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WO2018028432A1 - 一种寻呼消息发送、接收方法及相关设备 - Google Patents

一种寻呼消息发送、接收方法及相关设备 Download PDF

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Publication number
WO2018028432A1
WO2018028432A1 PCT/CN2017/094500 CN2017094500W WO2018028432A1 WO 2018028432 A1 WO2018028432 A1 WO 2018028432A1 CN 2017094500 W CN2017094500 W CN 2017094500W WO 2018028432 A1 WO2018028432 A1 WO 2018028432A1
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WO
WIPO (PCT)
Prior art keywords
carrier
paging
paging message
base station
terminal
Prior art date
Application number
PCT/CN2017/094500
Other languages
English (en)
French (fr)
Inventor
梁靖
傅婧
Original Assignee
电信科学技术研究院
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 电信科学技术研究院 filed Critical 电信科学技术研究院
Priority to KR1020197007211A priority Critical patent/KR102198620B1/ko
Priority to US16/324,866 priority patent/US10869294B2/en
Priority to EP17838562.1A priority patent/EP3499990B1/en
Priority to JP2019507269A priority patent/JP6782354B2/ja
Publication of WO2018028432A1 publication Critical patent/WO2018028432A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W68/00User notification, e.g. alerting and paging, for incoming communication, change of service or the like
    • H04W68/005Transmission of information for alerting of incoming communication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/12Arrangements for detecting or preventing errors in the information received by using return channel
    • H04L1/16Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
    • H04L1/1607Details of the supervisory signal
    • H04L1/1614Details of the supervisory signal using bitmaps
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/80Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W68/00User notification, e.g. alerting and paging, for incoming communication, change of service or the like
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W68/00User notification, e.g. alerting and paging, for incoming communication, change of service or the like
    • H04W68/02Arrangements for increasing efficiency of notification or paging channel
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • H04W72/044Wireless resource allocation based on the type of the allocated resource
    • H04W72/0446Resources in time domain, e.g. slots or frames
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • H04W72/044Wireless resource allocation based on the type of the allocated resource
    • H04W72/0453Resources in frequency domain, e.g. a carrier in FDMA
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/20Control channels or signalling for resource management
    • H04W72/23Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/02Processing of mobility data, e.g. registration information at HLR [Home Location Register] or VLR [Visitor Location Register]; Transfer of mobility data, e.g. between HLR, VLR or external networks
    • H04W8/08Mobility data transfer
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/22Processing or transfer of terminal data, e.g. status or physical capabilities
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W88/00Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
    • H04W88/02Terminal devices
    • H04W88/022Selective call receivers
    • H04W88/023Selective call receivers with message or information receiving capability

Definitions

  • the present invention relates to the field of communications technologies, and in particular, to a paging message sending and receiving method and related device.
  • Machine Type Communication is a combination of many different types of communication technologies, such as machine-to-machine communication, machine control communication, human-computer interaction communication, and mobile internet communication. It is expected that the business of human-to-human communication in the future may only account for 1/3 of the entire terminal market, and a larger amount of communication is the inter-machine (small bandwidth system) communication service.
  • Narrow Band Internet of Things (NB-IoT) Work Item (WI) was adopted and launched in the 3GPP Release 13 (Release 13) phase.
  • the goal of the narrowband Internet WI phase is to standardize the wireless access to the Cellular Internet of Things (CIoT).
  • CCIoT Cellular Internet of Things
  • LTE Long Term Evolution
  • LTE-A Long Term Evolution-Advanced Evolution
  • the main network features/objectives are: enhanced indoor coverage, support for a large number of low-speed devices, low-time Delay sensitivity Low equipment costs, reduced equipment power consumption, optimized network architecture, etc.
  • NB-IOT communication may exist:
  • NB-IOT terminal User Equipment, UE
  • UE User Equipment
  • the time for data transmission between the NB-IOT terminal and the network side is controllable, that is, the NB-IOT terminal can only access during the specified time period of the network.
  • the data transmission performed by the NB-IOT terminal and the network side does not require high real-time performance, that is, it has time tolerance;
  • NB-IOT terminals are energy limited and require extremely low power consumption
  • NB-IOT terminals have low implementation complexity and the like.
  • An NB-IOT terminal may have one or more of the characteristics of NB-IOT communication.
  • a Primary Synchronization Signal (PSS), a Secondary Synchronization Signal (SSS), a Physical Broadcast Channel (PBCH), and system information are transmitted on the primary carrier.
  • PSS Primary Synchronization Signal
  • SSS Secondary Synchronization Signal
  • PBCH Physical Broadcast Channel
  • system information are transmitted on the primary carrier.
  • paging and random access can only be performed on the primary carrier. Users in idle state can only camp on the primary carrier.
  • the base station may configure the UE to work on the secondary carrier. The UE can only work on one carrier, that is, it cannot work on the primary carrier and the secondary carrier at the same time.
  • the secondary carrier cannot send pages. This results in a limited paging capacity of the system as a whole, and cannot provide a better service for a large number of NB-IoT terminals.
  • the embodiment of the invention provides a method for sending and receiving a paging message and a related device, which are used to solve the paging capacity of the system as a whole, in which the NB-IoT system can only send paging on the primary carrier and the secondary carrier cannot send the paging. Limited, unable to provide better service for a large number of NB-IoT terminals.
  • an embodiment of the present invention provides a method for receiving a paging message, including:
  • the terminal Determining, by the terminal, the paging carrier according to the information of the carrier that is allowed to receive the paging message, and the preset rule, where the paging carrier is a primary carrier or a secondary carrier of the base station;
  • the terminal receives a paging message sent by the base station on the paging carrier.
  • the information of the carrier that is allowed to receive the paging message includes a combination of any one or more of the following:
  • the number of primary and secondary carriers that are allowed to send paging messages is the number of primary and secondary carriers that are allowed to send paging messages.
  • the determining, by the terminal, the paging carrier according to the information of the carrier that is allowed to receive the paging message and the preset rule including:
  • the determining, by the terminal, the paging carrier according to the information of the carrier that is allowed to receive the paging message and the preset rule including:
  • PCint represents the initial judgment amount of the paging carrier
  • PCindex represents an index value of the paging carrier
  • nB represents a paging density
  • nBanchor represents a paging density of a primary carrier
  • nBnon-anchor represents a secondary carrier paging density
  • nBmin min(nBanchor, nBnon-anchor)
  • nBall nBanchor+nBnon-anchor
  • nB0 denotes the paging of the primary carrier Density
  • UE_ID is determined according to the identity of the terminal.
  • the receiving, by the terminal, the paging message sent by the base station on the paging carrier includes:
  • the terminal camps on the paging carrier and receives a paging message sent by the base station on the paging carrier.
  • the receiving, by the terminal, the paging message sent by the base station on the paging carrier includes:
  • the terminal If the paging carrier is not the primary carrier of the base station, the terminal camps on the primary carrier of the base station, and receives the sending by the base station to the paging carrier at the paging moment of the paging carrier Paging message.
  • the method further includes:
  • the terminal monitors a notification of system information update sent on the secondary carrier, and after receiving the notification, receives the updated system information on the primary carrier.
  • the method further includes:
  • the terminal compares the channel quality of the paging carrier and the primary carrier of the surrounding cell, and performs cell reselection according to the comparison result.
  • an embodiment of the present invention provides a method for sending a paging message, including:
  • the base station broadcasts system information, where the system information carries a packet that allows for receiving a paging message.
  • Wave information
  • the base station sends a paging message on the carrier that is allowed to receive the paging message, where the carrier that is allowed to receive the paging message is a primary carrier or a secondary carrier.
  • the information of the carrier that is allowed to receive the paging message includes a combination of any one or more of the following:
  • the number of primary and secondary carriers that are allowed to send paging messages is the number of primary and secondary carriers that are allowed to send paging messages.
  • the method further includes:
  • the base station sends a notification of system information update by the carrier that is allowed to receive the paging message when the system information is updated.
  • the method further includes:
  • the base station acquires information about whether the terminal supports the capability of receiving a paging message on the secondary carrier, and notifies the mobility management entity MME of whether the capability of supporting the paging message on the secondary carrier is supported.
  • the method before the sending, by the base station, the paging message on the carrier that is allowed to receive the paging message, the method further includes:
  • the base station receives information about whether the terminal notified by the mobility management entity MME supports the capability of receiving a paging message on the secondary carrier, and determines the capability of the terminal to support receiving the paging message on the secondary carrier.
  • an embodiment of the present invention provides a terminal, including:
  • a first receiving module configured to receive system information sent by a base station, where the system information carries information of a carrier that is allowed to receive a paging message;
  • a processing module configured to determine a paging carrier according to the information of the carrier that is allowed to receive the paging message, and the preset rule, where the paging carrier is a primary carrier or a secondary carrier of the base station;
  • a second receiving module configured to receive, on the paging carrier, a paging message sent by the base station.
  • the information of the carrier that is allowed to receive the paging message includes a combination of any one or more of the following:
  • the processing module is specifically configured to:
  • the number of UE_ID is determined according to the identifier of the terminal.
  • the processing module is specifically configured to:
  • the second receiving module is specifically configured to:
  • the primary carrier of the base station resides, and the paging message sent by the base station is received by the paging carrier at the paging moment of the paging carrier .
  • the second receiving module is further configured to:
  • processing module is further configured to:
  • the paging carrier is a secondary carrier
  • the channel quality of the paging carrier and the primary carrier of the surrounding cell is compared, and cell reselection is performed according to the comparison result.
  • an embodiment of the present invention provides a base station, including:
  • a broadcast module configured to broadcast system information, where the system information carries information of a carrier that is allowed to receive a paging message;
  • a sending module configured to send a paging message on the carrier that is allowed to receive the paging message, where the carrier that is allowed to receive the paging message is a primary carrier or a secondary carrier.
  • the information of the carrier that is allowed to receive the paging message includes a combination of any one or more of the following:
  • the number of primary and secondary carriers that are allowed to send paging messages is the number of primary and secondary carriers that are allowed to send paging messages.
  • the sending module is further configured to:
  • the notification of the system information update is sent by the carrier that is allowed to receive the paging message.
  • the sending module is further configured to:
  • a receiving module is further included for:
  • the sending module Before the sending module sends the paging message on the carrier that is allowed to receive the paging message, receiving information about whether the terminal notified by the mobility management entity MME supports the capability of receiving the paging message on the secondary carrier, and determining the The terminal supports the ability to receive paging messages on the secondary carrier.
  • an embodiment of the present invention provides a terminal, including a processor, a memory, and a transceiver, wherein the transceiver receives and transmits data under the control of the processor, and the preset program is stored in the memory, and the processor reads Take the program in the memory, according to the program to perform the following process:
  • paging carrier Determining a paging carrier according to the information of the carrier that is allowed to receive the paging message, and the preset rule, where the paging carrier is a primary carrier or a secondary carrier of the base station;
  • the information of the carrier that is allowed to receive the paging message includes a combination of any one or more of the following:
  • the number of primary and secondary carriers that are allowed to send paging messages is the number of primary and secondary carriers that are allowed to send paging messages.
  • the number of primary carriers and secondary carriers of the message, and the UE_ID is determined according to the identifier of the terminal.
  • PCint represents the initial judgment amount of the paging carrier
  • PCindex represents an index value of the paging carrier
  • nB represents a paging density
  • nBanchor represents a paging density of a primary carrier
  • nBnon-anchor represents a secondary carrier paging density
  • nBmin min(nBanchor,nBnon-anchor)
  • nBall nBanchor+nBnon-anchor
  • nB0 represents the paging density of the primary carrier
  • the UE_ID is determined according to the identifier of the terminal.
  • the processor instructs the transceiver to camp on the paging carrier and receives a paging message sent by the base station on the paging carrier.
  • the processor instructs the transceiver to camp on the primary carrier of the base station, and at the paging moment of the paging carrier to the seeking
  • the calling carrier receives the paging message sent by the base station.
  • the processor monitors, by the transceiver, a notification of system information update sent on the secondary carrier, and receives an update to the primary carrier after determining that the notification is received. After the system information.
  • the processor compares channel qualities of the paging carrier and a primary carrier of a surrounding cell, and performs cell reselection according to the comparison result.
  • an embodiment of the present invention provides a base station, including a processor, a memory, and a transceiver, wherein the transceiver receives and transmits data under the control of the processor, and the preset program is stored in the memory, and the processor reads Take the program in the memory, according to the program to perform the following process:
  • system information carries information of a carrier that is allowed to receive a paging message
  • the information of the carrier that is allowed to receive the paging message includes a combination of any one or more of the following:
  • the number of primary and secondary carriers that are allowed to send paging messages is the number of primary and secondary carriers that are allowed to send paging messages.
  • the processor acquires information about whether the terminal supports the capability of receiving the paging message on the secondary carrier, and notifies the mobility management entity MME of whether the capability of supporting the paging message on the secondary carrier is supported.
  • the terminal has the capability of receiving a paging message on the secondary carrier and is in an idle state.
  • the information of the carrier that is allowed to receive the paging message includes, but is not limited to, any one or more of the following combinations:
  • the number of primary and secondary carriers that are allowed to send paging messages is the number of primary and secondary carriers that are allowed to send paging messages.
  • Step 102 The terminal determines the paging carrier according to the information of the carrier that is allowed to receive the paging message and the preset rule, where the paging carrier is the primary carrier or the secondary carrier of the base station.
  • N is expressed as min(T, nB)
  • nB is the paging density
  • T is the default paging cycle
  • Ns is represented as max(1, nB/T)
  • Nc is the total number of paging carriers, the total
  • the number of paging carriers includes the number of primary carriers and secondary carriers that are allowed to send paging messages.
  • the UE_ID is determined according to the identifier of the terminal, min() indicates the minimum value, and max() indicates the maximum value.
  • Step 103 The terminal receives the paging message sent by the base station on the paging carrier.
  • the terminal In a first mode, the terminal camps on the paging carrier, and receives a paging message sent by the base station on the paging carrier.
  • the number of primary and secondary carriers that are allowed to send paging messages is the number of primary and secondary carriers that are allowed to send paging messages.
  • the MME notifies the base station that needs to send the paging message to the base station that needs to support the paging message when the terminal is paging the terminal, for example, whether the terminal supports the secondary device through S1.
  • the information on the capability of receiving the paging message on the carrier is notified to the base station transmitting the paging message.
  • the base station that sends the paging message sends a paging message only to the terminal that supports receiving the paging message on the secondary carrier. If the terminal does not support receiving a paging message on the secondary carrier, the base station transmits the paging message in a conventional manner, and only pages the terminal on the primary carrier.
  • the terminal receives the auxiliary information in the system information that can receive the paging message.
  • the index value of the paging carrier is calculated by using Equation 1, and the formula 1 is expressed as:
  • PC represents the index value of the paging carrier
  • the paging carrier is the carrier that receives the paging message by the terminal.
  • the formula 1 calculates the index value of the paging carrier and the index value of the paging carrier in the system information.
  • T denotes a default paging period, which is carried by the system information broadcast by the base station.
  • the value of T is 128 radio frames.
  • nB indicates the paging density, which is carried by the system information broadcasted by the base station.
  • the value is 2T.
  • N is expressed as min(T, nB), and the value of N in this embodiment is T.
  • Ns is expressed as max(1, nB/T), and Ns takes a value of 2 in this embodiment.
  • the terminal receives the paging message on the secondary carrier with the index value of 1, including but not limited to the following two connections.
  • Receiving method :
  • the downlink working frequency of the secondary carrier; the uplink working frequency of the secondary carrier; the secondary carrier index (index), the secondary carrier index may be implicitly or explicitly carried; the bitmap of the downlink available subframe is configured; Gap configuration; inband carrier information, etc.
  • PCint represents the initial judgment amount of the paging carrier
  • nBmin min(nBanchor, nBnon-anchor(s)), in this embodiment, the value of nBmin is T/2;
  • nBall nBanchor+nBnon-anchor(s), in this embodiment, the value of nBall is 2T;
  • the carrier index is one-to-one correspondence.
  • nB 0 T/2
  • nB 1 T
  • nB 2 T/2;
  • the UE_ID is represented as IMSI mod 4096, and the value of UE_ID in this embodiment is 193.
  • the terminal camps on the secondary carrier whose index value is 2, and receives the paging message
  • the terminal always camps on the primary carrier, and receives the paging message only to the secondary carrier at the paging moment of the secondary carrier with the index value of 2.
  • the base station acquires information about whether the UE supports the capability of receiving a paging message on the secondary carrier (such as whether the UE supports multiple carriers), and notifies the MME of the information (such as when the UE connection is released), and the MME follows.
  • the information is notified to the base station that needs to send the paging message, for example, the information is notified to the base station transmitting the paging message by S1.
  • the base station When transmitting the paging message, the base station sends the paging message to the terminal supporting the paging message on the secondary carrier according to the manner provided in the specific embodiment; if the terminal does not support receiving the paging message on the secondary carrier, The base station pages the terminal on the primary carrier according to the conventional paging message transmission mode.
  • the terminal When the terminal camps on the paging carrier (secondary carrier or primary carrier) and receives the paging message, the terminal compares the currently camping paging carrier with the primary carrier of other surrounding cells, and utilizes the existing protocol flow. Perform a cell reselection process.
  • the paging carrier secondary carrier or primary carrier
  • the terminal When the terminal camps on the paging carrier (the secondary carrier or the primary carrier) and receives the paging message, the terminal performs the update notification of the receiving system information by monitoring the paging message or the NPDCCH, and if the terminal receives the update notification, the terminal Return to the primary carrier to receive updated system information. After receiving the system information, the terminal selects the paging carrier and camps based on the latest system information.
  • the paging carrier the secondary carrier or the primary carrier
  • the base station sends an NPDCCH or a paging message carrying the system information update indication on the secondary carrier supporting the paging when the system information is updated.
  • the base station 1 acquires information on whether the terminal supports the capability of receiving a paging message on the secondary carrier, such as whether the terminal supports multiple carriers, and notifies the MME of the information (such as when the UE connection is released).
  • the MME When the MME subsequently pages the base station 1, the MME notifies the base station 2 and the base station 3 that need to transmit the paging message, for example, by S1, to inform the base station that transmits the paging message.
  • the terminal mainly includes:
  • the processing module 302 is configured to determine a paging carrier according to the information of the carrier that is allowed to receive the paging message, and the preset rule, where the paging carrier is a primary carrier or a secondary carrier of the base station;
  • the second receiving module 303 is configured to receive, by using the paging carrier, a paging message sent by the base station.
  • the information of the carrier that is allowed to receive the paging message includes a combination of any one or more of the following:
  • Downlink working frequency of the carrier uplink working frequency of the carrier; information for characterizing the index value of the carrier; bitmap configuration of the downlink available subframe; downlink time slot configuration; in-band carrier information; search of the primary carrier or the secondary carrier Call density; the default paging cycle of the primary or secondary carrier; the number of primary and secondary carriers that are allowed to send paging messages.
  • the processing module is specifically configured to:
  • the number of UE_ID is determined according to the identifier of the terminal.
  • the processing module is specifically configured to:
  • PCint represents the initial judgment amount of the paging carrier
  • PCindex represents an index value of the paging carrier
  • nB represents a paging density
  • nBanchor represents a paging density of a primary carrier
  • nBnon-anchor represents a secondary carrier paging density
  • nBmin min(nBanchor, nBnon-anchor)
  • nBall nBanchor+nBnon-anchor
  • nB0 denotes the paging of the primary carrier Density
  • UE_ID is determined according to the identity of the terminal.
  • the second receiving module is specifically configured to:
  • the second receiving module is specifically configured to:
  • the second receiving module is further configured to:
  • the paging carrier is a secondary carrier, listening for the notification of system information update sent on the secondary carrier, and receiving the updated system information after receiving the notification to the primary carrier.
  • processing module is further configured to:
  • the paging carrier is a secondary carrier
  • the channel quality of the paging carrier and the primary carrier of the surrounding cell is compared, and cell reselection is performed according to the comparison result.
  • an embodiment of the present invention provides a base station.
  • the base station mainly includes:
  • a broadcast module 401 configured to broadcast system information, where the system information carries information of a carrier that is allowed to receive a paging message;
  • the sending module 402 is configured to send a paging message on the carrier that is allowed to receive the paging message, where the carrier that is allowed to receive the paging message is a primary carrier or a secondary carrier.
  • the information of the carrier that is allowed to receive the paging message includes a combination of any one or more of the following:
  • Downlink working frequency of the carrier uplink working frequency of the carrier; information for characterizing the index value of the carrier; bitmap configuration of the downlink available subframe; downlink time slot configuration; in-band carrier information; search of the primary carrier or the secondary carrier Call density; the default paging cycle of the primary or secondary carrier; the number of primary and secondary carriers that are allowed to send paging messages.
  • the sending module is further configured to:
  • the notification of the system information update is sent by the carrier that is allowed to receive the paging message.
  • the sending module is further configured to:
  • a receiving module is further included for:
  • the sending module Before the sending module sends the paging message on the carrier that is allowed to receive the paging message, receiving information about whether the terminal notified by the mobility management entity MME supports the capability of receiving the paging message on the secondary carrier, and determining the The terminal supports the ability to receive paging messages on the secondary carrier.
  • the terminal mainly includes a processor 501.
  • paging carrier Determining a paging carrier according to the information of the carrier that is allowed to receive the paging message, and the preset rule, where the paging carrier is a primary carrier or a secondary carrier of the base station;
  • the paging message sent by the base station is received by the transceiver 503 on the paging carrier.
  • the information of the carrier that is allowed to receive the paging message includes a combination of any one or more of the following:
  • Downlink working frequency of the carrier uplink working frequency of the carrier; information for characterizing the index value of the carrier; bitmap configuration of the downlink available subframe; downlink time slot configuration; in-band carrier information; search of the primary carrier or the secondary carrier Call density; the default paging cycle of the primary or secondary carrier; the number of primary and secondary carriers that are allowed to send paging messages.
  • PCint represents the initial judgment amount of the paging carrier
  • PCindex represents an index value of the paging carrier
  • nB represents a paging density
  • nBanchor represents a paging density of a primary carrier
  • nBnon-anchor represents a secondary carrier paging density
  • nBmin min(nBanchor, nBnon-anchor)
  • nBall nBanchor+nBnon-anchor
  • nB0 denotes the paging of the primary carrier Density
  • UE_ID is determined according to the identity of the terminal.
  • the processor 501 instructs the transceiver 503 to camp on the paging carrier and receives the paging message sent by the base station on the paging carrier.
  • the processor 501 instructs the transceiver 503 to camp on the primary carrier of the base station, and arrives at the paging moment of the paging carrier.
  • the paging carrier receives the paging message sent by the base station.
  • the processor 501 monitors, by using the transceiver 503, a notification of system information update sent on the secondary carrier, and after determining to receive the notification, to the primary carrier. Receive updated system information.
  • the processor 501 compares the channel quality of the paging carrier and the primary carrier of the surrounding cell, and performs cell reselection according to the comparison result.
  • System information is broadcast by the transceiver 603, wherein the system information carries information of a carrier that is allowed to receive the paging message;
  • Downlink working frequency of the carrier uplink working frequency of the carrier; information for characterizing the index value of the carrier; bitmap configuration of the downlink available subframe; downlink time slot configuration; in-band carrier information; search of the primary carrier or the secondary carrier Call density; the default paging cycle of the primary or secondary carrier; the number of primary and secondary carriers that are allowed to send paging messages.
  • the processor instructs the transceiver to send a notification of system information update by using the carrier that is allowed to receive the paging message.

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Abstract

本发明公开了一种寻呼消息发送、接收方法及相关设备,用以解决NB-IoT系统只有主载波上可以发送寻呼,辅载波不能发送寻呼,所导致的系统整体的寻呼容量受限,无法为海量的NB-IoT终端更好的提供服务的问题。方法为:终端接收基站发送的系统信息,其中,所述系统信息中携带允许接收寻呼消息的载波的信息;所述终端根据所述允许接收寻呼消息的载波的信息以及预设规则确定寻呼载波,其中,所述寻呼载波为所述基站的主载波或辅载波;所述终端在所述寻呼载波上接收所述基站发送的寻呼消息。

Description

一种寻呼消息发送、接收方法及相关设备
本申请要求在2016年8月12日提交中国专利局、申请号为201610666484.2、发明名称为“一种寻呼消息发送、接收方法及相关设备”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及通信技术领域,尤其涉及一种寻呼消息发送、接收方法及相关设备。
背景技术
1、MTC介绍
机器类通信(Machine Type Communication,MTC)是将多种不同类型的通信技术有机结合,例如,机器对机器通信、机器控制通信、人机交互通信、移动互联通信。预计未来人对人通信的业务可能仅占整个终端市场的1/3,而更大数量的通信是机器间(小带宽系统)通信业务。
当前的移动通信网络是针对人与人之间的通信设计的,例如,网络容量的确定等。如果希望利用移动通信网络支持小带宽系统通信就需要根据小带宽系统通信的特点对移动通信系统的机制进行优化,以便能够在对传统的人与人通信不受影响或受较小影响的情况下,更好地实现小带宽系统通信。
2、NB-IoT介绍
窄带物联网(Narrow Band Internet of Things,NB-IoT)工作阶段(Work Item,WI)在3GPP版本13(Release 13)阶段通过并启动。
窄带互联网WI阶段的目标是对蜂窝物联网(Cellular Internet of Things,CIoT)的无线接入进行技术标准化。技术基于长期演进(Long Term Evolution,LTE)/LTE的后续演进(LTE-Advanced,LTE-A)进行扩展,主要考虑的网络特性/目标是:增强室内覆盖,支持大量低速设备接入,低时延敏感性,降 低设备成本,降低设备功耗,优化网络架构等。
当前NB-IOT通信可能存在的如下特性:
NB-IOT终端(User Equipment,UE)具有低移动性;
NB-IOT终端与网络侧进行数据传输的时间是可控的,即NB-IOT终端只能在网络指定的时间段内进行接入。
NB-IOT终端与网络侧进行的数据传输对实时性要求不高,即具有时间容忍性;
NB-IOT终端能量受限,要求极低的功率消耗;
NB-IOT终端和网络侧之间只进行小数据量的信息传输;
NB-IOT终端具有低实现复杂度等。
一个NB-IOT终端可以具有NB-IOT通信的特性中的一个或多个特性。
在一个NB-IoT小区里,存在一个主载波和多个辅载波。在主载波上会发送主同步信号(Primary Synchronization Signal,PSS)、辅同步信号(Secondary Synchronization Signal,SSS)、物理广播信道(Physical Broadcast Channel,PBCH)和系统信息。另外,寻呼和随机接入只能在主载波进行。空闲态的用户只能在主载波上驻留。当UE进入连接态之后,基站可以配置UE在辅载波上工作。UE只能在一个载波上工作,即不能同时工作在主载波和辅载波上。
由于NB-IoT系统只有主载波上可以发送寻呼,辅载波不能发送寻呼,这导致系统整体的寻呼容量受限,无法为海量的NB-IoT终端更好的提供服务。
发明内容
本发明实施例提供一种寻呼消息发送、接收方法及相关设备,用以解决NB-IoT系统只有主载波上可以发送寻呼,辅载波不能发送寻呼,所导致的系统整体的寻呼容量受限,无法为海量的NB-IoT终端更好的提供服务的问题。
本发明实施例提供的具体技术方案如下:
第一方面,本发明实施例提供了一种寻呼消息接收方法,包括:
终端接收基站发送的系统信息,其中,所述系统信息中携带允许接收寻呼消息的载波的信息;
所述终端根据所述允许接收寻呼消息的载波的信息以及预设规则确定寻呼载波,其中,所述寻呼载波为所述基站的主载波或辅载波;
所述终端在所述寻呼载波上接收所述基站发送的寻呼消息。
可能的实施方式中,所述允许接收寻呼消息的载波的信息包括以下任意一种或多种的组合:
载波的下行工作频点;
载波的上行工作频点;
用于表征载波的索引值的信息;
下行可用子帧的位图配置;
下行时隙配置;
带内载波信息;
主载波或辅载波的寻呼密度;
主载波或辅载波的缺省寻呼周期;
允许发送寻呼消息的主载波和辅载波的个数。
可能的实施方式中,所述终端根据所述允许接收寻呼消息的载波的信息以及预设规则确定寻呼载波,包括:
所述终端根据公式PC=floor(UE_ID/(N*Ns))mod Nc确定寻呼载波,其中,PC表示寻呼载波对应的索引值,N表示为min(T,nB),nB表示寻呼密度,T表示缺省寻呼周期,Ns表示为max(1,nB/T),Nc表示总的寻呼载波数,所述总的寻呼载波数包括所有允许发送寻呼消息的主载波和辅载波的个数,UE_ID根据所述终端的标识确定。
可能的实施方式中,所述终端根据所述允许接收寻呼消息的载波的信息以及预设规则确定寻呼载波,包括:
所述终端按照公式PCint=floor(UE_ID/nBmin)mod(nBall/nBmin)确定寻呼载波初始判断量,并根据所述寻呼载波初始判断量确定寻呼载波,其中, 所述寻呼载波初始判断量与所述寻呼载波之间满足约束条件:
当PCint<(nB0)/nBmin时,PCindex为0;
Figure PCTCN2017094500-appb-000001
时,对应的PCindex的取值为i,i为整数,且i>=1;
其中,PCint表示所述寻呼载波初始判断量,PCindex表示所述寻呼载波的索引值,nB表示寻呼密度,nBanchor表示主载波的寻呼密度,nBnon-anchor表示辅载波寻呼密度,nBmin=min(nBanchor,nBnon-anchor),nBall=nBanchor+nBnon-anchor,nBi表示索引值为i的载波的寻呼密度,i=0,1,…,nBall-1,nB0表示主载波的寻呼密度,UE_ID根据所述终端的标识确定。
可能的实施方式中,所述终端在所述寻呼载波上接收所述基站发送的寻呼消息,包括:
所述终端在所述寻呼载波驻留,并在所述寻呼载波上接收所述基站发送的寻呼消息。
可能的实施方式中,所述终端在所述寻呼载波上接收所述基站发送的寻呼消息,包括:
若所述寻呼载波不是所述基站的主载波,所述终端在所述基站的主载波驻留,并在所述寻呼载波的寻呼时刻到所述寻呼载波接收所述基站发送的寻呼消息。
可能的实施方式中,所述方法还包括:
若所述寻呼载波为辅载波,所述终端监听所述辅载波上发送的系统信息更新的通知,并在确定收到所述通知后到主载波上接收更新后的系统信息。
可能的实施方式中,所述方法还包括:
若所述寻呼载波为辅载波,所述终端将比较所述寻呼载波和周围小区的主载波的信道质量,根据比较结果进行小区重选。
第二方面,本发明实施例提供了一种寻呼消息发送方法,包括:
基站广播系统信息,其中,所述系统信息中携带允许接收寻呼消息的载 波的信息;
所述基站在所述允许接收寻呼消息的载波上发送寻呼消息,其中,所述允许接收寻呼消息的载波为主载波或辅载波。
可能的实施方式中,所述允许接收寻呼消息的载波的信息包括以下任意一种或多种的组合:
载波的下行工作频点;
载波的上行工作频点;
用于表征载波的索引值的信息;
下行可用子帧的位图配置;
下行时隙配置;
带内载波信息;
主载波或辅载波的寻呼密度;
主载波或辅载波的缺省寻呼周期;
允许发送寻呼消息的主载波和辅载波的个数。
可能的实施方式中,所述方法还包括:
所述基站在系统信息发生更新时,通过所述允许接收寻呼消息的载波发送系统信息更新的通知。
可能的实施方式中,所述方法还包括:
所述基站获取终端是否支持在辅载波上接收寻呼消息的能力的信息,将所述是否支持在辅载波上接收寻呼消息的能力的信息通知给移动性管理实体MME。
可能的实施方式中,所述基站在所述允许接收寻呼消息的载波上发送寻呼消息之前,所述方法还包括:
所述基站接收移动性管理实体MME通知的终端是否支持在辅载波上接收寻呼消息的能力的信息,并确定所述终端支持在辅载波上接收寻呼消息的能力。
第三方面,本发明实施例提供了一种终端,包括:
第一接收模块,用于接收基站发送的系统信息,其中,所述系统信息中携带允许接收寻呼消息的载波的信息;
处理模块,用于根据所述允许接收寻呼消息的载波的信息以及预设规则确定寻呼载波,其中,所述寻呼载波为所述基站的主载波或辅载波;
第二接收模块,用于在所述寻呼载波上接收所述基站发送的寻呼消息。
可能的实施方式中,所述允许接收寻呼消息的载波的信息包括以下任意一种或多种的组合:
载波的下行工作频点;
载波的上行工作频点;
用于表征载波的索引值的信息;
下行可用子帧的位图配置;
下行时隙配置;
带内载波信息;
主载波或辅载波的寻呼密度;
主载波或辅载波的缺省寻呼周期;
允许发送寻呼消息的主载波和辅载波的个数。
可能的实施方式中,所述处理模块具体用于:
根据公式PC=floor(UE_ID/(N*Ns))mod Nc确定寻呼载波,其中,PC表示寻呼载波对应的索引值,N表示为min(T,nB),nB表示寻呼密度,T表示缺省寻呼周期,Ns表示为max(1,nB/T),Nc表示总的寻呼载波数,所述总的寻呼载波数包括所有允许发送寻呼消息的主载波和辅载波的个数,UE_ID根据所述终端的标识确定。
可能的实施方式中,所述处理模块具体用于:
按照公式PCint=floor(UE_ID/nBmin)mod(nBall/nBmin)确定寻呼载波初始判断量,并根据所述寻呼载波初始判断量确定寻呼载波,其中,所述寻呼载波初始判断量与所述寻呼载波之间满足约束条件:
当PCint<(nB0)/nBmin时,PCindex为0;
Figure PCTCN2017094500-appb-000002
时,对应的PCindex的取值为i,i为整数,且i>=1;
其中,PCint表示所述寻呼载波初始判断量,PCindex表示所述寻呼载波的索引值,nB表示寻呼密度,nBanchor表示主载波的寻呼密度,nBnon-anchor表示辅载波寻呼密度,nBmin=min(nBanchor,nBnon-anchor),nBall=nBanchor+nBnon-anchor,nBi表示索引值为i的载波的寻呼密度,i=0,1,…,nBall-1,nB0表示主载波的寻呼密度,UE_ID根据所述终端的标识确定。
可能的实施方式中,所述第二接收模块具体用于:
在所述寻呼载波驻留,并在所述寻呼载波上接收所述基站发送的寻呼消息。
可能的实施方式中,所述第二接收模块具体用于:
若所述寻呼载波不是所述基站的主载波,在所述基站的主载波驻留,并在所述寻呼载波的寻呼时刻到所述寻呼载波接收所述基站发送的寻呼消息。
可能的实施方式中,所述第二接收模块还用于:
若所述寻呼载波为辅载波,监听所述辅载波上发送的系统信息更新的通知,并在确定收到所述通知后到主载波上接收更新后的系统信息。
可能的实施方式中,所述处理模块还用于:
若所述寻呼载波为辅载波,将比较所述寻呼载波和周围小区的主载波的信道质量,根据比较结果进行小区重选。
第四方面,本发明实施例提供了一种基站,包括:
广播模块,用于广播系统信息,其中,所述系统信息中携带允许接收寻呼消息的载波的信息;
发送模块,用于在所述允许接收寻呼消息的载波上发送寻呼消息,其中,所述允许接收寻呼消息的载波为主载波或辅载波。
可能的实施方式中,所述允许接收寻呼消息的载波的信息包括以下任意一种或多种的组合:
载波的下行工作频点;
载波的上行工作频点;
用于表征载波的索引值的信息;
下行可用子帧的位图配置;
下行时隙配置;
带内载波信息;
主载波或辅载波的寻呼密度;
主载波或辅载波的缺省寻呼周期;
允许发送寻呼消息的主载波和辅载波的个数。
可能的实施方式中,所述发送模块还用于:
在系统信息发生更新时,通过所述允许接收寻呼消息的载波发送系统信息更新的通知。
可能的实施方式中,所述发送模块还用于:
获取终端是否支持在辅载波上接收寻呼消息的能力的信息,将所述是否支持在辅载波上接收寻呼消息的能力的信息通知给移动性管理实体MME。
可能的实施方式中,还包括接收模块,用于:
在所述发送模块在所述允许接收寻呼消息的载波上发送寻呼消息之前,接收移动性管理实体MME通知的终端是否支持在辅载波上接收寻呼消息的能力的信息,并确定所述终端支持在辅载波上接收寻呼消息的能力。
第五方面,本发明实施例提供了一种终端,包括处理器、存储器和收发机,其中,收发机在处理器的控制下接收和发送数据,存储器中保存有预设的程序,处理器读取存储器中的程序,按照该程序执行以下过程:
通过收发机接收基站发送的系统信息,其中,所述系统信息中携带允许接收寻呼消息的载波的信息;
根据所述允许接收寻呼消息的载波的信息以及预设规则确定寻呼载波,其中,所述寻呼载波为所述基站的主载波或辅载波;
通过收发机在所述寻呼载波上接收所述基站发送的寻呼消息。
可能的实施方式中,所述允许接收寻呼消息的载波的信息包括以下任意一种或多种的组合:
载波的下行工作频点;
载波的上行工作频点;
用于表征载波的索引值的信息;
下行可用子帧的位图配置;
下行时隙配置;
带内载波信息;
主载波或辅载波的寻呼密度;
主载波或辅载波的缺省寻呼周期;
允许发送寻呼消息的主载波和辅载波的个数。
可能的实施方式中,处理器根据公式PC=floor(UE_ID/(N*Ns))mod Nc确定寻呼载波,其中,PC表示寻呼载波对应的索引值,N表示为min(T,nB),nB表示寻呼密度,T表示缺省寻呼周期,Ns表示为max(1,nB/T),Nc表示总的寻呼载波数,所述总的寻呼载波数包括所有允许发送寻呼消息的主载波和辅载波的个数,UE_ID根据所述终端的标识确定。
可能的实施方式中,处理器按照公式PCint=floor(UE_ID/nBmin)mod(nBall/nBmin)确定寻呼载波初始判断量,并根据所述寻呼载波初始判断量确定寻呼载波,其中,所述寻呼载波初始判断量与所述寻呼载波之间满足约束条件:
当PCint<(nB0)/nBmin时,PCindex为0;
Figure PCTCN2017094500-appb-000003
时,对应的PCindex的取值为i,i为整数,且i>=1;
其中,PCint表示所述寻呼载波初始判断量,PCindex表示所述寻呼载波的索引值,nB表示寻呼密度,nBanchor表示主载波的寻呼密度,nBnon-anchor表示辅载波寻呼密度,nBmin=min(nBanchor,nBnon-anchor),nBall= nBanchor+nBnon-anchor,nBi表示索引值为i的载波的寻呼密度,i=0,1,…,nBall-1,nB0表示主载波的寻呼密度,UE_ID根据所述终端的标识确定。
可能的实施方式中,处理器指示收发机在所述寻呼载波驻留,并在所述寻呼载波上接收所述基站发送的寻呼消息。
可能的实施方式中,若所述寻呼载波不是所述基站的主载波,处理器指示收发机在所述基站的主载波驻留,并在所述寻呼载波的寻呼时刻到所述寻呼载波接收所述基站发送的寻呼消息。
可能的实施方式中,若所述寻呼载波为辅载波,处理器通过收发机监听所述辅载波上发送的系统信息更新的通知,并在确定收到所述通知后到主载波上接收更新后的系统信息。
可能的实施方式中,若所述寻呼载波为辅载波,处理器比较所述寻呼载波和周围小区的主载波的信道质量,根据比较结果进行小区重选。
第六方面,本发明实施例提供了一种基站,包括处理器、存储器和收发机,其中,收发机在处理器的控制下接收和发送数据,存储器中保存有预设的程序,处理器读取存储器中的程序,按照该程序执行以下过程:
通过收发机广播系统信息,其中,所述系统信息中携带允许接收寻呼消息的载波的信息;
指示收发机在所述允许接收寻呼消息的载波上发送寻呼消息,其中,所述允许接收寻呼消息的载波为主载波或辅载波。
可能的实施方式中,所述允许接收寻呼消息的载波的信息包括以下任意一种或多种的组合:
载波的下行工作频点;
载波的上行工作频点;
用于表征载波的索引值的信息;
下行可用子帧的位图配置;
下行时隙配置;
带内载波信息;
主载波或辅载波的寻呼密度;
主载波或辅载波的缺省寻呼周期;
允许发送寻呼消息的主载波和辅载波的个数。
可能的实施方式中,处理器在系统信息发生更新时,指示收发机通过所述允许接收寻呼消息的载波发送系统信息更新的通知。
可能的实施方式中,处理器获取终端是否支持在辅载波上接收寻呼消息的能力的信息,将所述是否支持在辅载波上接收寻呼消息的能力的信息通知给移动性管理实体MME。
可能的实施方式中,处理器指示收发机在所述允许接收寻呼消息的载波上发送寻呼消息之前,通过收发机接收移动性管理实体MME通知的终端是否支持在辅载波上接收寻呼消息的能力的信息,并确定所述终端支持在辅载波上接收寻呼消息的能力。
基于上述技术方案,本发明实施例中,终端接收基站发送的系统信息,该系统信息中携带允许接收寻呼消息的载波的信息,根据该允许接收寻呼消息的载波的信息以及预设规则确定寻呼载波后,在该寻呼载波上接收基站发送的寻呼消息,该寻呼载波为基站的主载波或辅载波,从而使得可以在主载波和辅载波上发送寻呼,提高了NB-IoT系统的寻呼容量,解决了NB-IoT系统只有主载波上可以发送寻呼,辅载波不能发送寻呼,所导致的系统整体的寻呼容量受限,无法为海量的NB-IoT终端更好的提供服务的问题。
附图说明
图1为本发明实施例中终端接收寻呼消息的过程示意图;
图2为本发明实施例中基站发送寻呼消息的过程示意图;
图3为本发明实施例中终端结构示意图;
图4为本发明实施例中基站结构示意图;
图5为本发明实施例中另一终端结构示意图;
图6为本发明实施例中另一基站结构示意图。
具体实施方式
为了使本发明的目的、技术方案和优点更加清楚,下面将结合附图对本发明作进一步地详细描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其它实施例,都属于本发明保护的范围。
本发明实施例中,如图1所示,终端接收寻呼消息的过程可以如下:
步骤101:终端接收基站发送的系统信息,其中,系统信息中携带允许接收寻呼消息的载波的信息。
具体地,该终端为具有在辅载波接收寻呼消息的能力,且处于空闲态。
本发明实施例中,允许接收寻呼消息的载波的信息包括但不限于以下任意一种或多种的组合:
载波的下行工作频点;
载波的上行工作频点;
用于表征载波的索引值的信息;
下行可用子帧的位图配置;
下行时隙配置;
带内载波信息;
主载波或辅载波的寻呼密度;
主载波或辅载波的缺省寻呼周期;
允许发送寻呼消息的主载波和辅载波的个数。
步骤102:终端根据允许接收寻呼消息的载波的信息以及预设规则确定寻呼载波,其中,寻呼载波为基站的主载波或辅载波。
本发明实施例中,终端根据允许接收寻呼消息的载波的信息以及预设规 则确定寻呼载波,包括但不限于以下两种实现方式:
第一,终端根据公式PC=floor(UE_ID/(N*Ns))mod Nc确定寻呼载波,其中,floor()表示向下取整,mod表示取模运算,PC表示寻呼载波对应的索引值,N表示为min(T,nB),nB表示寻呼密度,T表示缺省寻呼周期,Ns表示为max(1,nB/T),Nc表示总的寻呼载波数,所述总的寻呼载波数包括所有允许发送寻呼消息的主载波和辅载波的个数,UE_ID根据所述终端的标识确定,min()表示取最小值,max()表示取最大值。
第二,终端按照公式PCint=floor(UE_ID/nBmin)mod(nBall/nBmin)确定寻呼载波初始判断量,并根据所述寻呼载波初始判断量确定寻呼载波,其中,所述寻呼载波初始判断量与所述寻呼载波之间满足约束条件:
当PCint<(nB0)/nBmin时,PCindex为0;
Figure PCTCN2017094500-appb-000004
时,对应的PCindex的取值为i,i为整数,且i>=1;
其中,floor()表示向下取整,mod表示取模运算,PCint表示所述寻呼载波初始判断量,PCindex表示所述寻呼载波的索引值,nB表示寻呼密度,nBanchor表示主载波的寻呼密度,nBnon-anchor表示辅载波寻呼密度,nBmin=min(nBanchor,nBnon-anchor),nBall=nBanchor+nBnon-anchor,nBi表示索引值为i的载波的寻呼密度,i=0,1,…,nBall-1,nB0表示主载波的寻呼密度,UE_ID根据所述终端的标识确定。
一个具体实施例中,第一或第二实现方式中,UE_ID为IMSI mod 4096。
步骤103:终端在寻呼载波上接收基站发送的寻呼消息。
本发明实施例中,终端在寻呼载波上接收基站发送的寻呼消息,包括但不限于以下两种实现方式:
方式一,所述终端在所述寻呼载波驻留,并在所述寻呼载波上接收所述基站发送的寻呼消息。
方式一中,寻呼载波可以是基站的主载波或辅载波。
方式二,若寻呼载波不是基站的主载波,终端在基站的主载波驻留,并在寻呼载波的寻呼时刻到该寻呼载波接收基站发送的寻呼消息。
本发明实施例中,若所述寻呼载波为辅载波,所述终端在辅载波驻留时,监听所述辅载波上发送的系统信息更新的通知,并在确定收到所述通知后到主载波上接收更新后的系统信息。可选地,终端在完成系统信息的更新后,基于最新的系统信息选择寻呼载波,选择的过程同上,此处不再重复。
具体地,所述终端在辅载波驻留时,通过监听寻呼消息或窄带物理下行控制信道(Narrowband Physical Downlink Control channel,NPDCCH)进行系统信息更新的通知的接收。
相应地,如果系统中有可能会驻留在辅载波上的终端,则基站会在系统信息更新时,在支持寻呼的辅载波上发送系统系统信息更新的通知的NPDCCH或寻呼消息。
本发明实施例中,若所述寻呼载波为辅载波,所述终端将比较所述寻呼载波和周围小区的主载波的信道质量,根据比较结果进行小区重选。
基于同一发明构思,本发明实施例中,如图2所示,基站发送寻呼消息的具体过程如下:
步骤201:基站广播系统信息,其中,系统信息中携带允许接收寻呼消息的载波的信息。
本发明实施例中,所述允许接收寻呼消息的载波的信息包括但不限于以下任意一种或多种的组合:
载波的下行工作频点;
载波的上行工作频点;
用于表征载波的索引值的信息;
下行可用子帧的位图配置;
下行时隙配置;
带内载波信息;
主载波或辅载波的寻呼密度;
主载波或辅载波的缺省寻呼周期;
允许发送寻呼消息的主载波和辅载波的个数。
步骤202:基站在允许接收寻呼消息的载波上发送寻呼消息,其中,所述允许接收寻呼消息的载波为主载波或辅载波。
本发明实施例中,基站在系统信息发生更新时,通过所述允许接收寻呼消息的载波发送系统信息更新的通知。
相应地,如果系统中有可能会驻留在辅载波上的终端,则基站会在系统信息更新时,在支持寻呼的辅载波上发送系统系统信息更新的通知的NPDCCH或寻呼消息。
本发明实施例中,基站获取终端是否支持在辅载波上接收寻呼消息的能力的信息,将所述是否支持在辅载波上接收寻呼消息的能力的信息通知给移动性管理实体(Mobility Management Entity,MME)。例如,基站在终端连接释放时将所述终端是否支持在辅载波上接收寻呼消息的能力的信息通知给MME。
可选地,所述基站在所述允许接收寻呼消息的载波上发送寻呼消息之前,接收MME通知的终端是否支持在辅载波上接收寻呼消息的能力的信息,并确定所述终端支持在辅载波上接收寻呼消息的能力。
具体地,MME在后续寻呼终端时,将所述终端是否支持在辅载波上接收寻呼消息的能力的信息通知给需要发送寻呼消息的基站,例如通过S1将所述终端是否支持在辅载波上接收寻呼消息的能力的信息通知给发送寻呼消息的基站。发送寻呼消息的基站在发送寻呼消息时,仅对支持在辅载波上接收寻呼消息的终端发送寻呼消息。如果终端不支持在辅载波上接收寻呼消息,则基站按照传统方式发送寻呼消息,仅在主载波上寻呼该终端。
以下通过几个具体实施例对寻呼消息的发送和接收过程进行详细说明。
第一具体实施例,寻呼载波的计算公式一
该具体实施例中,基站在主载波的系统信息中广播当前小区可接收寻呼消息的三个辅载波的信息,包括以下内容中的任意一种或多种的组合:
辅载波的下行工作频点;辅载波的上行工作频点;辅载波索引(index),该辅载波索引可以是隐式或者显式携带;下行可用子帧的位图(bitmap)配置;下行时隙(gap)配置;带内(inband)载波信息等。
假设主载波的index为0,三个辅载波的index分别为1,2,3。并且,基站的系统信息中包含一个寻呼密度值,该寻呼密度值表示为nB,小区所有载波(包括主载波和辅载波)的寻呼密度值都为该nB值。
基站的系统信息中还广播一个缺省寻呼周期T,该小区的所有载波(包括主载波和辅载波)的缺省寻呼周期都使用该值,具体地,该缺省寻呼周期为128个无线帧。该具体实施例中,假设该nB值为2T,其中,T为基站广播的缺省寻呼周期。
假设处于空闲态的终端的UE_ID的值为257,且该终端支持在辅载波上接收寻呼消息,例如该终端支持多载波能力,则该终端接收到系统信息中的可接收寻呼消息的辅载波信息后,利用公式一计算寻呼载波的索引值,该公式一表示为:
PC=floor(UE_ID/(N*Ns))mod Nc
公式一中,PC表示寻呼载波的索引值,该寻呼载波为终端接收寻呼消息的载波,该公式一计算出的寻呼载波的索引值和系统信息中的寻呼载波的索引值一一对应。T表示缺省寻呼周期,具体由基站广播的系统信息中携带,该具体实施例中T的取值为128个无线帧。nB表示寻呼密度,具体由基站广播的系统信息中携带,该具体实施例中取值为2T。N表示为min(T,nB),该具体实施例中N的取值为T。Ns表示为max(1,nB/T),该具体实施例中Ns取值为2。UE_ID表示为IMSI mod 4096,该具体实施例中UE_ID的取值为257。Nc表示总的寻呼载波数,该总的寻呼载波数中包括所有可以发送寻呼的主载波和辅载波的个数,该具体实施例中Nc的取值为4。
终端采用公式一计算得到:PC=floor(UE_ID/(N*Ns))mod Nc=floor(257/256)mod 4=1,因此,终端的寻呼载波为索引值为1的辅载波。
终端在索引值为1的辅载波上接收寻呼消息,包括但不限于以下两种接 收方式:
第一,终端到索引值为1的辅载波驻留,并接收寻呼消息;
第二,终端始终在主载波驻留,只在索引值为1的辅载波的寻呼时刻到该辅载波接收寻呼消息。
该具体实施例中,基站获取终端是否支持在辅载波上接收寻呼消息的能力的信息,例如,该终端是否支持多载波,并且将该信息通知给MME,例如基站在终端连接释放时通知给MME,MME在后续寻呼该终端时,将该信息通知给需要发送寻呼消息的基站,例如通过S1将该信息通知给发送寻呼消息的基站。
基站在发送寻呼消息时,对于支持在辅载波上接收寻呼消息的终端,按照该具体实施例中提供的方式发送该寻呼消息;如果终端不支持在辅载波上接收寻呼消息,则基站按照传统的寻呼消息发送方式在主载波上寻呼该终端。
第二具体实施例,寻呼载波的计算公式二
基站在主载波的系统信息中广播当前小区可接收寻呼消息的两个辅载波的信息,包括以下内容的一种或多种:
辅载波的下行工作频点;辅载波的上行工作频点;辅载波索引(index),该辅载波索引可以是隐式或者显式携带;下行可用子帧的位图(bitmap)配置;下行时隙(gap)配置;带内(inband)载波信息等。
其中,两个辅载波的index分别为1和2。
基站的系统信息中包含三个寻呼密度(nB)值,每个载波对应一个寻呼密度值。其中,主载波的nB为T/2,T为基站广播的缺省寻呼周期;辅载波1的nB为T;辅载波2的nB为T/2。
基站的系统信息中还广播一个缺省寻呼周期T,该小区的所有载波(包括主载波和辅载波)的缺省寻呼周期都使用该寻呼周期T,该具体实施例中T的取值为128个无线帧。
空闲态的终端的UE_ID的取值为193,且该终端支持在辅载波上接收寻呼消息(比如支持多载波能力),则该终端接收到系统信息中的可接收寻呼消 息的辅载波信息后,利用公式二计算寻呼载波,该公式二表示为:
PCint=floor(UE_ID/nBmin)mod(nBall/nBmin)
当PCint<(nB0)/nBmin时,对应的PCindex为0;
Figure PCTCN2017094500-appb-000005
时,对应的PCindex的取值为i,i为整数,且i>=1。
其中,PCint表示寻呼载波初始判断量;
PCindex表示寻呼载波的索引值,寻呼载波即为终端接收寻呼的载波,其中PC0表示寻呼载波是主载波,其他PCindex表示辅载波,PCindex中的index和系统信息中广播的辅载波index一一对应;
T表示缺省寻呼周期,该缺省寻呼周期由基站在系统信息中广播,该具体实施例中的T的取值为128个无线帧;
nB表示寻呼密度,由基站通过系统信息广播;
nBanchor表示主载波的寻呼密度,该具体实施例中nBanchor的取值为T/2,nBnon-anchor表示辅载波寻呼密度,该具体实施例中辅载波1的nBnon-anchor的取值为T,辅载波2的nBnon-anchor的取值为T/2;
nBmin=min(nBanchor,nBnon-anchor(s)),该具体实施例中nBmin的取值为T/2;
nBall=nBanchor+nBnon-anchor(s),该具体实施例中nBall的取值为2T;
nBi表示某个载波的寻呼密度,i=0,1,…,nBall-1,其中nB0表示主载波的寻呼密度,其他nBi表示辅载波的寻呼密度,i和系统信息中广播的辅载波index一一对应。该具体实施例中nB0=T/2,nB1=T,nB2=T/2;
UE_ID表示为IMSI mod 4096,该具体实施例中UE_ID的取值为193。
采用公式二,计算出PCint=floor(UE_ID/nBmin)mod(nBall/nBmin)=floor(193/64)mod 4=3。
进一步的,根据
Figure PCTCN2017094500-appb-000006
即(nB0+nB1)/nBmin<=PCint<(nB0+nB1+nB2)/nBmin,可以计算出当PCint=3 时,对应的PCindex为2。因此,终端的寻呼载波为index=2的辅载波。
终端到index=2的辅载波接收寻呼消息,包括但不限于以下两种接收方式:
(1)终端到索引值为2的辅载波驻留,并接收寻呼消息;
(2)终端始终在主载波驻留,只在索引值为2的辅载波的寻呼时刻到该辅载波接收寻呼消息。
该具体实施例中,基站获取UE是否支持在辅载波上接收寻呼消息的能力的信息(比如UE是否支持多载波),并且将该信息通知给MME(比如UE连接释放时),MME在后续寻呼该UE时,将该信息通知给需要发送寻呼消息的基站,例如通过S1将该信息通知给发送寻呼消息的基站。
基站在发送寻呼消息时,对于支持在辅载波上接收寻呼消息的终端,按照该具体实施例中提供的方式发送该寻呼消息;如果终端不支持在辅载波上接收寻呼消息,则基站按照传统的寻呼消息发送方式在主载波上寻呼该终端。
第三具体实施例,小区重选
当终端到寻呼载波(辅载波或者主载波)驻留,并接收寻呼消息时,终端将当前驻留的寻呼载波与周围其他小区的主载波进行信道质量比较,并利用现有协议流程进行小区重选过程。
第四具体实施例,系统信息更新
当终端到寻呼载波(辅载波或者主载波)驻留,并接收寻呼消息时,终端通过监听寻呼消息或者NPDCCH来进行接收系统信息的更新通知,如果终端收到更新通知,则该终端回到主载波上接收更新后的系统信息。终端在接收系统信息后,基于最新的系统信息,选择寻呼载波并驻留。
相应的,若系统中有驻留在辅载波上的终端,则基站会在有系统信息更新时,在支持寻呼的辅载波上发送携带系统信息更新指示的NPDCCH或者寻呼消息。
第五具体实施例,终端寻呼接收能力传递
基站1获取终端是否支持在辅载波上接收寻呼消息的能力的信息,例如终端是否支持多载波,并且将该信息通知给MME(比如UE连接释放时)。
MME在后续寻呼该基站1时,将该信息通知给需要发送寻呼消息的基站2和基站3,例如通过S1将该信息通知给发送寻呼消息的基站。
基站2和基站3在发送寻呼消息时,对于支持在辅载波上接收寻呼消息的终端,按照第一具体实施例或第二具体实施例中的方式发送寻呼消息。如果终端不支持在辅载波上接收寻呼消息,则基站2和基站3按照传统寻呼消息发送方式在主载波上寻呼该终端。
基于同一发明构思,本发明实施例中提供了一种终端,该终端的具体实施可参见方法实施例部分的描述,重复之处不再赘述,如图3所示,该终端主要包括:
第一接收模块301,用于接收基站发送的系统信息,其中,所述系统信息中携带允许接收寻呼消息的载波的信息;
处理模块302,用于根据所述允许接收寻呼消息的载波的信息以及预设规则确定寻呼载波,其中,所述寻呼载波为所述基站的主载波或辅载波;
第二接收模块303,用于在所述寻呼载波上接收所述基站发送的寻呼消息。
可能的实施方式中,所述允许接收寻呼消息的载波的信息包括以下任意一种或多种的组合:
载波的下行工作频点;载波的上行工作频点;用于表征载波的索引值的信息;下行可用子帧的位图配置;下行时隙配置;带内载波信息;主载波或辅载波的寻呼密度;主载波或辅载波的缺省寻呼周期;允许发送寻呼消息的主载波和辅载波的个数。
可能的实施方式中,所述处理模块具体用于:
根据公式PC=floor(UE_ID/(N*Ns))mod Nc确定寻呼载波,其中,PC表示寻呼载波对应的索引值,N表示为min(T,nB),nB表示寻呼密度,T表示缺省寻呼周期,Ns表示为max(1,nB/T),Nc表示总的寻呼载波数,所述总的寻呼载波数包括所有允许发送寻呼消息的主载波和辅载波的个数,UE_ID根据所述终端的标识确定。
可能的实施方式中,所述处理模块具体用于:
按照公式PCint=floor(UE_ID/nBmin)mod(nBall/nBmin)确定寻呼载波初始判断量,并根据所述寻呼载波初始判断量确定寻呼载波,其中,所述寻呼载波初始判断量与所述寻呼载波之间满足约束条件:
当PCint<(nB0)/nBmin时,PCindex为0;
Figure PCTCN2017094500-appb-000007
时,对应的PCindex的取值为i,i为整数,且i>=1;
其中,PCint表示所述寻呼载波初始判断量,PCindex表示所述寻呼载波的索引值,nB表示寻呼密度,nBanchor表示主载波的寻呼密度,nBnon-anchor表示辅载波寻呼密度,nBmin=min(nBanchor,nBnon-anchor),nBall=nBanchor+nBnon-anchor,nBi表示索引值为i的载波的寻呼密度,i=0,1,…,nBall-1,nB0表示主载波的寻呼密度,UE_ID根据所述终端的标识确定。
可能的实施方式中,所述第二接收模块具体用于:
在所述寻呼载波驻留,并在所述寻呼载波上接收所述基站发送的寻呼消息。
可能的实施方式中,所述第二接收模块具体用于:
若所述寻呼载波不是所述基站的主载波,在所述基站的主载波驻留,并在所述寻呼载波的寻呼时刻到所述寻呼载波接收所述基站发送的寻呼消息。
可能的实施方式中,所述第二接收模块还用于:
若所述寻呼载波为辅载波,监听所述辅载波上发送的系统信息更新的通知,并在确定收到所述通知后到主载波上接收更新后的系统信息。
可能的实施方式中,所述处理模块还用于:
若所述寻呼载波为辅载波,将比较所述寻呼载波和周围小区的主载波的信道质量,根据比较结果进行小区重选。
基于同一发明构思,本发明实施例提供了一种基站,该基站的具体实施可参见方法实施例部分的描述,重复之处不再赘述,如图4所示,该基站主要包括:
广播模块401,用于广播系统信息,其中,所述系统信息中携带允许接收寻呼消息的载波的信息;
发送模块402,用于在所述允许接收寻呼消息的载波上发送寻呼消息,其中,所述允许接收寻呼消息的载波为主载波或辅载波。
可能的实施方式中,所述允许接收寻呼消息的载波的信息包括以下任意一种或多种的组合:
载波的下行工作频点;载波的上行工作频点;用于表征载波的索引值的信息;下行可用子帧的位图配置;下行时隙配置;带内载波信息;主载波或辅载波的寻呼密度;主载波或辅载波的缺省寻呼周期;允许发送寻呼消息的主载波和辅载波的个数。
可能的实施方式中,所述发送模块还用于:
在系统信息发生更新时,通过所述允许接收寻呼消息的载波发送系统信息更新的通知。
可能的实施方式中,所述发送模块还用于:
获取终端是否支持在辅载波上接收寻呼消息的能力的信息,将所述是否支持在辅载波上接收寻呼消息的能力的信息通知给移动性管理实体MME。
可能的实施方式中,还包括接收模块,用于:
在所述发送模块在所述允许接收寻呼消息的载波上发送寻呼消息之前,接收移动性管理实体MME通知的终端是否支持在辅载波上接收寻呼消息的能力的信息,并确定所述终端支持在辅载波上接收寻呼消息的能力。
基于同一发明构思,本发明实施例提供了一种终端,该终端的具体实施可参见方法实施例部分的描述,重复之处不再赘述,如图5所示,该终端主要包括处理器501、存储器502和收发机503,其中,收发机503在处理器501的控制下接收和发送数据,存储器502中保存有预设的程序,处理器501读取存储器502中的程序,按照该程序执行以下过程:
通过收发机503接收基站发送的系统信息,其中,所述系统信息中携带允许接收寻呼消息的载波的信息;
根据所述允许接收寻呼消息的载波的信息以及预设规则确定寻呼载波,其中,所述寻呼载波为所述基站的主载波或辅载波;
通过收发机503在所述寻呼载波上接收所述基站发送的寻呼消息。
可能的实施方式中,所述允许接收寻呼消息的载波的信息包括以下任意一种或多种的组合:
载波的下行工作频点;载波的上行工作频点;用于表征载波的索引值的信息;下行可用子帧的位图配置;下行时隙配置;带内载波信息;主载波或辅载波的寻呼密度;主载波或辅载波的缺省寻呼周期;允许发送寻呼消息的主载波和辅载波的个数。
可能的实施方式中,处理器501根据公式PC=floor(UE_ID/(N*Ns))mod Nc确定寻呼载波,其中,PC表示寻呼载波对应的索引值,N表示为min(T,nB),nB表示寻呼密度,T表示缺省寻呼周期,Ns表示为max(1,nB/T),Nc表示总的寻呼载波数,所述总的寻呼载波数包括所有允许发送寻呼消息的主载波和辅载波的个数,UE_ID根据所述终端的标识确定。
可能的实施方式中,处理器501按照公式PCint=floor(UE_ID/nBmin)mod(nBall/nBmin)确定寻呼载波初始判断量,并根据所述寻呼载波初始判断量确定寻呼载波,其中,所述寻呼载波初始判断量与所述寻呼载波之间满足约束条件:
当PCint<(nB0)/nBmin时,PCindex为0;
Figure PCTCN2017094500-appb-000008
时,对应的PCindex的取值为i,i为整数,且i>=1;
其中,PCint表示所述寻呼载波初始判断量,PCindex表示所述寻呼载波的索引值,nB表示寻呼密度,nBanchor表示主载波的寻呼密度,nBnon-anchor表示辅载波寻呼密度,nBmin=min(nBanchor,nBnon-anchor),nBall=nBanchor+nBnon-anchor,nBi表示索引值为i的载波的寻呼密度,i=0,1,…,nBall-1,nB0表示主载波的寻呼密度,UE_ID根据所述终端的标识确定。
可能的实施方式中,处理器501指示收发机503在所述寻呼载波驻留,并在所述寻呼载波上接收所述基站发送的寻呼消息。
可能的实施方式中,若所述寻呼载波不是所述基站的主载波,处理器501指示收发机503在所述基站的主载波驻留,并在所述寻呼载波的寻呼时刻到所述寻呼载波接收所述基站发送的寻呼消息。
可能的实施方式中,若所述寻呼载波为辅载波,处理器501通过收发机503监听所述辅载波上发送的系统信息更新的通知,并在确定收到所述通知后到主载波上接收更新后的系统信息。
可能的实施方式中,若所述寻呼载波为辅载波,处理器501比较所述寻呼载波和周围小区的主载波的信道质量,根据比较结果进行小区重选。
基于同一发明构思,本发明实施例提供了一种基站,该基站的具体实施可参见方法实施例部分的描述,重复之处不再赘述,如图6所示,该基站主要包括处理器601、存储器602和收发机603,其中,收发机603在处理器601的控制下接收和发送数据,存储器602中保存有预设的程序,处理器601读取存储器602中的程序,按照该程序执行以下过程:
通过收发机603广播系统信息,其中,所述系统信息中携带允许接收寻呼消息的载波的信息;
指示收发机603在所述允许接收寻呼消息的载波上发送寻呼消息,其中,所述允许接收寻呼消息的载波为主载波或辅载波。
可能的实施方式中,所述允许接收寻呼消息的载波的信息包括以下任意一种或多种的组合:
载波的下行工作频点;载波的上行工作频点;用于表征载波的索引值的信息;下行可用子帧的位图配置;下行时隙配置;带内载波信息;主载波或辅载波的寻呼密度;主载波或辅载波的缺省寻呼周期;允许发送寻呼消息的主载波和辅载波的个数。
可能的实施方式中,处理器在系统信息发生更新时,指示收发机通过所述允许接收寻呼消息的载波发送系统信息更新的通知。
可能的实施方式中,处理器获取终端是否支持在辅载波上接收寻呼消息的能力的信息,将所述是否支持在辅载波上接收寻呼消息的能力的信息通知给MME。
可能的实施方式中,处理器指示收发机在所述允许接收寻呼消息的载波上发送寻呼消息之前,通过收发机接收移动性管理实体MME通知的终端是否支持在辅载波上接收寻呼消息的能力的信息,并确定所述终端支持在辅载波上接收寻呼消息的能力。
基于上述技术方案,本发明实施例中,终端接收基站发送的系统信息,该系统信息中携带允许接收寻呼消息的载波的信息,根据该允许接收寻呼消息的载波的信息以及预设规则确定寻呼载波后,在该寻呼载波上接收基站发送的寻呼消息,该寻呼载波为基站的主载波或辅载波,从而使得可以在主载波和辅载波上发送寻呼,提高了NB-IoT系统的寻呼容量,解决了NB-IoT系统只有主载波上可以发送寻呼,辅载波不能发送寻呼,所导致的系统整体的寻呼容量受限,无法为海量的NB-IoT终端更好的提供服务的问题。
本领域内的技术人员应明白,本发明的实施例可提供为方法、系统、或计算机程序产品。因此,本发明可采用完全硬件实施例、完全软件实施例、或结合软件和硬件方面的实施例的形式。而且,本发明可采用在一个或多个其中包含有计算机可用程序代码的计算机可用存储介质(包括但不限于磁盘存储器和光学存储器等)上实施的计算机程序产品的形式。
本发明是参照根据本发明实施例的方法、设备(系统)、和计算机程序产品的流程图和/或方框图来描述的。应理解可由计算机程序指令实现流程图和/或方框图中的每一流程和/或方框、以及流程图和/或方框图中的流程和/或方框的结合。可提供这些计算机程序指令到通用计算机、专用计算机、嵌入式处理机或其他可编程数据处理设备的处理器以产生一个机器,使得通过计算机或其他可编程数据处理设备的处理器执行的指令产生用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的装置。
这些计算机程序指令也可存储在能引导计算机或其他可编程数据处理设备以特定方式工作的计算机可读存储器中,使得存储在该计算机可读存储器中的指令产生包括指令装置的制造品,该指令装置实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能。
这些计算机程序指令也可装载到计算机或其他可编程数据处理设备上,使得在计算机或其他可编程设备上执行一系列操作步骤以产生计算机实现的处理,从而在计算机或其他可编程设备上执行的指令提供用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的步骤。
显然,本领域的技术人员可以对本发明进行各种改动和变型而不脱离本发明的精神和范围。这样,倘若本发明的这些修改和变型属于本发明权利要求及其等同技术的范围之内,则本发明也意图包含这些改动和变型在内。

Claims (28)

  1. 一种寻呼消息接收方法,其特征在于,包括:
    终端接收基站发送的系统信息,其中,所述系统信息中携带允许接收寻呼消息的载波的信息;
    所述终端根据所述允许接收寻呼消息的载波的信息以及预设规则确定寻呼载波,其中,所述寻呼载波为所述基站的主载波或辅载波;
    所述终端在所述寻呼载波上接收所述基站发送的寻呼消息。
  2. 如权利要求1所述的方法,其特征在于,所述允许接收寻呼消息的载波的信息包括以下任意一种或多种的组合:
    载波的下行工作频点;
    载波的上行工作频点;
    用于表征载波的索引值的信息;
    下行可用子帧的位图配置;
    下行时隙配置;
    带内载波信息;
    主载波或辅载波的寻呼密度;
    主载波或辅载波的缺省寻呼周期;
    允许发送寻呼消息的主载波和辅载波的个数。
  3. 如权利要求1所述的方法,其特征在于,所述终端根据所述允许接收寻呼消息的载波的信息以及预设规则确定寻呼载波,包括:
    所述终端根据公式PC=floor(UE_ID/(N*Ns))mod Nc确定寻呼载波,其中,PC表示寻呼载波对应的索引值,N表示为min(T,nB),nB表示寻呼密度,T表示缺省寻呼周期,Ns表示为max(1,nB/T),Nc表示总的寻呼载波数,所述总的寻呼载波数包括所有允许发送寻呼消息的主载波和辅载波的个数,UE_ID根据所述终端的标识确定。
  4. 如权利要求1所述的方法,其特征在于,所述终端根据所述允许接收 寻呼消息的载波的信息以及预设规则确定寻呼载波,包括:
    所述终端按照公式PCint=floor(UE_ID/nBmin)mod(nBall/nBmin)确定寻呼载波初始判断量,并根据所述寻呼载波初始判断量确定寻呼载波,其中,所述寻呼载波初始判断量与所述寻呼载波之间满足约束条件:
    当PCint<(nB0)/nBmin时,PCindex为0;
    Figure PCTCN2017094500-appb-100001
    时,对应的PCindex的取值为i,i为整数,且i>=1;
    其中,PCint表示所述寻呼载波初始判断量,PCindex表示所述寻呼载波的索引值,nB表示寻呼密度,nBanchor表示主载波的寻呼密度,nBnon-anchor表示辅载波寻呼密度,nBmin=min(nBanchor,nBnon-anchor),nBall=nBanchor+nBnon-anchor,nBi表示索引值为i的载波的寻呼密度,i=0,1,…,nBall-1,nB0表示主载波的寻呼密度,UE_ID根据所述终端的标识确定。
  5. 如权利要求1-4任一项所述的方法,其特征在于,所述终端在所述寻呼载波上接收所述基站发送的寻呼消息,包括:
    所述终端在所述寻呼载波驻留,并在所述寻呼载波上接收所述基站发送的寻呼消息。
  6. 如权利要求1-4任一项所述的方法,其特征在于,所述终端在所述寻呼载波上接收所述基站发送的寻呼消息,包括:
    若所述寻呼载波不是所述基站的主载波,所述终端在所述基站的主载波驻留,并在所述寻呼载波的寻呼时刻到所述寻呼载波接收所述基站发送的寻呼消息。
  7. 如权利要求1-4任一项所述的方法,其特征在于,所述方法还包括:
    若所述寻呼载波为辅载波,所述终端监听所述辅载波上发送的系统信息更新的通知,并在确定收到所述通知后到主载波上接收更新后的系统信息。
  8. 如权利要求5所述的方法,其特征在于,所述方法还包括:
    若所述寻呼载波为辅载波,所述终端比较所述寻呼载波和周围小区的主 载波的信道质量,根据比较结果进行小区重选。
  9. 一种寻呼消息发送方法,其特征在于,包括:
    基站广播系统信息,其中,所述系统信息中携带允许接收寻呼消息的载波的信息;
    所述基站在所述允许接收寻呼消息的载波上发送寻呼消息,其中,所述允许接收寻呼消息的载波为主载波或辅载波。
  10. 如权利要求9所述的方法,其特征在于,所述允许接收寻呼消息的载波的信息包括以下任意一种或多种的组合:
    载波的下行工作频点;
    载波的上行工作频点;
    用于表征载波的索引值的信息;
    下行可用子帧的位图配置;
    下行时隙配置;
    带内载波信息;
    主载波或辅载波的寻呼密度;
    主载波或辅载波的缺省寻呼周期;
    允许发送寻呼消息的主载波和辅载波的个数。
  11. 如权利要求9所述的方法,其特征在于,所述方法还包括:
    所述基站在系统信息发生更新时,通过所述允许接收寻呼消息的载波发送系统信息更新的通知。
  12. 如权利要求9-11任一项所述的方法,其特征在于,所述方法还包括:
    所述基站获取终端是否支持在辅载波上接收寻呼消息的能力的信息,将所述是否支持在辅载波上接收寻呼消息的能力的信息通知给移动性管理实体MME。
  13. 如权利要求9-12所述的方法,其特征在于,所述基站在所述允许接收寻呼消息的载波上发送寻呼消息之前,所述方法还包括:
    所述基站接收移动性管理实体MME通知的终端是否支持在辅载波上接 收寻呼消息的能力的信息,并确定所述终端支持在辅载波上接收寻呼消息的能力。
  14. 一种终端,其特征在于,包括:
    第一接收模块,用于接收基站发送的系统信息,其中,所述系统信息中携带允许接收寻呼消息的载波的信息;
    处理模块,用于根据所述允许接收寻呼消息的载波的信息以及预设规则确定寻呼载波,其中,所述寻呼载波为所述基站的主载波或辅载波;
    第二接收模块,用于在所述寻呼载波上接收所述基站发送的寻呼消息。
  15. 如权利要求14所述的终端,其特征在于,所述允许接收寻呼消息的载波的信息包括以下任意一种或多种的组合:
    载波的下行工作频点;
    载波的上行工作频点;
    用于表征载波的索引值的信息;
    下行可用子帧的位图配置;
    下行时隙配置;
    带内载波信息;
    主载波或辅载波的寻呼密度;
    主载波或辅载波的缺省寻呼周期;
    允许发送寻呼消息的主载波和辅载波的个数。
  16. 如权利要求14所述的终端,其特征在于,所述处理模块具体用于:
    根据公式PC=floor(UE_ID/(N*Ns))mod Nc确定寻呼载波,其中,PC表示寻呼载波对应的索引值,N表示为min(T,nB),nB表示寻呼密度,T表示缺省寻呼周期,Ns表示为max(1,nB/T),Nc表示总的寻呼载波数,所述总的寻呼载波数包括所有允许发送寻呼消息的主载波和辅载波的个数,UE_ID根据所述终端的标识确定。
  17. 如权利要求14所述的终端,其特征在于,所述处理模块具体用于:
    按照公式PCint=floor(UE_ID/nBmin)mod(nBall/nBmin)确定寻呼载波初 始判断量,并根据所述寻呼载波初始判断量确定寻呼载波,其中,所述寻呼载波初始判断量与所述寻呼载波之间满足约束条件:
    当PCint<(nB0)/nBmin时,PCindex为0;
    Figure PCTCN2017094500-appb-100002
    时,对应的PCindex的取值为i,i为整数,且i>=1;
    其中,PCint表示所述寻呼载波初始判断量,PCindex表示所述寻呼载波的索引值,nB表示寻呼密度,nBanchor表示主载波的寻呼密度,nBnon-anchor表示辅载波寻呼密度,nBmin=min(nBanchor,nBnon-anchor),nBall=nBanchor+nBnon-anchor,nBi表示索引值为i的载波的寻呼密度,i=0,1,…,nBall-1,nB0表示主载波的寻呼密度,UE_ID根据所述终端的标识确定。
  18. 如权利要求14-17任一项所述的终端,其特征在于,所述第二接收模块具体用于:
    在所述寻呼载波驻留,并在所述寻呼载波上接收所述基站发送的寻呼消息。
  19. 如权利要求14-17任一项所述的终端,其特征在于,所述第二接收模块具体用于:
    若所述寻呼载波不是所述基站的主载波,在所述基站的主载波驻留,并在所述寻呼载波的寻呼时刻到所述寻呼载波接收所述基站发送的寻呼消息。
  20. 如权利要求14-17任一项所述的终端,其特征在于,所述第二接收模块还用于:
    若所述寻呼载波为辅载波,监听所述辅载波上发送的系统信息更新的通知,并在确定收到所述通知后到主载波上接收更新后的系统信息。
  21. 如权利要求18所述的终端,其特征在于,所述处理模块还用于:
    若所述寻呼载波为辅载波,将比较所述寻呼载波和周围小区的主载波的信道质量,根据比较结果进行小区重选。
  22. 一种基站,其特征在于,包括:
    广播模块,用于广播系统信息,其中,所述系统信息中携带允许接收寻呼消息的载波的信息;
    发送模块,用于在所述允许接收寻呼消息的载波上发送寻呼消息,其中,所述允许接收寻呼消息的载波为主载波或辅载波。
  23. 如权利要求22所述的基站,其特征在于,所述允许接收寻呼消息的载波的信息包括以下任意一种或多种的组合:
    载波的下行工作频点;
    载波的上行工作频点;
    用于表征载波的索引值的信息;
    下行可用子帧的位图配置;
    下行时隙配置;
    带内载波信息;
    主载波或辅载波的寻呼密度;
    主载波或辅载波的缺省寻呼周期;
    允许发送寻呼消息的主载波和辅载波的个数。
  24. 如权利要求22所述的基站,其特征在于,所述发送模块还用于:
    在系统信息发生更新时,通过所述允许接收寻呼消息的载波发送系统信息更新的通知。
  25. 如权利要求22-24任一项所述的基站,其特征在于,所述发送模块还用于:
    获取终端是否支持在辅载波上接收寻呼消息的能力的信息,将所述是否支持在辅载波上接收寻呼消息的能力的信息通知给移动性管理实体MME。
  26. 如权利要求22-24任一项所述的基站,其特征在于,还包括接收模块,用于:
    在所述发送模块在所述允许接收寻呼消息的载波上发送寻呼消息之前,接收移动性管理实体MME通知的终端是否支持在辅载波上接收寻呼消息的能力的信息,并确定所述终端支持在辅载波上接收寻呼消息的能力。
  27. 一种终端,其特征在于,包括处理器、存储器和收发机,其中,收发机在处理器的控制下接收和发送数据,存储器中保存有预设的程序,处理器读取存储器中的程序,按照该程序执行以下过程:
    通过收发机接收基站发送的系统信息,其中,所述系统信息中携带允许接收寻呼消息的载波的信息;
    根据所述允许接收寻呼消息的载波的信息以及预设规则确定寻呼载波,其中,所述寻呼载波为所述基站的主载波或辅载波;
    通过收发机在所述寻呼载波上接收所述基站发送的寻呼消息。
  28. 一种基站,其特征在于,包括处理器、存储器和收发机,其中,收发机在处理器的控制下接收和发送数据,存储器中保存有预设的程序,处理器读取存储器中的程序,按照该程序执行以下过程:
    通过收发机广播系统信息,其中,所述系统信息中携带允许接收寻呼消息的载波的信息;
    指示收发机在所述允许接收寻呼消息的载波上发送寻呼消息,其中,所述允许接收寻呼消息的载波为主载波或辅载波。
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