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WO2014194579A1 - 移动热点的启动装置、方法及系统 - Google Patents

移动热点的启动装置、方法及系统 Download PDF

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Publication number
WO2014194579A1
WO2014194579A1 PCT/CN2013/082913 CN2013082913W WO2014194579A1 WO 2014194579 A1 WO2014194579 A1 WO 2014194579A1 CN 2013082913 W CN2013082913 W CN 2013082913W WO 2014194579 A1 WO2014194579 A1 WO 2014194579A1
Authority
WO
WIPO (PCT)
Prior art keywords
mobile hotspot
mobile
bluetooth
module
hotspot
Prior art date
Application number
PCT/CN2013/082913
Other languages
English (en)
French (fr)
Inventor
张晓亮
韩金
Original Assignee
中兴通讯股份有限公司
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 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Priority to JP2016517123A priority Critical patent/JP6105161B2/ja
Priority to US14/896,119 priority patent/US10149241B2/en
Priority to EP13886229.7A priority patent/EP2996367B1/en
Publication of WO2014194579A1 publication Critical patent/WO2014194579A1/zh

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. Transmission Power Control [TPC] or power classes
    • H04W52/02Power saving arrangements
    • H04W52/0203Power saving arrangements in the radio access network or backbone network of wireless communication networks
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/08Network architectures or network communication protocols for network security for authentication of entities
    • H04L63/083Network architectures or network communication protocols for network security for authentication of entities using passwords
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/10Network architectures or network communication protocols for network security for controlling access to devices or network resources
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W12/00Security arrangements; Authentication; Protecting privacy or anonymity
    • H04W12/06Authentication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W12/00Security arrangements; Authentication; Protecting privacy or anonymity
    • H04W12/50Secure pairing of devices
    • 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
    • H04W52/00Power management, e.g. Transmission Power Control [TPC] or power classes
    • H04W52/02Power saving arrangements
    • H04W52/0203Power saving arrangements in the radio access network or backbone network of wireless communication networks
    • H04W52/0206Power saving arrangements in the radio access network or backbone network of wireless communication networks in access points, e.g. base stations
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. Transmission Power Control [TPC] or power classes
    • H04W52/02Power saving arrangements
    • H04W52/0209Power saving arrangements in terminal devices
    • H04W52/0225Power saving arrangements in terminal devices using monitoring of external events, e.g. the presence of a signal
    • H04W52/0229Power saving arrangements in terminal devices using monitoring of external events, e.g. the presence of a signal where the received signal is a wanted signal
    • H04W52/0235Power saving arrangements in terminal devices using monitoring of external events, e.g. the presence of a signal where the received signal is a wanted signal where the received signal is a power saving command
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/10Connection setup
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W84/00Network topologies
    • H04W84/02Hierarchically pre-organised networks, e.g. paging networks, cellular networks, WLAN [Wireless Local Area Network] or WLL [Wireless Local Loop]
    • H04W84/10Small scale networks; Flat hierarchical networks
    • H04W84/12WLAN [Wireless Local Area Networks]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W88/00Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
    • H04W88/08Access point devices
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • the present invention relates to the field of mobile communication technologies, and in particular, to a device, method and system for starting a mobile hotspot.
  • Mobile hotspots are technical solutions for converting 3G/4G networks into WIFI networks for sharing with multiple users.
  • the network is smooth and easy to use, and is widely welcomed by users.
  • the current mobile hotspot generally adopts the method that the mobile hotspot automatically shuts down or is in the standby state when the user does not use the mobile hotspot. In the standby mode, the mobile hotspot will turn off the WIFI to save the power consumption caused by the WIFI broadcast service set identifier (SSID), and retain the communication with the base station, and the mobile hotspot processor will enter the low power state and access.
  • SSID WIFI broadcast service set identifier
  • the function will also be turned off. If it is in the power-off state, it takes a long time to turn it on again, resulting in poor user experience. If it is in the standby state, once the user's smart terminal needs to access the mobile hotspot through WIFI, it will also be due to the mobile hotspot AP (Access Point, The access point) function is disabled and cannot be accessed. At this time, the user needs to manually activate the AP function of the mobile hotspot for the user to access. Once the location of the mobile hot spot product is not easy to find, it will not start, which brings inconvenience to the user, and the user experience is poor.
  • AP Access Point
  • the main object of the present invention is to provide a method for starting a mobile hotspot to solve the technical problem that the user needs to manually start the mobile hotspot when the mobile hotspot is in standby.
  • the present invention provides a mobile hotspot activation device, including: a password sending module, configured to: send a Bluetooth pairing password and a preset activation password to a mobile terminal that previously accesses a mobile hotspot through WIFI;
  • the working state detecting module is configured to: detect the working state of the mobile hotspot; and set the sleep triggering module to: trigger the mobile hotspot to enter the sleep when no mobile access is detected and/or no data service is performed. status;
  • the Bluetooth module is configured to: establish a Bluetooth connection with the mobile terminal when the mobile hotspot is in a sleep state, and receive a password sent by the mobile terminal through the Bluetooth device;
  • the startup control module is configured to: compare the password with a locally stored startup password, and control the mobile hotspot to enter a working state when the comparison result is consistent.
  • the sleep triggering module is configured to: detect whether there is a mobile terminal to access the mobile hotspot through the WIFI according to a preset time interval, and if not, control the mobile hotspot to enter a sleep state other than the bluetooth module. .
  • the Bluetooth module includes:
  • the scanning unit is configured to: detect whether a Bluetooth device requests access according to a time period; the control unit is configured to: when the Bluetooth device requests access, control the Bluetooth module to enter a working state; and when no Bluetooth device requests access , Control the Bluetooth module to enter the standby state.
  • the Bluetooth module further includes:
  • the power-on signal transceiver unit is configured to: collect the power-on signal of the mobile hotspot and send it to the mobile terminal.
  • the present invention also provides a mobile hotspot that includes a boot device for moving a hotspot.
  • the starting device of the mobile hotspot includes:
  • the password sending module is configured to: send the Bluetooth pairing password and the preset startup password to the mobile terminal that previously accesses the mobile hotspot through the WIFI;
  • the working state detecting module is configured to: detect the working state of the mobile hotspot
  • the sleep triggering module is configured to: trigger the mobile hotspot to enter a sleep state when detecting that the mobile hotspot has no user access and/or no data service;
  • the Bluetooth module is configured to: establish a Bluetooth connection with the mobile terminal when the mobile hotspot is in a sleep state, and receive a password sent by the mobile terminal through the Bluetooth device;
  • the startup control module is configured to: compare the password with a locally stored startup password, and control the mobile hotspot to enter a working state when the comparison result is consistent.
  • the invention also provides a method for starting a mobile hotspot, which comprises:
  • the mobile hotspot When the mobile hotspot is detected that there is no user access and/or no data service is performed, the mobile hotspot is triggered to enter a sleep state;
  • the password is compared with the locally stored startup password, and when the comparison result is consistent, the mobile hotspot is controlled to enter a working state.
  • the triggering the mobile hotspot to enter a sleep state includes:
  • the establishing a Bluetooth connection with the mobile terminal when the mobile hotspot is in a dormant state comprises: detecting, by a time period, whether a Bluetooth device requests access;
  • the Bluetooth module is controlled to enter the standby state.
  • the method further includes:
  • the power-on signal of the mobile hotspot is collected and sent to the mobile terminal.
  • the present invention further provides a booting system for a mobile hotspot, including a mobile terminal and a mobile hotspot, wherein the mobile hotspot includes a booting device for moving a hotspot.
  • the mobile hotspot activation device includes: a password sending module, configured to: send the Bluetooth pairing password and the preset startup password to the mobile terminal that previously accesses the mobile hotspot through the WIFI;
  • the working state detecting module is configured to: detect the working state of the mobile hotspot
  • the sleep triggering module is configured to: trigger the mobile hotspot to enter a sleep state when detecting that the mobile hotspot has no user access and/or no data service;
  • the Bluetooth module is configured to: establish a Bluetooth connection with the mobile terminal when the mobile hotspot is in a sleep state, and receive a password sent by the mobile terminal through the Bluetooth device;
  • the startup control module is configured to: compare the password with a locally stored startup password, and control the mobile hotspot to enter a working state when the comparison result is consistent;
  • the mobile terminal includes:
  • the storage module is configured to: store a Bluetooth pairing password and a startup password sent by the mobile hotspot;
  • the Bluetooth device is configured to: after establishing a connection with the Bluetooth module of the mobile hotspot, send the startup password to the mobile hotspot.
  • the mobile terminal further includes:
  • the boot signal acquisition module is configured to: obtain a boot signal sent by the mobile hotspot;
  • the WIFI trigger module is configured to: start the local WIFI module according to the boot signal, and access the mobile hotspot.
  • the mobile terminal further includes: a WIFI recording module, configured to: record the mobile hotspot access password after the mobile terminal successfully accesses the mobile hotspot, and automatically access the mobile hotspot the following time.
  • a WIFI recording module configured to: record the mobile hotspot access password after the mobile terminal successfully accesses the mobile hotspot, and automatically access the mobile hotspot the following time.
  • the mobile hotspot further includes:
  • the Bluetooth device control module is configured to: when the mobile terminal accesses the mobile hotspot, control the Bluetooth device to be turned off.
  • the mobile hotspot when the mobile hotspot detects that the mobile hotspot has no user access and/or does not perform data service, the mobile hotspot is triggered to enter a sleep state; when the mobile hotspot is in a sleep state, a Bluetooth connection is established with the mobile terminal, and the mobile terminal is received. The password sent by the terminal through the Bluetooth device, and the password is compared with the locally stored startup password. When the comparison result is consistent, the mobile hotspot is controlled to enter the working state.
  • FIG. 1 is a schematic structural diagram of a device for starting a mobile hotspot according to an embodiment of the present invention
  • FIG. 2 is a schematic structural diagram of a Bluetooth module according to an embodiment of the present invention.
  • FIG. 3 is a schematic flowchart of a method for starting a mobile hotspot according to an embodiment of the present invention
  • FIG. 4 is a schematic diagram of a workflow of establishing a Bluetooth connection with a mobile terminal when a mobile hotspot is in a sleep state according to an embodiment of the present invention
  • FIG. 5 is a schematic structural diagram of a booting system for a mobile hotspot according to an embodiment of the present invention.
  • FIG. 6 is a schematic structural diagram of a booting system for a mobile hotspot according to another embodiment of the present invention.
  • the implementation, functional features, and advantages of the present invention will be further described with reference to the accompanying drawings. Preferred embodiment of the invention
  • the control device for moving the hotspot 1 includes:
  • the password sending module 10 is configured to send the Bluetooth pairing password and the preset activation password to the mobile terminal 2 that previously accesses the mobile hotspot 1 through the WIFI;
  • the working state detecting module 20 is configured to detect the working state of the mobile hotspot 1;
  • the sleep triggering module 30 is configured to trigger the mobile hotspot 1 to enter a sleep state when no mobile hotspot is detected and no data service is performed.
  • the Bluetooth module 40 is configured to establish a Bluetooth connection with the mobile terminal 2 when the mobile hotspot 1 is in a sleep state, and receive a password sent by the mobile terminal 2 through the Bluetooth device;
  • the startup control module 50 is configured to compare the password with a locally stored startup password, and control the mobile hotspot 1 to enter a working state when the comparison result is consistent.
  • the user may preset a startup password for the mobile hotspot 1 and save it in the mobile hotspot.
  • the mobile terminal 2 When the mobile terminal 2 first accesses the mobile hotspot 1, the mobile hotspot 1 transmits the activation password and the Bluetooth pairing password to the mobile terminal 2, and the mobile terminal 2 saves the activation password and the Bluetooth pairing password to access the mobile hotspot 1 for the next time.
  • the state of the mobile hotspot can be detected, so as to control the mobile hotspot to be in a sleep state according to the detection result.
  • the sleep triggering module 30 triggers the mobile hotspot 1 to enter the sleep state when the mobile hotspot 1 does not have the WIFI terminal access, and/or the system protocol stack does not continue to perform the data service.
  • the CPU of the hotspot 1 moves. Very low power operation, the WIFI module is turned off, the timer is stopped, the CPU enters the slow clock state, and the screen and other power consumption modules of the mobile hotspot 1 are also turned off.
  • the Bluetooth module 40 scans the surrounding Bluetooth devices, and when other Bluetooth devices (such as mobile terminals) want to access the mobile hotspot 1, completes Bluetooth pairing with other Bluetooth devices. After the pairing is successful, the mobile terminal 2 can send the activation password to the mobile hotspot 1 through the Bluetooth device.
  • the startup control module 50 compares the startup password sent by the mobile terminal 2 with the startup password stored by the mobile hotspot 1. If the two are consistent, the Bluetooth module 40 of the mobile hotspot 1 moves to the mobile hotspot 1
  • the CPU sends a command, starts the CPU and WIFI module, lights up the LCD screen, and makes the mobile hotspot 1 enter the working state.
  • the startup password is preset and the activation password is sent to the mobile terminal that has been accessed through the WIFI.
  • the startup password sent by the mobile terminal is received by using the Bluetooth technology, and is compared.
  • the mobile hotspot 1 can be triggered to start when the mobile hotspot 1 is in the sleep state.
  • the invention can realize the short-distance control of the mobile hotspot activation, without the user manually opening the mobile hot spot, thereby improving the user experience, and further reducing the standby power consumption of the mobile hotspot and prolonging the user usage time, and has a very good application prospect.
  • the sleep triggering module 30 may be further configured to: detect whether the mobile terminal 2 wants to access the mobile hotspot 1 through the WIFI according to a preset time interval, and if not, control the mobile hotspot 1 except the Bluetooth module 40.
  • the other power consuming modules go to sleep. For example, if the sleep trigger module 30 detects that there is no WIFI user access for a certain period of time, the sleep request is initiated to the startup control module 50, and after the startup control module 50 receives the sleep request, the CPU is controlled to enter a sleep state.
  • the sleep trigger module 30 can also detect the system protocol stack and initiate a sleep request to the startup control module 50 if the system protocol stack does not continue the data service.
  • the Bluetooth module 40 includes:
  • the scanning unit 41 is configured to detect, by a time period, whether a Bluetooth device requests access;
  • the control unit 42 is configured to control the Bluetooth module 40 to enter a working state when a Bluetooth device requests access, and control the Bluetooth module 40 to enter a standby state when no Bluetooth device requests access.
  • the Bluetooth module 40 enters the standby state, that is, the main power consumption module of the Bluetooth module 40, such as a CPU, enters a low power consumption state.
  • the Bluetooth module 40 is controlled to enter the standby state when the Bluetooth module 40 requests access, so as to reduce the power consumption of the mobile hotspot.
  • the Bluetooth module 40 may further include: a booting signal transceiving unit 43 for collecting the booting signal of the mobile hotspot 1 and transmitting it to the mobile terminal 2.
  • the CPU of the mobile hotspot 1 can output a power-on signal to the Bluetooth module 40, and the power-on signal transceiver unit 43 in the Bluetooth module 40 collects the power-on signal and sends it to the mobile terminal.
  • the terminal 2 is configured to notify the mobile terminal 2 that the mobile hotspot 1 is already in working state and can be accessed.
  • the embodiment of the invention further provides a mobile hotspot, which comprises the above-mentioned mobile hotspot activation device.
  • the structural block diagram and the working principle of the mobile hotspot starting device may refer to FIG. 1 and FIG. 2 and its corresponding embodiments, and all technical features of the foregoing embodiments are included, and details are not described herein.
  • the mobile hotspot of the present invention can realize short-distance startup, without requiring the user to manually turn on the mobile hotspot, thereby improving the user experience, and further reducing the standby power consumption of the mobile hotspot and prolonging the user usage time. Has a very good application prospects.
  • a method for starting a mobile hotspot includes the following steps:
  • step S10 the Bluetooth pairing password and the preset activation password are sent to the mobile terminal that accesses the mobile hotspot through the WIFI.
  • the user can preset the startup password for the mobile hotspot and save it in the mobile hotspot 1.
  • the mobile hotspot sends the Bluetooth matching password and the activation password to the mobile terminal, and the mobile terminal saves the startup password to access the mobile hotspot next time.
  • Step S20 detecting the working state of the mobile hotspot; in order to make the mobile hotspot in a low power state, saving power for the user, before starting the mobile hotspot, the state of the mobile hotspot may be detected, so as to control the mobile hotspot according to the detection result. Is in a dormant state.
  • Step S30 triggering the mobile hotspot to enter a dormant state when detecting that the mobile hotspot has no user access and/or no data service; and detecting that the mobile hotspot has no user access and/or no data service.
  • the mobile hotspot is triggered to enter a sleep state.
  • the CPU of the mobile hotspot runs at very low power consumption
  • the WIFI module is turned off
  • the timer is stopped
  • the CPU enters the slow clock state
  • the screen and other power consumption modules of the mobile hotspot are also turned off.
  • Step S40 Establish a Bluetooth connection with the mobile terminal when the mobile hotspot is in a sleep state, and receive a password sent by the mobile terminal through the Bluetooth device; when the mobile hotspot is in a sleep state, the Bluetooth module of the mobile hotspot scans the surrounding Bluetooth device.
  • Bluetooth pairing is completed with other Bluetooth devices. After the pairing is successful, the mobile terminal can send the activation password to the mobile hotspot via the Bluetooth device.
  • step S50 the password is compared with the locally stored startup password, and when the comparison result is consistent, the mobile hotspot is controlled to enter a working state.
  • the startup control module in the startup device of the mobile hotspot compares the startup password sent by the mobile terminal with the startup password stored in the mobile hotspot. If the two are consistent, the Bluetooth module of the mobile hotspot sends a command to the CPU of the mobile hotspot, activates the CPU and the WIFI module, illuminates the LCD screen, and causes the mobile hotspot to enter a working state.
  • triggering the mobile hotspot to enter a sleep state includes:
  • a mobile terminal wants to access the mobile hotspot through WIFI, and if not, controls the mobile hotspot to enter a sleep state other than the Bluetooth module. For example, if the sleep trigger module detects that there is no WIFI user access for a certain period of time, the sleep request is initiated to the startup control module, and after the startup control module receives the sleep request, the control CPU waits for the sleep state.
  • the sleep trigger module can also detect the system protocol stack. If the system protocol stack does not continue to perform data services, it also initiates a sleep request to the startup control module.
  • step S40 may include:
  • Step S41 detecting, by a time period, whether a Bluetooth device requests access
  • Step S42 when the Bluetooth device requests access, control the Bluetooth module to enter a working state
  • Step S43 Control the Bluetooth module to enter a standby state when no Bluetooth device requests access.
  • the Bluetooth module enters the standby state, that is, the main power consumption module of the Bluetooth module, such as the CPU, enters a low power consumption state.
  • the Bluetooth module when the Bluetooth module requests access, the Bluetooth module is controlled to enter a standby state to reduce the power consumption of the mobile hotspot.
  • the method further includes: collecting the power-on signal of the mobile hotspot and transmitting the power-on signal to the mobile terminal.
  • the CPU of the mobile hotspot may output a power-on signal to the Bluetooth module, and the power-on signal transceiver unit in the Bluetooth module collects the power-on signal and sends the power-on signal to the mobile terminal to notify the mobile terminal.
  • the terminal mobile hotspot is already working and can be accessed.
  • the present invention further provides a booting system for a mobile hotspot.
  • the control system includes the foregoing mobile terminal 2 and a mobile hotspot 1
  • the mobile hotspot 1 includes the booting device of the mobile hotspot.
  • the structural block diagram and the working principle of the mobile hotspot starting device can refer to FIG. 1 and FIG. 2 and its corresponding embodiments, and all technical features of the foregoing embodiments are included, and details are not described herein.
  • the mobile terminal 2 includes:
  • the storage module 21 is configured to store a Bluetooth pairing password and a startup password sent by the mobile hotspot 1;
  • the Bluetooth device 22 is configured to send the startup password to the mobile hotspot 1 after establishing a connection with the Bluetooth module of the mobile hotspot.
  • the mobile terminal 2 may be a mobile phone, a tablet computer, etc.
  • the mobile terminal 2 searches for the surrounding WIFI signal, searches for the WIFI signal transmitted by the mobile hotspot 1, inputs the access password, and saves This password, access mobile hotspot 1.
  • the mobile hotspot 1 After accessing the mobile hotspot 1 through the WIFI for the first time, the mobile hotspot 1 sends a Bluetooth pairing password and a startup password to the mobile terminal 2.
  • the storage module 21 in the mobile terminal 2 saves the Bluetooth pairing password and the startup password.
  • the Bluetooth device 22 When the mobile hotspot 1 is accessed next time, if the mobile hotspot 1 is in the sleep state, the Bluetooth device 22 establishes a connection with the Bluetooth module 40 of the mobile hotspot 1 through the Bluetooth pairing password, and sends a startup password to the mobile hotspot 1 to activate the mobile hotspot. 1.
  • the mobile terminal 2 further includes:
  • the boot signal obtaining module 23 is configured to obtain a boot signal sent by the mobile hotspot
  • the WIFI triggering module 24 is configured to start the local WIFI module according to the boot signal and access the mobile hotspot.
  • the boot signal acquisition module 23 obtains the boot signal sent by the mobile hotspot 1, and determines whether the mobile hotspot WIFI module is turned on. If the WIFI module has been turned on, the mobile terminal 2 local WIFI device is activated, and the mobile hotspot 1 WIFI is searched. Signal, enter the WIFI access password of the mobile hotspot, and access the mobile hotspot.
  • the mobile terminal 2 may further include:
  • the WIFI recording module 25 is configured to record the access password of the mobile hotspot 1 after the mobile terminal 2 accesses the mobile hotspot 1 and automatically access the mobile hotspot 1 in the following time.
  • the WIFI recording module 25 since the WIFI recording module 25 is provided, the mobile terminal 2 can automatically access the mobile hotspot 1 when the mobile hotspot 1 is accessed through the WIFI next time, and the access process is simpler and more convenient, thereby further improving the user experience.
  • the mobile terminal 2 further includes a Bluetooth device control module 26, configured to control the Bluetooth device to be turned off when the mobile terminal 2 accesses the mobile hotspot 1. Since the mobile terminal 2 has accessed the mobile hotspot 1 through the WIFI, the communication between the two can be implemented by the WIFI. Therefore, the Bluetooth device control module 26 controls the Bluetooth device of the mobile terminal 2 to be turned off to implement the mobile terminal 2. Saving electricity.
  • a Bluetooth device control module 26 configured to control the Bluetooth device to be turned off when the mobile terminal 2 accesses the mobile hotspot 1. Since the mobile terminal 2 has accessed the mobile hotspot 1 through the WIFI, the communication between the two can be implemented by the WIFI. Therefore, the Bluetooth device control module 26 controls the Bluetooth device of the mobile terminal 2 to be turned off to implement the mobile terminal 2. Saving electricity.
  • the embodiment of the present invention can implement short-distance control of mobile hotspot activation, without requiring the user to manually open the mobile hotspot, thereby improving the user experience, and further reducing the standby power consumption of the mobile hotspot and prolonging the user usage time. Very good application prospects.

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Computer Security & Cryptography (AREA)
  • Computer Hardware Design (AREA)
  • Computing Systems (AREA)
  • General Engineering & Computer Science (AREA)
  • Mobile Radio Communication Systems (AREA)
  • Telephonic Communication Services (AREA)
  • Telephone Function (AREA)

Abstract

一种移动热点的启动装置,包括:密码发送模块,设置为:将蓝牙配对密码和预置的启动密码发送给之前通过WIFI接入移动热点的移动终端;工作状态侦测模块,设置为:侦测移动热点的工作状态;休眠触发模块,设置为:在侦测到移动热点没有用户接入和/或没有进行数据业务时,触发移动热点进入休眠状态;蓝牙模块,设置为:当移动热点处于休眠状态时与移动终端建立蓝牙连接,接收移动终端发送的密码;启动控制模块,设置为:将密码与本地存储的启动密码进行比对,并在比较结果为一致时,控制移动热点进入工作状态。本发明实施例还提供一种移动热点的启动方法和系统。本发明实施例可实现无需用户手动开启移动热点,提升用户使用体验,同时降低移动热点待机功耗。

Description

移动热点的启动装置、 方法及系统
技术领域
本发明涉及移动通信技术领域, 特别涉及一种移动热点的启动装置、 方 法及系统。
背景技术
移动热点是将 3G/4G网络转成 WIFI网络共享给多个用户使用的技术方 案, 其网络流畅, 使用便捷, 受到用户的广泛欢迎。
当前大多数的移动热点都是由电池供电,而作为一种高速率的数据产品, 移动热点数据处理量比较大, 功耗比较高, 如果长时间处于工作状态, 电池 在很短的时间内就会耗尽。 为了使移动热点的电池每次充电后可以使用更长 的时间, 目前的移动热点普遍釆用的方法是在用户不使用移动热点时, 移动 热点自行关机或处于待机状态。 待机时移动热点会关闭 WIFI 来节省 WIFI 广播服务集标识 (Service Set Identifier, SSID ) 引起的耗电, 同时保留与基 站之间的通讯, 移动热点的处理器会进入低功耗的状态, 接入功能也会被关 闭。如果处于关机状态,再一次开机时花费的时间就较长,导致用户体验差; 如果处于待机状态, 用户的智能终端一旦需要通过 WIFI接入移动热点, 也 会由于移动热点的 AP ( Access Point, 接入点) 功能关闭而无法接入, 这个 时候, 用户需要手动启动移动热点的 AP功能, 供用户接入。 而一旦移动热 点产品放置的位置不易寻找, 就会无法启动, 给用户使用带来诸多不便, 用 户体验较差。
发明内容
本发明的主要目的在于提供一种移动热点的启动方法, 以解决现有技术 中移动热点待机时需要用户手动启动移动热点的技术问题。
为了实现发明目的, 本发明提供一种移动热点的启动装置, 包括: 密码发送模块, 设置为: 将蓝牙配对密码和预置的启动密码发送给之前 通过 WIFI接入移动热点的移动终端; 工作状态侦测模块, 设置为: 侦测移动热点的工作状态; 休眠触发模块, 设置为: 在侦测到移动热点没有用户接入和 / 或没有进 行数据业务时, 触发所述移动热点进入休眠状态;
蓝牙模块, 设置为: 当移动热点处于休眠状态时与移动终端建立蓝牙连 接, 接收移动终端通过蓝牙装置发送的密码;
启动控制模块, 设置为: 将所述密码与本地存储的启动密码进行比对, 并在比较结果为一致时, 控制移动热点进入工作状态。
优选地, 所述休眠触发模块设置为: 按预设的时间间隔侦测是否有移动 终端欲通过 WIFI接入移动热点, 如果否, 则控制移动热点除蓝牙模块外的 其他耗电模块进入休眠状态。
优选地, 所述蓝牙模块包括:
扫描单元, 设置为: 按时间周期侦测是否有蓝牙设备请求接入; 控制单元, 设置为: 在有蓝牙设备请求接入时, 控制蓝牙模块进入工作 状态; 以及在无蓝牙设备请求接入时, 控制蓝牙模块进入待机状态。
优选地, 所述蓝牙模块还包括:
开机信号收发单元, 设置为: 釆集移动热点的开机信号并将其发送至移 动终端。
本发明还提供一种移动热点, 其包括移动热点的启动装置。 该移动热点 的启动装置包括:
密码发送模块, 设置为: 将蓝牙配对密码和预置的启动密码发送给之前 通过 WIFI接入移动热点的移动终端;
工作状态侦测模块, 设置为: 侦测移动热点的工作状态;
休眠触发模块, 设置为: 在侦测到移动热点没有用户接入和 / 或没有进 行数据业务时, 触发所述移动热点进入休眠状态;
蓝牙模块, 设置为: 当移动热点处于休眠状态时与移动终端建立蓝牙连 接, 接收移动终端通过蓝牙装置发送的密码;
启动控制模块, 设置为: 将所述密码与本地存储的启动密码进行比对, 并在比较结果为一致时, 控制移动热点进入工作状态。
本发明还提供一种移动热点的启动方法, 其包括:
将蓝牙配对密码和预置的启动密码发送给之前通过 WIFI接入移动热点 的移动终端;
侦 'J移动热点的工作状态;
在侦测到移动热点没有用户接入和 /或没有进行数据业务时, 触发所述 移动热点进入休眠状态;
当移动热点处于休眠状态时与移动终端建立蓝牙连接, 接收移动终端通 过蓝牙装置发送的密码;
将所述密码与本地存储的启动密码进行比对, 并在比较结果为一致时, 控制移动热点进入工作状态。
优选地, 所述触发所述移动热点进入休眠状态包括:
按预设的时间间隔侦测是否有移动终端欲通过 WIFI接入移动热点, 如 果否, 则控制移动热点除蓝牙模块外的其他耗电模块进入休眠状态。
优选地,所述在移动热点处于休眠状态时与移动终端建立蓝牙连接包括: 按时间周期侦测是否有蓝牙设备请求接入;
在有蓝牙设备请求接入时, 控制蓝牙模块进入工作状态; 以及
在无蓝牙设备请求接入时, 控制蓝牙模块进入待机状态。
优选地, 在执行控制移动热点进入工作状态之后还包括:
釆集移动热点的开机信号并将其发送至移动终端。
本发明进一步提供一种移动热点的启动系统,包括移动终端和移动热点, 所述移动热点其包括移动热点的启动装置。 该移动热点的启动装置包括: 密码发送模块, 设置为: 将蓝牙配对密码和预置的启动密码发送给之前 通过 WIFI接入移动热点的移动终端;
工作状态侦测模块, 设置为: 侦测移动热点的工作状态;
休眠触发模块, 设置为: 在侦测到移动热点没有用户接入和 / 或没有进 行数据业务时, 触发所述移动热点进入休眠状态;
蓝牙模块, 设置为: 当移动热点处于休眠状态时与移动终端建立蓝牙连 接, 接收移动终端通过蓝牙装置发送的密码;
启动控制模块, 设置为: 将所述密码与本地存储的启动密码进行比对, 并在比较结果为一致时, 控制移动热点进入工作状态;
所述移动终端包括:
存储模块, 设置为: 存储移动热点发送的蓝牙配对密码和启动密码; 蓝牙装置, 设置为: 在与移动热点的蓝牙模块建立连接后, 将所述启动 密码发送至移动热点。
优选地, 所述移动终端还包括:
开机信号获取模块, 设置为: 获取移动热点发送的开机信号;
WIFI触发模块, 设置为: 根据所述开机信号启动本机 WIFI模块, 接入 移动热点。
优选地, 所述移动终端还包括: WIFI记录模块, 设置为: 在移动终端接 入移动热点成功后记录移动热点接入密码, 以下次自动接入移动热点。
优选地, 所述移动热点还包括:
蓝牙装置控制模块, 设置为: 在移动终端接入移动热点时, 控制蓝牙装 置关闭。
本发明实施例移动热点在侦测到移动热点没有用户接入和 /或没有进行 数据业务时, 触发所述移动热点进入休眠状态; 当移动热点处于休眠状态时 与移动终端建立蓝牙连接, 接收移动终端通过蓝牙装置发送的密码, 并将密 码与本地存储的启动密码进行比对, 在比较结果为一致时, 控制移动热点进 入工作状态。
附图概述
图 1为本发明一实施例中移动热点的启动装置的结构示意图;
图 2为本发明一实施例中蓝牙模块的结构示意图;
图 3为本发明一实施例中移动热点的启动方法的流程示意图;
图 4为本发明一实施例中移动热点处于休眠状态时与移动终端建立蓝牙 连接的工作流程示意图;
图 5为本发明一实施例中移动热点的启动系统的结构示意图;
图 6为本发明另一实施例中移动热点的启动系统的结构示意图。 本发明目的的实现、 功能特点及优点将结合实施例, 参照附图做进一步 说明。 本发明的较佳实施方式
应当理解, 此处所描述的具体实施例仅仅用于解释本发明, 并不用于限 定本发明。
参照图 1 , 图 1为本发明移动热点的启动装置一实施例的结构示意图。 该实施例中, 移动热点 1的控制装置包括:
密码发送模块 10,用于将蓝牙配对密码和预置的启动密码发送给之前通 过 WIFI接入移动热点 1的移动终端 2;
工作状态侦测模块 20 , 用于侦测移动热点 1的工作状态;
休眠触发模块 30, 用于在侦测到移动热点 1没有用户接入和 /或没有进 行数据业务时, 触发移动热点 1进入休眠状态;
蓝牙模块 40,用于当移动热点 1处于休眠状态时与移动终端 2建立蓝牙 连接, 接收移动终端 2通过蓝牙装置发送的密码;
启动控制模块 50, 用于将所述密码与本地存储的启动密码进行比对, 并 在比较结果为一致时, 控制移动热点 1进入工作状态。
本发明实施例中, 用户可为移动热点 1预设启动密码并保存在移动热点
1中。 在移动终端 2首次接入移动热点 1时, 移动热点 1将启动密码和蓝牙 配对密码发送至移动终端 2 , 移动终端 2保存该启动密码和蓝牙配对密码以 便下次接入移动热点 1。
为了使移动热点处于低功耗状态, 为用户节电, 在启动移动热点之前, 可以对移动热点的状态进行侦测, 以便根据侦测结果控制移动热点处于休眠 状态。休眠触发模块 30在移动热点 1没有 WIFI终端接入,和 /或系统协议栈 没有继续进行数据业务时, 触发移动热点 1进入休眠状态, 在移动热点 1进 入休眠状态时, 移动热点 1的 CPU以极低功耗运行, WIFI模块被关闭, 定 时器被停掉, CPU进入慢时钟状态, 同时移动热点 1的屏幕和其他耗电模块 也关闭。
在移动热点 1处于休眠状态时,蓝牙模块 40扫描周围蓝牙设备, 当有其 他蓝牙设备(例如移动终端)要接入移动热点 1时, 与其他蓝牙设备完成蓝 牙配对。 在配对成功后, 移动终端 2可通过蓝牙设备发送启动密码至移动热 点 1。启动控制模块 50将移动终端 2发来的启动密码与移动热点 1存储的启 动密码进行比较, 如果两者一致, 则移动热点 1的蓝牙模块 40向移动热点 1 的 CPU发送命令, 启动 CPU和 WIFI模块, 点亮 LCD屏幕, 使移动热点 1 进入工作状态。
本发明实施例通过预设启动密码, 并将启动密码发送至已通过 WIFI接 入的移动终端, 在移动热点进入休眠状态时, 利用蓝牙技术接收移动终端发 送的启动密码, 并对其进行比对以验证用户身份, 从而实现如果用户第一次 接入移动热点 1成功, 后续则可在移动热点 1处于休眠状态时触发启动移动 热点 1。 本发明可实现短距离控制移动热点启动, 无需用户手动开启移动热 点, 提升了用户的使用体验, 同时使移动热点的待机功耗进一步降低, 延长 用户使用时间, 具有非常好的应用前景。
本发明实施例中,休眠触发模块 30可进一步用于:按预设的时间间隔侦 测是否有移动终端 2欲通过 WIFI接入移动热点 1 ,如果否, 则控制移动热点 1 除蓝牙模块 40外的其他耗电模块进入休眠状态。 例如, 休眠触发模块 30 侦测超过一定时间没有 WIFI用户接入,则发起休眠请求给启动控制模块 50, 启动控制模块 50接收到休眠请求后, 控制 CPU等进入休眠状态。 另外, 休 眠触发模块 30也可以侦测系统协议栈,如果系统协议栈没有继续进行数据业 务, 也向启动控制模块 50发起休眠请求。
请参照图 2, 本发明另一实施例中, 蓝牙模块 40包括:
扫描单元 41 , 用于按时间周期侦测是否有蓝牙设备请求接入;
控制单元 42, 用于在有蓝牙设备请求接入时, 控制蓝牙模块 40进入工 作状态; 以及在无蓝牙设备请求接入时, 控制蓝牙模块 40进入待机状态。
本发明实施例中, 蓝牙模块 40进入待机状态是指蓝牙模块 40的主耗电 模块例如 CPU等进入低功耗状态。 考虑到蓝牙模块 40长期处于工作状态也 比较耗电, 本发明实施例中通过在无蓝牙设备请求接入时, 控制蓝牙模块 40 进入待机状态, 以降低移动热点的功耗。
进一步的, 本发明一实施例中, 蓝牙模块 40还可包括: 开机信号收发单 元 43 , 用于釆集移动热点 1的开机信号并将其发送至移动终端 2。 本发明实 施例中, 当移动热点 1进入工作状态后,移动热点 1的 CPU可输出开机信号 给蓝牙模块 40,蓝牙模块 40中的开机信号收发单元 43釆集该开机信号并将 其发送至移动终端 2, 以通知移动终端 2移动热点 1 已处于工作状态, 可以 接入。 本发明实施例还提供一种移动热点, 其包括上述移动热点的启动装置。 本发明实施例中, 移动热点的启动装置其结构框图和工作原理可参照图 1和 图 2及其对应的实施例 ,包含了前述实施例的所有技术特征,在此不作赘述。 由于具有前述移动热点的启动装置, 本发明移动热点可实现短距离启动, 无 需用户手动开启移动热点, 提升了用户的使用体验, 同时使移动热点的待机 功耗进一步降低, 延长了用户使用时间, 具有非常好的应用前景。
本发明实施例还提供一种移动热点的启动方法, 该方法可基于前述移动 热点实现, 参照图 3所示, 本发明一实施例中, 移动热点的启动方法包括以 下步骤:
步骤 S10,将蓝牙配对密码和预置的启动密码发送给之前通过 WIFI接入 移动热点的移动终端; 本发明实施例中, 用户可为移动热点预设启动密码并 保存在移动热点 1中。 在移动终端首次接入移动热点时, 移动热点将蓝牙配 对密码和启动密码发送至移动终端, 移动终端保存该启动密码以便下次接入 移动热点。
步骤 S20,侦测移动热点的工作状态;为了使移动热点处于低功耗状态, 为用户节电, 在启动移动热点之前, 可以对移动热点的状态进行侦测, 以便 根据侦测结果控制移动热点处于休眠状态。
步骤 S30, 在侦测到移动热点没有用户接入和 /或没有进行数据业务时, 触发所述移动热点进入休眠状态;在侦测到该移动热点没有用户接入和 /或没 有进行数据业务的情况下, 触发移动热点进入休眠状态。 在移动热点进入休 眠状态时, 移动热点的 CPU以极低功耗运行, WIFI模块被关闭, 定时器被 停掉, CPU进入慢时钟状态,同时移动热点的屏幕和其他耗电模块也关闭。
步骤 S40, 当移动热点处于休眠状态时与移动终端建立蓝牙连接, 接收 移动终端通过蓝牙装置发送的密码; 在移动热点处于休眠状态时, 移动热点 的蓝牙模块扫描周围蓝牙设备。 当有其他蓝牙设备 (例如移动终端)要接入 移动热点时, 与其他蓝牙设备完成蓝牙配对。 在配对成功后, 移动终端可通 过蓝牙设备发送启动密码至移动热点。
步骤 S50, 将所述密码与本地存储的启动密码进行比对, 并在比较结果 为一致时, 控制移动热点进入工作状态。 例如, 移动热点的启动装置中的启 动控制模块将移动终端发来的启动密码与移动热点存储的启动密码进行比较, 如果两者一致, 则移动热点的蓝牙模块向移动热点的 CPU发送命令, 启动 CPU和 WIFI模块, 点亮 LCD屏幕, 使移动热点进入工作状态。
本发明实施例中, 触发移动热点进入休眠状态包括:
按预设的时间间隔侦测是否有移动终端欲通过 WIFI接入移动热点, 如 果否, 则控制移动热点除蓝牙模块外的其他耗电模块进入休眠状态。 例如, 休眠触发模块侦测超过一定时间没有 WIFI用户接入, 则发起休眠请求给启 动控制模块, 启动控制模块接收到休眠请求后, 控制 CPU等进入休眠状态。 另外, 休眠触发模块也可以侦测系统协议栈, 如果系统协议栈没有继续进行 数据业务, 也向启动控制模块发起休眠请求。
参照图 4所示, 本发明实施例中, 上述步骤 S40可包括:
步骤 S41 , 按时间周期侦测是否有蓝牙设备请求接入;
步骤 S42, 在有蓝牙设备请求接入时, 控制蓝牙模块进入工作状态; 以 及
步骤 S43 , 在无蓝牙设备请求接入时, 控制蓝牙模块进入待机状态。 本发明实施例中, 蓝牙模块进入待机状态是指蓝牙模块的主耗电模块例 如 CPU等进入低功耗状态。 考虑到蓝牙模块长期处于工作状态也比较耗电, 本发明实施例中通过在无蓝牙设备请求接入时,控制蓝牙模块进入待机状态, 以降低移动热点的功耗。
在一优选实施例中, 在执行控制移动热点进入工作状态之后还包括: 釆集移动热点的开机信号并将其发送至移动终端。
本发明实施例中, 当移动热点进入工作状态后,移动热点的 CPU可输出 开机信号给蓝牙模块, 蓝牙模块中的开机信号收发单元釆集该开机信号并将 其发送至移动终端, 以通知移动终端移动热点已处于工作状态, 可以接入。
本发明进一步提供一种移动热点的启动系统, 参照图 5所示, 该控制系 统包括前述移动终端 2和移动热点 1 , 移动热点 1 包括前述移动热点的启动 装置。 本发明实施例中, 移动热点的启动装置其结构框图和工作原理可参照 图 1和图 2及其对应的实施例, 包含了前述实施例的所有技术特征, 在此不 作赘述。
本发明实施例中, 移动终端 2包括:
存储模块 21 , 用于存储移动热点 1发送的蓝牙配对密码和启动密码; 蓝牙装置 22, 用于在与移动热点的蓝牙模块建立连接后, 将所述启动密 码发送至移动热点 1。
本发明实施例中, 移动终端 2可以为手机、 平板电脑等, 在首次要接入 移动热点时,移动终端 2搜索周围 WIFI信号,搜索到移动热点 1发射的 WIFI 信号, 输入接入密码, 保存此密码, 接入移动热点 1。 在首次通过 WIFI接入 移动热点 1后, 移动热点 1会发送蓝牙配对密码和启动密码至移动终端 2 , 此时,移动终端 2中的存储模块 21保存该蓝牙配对密码和启动密码。在下次 接入移动热点 1时,如果移动热点 1处于休眠状态,则蓝牙装置 22通过蓝牙 配对密码与移动热点 1的蓝牙模块 40建立连接,并将启动密码发送至移动热 点 1 , 以启动移动热点 1。
参照图 6所示, 本发明一实施例中, 移动终端 2还包括:
开机信号获取模块 23 , 用于获取移动热点发送的开机信号;
WIFI触发模块 24, 用于根据所述开机信号启动本机 WIFI模块,接入移 动热点。
本发明实施例中,开机信号获取模块 23获取移动热点 1发来的开机信号, 判断移动热点 WIFI模块是否打开, 如果 WIFI模块已经打开, 启动移动终端 2本机 WIFI装置, 搜索移动热点 1的 WIFI信号, 输入移动热点的 WIFI接 入密码, 接入移动热点。
本实施例中, 移动终端 2还可包括:
WIFI记录模块 25 , 用于在移动终端 2接入移动热点 1成功后记录移动 热点 1的接入密码, 以下次自动接入移动热点 1。 本发明实施例中, 由于设 置有 WIFI记录模块 25 ,移动终端 2可以在下次要通过 WIFI接入移动热点 1 时自动接入移动热点 1 , 接入过程更为简单方便, 进一步提升了用户体验。
本发明实施例中, 移动终端 2还包括蓝牙装置控制模块 26, 用于在移动 终端 2接入移动热点 1时,控制蓝牙装置关闭。 由于移动终端 2已通过 WIFI 接入移动热点 1 , 两者之间的通信可通过 WIFI实现, 因此本发明实施例设置 蓝牙装置控制模块 26控制移动终端 2的蓝牙装置关闭, 以实现移动终端 2 的节电。 以上仅为本发明的优选实施例, 并非因此限制本发明的专利范围, 凡是 利用本发明说明书及附图内容所作的等效结构或等效流程变换, 或直接或间 接运用在其他相关的技术领域, 均同理包括在本发明的专利保护范围内。
工业实用性
与相关技术相比, 本发明实施例可实现短距离控制移动热点启动, 无需 用户手动开启移动热点, 提升了用户的使用体验, 同时使移动热点的待机功 耗进一步降低, 延长用户使用时间, 具有非常好的应用前景。

Claims

权 利 要 求 书
1、 一种移动热点的启动装置, 包括:
密码发送模块, 设置为: 将蓝牙配对密码和预置的启动密码发送给之前 通过 WIFI接入移动热点的移动终端;
工作状态侦测模块, 设置为: 侦测移动热点的工作状态;
休眠触发模块, 设置为: 在侦测到移动热点没有用户接入和 / 或没有进 行数据业务时, 触发所述移动热点进入休眠状态;
蓝牙模块, 设置为: 当移动热点处于休眠状态时与移动终端建立蓝牙连 接, 接收移动终端通过蓝牙装置发送的密码;
启动控制模块, 设置为: 将所述密码与本地存储的启动密码进行比对, 并在比较结果为一致时, 控制移动热点进入工作状态。
2、如权利要求 1所述的移动热点的启动装置, 其中, 所述休眠触发模块 设置为:按预设的时间间隔侦测是否有移动终端欲通过 WIFI接入移动热点, 如果否, 则控制移动热点除蓝牙模块外的其他耗电模块进入休眠状态。
3、如权利要求 2所述的移动热点的启动装置,其中,所述蓝牙模块包括: 扫描单元, 设置为: 按时间周期侦测是否有蓝牙设备请求接入; 控制单元, 设置为: 在有蓝牙设备请求接入时, 控制蓝牙模块进入工作 状态; 以及在无蓝牙设备请求接入时, 控制蓝牙模块进入待机状态。
4、如权利要求 1至 3中任一项所述的移动热点的启动装置, 其中, 所述 蓝牙模块还包括:
开机信号收发单元, 设置为: 釆集移动热点的开机信号并将其发送至移 动终端。
5、 一种移动热点, 包括如权利要求 1至 4中任一项所述的控制装置。
6、 一种移动热点的启动方法, 包括:
将蓝牙配对密码和预置的启动密码发送给之前通过 WIFI接入移动热点 的移动终端;
侦 'J移动热点的工作状态;
在侦测到移动热点没有用户接入和 /或没有进行数据业务时, 触发所述 移动热点进入休眠状态;
当移动热点处于休眠状态时与移动终端建立蓝牙连接, 接收移动终端通 过蓝牙装置发送的密码;
将所述密码与本地存储的启动密码进行比对, 并在比较结果为一致时, 控制移动热点进入工作状态。
7、如权利要求 6所述的移动热点的启动方法, 其中, 所述触发所述移动 热点进入休眠状态包括:
按预设的时间间隔侦测是否有移动终端欲通过 WIFI接入移动热点, 如 果否, 则控制移动热点除蓝牙模块外的其他耗电模块进入休眠状态。
8、如权利要求 7所述的移动热点的启动方法, 其中, 所述在移动热点处 于休眠状态时与移动终端建立蓝牙连接包括:
按时间周期侦测是否有蓝牙设备请求接入;
在有蓝牙设备请求接入时, 控制蓝牙模块进入工作状态; 以及
在无蓝牙设备请求接入时, 控制蓝牙模块进入待机状态。
9、如权利要求 6所述的移动热点的启动方法, 其中, 在执行控制移动热 点进入工作状态之后还包括:
釆集移动热点的开机信号并将其发送至移动终端。
10、 一种移动热点的启动系统, 包括移动终端和移动热点, 所述移动热 点为权利要求 5所述的移动热点; 所述移动终端包括:
存储模块, 设置为: 存储移动热点发送的蓝牙配对密码和启动密码; 蓝牙装置, 设置为: 在与移动热点的蓝牙模块建立连接后, 将所述启动 密码发送至移动热点。
11、如权利要求 10所述的移动热点的启动系统, 其中, 所述移动终端还 包括:
开机信号获取模块, 设置为: 获取移动热点发送的开机信号;
WIFI触发模块, 设置为: 根据所述开机信号启动本机 WIFI模块, 接入 移动热点。
12、如权利要求 11所述的移动热点的启动系统, 其中, 所述移动终端还 包括: WIFI记录模块, 设置为: 在移动终端接入移动热点成功后记录移动热 点接入密码, 以下次自动接入移动热点。
13、 如权利要求 11或 12所述的移动热点的启动系统, 其中, 所述移动 热点还包括:
蓝牙装置控制模块, 设置为: 在移动终端接入移动热点时, 控制蓝牙装 置关闭。
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CN106664652B (zh) * 2014-12-16 2020-08-07 华为技术有限公司 一种唤醒无线保真网络的方法和终端
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