or configure the available time slot count for the terminal; the network The side device does not enable or configure available time slot counting for the terminal;
- the network-side device performs at least one of the following:
- the terminal has half-duplex capability or does not have full-duplex capability.
- the terminal includes a low-capability terminal (RedCap UE), such as RedCap half-duplex (HalfDuplex-frequency-division duplex, HD-FDD) UE.
- RedCap UE low-capability terminal
- Network-side devices include but are not limited to the types of network-side devices 12 listed above, and this application is not limited thereto.
- the first capability information is used to indicate that the terminal does not expect the network side device to enable or configure the available time slot count for the terminal.
- the first capability information may include at least one of the following: 1) having half-duplex capability; 2) not having full-duplex capability.
- the terminal reports the first capability information to the network side device, the terminal does not expect the network side device to enable available slot counting (AvailableSlotCounting) for the terminal.
- the network side device receives the first capability information reported by the terminal, and the network side device The network side device does not enable or configure available time slot counting for the terminal.
- Terminals with half-duplex capability or terminals without full-duplex capability do not support a mechanism in which the number of uplink repeated transmissions (such as PUSCH repetition Type A or PUCCH) is based on the available slot count.
- the terminal reports to the network side device that the terminal is a half-duplex terminal, assuming that the terminal reports: RedCap UE with Half-duplex FDD operation type A (operation type A), the terminal does not expect the network
- the side device configures or enables available time slot counting.
- the target conditions include at least one of the following:
- the number of transmissions is greater than 1, or the number of transmissions is equal to 1;
- the target uplink transmission is an uplink transmission configured semi-statically by Radio Resource Control (RRC); or the target uplink transmission is a dynamically scheduled uplink transmission.
- RRC Radio Resource Control
- the switching time between the target uplink transmission and downlink reception includes at least one of the following:
- the time interval between the last symbol received in the downlink and the first symbol transmitted in the target uplink is the time interval between the last symbol received in the downlink and the first symbol transmitted in the target uplink.
- the uplink transmission of the RRC semi-static configuration includes at least one of the following:
- RRC semi-statically configured physical uplink control channel PUCCH transmission
- RRC semi-statically configured grant-scheduled PUSCH Type 2 CG PUSCH Type2;
- Physical random access channel PRACH transmission Physical random access channel PRACH transmission.
- the dynamically scheduled uplink transmission includes at least one of the following:
- the first CG PUSCH after DCI activates CG PUSCH Type 2;
- the downlink reception includes at least one of the following:
- Synchronization signal/physical broadcast channel block SSB Synchronization signal/physical broadcast channel block
- Downlink search space SS associated with control resource set #0CORESET#0.
- the SSB includes at least one of the following:
- SSB configured by non-cell-defined SSB nonCellDefiningSSB related signaling
- SSB configured by dedicated downlink partial bandwidth BWP-DownlinkDedicated signaling
- SSB configured by UE-specific signaling
- the SSB contained in the terminal's currently active BWP The SSB contained in the terminal's currently active BWP.
- the first capability information reported by the terminal is received through the network side device; the first capability information is used to indicate that the terminal does not expect the network side device to enable or configure the terminal. Counting available time slots; the network side device does not enable or configure available time slot counting for the terminal based on the first capability information; or when the target conditions are met, the network side device performs at least one of the following: Determine the terminal The target time slot in which the target uplink transmission is located is an unavailable time slot for the target uplink transmission, or it is determined that the target time slot is not included in the target uplink transmission.
- the terminal has half-duplex capability or does not have full-duplex capability.
- the transmission method provided by the embodiment of the present application can realize unified processing when there is resource overlap between the target uplink transmission and downlink reception or the switching time between the target uplink transmission and downlink reception is insufficient, simplifying the behavior and complexity of the terminal, and by determining The target time slot where the terminal's target uplink transmission is located is an unavailable time slot for the target uplink transmission, or the target time slot is determined not to be included in the number of transmissions of the target uplink transmission, and then the target uplink transmission is transmitted in the next available time slot. This can improve uplink coverage.
- the execution subject may be a transmission device.
- a transmission device performing a transmission method is used as an example to illustrate the transmission device provided by the embodiment of the present application.
- Figure 4 is one of the schematic structural diagrams of a transmission device provided by an embodiment of the present application. As shown in Figure 4, the transmission device 400 is applied to a terminal and includes:
- the first transmission module 401 is configured to report first capability information to the network side device; the first capability information is used to indicate that the terminal does not expect the network side device to enable or configure the available time slot count for the terminal;
- the terminal has half-duplex capability or does not have full-duplex capability.
- the terminal when the first capability information is reported to the network side device, the terminal does not expect the network side device to enable or configure the available time slot count for the terminal; or when the target conditions are met. , do at least one of the following: Determine whether it has half-duplex capability or not The target time slot where the target uplink transmission of a terminal with full-duplex capability is located is an unavailable time slot for the target uplink transmission, or it is determined that the target time slot is not included in the number of transmissions of the target uplink transmission; the difference between the target uplink transmission and the downlink reception is not expected.
- the transmission device provided by the embodiment of the present application can realize unified processing when there is resource overlap between the target uplink transmission and downlink reception or the switching time between the target uplink transmission and downlink reception is insufficient, simplifying the behavior and complexity of the terminal, and by determining The target time slot where the terminal's target uplink transmission is located is an unavailable time slot for the target uplink transmission, or the target time slot is determined not to be included in the number of transmissions of the target uplink transmission, and then the target uplink transmission is transmitted in the next available time slot. This can improve uplink coverage.
- the target conditions include at least one of the following:
- the number of transmissions is greater than 1, or the number of transmissions is equal to 1;
- the target uplink transmission is an uplink transmission configured semi-statically by Radio Resource Control (RRC); or the target uplink transmission is a dynamically scheduled uplink transmission.
- RRC Radio Resource Control
- the switching time between the target uplink transmission and downlink reception includes at least one of the following:
- the time interval between the last symbol received in the downlink and the first symbol transmitted in the target uplink is the time interval between the last symbol received in the downlink and the first symbol transmitted in the target uplink.
- the uplink transmission of the RRC semi-static configuration includes at least one of the following:
- RRC semi-statically configured physical uplink control channel PUCCH transmission
- RRC semi-statically configured grant scheduled PUSCH type 1 CG PUSCH Type1;
- RRC semi-statically configured grant-scheduled PUSCH Type 2 CG PUSCH Type2;
- Physical random access channel PRACH transmission Physical random access channel PRACH transmission.
- the dynamically scheduled uplink transmission includes at least one of the following:
- the first CG PUSCH after DCI activates CG PUSCH Type 2;
- the first transmission module 401 is further used for:
- the target time slot in which the terminal's target uplink transmission is located is an unavailable time slot for the target uplink transmission, or it is determined that the target time slot is not counted. into the number of transmissions of the target uplink transmission; or,
- the first transmission module 401 is further used for:
- the target time slot in which the terminal's target uplink transmission is located is an available time slot for the target uplink transmission, or it is determined that the target time slot is included in the target uplink transmission Among the number of transmissions of the target uplink transmission; or,
- the target time slot in which the terminal's target uplink transmission is located is the available time for the target uplink transmission. slot, or determine that the target time slot is included in the number of transmissions of the target uplink transmission; or,
- the AvailableSlotCounting is started or enabled and the number of transmissions K>1, when the interval between the first symbol of the target uplink transmission and the last symbol of the downlink reception is less than the first threshold, and/or the When the interval between the last symbol of the target uplink transmission and the first symbol of the downlink reception is less than the second threshold, determine that the target time slot in which the terminal's target uplink transmission is located is an available time slot for the target uplink transmission, or determine that the The target time slot is included in the number of transmissions of the target uplink transmission.
- the downlink reception includes at least one of the following:
- Synchronization signal/physical broadcast channel block SSB Synchronization signal/physical broadcast channel block
- Downlink search space SS associated with control resource set #0 CORESET#0.
- the SSB includes at least one of the following:
- SSB configured by non-cell-defined SSB nonCellDefiningSSB related signaling
- SSB configured by dedicated downlink partial bandwidth BWP-DownlinkDedicated signaling
- SSB configured by UE-specific signaling
- the SSB contained in the terminal's currently active BWP The SSB contained in the terminal's currently active BWP.
- the first capability information includes at least one of the following:
- the terminal includes: a low-capability terminal RedCap UE.
- the transmission device in the embodiment of the present application may be an electronic device, such as an electronic device with an operating system, or may be a component in the electronic device, such as an integrated circuit or chip.
- the electronic device may be a terminal or other devices other than the terminal.
- terminals may include but are not limited to the types of terminals 11 listed above, and other devices may be servers, network attached storage (Network Attached Storage, NAS), etc., which are not specifically limited in the embodiment of this application.
- NAS Network Attached Storage
- the transmission device provided by the embodiment of the present application can implement each process implemented by the method embodiment shown in Figure 2 and achieve the same technical effect. To avoid duplication, the details will not be described here.
- Figure 5 is a second structural schematic diagram of a transmission device provided by an embodiment of the present application. As shown in Figure 5, the transmission device 500 is applied to network side equipment and includes:
- the second transmission module 501 is used to receive the first capability information reported by the terminal; the first capability information is used to indicate that the terminal does not expect the network side device to enable or configure the available time slot count for the terminal; processing Module 502, configured to disable or configure available time slot counting for the terminal;
- the second transmission module 501 is used to perform the following steps when the target condition is met: One item missing:
- the terminal has half-duplex capability or does not have full-duplex capability.
- the transmission device receives the first capability information reported by the terminal; the first capability information is used to indicate that the terminal does not expect the network side device to enable or configure the available time slot count for the terminal. ; Disabling or not configuring the available time slot count for the terminal based on the first capability information; or if the target condition is met, performing at least one of the following: Determining that the target time slot in which the terminal's target uplink transmission is located is the Unavailable time slots for target uplink transmission, or determine that the target time slot is not counted in the number of transmissions for the target uplink transmission; configure that there is no resource overlap between target uplink transmission and downlink reception, or configure target uplink transmission and downlink reception The switching time is not less than the target time; the target uplink reception is given up; the target uplink transmission is received; and the downlink transmission is performed; wherein the terminal has half-duplex capability or does not have full-duplex capability.
- the transmission device provided by the embodiment of the present application can realize unified processing when there is resource overlap between the target uplink transmission and downlink reception or the switching time between the target uplink transmission and downlink reception is insufficient, simplifying the behavior and complexity of the terminal, and by determining The target time slot where the terminal's target uplink transmission is located is an unavailable time slot for the target uplink transmission, or the target time slot is determined not to be included in the number of transmissions of the target uplink transmission, and then the target uplink transmission is transmitted in the next available time slot. This can improve uplink coverage.
- the target conditions include at least one of the following:
- the number of transmissions is greater than 1, or the number of transmissions is equal to 1;
- the target uplink transmission is an uplink transmission configured semi-statically by Radio Resource Control (RRC); or the target uplink transmission is a dynamically scheduled uplink transmission.
- RRC Radio Resource Control
- the switching time between the target uplink transmission and downlink reception includes at least one of the following:
- the time interval between the last symbol received in the downlink and the first symbol transmitted in the target uplink is the time interval between the last symbol received in the downlink and the first symbol transmitted in the target uplink.
- the uplink transmission of the RRC semi-static configuration includes at least one of the following:
- RRC semi-statically configured physical uplink control channel PUCCH transmission
- RRC semi-statically configured grant-scheduled PUSCH Type 2 CG PUSCH Type2;
- Physical random access channel PRACH transmission Physical random access channel PRACH transmission.
- the dynamically scheduled uplink transmission includes at least one of the following:
- the first CG PUSCH after DCI activates CG PUSCH Type 2;
- the second transmission module 501 is further used to:
- the target time slot in which the terminal's target uplink transmission is located is an unavailable time slot for the target uplink transmission, or it is determined that the target time slot is not counted. into the number of transmissions of the target uplink transmission; or,
- the second transmission module 501 is further used to:
- the target time slot in which the terminal's target uplink transmission is located is an available time slot for the target uplink transmission, or it is determined that the target time slot is included in the target uplink transmission Among the number of transmissions of the target uplink transmission; or,
- the target time slot in which the terminal's target uplink transmission is located is the available time for the target uplink transmission. slot, or determine that the target time slot is included in the number of transmissions of the target uplink transmission; or,
- the AvailableSlotCounting is started or enabled and the number of transmissions K>1, when the interval between the first symbol of the target uplink transmission and the last symbol of the downlink reception is less than the first threshold, and/or the When the interval between the last symbol of the target uplink transmission and the first symbol of the downlink reception is less than the second threshold, determine that the target time slot in which the terminal's target uplink transmission is located is an available time slot for the target uplink transmission, or determine that the The target time slot is included in the number of transmissions of the target uplink transmission.
- the downlink reception includes at least one of the following:
- Synchronization signal/physical broadcast channel block SSB Synchronization signal/physical broadcast channel block
- Downlink search space SS associated with control resource set #0 CORESET#0.
- the SSB includes at least one of the following:
- SSB configured by non-cell-defined SSB nonCellDefiningSSB related signaling
- SSB configured by dedicated downlink partial bandwidth BWP-DownlinkDedicated signaling
- SSB configured by UE-specific signaling
- the SSB contained in the terminal's currently active BWP The SSB contained in the terminal's currently active BWP.
- the first capability information includes at least one of the following:
- the terminal includes: a low-capability terminal RedCap UE.
- Figure 6 is a schematic structural diagram of a communication device provided by an embodiment of the present application.
- the communication device 600 includes a processor 601 and a memory 602.
- the memory 602 stores programs that can run on the processor 601. or instructions.
- the communication device 600 is a terminal
- the program or instructions are executed by the processor 601
- each step of the above terminal-side transmission method embodiment is implemented, and the same technical effect can be achieved.
- the communication device 600 is a network-side device
- the program or instruction is executed by the processor 601
- the steps of the above-mentioned network-side device-side transmission method embodiment are implemented, and the same technical effect can be achieved. To avoid duplication, they will not be described again here. .
- An embodiment of the present application also provides a terminal, including a processor and a communication interface; wherein:
- the communication interface is used to report first capability information to the network side device; the first capability information is used to indicate that the terminal does not expect the network side device to enable or configure available time slot counts for the terminal;
- the processor is configured to perform at least one of the following when the target condition is met:
- the terminal has half-duplex capability or does not have full-duplex capability.
- This terminal embodiment corresponds to the above-mentioned terminal-side method embodiment.
- Each implementation process and implementation manner of the above-mentioned method embodiment can be applied to this terminal embodiment, and can achieve the same technical effect.
- Figure 7 is a schematic structural diagram of a terminal provided by an embodiment of the present application.
- the terminal 700 includes but is not limited to: a radio frequency unit 701, a network module 702, an audio output unit 703, an input unit 704, a sensor 705, and a display unit. 706. At least some components of the user input unit 707, the interface unit 708, the memory 709, the processor 710, etc.
- the terminal 700 may also include a power supply (such as a battery) that supplies power to various components.
- the power supply may be logically connected to the processor 710 through the power management system, thereby through The power management system implements functions such as managing charging, discharging, and power consumption management.
- the terminal structure shown in FIG. 7 does not constitute a limitation on the terminal.
- the terminal may include more or fewer components than shown in the figure, or some components may be combined or arranged differently, which will not be described again here.
- the input unit 704 may include a graphics processing unit (Graphics Processing Unit, GPU) 7041 and a microphone 7042.
- the graphics processor 7041 is responsible for the image capture device (GPU) in the video capture mode or the image capture mode. Process the image data of still pictures or videos obtained by cameras (such as cameras).
- the display unit 706 may include a display panel 7061, which may be configured in the form of a liquid crystal display, an organic light emitting diode, or the like.
- the user input unit 707 includes a touch panel 7071 and at least one of other input devices 7072 .
- Touch panel 7071 also called touch screen.
- the touch panel 7071 may include two parts: a touch detection device and a touch controller.
- Other input devices 7072 may include but are not limited to physical keyboards, function keys (such as volume control keys, switch keys, etc.), trackballs, mice, and joysticks, which will not be described again here.
- the radio frequency unit 701 after receiving downlink data from the network side device, can transmit it to the processor 710 for processing; in addition, the radio frequency unit 701 can send uplink data to the network side device.
- the radio frequency unit 701 includes, but is not limited to, an antenna, amplifier, transceiver, coupler, low noise amplifier, duplexer, etc.
- Memory 709 may be used to store software programs or instructions as well as various data.
- the memory 709 may mainly include a first storage area for storing programs or instructions and a second storage area for storing data, wherein the first storage area may store an operating system, an application program or instructions required for at least one function (such as a sound playback function, Image playback function, etc.) etc.
- memory 709 may include volatile memory or non-volatile memory, or memory 709 may include both volatile and non-volatile memory.
- the non-volatile memory can be read-only memory (Read-Only Memory, ROM), programmable read-only memory (Programmable ROM, PROM), erasable programmable read-only memory (Erasable PROM, EPROM), electrically removable memory. Erase programmable read-only memory (Electrically EPROM, EEPROM) or flash memory.
- Volatile memory can be random access memory (Random Access Memory, RAM), static random access memory (Static RAM, SRAM), dynamic random access memory (Dynamic RAM, DRAM), synchronous dynamic random access memory (Synchronous DRAM, SDRAM), double data rate synchronous dynamic random access memory (Double Data Rate SDRAM, DDRSDRAM), enhanced synchronous dynamic random access memory (Enhanced SDRAM, ESDRAM), synchronous connection dynamic random access memory (Synch link DRAM, SLDRAM) and Direct Rambus RAM (DRRAM).
- RAM Random Access Memory
- Static RAM static random access memory
- DRAM dynamic random access memory
- DRAM synchronous dynamic random access memory
- SDRAM double data rate synchronous dynamic random access memory
- Double Data Rate SDRAM Double Data Rate SDRAM
- ESDRAM enhanced synchronous dynamic random access memory
- Synch link DRAM, SLDRAM synchronous connection dynamic random access memory
- DRRAM Direct Rambus RAM
- the processor 710 may include one or more processing units; optionally, the processor 710 integrates an application processor and a modem processor, where the application processor mainly handles operations related to the operating system, user interface, application programs, etc., Modem processors mainly process wireless communication signals, such as baseband processors. It can be understood that the above-mentioned modem processor may not be integrated into the processor 710.
- the radio frequency unit 701 is used to report the first capability information to the network side device; the first capability information is used to indicate that the terminal does not expect the network side device to enable or configure the available time slot count for the terminal;
- the processor 710 is configured to perform at least one of the following if the target condition is met:
- the terminal has half-duplex capability or does not have full-duplex capability.
- the terminal provided in the embodiment of the present application reports the first capability information to the network side device.
- the terminal does not expect the network side device to enable or configure the available time slot count for the terminal; or has half-duplex capability or does not have full-duplex capability.
- the terminal with duplex capability performs at least one of the following: the target time slot where the determined target uplink transmission is located is an unavailable time slot for the target uplink transmission, or the target time slot is determined not to be included in the target uplink transmission. In the number of transmissions; resource overlap between the target uplink transmission and downlink reception is not expected, or resource overlap between the target uplink transmission and downlink reception is not expected.
- the switching time is less than the target time; the target uplink transmission is abandoned; the downlink reception is performed.
- the terminal provided by the embodiment of the present application can realize unified processing when there is resource overlap between the target uplink transmission and downlink reception or the switching time between the target uplink transmission and downlink reception is insufficient, simplifying the behavior and complexity of the terminal, and by determining the terminal
- the target time slot where the target uplink transmission is located is an unavailable time slot for the target uplink transmission, or it is determined that the target time slot is not included in the number of transmissions of the target uplink transmission, and then the target uplink transmission is transmitted in the next available time slot, so Can improve uplink coverage.
- the target conditions include at least one of the following:
- the number of transmissions is greater than 1, or the number of transmissions is equal to 1;
- the target uplink transmission is an uplink transmission configured semi-statically by Radio Resource Control (RRC); or the target uplink transmission is a dynamically scheduled uplink transmission.
- RRC Radio Resource Control
- the switching time between the target uplink transmission and downlink reception includes at least one of the following:
- the time interval between the last symbol received in the downlink and the first symbol transmitted in the target uplink is the time interval between the last symbol received in the downlink and the first symbol transmitted in the target uplink.
- the uplink transmission of the RRC semi-static configuration includes at least one of the following:
- RRC semi-statically configured physical uplink control channel PUCCH transmission
- RRC semi-statically configured grant-scheduled PUSCH Type 2 CG PUSCH Type2;
- Physical random access channel PRACH transmission Physical random access channel PRACH transmission.
- the dynamically scheduled uplink transmission includes at least one of the following:
- the first CG PUSCH after DCI activates CG PUSCH Type 2;
- processor 710 is further used to:
- the target time slot in which the terminal's target uplink transmission is located is an unavailable time slot for the target uplink transmission, or it is determined that the target time slot is not counted. into the number of transmissions of the target uplink transmission; or,
- processor 710 is further used to:
- the target time slot in which the terminal's target uplink transmission is located is an available time slot for the target uplink transmission, or it is determined that the target time slot is included in the target uplink transmission Among the number of transmissions of the target uplink transmission; or,
- the target time slot in which the terminal's target uplink transmission is located is the available time for the target uplink transmission. slot, or determine that the target time slot is included in the number of transmissions of the target uplink transmission; or,
- the AvailableSlotCounting is started or enabled and the number of transmissions K>1, when the interval between the first symbol of the target uplink transmission and the last symbol of the downlink reception is less than the first threshold, and/or the When the interval between the last symbol of the target uplink transmission and the first symbol of the downlink reception is less than the second threshold, determine that the target time slot in which the terminal's target uplink transmission is located is an available time slot for the target uplink transmission, or determine that the The target time slot is included in the number of transmissions of the target uplink transmission.
- the downlink reception includes at least one of the following:
- Synchronization signal/physical broadcast channel block SSB Synchronization signal/physical broadcast channel block
- Downlink search space SS associated with control resource set #0 CORESET#0.
- the SSB includes at least one of the following:
- SSB configured by non-cell-defined SSB nonCellDefiningSSB related signaling
- SSB configured by dedicated downlink partial bandwidth BWP-DownlinkDedicated signaling
- SSB configured by UE-specific signaling
- the SSB contained in the terminal's currently active BWP The SSB contained in the terminal's currently active BWP.
- the first capability information includes at least one of the following:
- the terminal includes: a low-capability terminal RedCap UE.
- An embodiment of the present application also provides a network side device, including a processor and a communication interface; wherein:
- the communication interface is used to receive the first capability information reported by the terminal; the first capability information is used to indicate that the terminal does not expect the network side device to enable or configure available time slot counts for the terminal; the processing The device is used to disable or configure available time slot counting for the terminal;
- the processor is configured to perform at least one of the following when the target condition is met:
- the terminal has half-duplex capability or does not have full-duplex capability.
- This network-side device embodiment corresponds to the above-mentioned network-side device method embodiment.
- Each implementation process and implementation manner of the above-mentioned method embodiment can be applied to this network-side device embodiment, and can achieve the same technical effect.
- FIG 8 is a schematic structural diagram of a network side device provided by an embodiment of the present application.
- the The network side device 800 includes: an antenna 801, a radio frequency device 802, a baseband device 803, a processor 804 and a memory 805.
- Antenna 801 is connected to radio frequency device 802.
- the radio frequency device 802 receives information through the antenna 801 and sends the received information to the baseband device 803 for processing.
- the baseband device 803 processes the information to be sent and sends it to the radio frequency device 802.
- the radio frequency device 802 processes the received information and then sends it out through the antenna 801.
- the method performed by the network side device in the above embodiment can be implemented in the baseband device 803, which includes a baseband processor.
- the baseband device 803 may include, for example, at least one baseband board on which multiple chips are disposed, as shown in FIG. Program to perform the network device operations shown in the above method embodiments.
- the network side device may also include a network interface 806, which is, for example, a common public radio interface (CPRI).
- a network interface 806, which is, for example, a common public radio interface (CPRI).
- CPRI common public radio interface
- the network side device 800 in this embodiment of the present invention also includes: instructions or programs stored in the memory 805 and executable on the processor 804.
- the processor 804 calls the instructions or programs in the memory 805 to perform the transmission as described above. method and achieve the same technical effect. To avoid repetition, we will not repeat it here.
- Embodiments of the present application also provide a transmission system, including: a terminal and a network-side device.
- the terminal can be used to perform the steps of the terminal-side transmission method as described above.
- the network-side device can be used to perform the above-described steps. The steps of the transmission method on the network side and device side.
- Embodiments of the present application also provide a readable storage medium.
- the readable storage medium may be volatile or non-volatile.
- the readable storage medium stores a program or instructions. The program Or when the instruction is executed by the processor, each process of the above-mentioned transmission method embodiment is implemented, and the same technical effect can be achieved. To avoid repetition, the details will not be described here.
- the processor is the processor in the terminal described in the above embodiment.
- the readable storage medium includes computer readable storage media, such as computer read-only memory ROM, random access memory RAM, magnetic disk or optical disk, etc.
- An embodiment of the present application further provides a chip.
- the chip includes a processor and a communication interface.
- the communication interface is coupled to the processor.
- the processor is used to run programs or instructions to implement each of the above transmission method embodiments. The process can achieve the same technical effect. To avoid repetition, it will not be described again here.
- chips mentioned in the embodiments of this application may also be called system-on-chip, system-on-a-chip, system-on-chip or system-on-chip, etc.
- Embodiments of the present application further provide a computer program/program product.
- the computer program/program product is stored in a storage medium.
- the computer program/program product is executed by at least one processor to implement the above transmission method embodiment.
- Each process can achieve the same technical effect. To avoid duplication, it will not be described again here.
- the methods of the above embodiments can be implemented by means of software plus the necessary general hardware platform. Of course, it can also be implemented by hardware, but in many cases the former is better. implementation.
- the technical solution of the present application can be embodied in the form of a computer software product that is essentially or contributes to the existing technology.
- the computer software product is stored in a storage medium (such as ROM/RAM, disk , CD), including several instructions to make a terminal (can be a mobile phone, computer, server server, air conditioner, or network device, etc.) to perform the methods described in various embodiments of this application.
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Abstract
Description
Claims (27)
- 一种传输方法,包括:终端向网络侧设备上报第一能力信息;所述第一能力信息用于指示所述终端不期望所述网络侧设备为所述终端使能或配置可用时隙计数;或者,终端在目标条件满足的情况下,执行以下至少一项:确定所述终端的目标上行传输所在的目标时隙为所述目标上行传输的不可用时隙,或者确定所述目标时隙不计入所述目标上行传输的传输次数中;不期望目标上行传输和下行接收之间存在资源重叠,或者不期望目标上行传输和下行接收之间的切换时间小于目标时间;放弃所述目标上行传输;进行下行接收;其中,所述终端具有半双工能力或不具有全双工能力。
- 根据权利要求1所述的传输方法,其中,所述目标条件包括以下至少一项:使能可用时隙计数,或者不使能可用时隙计数;目标上行传输和下行接收之间存在资源重叠;目标上行传输和下行接收之间不存在资源重叠,且目标上行传输和下行接收之间的切换时间小于目标时间;传输次数大于1,或者传输次数等于1;所述目标上行传输为无线资源控制RRC半静态配置的上行传输;或者所述目标上行传输为动态调度的上行传输。
- 根据权利要求2所述的传输方法,其中,所述目标上行传输和下行接收之间的切换时间,包括以下至少一项:所述目标上行传输的最后一个符号到所述下行接收的第一个符号之间的时间间隔;所述下行接收的最后一个符号和所述目标上行传输的第一个符号之间的 时间间隔。
- 根据权利要求2或3所述的传输方法,其中,所述RRC半静态配置的上行传输包括以下至少一项:RRC半静态配置的物理上行链路控制信道PUCCH传输;RRC半静态配置的授权调度的PUSCH类型1 CG PUSCH Type1;RRC半静态配置的授权调度的PUSCH类型2 CG PUSCH Type2;除了下行控制信息DCI激活CG PUSCH Type2后的第一个CG PUSCH,其余的CG PUSCH Type 2;物理随机接入信道PRACH传输。
- 根据权利要求2至4中任一项所述的传输方法,其中,所述动态调度的上行传输包括以下至少一项:由上行授权UL grant调度的PUSCH;DCI激活CG PUSCH Type 2后的第一个CG PUSCH;由随机接入响应RAR UL grant调度的PUSCH;由用临时小区无线网络临时标识符TC-RNTI加扰的DCI format 0_0调度的PUSCH;动态调度的PUCCH;动态调度的PRACH;动态调度的探测参考信号SRS。
- 根据权利要求2至5中任一项所述的传输方法,其中,所述终端在目标条件满足的情况下,确定所述终端的目标上行传输所在的目标时隙为所述目标上行传输的不可用时隙,或者确定所述目标时隙不计入所述目标上行传输的传输次数中,包括:在所述传输次数K=1和K>1的情况下,当所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值时,确定所述终端的目标上行传输所在的目标时隙为所述目标上行传输的不可用时隙,或者确 定所述目标时隙不计入所述目标上行传输的传输次数中;或,在启动或使能可用时隙计数AvailableSlotCounting,且所述传输次数K=1和K>1的情况下,当所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值时,确定所述终端的目标上行传输所在的目标时隙为所述目标上行传输的不可用时隙,或者确定所述目标时隙不计入所述目标上行传输的传输次数中;或,在启动或使能可用时隙计数AvailableSlotCounting,且所述传输次数K>1的情况下,当所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值时,确定所述终端的目标上行传输所在的目标时隙为所述目标上行传输的不可用时隙,或者确定所述目标时隙不计入所述目标上行传输的传输次数中。
- 根据权利要求2至5中任一项所述的传输方法,其中,所述终端放弃所述目标上行传输,包括:在所述传输次数K=1和K>1的情况下,当所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值时,确定所述终端的目标上行传输所在的目标时隙为所述目标上行传输的可用时隙,或者确定所述目标时隙计入所述目标上行传输的传输次数中;或,在所述传输次数K=1和K>1的情况下,所述终端不期望所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或所述终端不期望所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值;或,在所述传输次数K=1和K>1的情况下,当所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值时,所述终端放弃 所述目标上行传输;或,在不启动或不使能所述AvailableSlotCounting,且所述传输次数K=1和K>1的情况下,当所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值时,确定所述终端的目标上行传输所在的目标时隙为所述目标上行传输的可用时隙,或者确定所述目标时隙计入所述目标上行传输的传输次数中;或,在不启动或不使能所述AvailableSlotCounting,且所述传输次数K=1和K>1的情况下,所述终端不期望所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或所述终端不期望所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值;或,在不启动或不使能所述AvailableSlotCounting,且所述传输次数K=1和K>1的情况下,当所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值时,所述终端放弃所述目标上行传输;或,在启动或使能所述AvailableSlotCounting,且所述传输次数K=1和K>1的情况下,当所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值时,确定所述终端的目标上行传输所在的目标时隙为所述目标上行传输的可用时隙,或者确定所述目标时隙计入所述目标上行传输的传输次数中;或,在启动或使能所述AvailableSlotCounting,且所述传输次数K=1的情况下,当所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值时,确定所述终端的目标上行传输所在的目标时隙为所述目标上行传输的可用时隙,或者确定所述目标时隙计入所述目标上行传输的传输次数中;或,在启动或使能所述AvailableSlotCounting,且所述传输次数K=1的情况下,所述终端不期望所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或所述终端不期望所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值;或,在启动或使能所述AvailableSlotCounting,且所述传输次数K>1的情况下,当所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值时,确定所述终端的目标上行传输所在的目标时隙为所述目标上行传输的可用时隙,或者确定所述目标时隙计入所述目标上行传输的传输次数中。
- 根据权利要求1至7中任一项所述的传输方法,其中,所述下行接收包括以下至少一项:同步信号/物理广播信道块SSB;公共搜索空间类型0 Type0 CSS、Type0A CSS、Type1 CSS及Type2 CSS中至少一项;与控制资源集合#0 CORESET#0相关联的下行搜索空间SS。
- 根据权利要求8所述的传输方法,其中,所述SSB包括以下至少一项:由同步广播块在集合中的位置ssb-PositionsInBurst配置的SSB;由非小区定义SSB nonCellDefiningSSB相关信令配置的SSB;由专用下行部分带宽BWP-DownlinkDedicated信令配置的SSB;由终端特定信令UE-specific signalling配置的SSB;终端当前活动的BWP中所包含的SSB。
- 根据权利要求1至9中任一项所述的传输方法,其中,所述第一能力信息包括以下至少一项:具有半双工能力;不具有全双工能力。
- 根据权利要求1至10中任一项所述的传输方法,其中,所述终端包 括:低能力终端RedCap UE。
- 一种传输方法,包括:网络侧设备接收终端上报的第一能力信息;所述第一能力信息用于指示所述终端不期望所述网络侧设备为所述终端使能或配置可用时隙计数;所述网络侧设备为所述终端不使能或不配置可用时隙计数;或者,网络侧设备在目标条件满足的情况下,执行以下至少一项:确定终端的目标上行传输所在的目标时隙为所述目标上行传输的不可用时隙,或者确定所述目标时隙不计入所述目标上行传输的传输次数中;配置目标上行传输和下行接收之间不存在资源重叠,或者配置目标上行传输和下行接收之间的切换时间不小于目标时间;放弃目标上行接收;接收目标上行传输;进行下行发送;其中,所述终端具有半双工能力或不具有全双工能力。
- 根据权利要求12所述的传输方法,其中,所述目标条件包括以下至少一项:使能可用时隙计数,或者不使能可用时隙计数;目标上行传输和下行接收之间存在资源重叠;目标上行传输和下行接收之间不存在资源重叠,且目标上行传输和下行接收之间的切换时间小于目标时间;传输次数大于1,或者传输次数等于1;所述目标上行传输为无线资源控制RRC半静态配置的上行传输;或者所述目标上行传输为动态调度的上行传输。
- 根据权利要求13所述的传输方法,其中,所述目标上行传输和下行接收之间的切换时间,包括以下至少一项:所述目标上行传输的最后一个符号到所述下行接收的第一个符号之间的时间间隔;所述下行接收的最后一个符号和所述目标上行传输的第一个符号之间的时间间隔。
- 根据权利要求13或14所述的传输方法,其中,所述RRC半静态配置的上行传输包括以下至少一项:RRC半静态配置的物理上行链路控制信道PUCCH传输;RRC半静态配置的授权调度的PUSCH类型1 CG PUSCH Type1;RRC半静态配置的授权调度的PUSCH类型2 CG PUSCH Type2;除了下行控制信息DCI激活CG PUSCH Type2后的第一个CG PUSCH,其余的CG PUSCH Type 2;物理随机接入信道PRACH传输。
- 根据权利要求13至15任一项所述的传输方法,其中,所述动态调度的上行传输包括以下至少一项:由上行授权UL grant调度的PUSCH;DCI激活CG PUSCH Type 2后的第一个CG PUSCH;由随机接入响应RAR UL grant调度的PUSCH;由用临时小区无线网络临时标识符TC-RNTI加扰的DCI format 0_0调度的PUSCH;动态调度的PUCCH;动态调度的PRACH;动态调度的探测参考信号SRS。
- 根据权利要求13至16中任一项所述的传输方法,其中,所述网络侧设备在目标条件满足的情况下,确定终端的目标上行传输所在的目标时隙为所述目标上行传输的不可用时隙,或者确定所述目标时隙不计入所述目标上行传输的传输次数中,包括:在所述传输次数K=1和K>1的情况下,当所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值时,确定所述终端 的目标上行传输所在的目标时隙为所述目标上行传输的不可用时隙,或者确定所述目标时隙不计入所述目标上行传输的传输次数中;或,在启动或使能可用时隙计数AvailableSlotCounting,且所述传输次数K=1和K>1的情况下,当所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值时,确定所述终端的目标上行传输所在的目标时隙为所述目标上行传输的不可用时隙,或者确定所述目标时隙不计入所述目标上行传输的传输次数中;或,在启动或使能可用时隙计数AvailableSlotCounting,且所述传输次数K>1的情况下,当所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值时,确定所述终端的目标上行传输所在的目标时隙为所述目标上行传输的不可用时隙,或者确定所述目标时隙不计入所述目标上行传输的传输次数中。
- 根据权利要求13至16中任一项所述的传输方法,其中,所述网络侧设备放弃所述目标上行接收,包括:在所述传输次数K=1和K>1的情况下,当所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值时,确定所述终端的目标上行传输所在的目标时隙为所述目标上行传输的可用时隙,或者确定所述目标时隙计入所述目标上行传输的传输次数中;或,在所述传输次数K=1和K>1的情况下,获知所述终端不期望所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或获知所述终端不期望所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值;或,在所述传输次数K=1和K>1的情况下,当所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或所述目标上行传输的 最后一个符号和下行接收的第一个符号间隔小于第二阈值时,所述网络侧设备放弃所述目标上行接收;或,在不启动或不使能所述AvailableSlotCounting,且所述传输次数K=1和K>1的情况下,当所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值时,确定所述终端的目标上行传输所在的目标时隙为所述目标上行传输的可用时隙,或者确定所述目标时隙计入所述目标上行传输的传输次数中;或,在不启动或不使能所述AvailableSlotCounting,且所述传输次数K=1和K>1的情况下,获知所述终端不期望所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或获知所述终端不期望所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值;或,在不启动或不使能所述AvailableSlotCounting,且所述传输次数K=1和K>1的情况下,当所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值时,所述网络侧设备放弃所述目标上行接收;或,在启动或使能所述AvailableSlotCounting,且所述传输次数K=1和K>1的情况下,当所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值时,确定所述终端的目标上行传输所在的目标时隙为所述目标上行传输的可用时隙,或者确定所述目标时隙计入所述目标上行传输的传输次数中;或,在启动或使能所述AvailableSlotCounting,且所述传输次数K=1的情况下,当所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值时,确定所述终端的目标上行传输所在的目标时隙为所述目标 上行传输的可用时隙,或者确定所述目标时隙计入所述目标上行传输的传输次数中;或,在启动或使能所述AvailableSlotCounting,且所述传输次数K=1的情况下,获知所述终端不期望所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或获知所述终端不期望所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值;或,在启动或使能所述AvailableSlotCounting,且所述传输次数K>1的情况下,当所述目标上行传输的第一个符号和下行接收的最后一个符号间隔小于第一阈值,和/或所述目标上行传输的最后一个符号和下行接收的第一个符号间隔小于第二阈值时,确定所述终端的目标上行传输所在的目标时隙为所述目标上行传输的可用时隙,或者确定所述目标时隙计入所述目标上行传输的传输次数中。
- 根据权利要求12至18中任一项所述的传输方法,其中,所述下行接收包括以下至少一项:同步信号/物理广播信道块SSB;公共搜索空间类型0 Type0 CSS、Type0A CSS、Type1 CSS及Type2 CSS中至少一项;与控制资源集合#0 CORESET#0相关联的下行搜索空间SS。
- 根据权利要求19所述的传输方法,其中,所述SSB包括以下至少一项:由同步广播块在集合中的位置ssb-PositionsInBurst配置的SSB;由非小区定义SSB nonCellDefiningSSB相关信令配置的SSB;由专用下行部分带宽BWP-DownlinkDedicated信令配置的SSB;由终端特定信令UE-specific signalling配置的SSB;终端当前活动的BWP中所包含的SSB。
- 根据权利要求12至20中任一项所述的传输方法,其中,所述第一能力信息包括以下至少一项:具有半双工能力;不具有全双工能力。
- 根据权利要求12至21中任一项所述的传输方法,其中,所述终端包括:低能力终端RedCap UE。
- 一种传输装置,包括:第一传输模块,用于向网络侧设备上报第一能力信息;所述第一能力信息用于指示终端不期望所述网络侧设备为所述终端使能或配置可用时隙计数;或者,在目标条件满足的情况下,执行以下至少一项:确定所述终端的目标上行传输所在的目标时隙为所述目标上行传输的不可用时隙,或者确定所述目标时隙不计入所述目标上行传输的传输次数中;不期望目标上行传输和下行接收之间存在资源重叠,或者不期望目标上行传输和下行接收之间的切换时间小于目标时间;放弃所述目标上行传输;进行下行接收;其中,所述终端具有半双工能力或不具有全双工能力。
- 一种传输装置,包括:第二传输模块,用于接收终端上报的第一能力信息;所述第一能力信息用于指示所述终端不期望所述网络侧设备为所述终端使能或配置可用时隙计数;处理模块,用于为所述终端不使能或不配置可用时隙计数;或者,第二传输模块,用于在目标条件满足的情况下,执行以下至少一项:确定终端的目标上行传输所在的目标时隙为所述目标上行传输的不可用时隙,或者确定所述目标时隙不计入所述目标上行传输的传输次数中;配置目标上行传输和下行接收之间不存在资源重叠,或者配置目标上行传输和下行接收之间的切换时间不小于目标时间;放弃目标上行接收;接收目标上行传输;进行下行发送;其中,所述终端具有半双工能力或不具有全双工能力。
- 一种终端,包括处理器和存储器,所述存储器存储可在所述处理器上运行的程序或指令,所述程序或指令被所述处理器执行时实现如权利要求1至11任一项所述的传输方法的步骤。
- 一种网络侧设备,包括处理器和存储器,所述存储器存储可在所述处理器上运行的程序或指令,所述程序或指令被所述处理器执行时实现如权利要求12至22任一项所述的传输方法的步骤。
- 一种可读存储介质,所述可读存储介质上存储程序或指令,所述程序或指令被处理器执行时实现如权利要求1-11任一项所述的传输方法的步骤,或实现如权利要求12至22任一项所述的传输方法的步骤。
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CN110249677A (zh) * | 2017-02-02 | 2019-09-17 | 高通股份有限公司 | 新无线系统中的半双工操作 |
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CN110249677A (zh) * | 2017-02-02 | 2019-09-17 | 高通股份有限公司 | 新无线系统中的半双工操作 |
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