WO2020124851A1 - 一种局域微蜂窝信号覆盖基站网络切换方法、装置及设备 - Google Patents

一种局域微蜂窝信号覆盖基站网络切换方法、装置及设备 Download PDF

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Publication number
WO2020124851A1
WO2020124851A1 PCT/CN2019/080334 CN2019080334W WO2020124851A1 WO 2020124851 A1 WO2020124851 A1 WO 2020124851A1 CN 2019080334 W CN2019080334 W CN 2019080334W WO 2020124851 A1 WO2020124851 A1 WO 2020124851A1
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Prior art keywords
network
base station
signal coverage
threshold
quality parameter
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PCT/CN2019/080334
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English (en)
French (fr)
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王运峰
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深圳市奥克多普科技有限公司
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Publication of WO2020124851A1 publication Critical patent/WO2020124851A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/0005Control or signalling for completing the hand-off
    • H04W36/0011Control or signalling for completing the hand-off for data sessions of end-to-end connection
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/0005Control or signalling for completing the hand-off
    • H04W36/0083Determination of parameters used for hand-off, e.g. generation or modification of neighbour cell lists
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/16Discovering, processing access restriction or access information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/18Selecting a network or a communication service

Definitions

  • the present invention relates to the field of communication technology, and in particular, to a method, device, and device for local area microcellular signal coverage base station network switching.
  • McWiLL Multi-Carrier Wireless Information Local Loop
  • a multi-carrier wireless information local loop is a broadband wireless access technology.
  • SPI Serial Peripheral Interface
  • serial peripheral interface a serial peripheral interface
  • MiFi Mobile WIFI
  • Mobile WIFI Mobile WIFI
  • an object of the present invention is to provide a method, device and equipment for local area microcellular signal coverage base station network switching, free switching to access different network frequency bands, and good stability.
  • the technical scheme adopted by the present invention is: a local area microcellular signal coverage base station network switching method, including:
  • the quality parameters include signal and signal-to-noise ratio.
  • the first network is a narrow band 3G/4G network from 1785 MHz to 1805 MHz.
  • the second network is a 2G/3G/4G network.
  • the third network is a GPRS network.
  • a local area microcellular signal coverage base station device suitable for the local area microcellular signal coverage base station network switching method as described above, the device includes:
  • the first registration module is used to register the first network, and when the quality parameter of the first network is greater than or equal to the first threshold, access the first network and start the WiFi hotspot service;
  • the second registration module is used to register the second network when the quality parameter of the first network is less than the first threshold, and access the second network and start the WiFi hotspot service when the quality parameter of the second network is greater than or equal to the second threshold ;
  • the third registration module is used to register the third network, access the third network and start the WiFi hotspot service when the quality parameter of the second network is less than the second threshold;
  • WiFi module used to open the WiFi hotspot service.
  • the first registration module is a McWiLL communication module
  • the first network is a narrow band 3G/4G network from 1785MHZ to 1805MHZ.
  • the second registration module is a main control communication module
  • a first SIM card is provided in the main control communication module
  • the second network is a 2G/3G/4G network.
  • the third registration module is an RDA communication module
  • the third network is a GPRS network.
  • a local area microcellular signal covering base station equipment including:
  • At least one processor and a memory communicatively connected to the at least one processor; wherein,
  • the memory stores instructions executable by at least one processor, and the instructions are executed by the at least one processor to enable the at least one processor to execute the local area microcellular signal base station network switching method as described above.
  • a local microcellular signal covering base station network switching method, device and equipment which can freely switch to different networks according to the quality parameters of different networks, and overcome the limitations of the existing technology that wireless routers and MIFI are restricted by accessing the network and cannot
  • the problem of freely switching networks reduces the impact of accessing the network on user data transmission and provides better stability.
  • FIG. 1 is a flow chart of a method for handover of a local area microcellular signal coverage base station network of the present invention
  • FIG. 2 is a flowchart of a specific embodiment of a method for handover of a local area microcellular signal coverage base station network of the present invention
  • FIG. 3 is a block diagram of a specific embodiment of a base station device for local microcellular signal coverage according to the present invention.
  • FIG. 4 is a circuit schematic diagram of a specific embodiment of a base station apparatus for local microcellular signal coverage according to the present invention.
  • FIG. 1 is a flowchart of a local area microcellular signal coverage base station network handover method of the present invention.
  • a local area microcellular signal coverage base station network handover method includes steps S10 to S30.
  • S10 register the first network, and when the quality parameter of the first network is greater than or equal to the first threshold, access the first network and start the WiFi hotspot service;
  • the quality parameters include signal and signal-to-noise ratio.
  • the first network is a narrow band 3G/4G network from 1785MHZ to 1805MHZ;
  • the second network is a 2G/3G/4G network; and
  • the third network is a GPRS network.
  • FIG. 2 is a flowchart of a specific embodiment of a method for local area microcellular signal coverage base station network switching according to the present invention.
  • the method for local area microcellular signal coverage base station network switching specifically includes steps:
  • step S3 judging whether the quality parameter of the first network is less than the first threshold, if not, step S4 is executed, if yes, step S5 is executed;
  • step S4 turn on the data switch of the McWiLL communication module, access the first network, and perform step S10;
  • step S6 judging whether the quality parameter of the second network is less than the second threshold, if not, step S7 is executed, if yes, step S8 is executed;
  • step S7 turn on the data switch of the main control communication module, access the second network, and perform step S10;
  • the main control communication module calls the RDA communication module and turns on its data switch to access the third network;
  • the first network is accessed through the McWiLL communication module, and the first network is a narrow band 3G/4G network from 1785MHZ to 1805MHZ;
  • the main control communication module is provided with a first SIM card, which is activated by the main control communication module
  • the first SIM card is connected to the second network, and the second network is a 2G/3G/4G network;
  • the RDA communication module is provided with a second SIM card, and the RDA communication module is invoked through the main control communication module to activate the second SIM card.
  • the third network is a GPRS network.
  • step S9 specifically includes:
  • the main control communication module calls the RDA communication module and turns on its data switch.
  • the RDA communication module activates the second SIM card to obtain the third network, connects to the cloud SIM server through the third network, and obtains the SIM information from the cloud SIM server to the main control communication module To use, the main control communication module obtains the network whose network quality parameters meet the preset threshold through the cloud SIM issued.
  • a local microcellular signal coverage base station network switching method which can freely switch to different networks according to the quality parameters of different networks, and overcome the limitations of the existing technology that wireless routers and MIFI are subject to access networks and cannot switch networks freely Problem, reduce the impact of access network on user data transmission, and the stability is better.
  • a local area microcellular signal coverage base station device which is suitable for the local area microcellular signal coverage base station network switching method as in the above embodiment, the device includes:
  • the first registration module is used to register the first network, and when the quality parameter of the first network is greater than or equal to the first threshold, access the first network and start the WiFi hotspot service;
  • the second registration module is used to register the second network when the quality parameter of the first network is less than the first threshold, and access the second network and start the WiFi hotspot service when the quality parameter of the second network is greater than or equal to the second threshold ;
  • the third registration module is used to register the third network, access the third network and start the WiFi hotspot service when the quality parameter of the second network is less than the second threshold;
  • WiFi module used to open the WiFi hotspot service.
  • the first registration module is a McWiLL communication module
  • the first network is a narrow band 3G/4G network from 1785MHZ to 1805MHZ
  • the second registration module is a main control communication module, and a first SIM card is provided in the main control communication module
  • the second network is a 2G/3G/4G network
  • the third registration module is an RDA communication module, a second SIM card is provided in the RDA communication module, and the third network is a GPRS network.
  • a local microcellular signal coverage base station device includes a main control communication module, a WiFi module, an RDA communication module, and a McWiLL communication module Among them, the main control communication module is connected to the WiFi module, RDA communication module, McWiLL communication module.
  • the device further includes a first antenna, a second antenna, a third antenna, and a fourth antenna, wherein the first antenna is connected to the main control communication module, the second antenna is connected to the WiFi module, and the third antenna is connected to the RDA The communication module is connected, and the fourth antenna is connected to the McWiLL communication module.
  • the first antenna, the second antenna, and the third antenna all use FPC antennas, and the fourth antenna uses SMA antennas.
  • the McWiLL communication module is used to access the first network, and the first network is a narrow band 3G/4G network from 1785MHZ to 1805MHZ.
  • the device further includes an interface module, which is connected to the main control module.
  • the interface module includes a SIM card slot, a USB interface, and a DC interface.
  • the SIM card slot is used to insert a first SIM card, and the main control communication module starts the first
  • a SIM card is connected to the second network, and the second network is a 2G/3G/4G network.
  • the external power supply provides working power for the device through the DC interface.
  • the RDA communication module includes a second SIM card, and the main control communication module activates the second SIM card by calling the RDA communication module to access the third network, and the third network is a GPRS network.
  • the device further includes a power supply module.
  • the power supply module is connected to the main control communication module and used to provide working power to the main control communication module.
  • the power supply module is charged through the USB interface, and the power supply module provides the main control chip with working power.
  • FIG. 4 is a circuit schematic diagram of a specific embodiment of a base station device for local microcellular signal coverage according to the present invention.
  • the main control communication module includes a main control chip U1, the main control chip U1 adopts an MSM8905 chip, and the RDA communication module includes a radio frequency chip U2 and Amplifier chip U3, radio frequency chip U2 use RDA88X9CL chip and power amplifier chip U3 use RDA6625e chip, WiFi module includes WiFi chip U4, WiFi chip U4 uses WCN3610 chip.
  • the main control chip U1 is connected to the first antenna L1, and the first antenna L1 is an FPC antenna.
  • the main control chip U1 is connected to the first SIM chip to realize support for 2G/3G/4G network access.
  • the main control chip U1 is connected to the first MOS transistor MOS1 through the MSM_GPIO port and the radio frequency chip U2, and the radio frequency chip U2 is controlled to be turned on and off by controlling the on and off of the first MOS transistor MOS1.
  • U3 is connected, and the power amplifier chip U3 is connected to the second antenna L2, and the second antenna L2 is an FPC antenna.
  • the radio frequency chip U2 is connected to the second SIM card, and the main control module U1 also implements data transmission with the radio frequency chip U2 through the UART interface and the I/O interface, and realizes the selective support of GPRS network access.
  • the main control chip U1 is connected to the McWiLL communication module through the I2S/SPI/GPIO interface.
  • the McWiLL communication module uses the XWBP02C chip, and the main control chip U1 is connected to the McWiLL communication module to control the support of 1785-1805MHz narrow-band 3G/4G Network access.
  • the main control chip U1 is also connected to the WiFi module U4, the WiFi module U4 uses a WCN3610 chip, the WiFi module U4 is connected to a third antenna L3, and the third antenna L3 is an FPC antenna.
  • the external power supply when an external power supply is connected, the external power supply provides working power to the main control chip U1 through the DCDCs interface, and when no external power supply is connected, the power supply module is charged through the USB interface, and the power module provides the main control chip Working power.
  • a local microcell signal covering a base station device freely switching to different networks according to the quality parameters of different networks, and overcoming the problem that wireless routers and MIFIs in the prior art are restricted by access networks and cannot switch networks freely, Reduce the impact of the access network on user data transmission, and the stability is better.
  • An embodiment of the present invention provides a local area microcellular signal coverage base station device for performing the above-mentioned local area microcellular signal coverage base station network handover method, and its working principles and beneficial effects correspond to each other, and thus will not be described in detail.
  • a local area microcellular signal covering base station equipment including:
  • At least one processor and a memory communicatively connected to the at least one processor; wherein,
  • the memory stores instructions executable by at least one processor, and the instructions are executed by the at least one processor to enable the at least one processor to perform the local area microcellular signal base station network handover as in the above embodiment method.
  • a local microcellular signal covering base station network switching method, device and equipment which can freely switch to different networks according to the quality parameters of different networks, and overcome the limitations of the existing technology that wireless routers and MIFI are restricted by accessing the network and cannot
  • the problem of freely switching networks reduces the impact of accessing the network on user data transmission and provides better stability.

Abstract

本发明公开了一种局域微蜂窝信号覆盖基站网络切换方法,包括:注册第一网络,当第一网络的质量参数大于或等于第一阈值时,接入第一网络并启动WiFi热点服务;当第一网络的质量参数小于第一阈值时,注册第二网络,当第二网络的质量参数大于或等于第二阈值时,接入第二网络并启动WiFi热点服务;当第二网络的质量参数小于第二阈值时,注册第三网络,接入第三网络并启动WiFi热点服务。本发明还公开了一种局域微蜂窝信号覆盖基站装置及设备。本发明涉及通信技术领域,一种局域微蜂窝信号覆盖基站网络切换方法、装置及设备,根据不同网络的质量参数自由切换接入不同的网络,降低接入网络对用户数据传输的影响,稳定性更好。

Description

一种局域微蜂窝信号覆盖基站网络切换方法、装置及设备
技术领域
本发明涉及通信技术领域,尤其涉及一种局域微蜂窝信号覆盖基站网络切换方法、装置及设备。
背景技术
McWiLL:Multi-Carrier Wireless Information Local Loop,多载波无线信息本地环路,是一种宽带无线接入技术。
SPI,全称Serial Peripheral Interface,串行外设接口。
UART,全称Universal Asynchronous Receiver/Transmitter,通用异步收发传输器。
MiFi(Mobile WIFI)是一个便携式宽带无线装置。
现有的路由器采用的是单芯片控制方案进行数据传输和数据分流,而MIFI则是接收无线网络GPRS/3G/4G数据流进行数据分流,两者功能相对单一。而且无线路由器和MIFI均受制于接入网络的限制,不能自由切换网络,导致对用户的数据传输直接受到接入网络的影响。
发明内容
本发明旨在至少在一定程度上解决相关技术中的技术问题之一。为此,本发明的一个目的是提供一种局域微蜂窝信号覆盖基站网络切换方法、装置及设备,自由切换接入不同网络频段,稳定性好。
本发明所采用的技术方案是:一种局域微蜂窝信号覆盖基站网络切换方法,包括:
注册第一网络,当第一网络的质量参数大于或等于第一阈值时,接入第一网络并启动WiFi热点服务;
当第一网络的质量参数小于第一阈值时,注册第二网络,当第二网络的质量参数大于或等于第二阈值时,接入第二网络并启动WiFi热点服务;
当第二网络的质量参数小于第二阈值时,注册第三网络,接入第三网络并启动WiFi热点服务。
作为上述方案的进一步改进,所述质量参数包括信号和信噪比。
作为上述方案的进一步改进,所述第一网络为1785MHZ至1805MHZ窄频段3G/4G网络。
作为上述方案的进一步改进,所述第二网络为2G/3G/4G网络。
作为上述方案的进一步改进,所述第三网络为GPRS网络。
一种局域微蜂窝信号覆盖基站装置,适用于如上述的局域微蜂窝信号覆盖基站网络切换方法,所述装置包括:
第一注册模块,用于注册第一网络,当第一网络的质量参数大于或等于第一阈值时,接入第一网络并启动WiFi热点服务;
第二注册模块,用于当第一网络的质量参数小于第一阈值时,注册第二网络,当第二网络的质量参数大于或等于第二阈值时,接入第二网络并启动WiFi热点服务;
第三注册模块,用于当第二网络的质量参数小于第二阈值时,注册第三网络,接入第三网络并启动WiFi热点服务;
WiFi模块,用于打开WiFi热点服务。
作为上述方案的进一步改进,所述第一注册模块为McWiLL通讯模块,所述第一网络为1785MHZ至1805MHZ窄频段3G/4G网络。
作为上述方案的进一步改进,所述第二注册模块为主控通讯模块,所述主控通讯模块内设有第一SIM卡,所述第二网络为2G/3G/4G网络。
作为上述方案的进一步改进,所述第三注册模块为RDA通讯模块,所述第三网络为GPRS网络。
一种局域微蜂窝信号覆盖基站设备,包括:
至少一个处理器;以及与所述至少一个处理器通信连接的存储器;其中,
所述存储器存储有可被至少一个处理器执行的指令,所述指令被所述至少一个处理器执行,以使所述至少一个处理器能够执行如上述的局域微蜂窝信号基站网络切换方法。
本发明的有益效果是:
一种局域微蜂窝信号覆盖基站网络切换方法、装置及设备,根据不同网络的质量参数自由切换接入不同的网络,克服现有技术中无线路由器和MIFI均受制于接入网络的限制而不能自由切换网络的问题,降低接入网络对用户数据传输的影响,稳定性更好。
附图说明
下面结合附图对本发明的具体实施方式作进一步说明:
图1是本发明局域微蜂窝信号覆盖基站网络切换方法流程图;
图2是本发明局域微蜂窝信号覆盖基站网络切换方法具体实施例流程图;
图3是本发明局域微蜂窝信号覆盖基站装置具体实施例模块框图;
图4是本发明局域微蜂窝信号覆盖基站装置具体实施例电路原理图。
具体实施方式
需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互组合。
实施例一
图1是本发明局域微蜂窝信号覆盖基站网络切换方法流程图,参照图1,一种局域微蜂窝信号覆盖基站网络切换方法,包括步骤S10至步骤S30。
S10,注册第一网络,当第一网络的质量参数大于或等于第一阈值时,接入第一网络并启动WiFi热点服务;
S20,当第一网络的质量参数小于第一阈值时,注册第二网络,当第二网络的质量参数大于或等于第二阈值时,接入第二网络并启动WiFi热点服务;
S30,当第二网络的质量参数小于第二阈值时,注册第三网络,接入第三网络并启动WiFi热点服务。
本实施例中,质量参数包括信号和信噪比。
其中,第一网络为1785MHZ至1805MHZ窄频段3G/4G网络;第二网络为2G/3G/4G网络;第三网络为GPRS网络。
下面结合一具体实施方式对局域微蜂窝信号覆盖基站网络切换方法做进一步说明。图2是本发明局域微蜂窝信号覆盖基站网络切换方法具体实施例流程图,参照图2,局域微蜂窝信号覆盖基站网络切换方法具体包括步骤:
S1,启动网络接入服务;
S2,启动McWiLL通讯模块,注册第一网络;
S3,判断第一网络的质量参数是否小于第一阈值,若否,则执行步骤S4,若是,则执行步骤S5;
S4,打开McWiLL通讯模块的数据开关,接入第一网络,并执行步骤S10;
S5,启动主控通讯模块,注册第二网络;
S6,判断第二网络的质量参数是否小于第二阈值,若否,则执行步骤S7,若是,则执行步骤S8;
S7,打开主控通讯模块的数据开关,接入第二网络,并执行步骤S10;
S8,启动RDA通讯模块,注册第三网络,并执行步骤S9;
S9,主控通讯模块调用RDA通讯模块并打开其数据开关,接入第三网络;
S10,启动WiFi模块打开热点服务;
S11,网络服务接入成功。
本实施例中,具体的,通过McWiLL通讯模块接入第一网络,第一网络为1785MHZ至1805MHZ窄频段3G/4G网络;主控通讯模块内设有第一SIM卡,通过主控通讯模块启动第一SIM卡,接入第二网络,第二网络为2G/3G/4G网络;RDA通讯模块内设有第二SIM卡,通过主控通讯模块调用RDA通讯模块,进而启动第二SIM卡,接入第三网络,第三网络为GPRS网络。
本实施例中,步骤S9具体包括:
主控通讯模块调用RDA通讯模块并打开其数据开关,RDA通讯模块启动第二SIM卡获取第三网络,通过第三网络连接云SIM服务器,从云SIM服务器中获取SIM信息交由主控通讯模块使用,主控通讯模块通过下发的云SIM获取网络质量参数满足预设阈值的网络。
一种局域微蜂窝信号覆盖基站网络切换方法,根据不同网络的质量参数自由切换接入不同的网络,克服现有技术中无线路由器和MIFI均受制于接入网络的限制而不能自由切换网络的问题,降低接入网络对用户数据传输的影响,稳定性更好。
实施例二
一种局域微蜂窝信号覆盖基站装置,适用于如上述实施例的局域微蜂窝信号覆盖基站网络切换方法,装置包括:
第一注册模块,用于注册第一网络,当第一网络的质量参数大于或等于第一阈值时,接入第一网络并启动WiFi热点服务;
第二注册模块,用于当第一网络的质量参数小于第一阈值时,注册第二网络,当第二网络的质量参数大于或等于第二阈值时,接入第二网络并启动WiFi热点服务;
第三注册模块,用于当第二网络的质量参数小于第二阈值时,注册第三网络,接入第三网络并启动WiFi热点服务;
WiFi模块,用于打开WiFi热点服务。
下面结合一具体实施方式对局域微蜂窝信号覆盖基站装置做进一步说明。
在具体实施例中,第一注册模块为McWiLL通讯模块,第一网络为1785MHZ至1805MHZ窄频段3G/4G网络;第二注册模块为主控通讯模块,主控通讯模块内设有第一SIM卡,第二网络为2G/3G/4G网络;第三注册模块为RDA通讯模块,RDA通讯模块内设有第二SIM卡,第三网络为GPRS网络。
图3是本发明局域微蜂窝信号覆盖基站装置具体实施例模块框图,参照图3,一种局域微蜂窝信号覆盖基站装置,包括主控通讯模块、WiFi模块、RDA通讯模块、McWiLL通讯模块,其中,主控通讯模块分别与WiFi模块、RDA通讯模块、McWiLL通讯模块连接。
本实施例中,该装置还包括第一天线、第二天线、第三天线和第四天线,其中,第一天线与主控通讯模块连接,第二天线与WiFi模块连接,第三天线与RDA通讯模块连接,第四天线与McWiLL通讯模块连接。第一天线、第二天线和第三天线均采用FPC天线,第四天线采用SMA天线。
本实施例中,McWiLL通讯模块用于接入第一网络,第一网络为1785MHZ至1805MHZ窄频段3G/4G网络。
本实施例中,该装置还包括接口模块,接口模块与主控模块连接,接口模块包括SIM卡槽、USB接口和DC接口,SIM卡槽用于插入第一SIM卡,主控通讯模块启动第一SIM卡,接入第二网络,第二网络为2G/3G/4G网络。外部电源通过DC接口为该装置提供工作电源。
本实施例中,RDA通讯模块包括第二SIM卡,主控通讯模块通过调用RDA通讯模块,进而启动第二SIM卡,接入第三网络,第三网络为GPRS网络。
本实施例中,该装置还包括电源模块,电源模块与主控通讯模块连接,用于给主控通讯模块提供工作电源,通过USB接口给电源模块充电,电源模块给主控芯片提供工作电源。
图4是本发明局域微蜂窝信号覆盖基站装置具体实施例电路原理图,参照他4,主控通讯模块包括主控芯片U1,主控芯片U1采用MSM8905芯片、RDA通讯模块包括射频芯片U2和功放芯片U3,射频芯片U2采用RDA88X9CL芯片和功放芯片U3采用RDA6625e芯片,WiFi模块包括WiFi芯片U4,WiFi芯片U4采用WCN3610芯片。
本实施例中,主控芯片U1与第一天线L1连接,第一天线L1为FPC天线。主控芯片U1与第一SIM片连接,实现支持2G/3G/4G网络接入。
本实施例中,主控芯片U1通过MSM_GPIO口连接第一MOS晶体管MOS1与射频芯片U2连接,通过控制第一MOS晶体管MOS1的通断进而控制开启与关闭连接射频芯片U2,射频芯片U2与功放芯片U3连接,功放芯片U3与第二天线L2连接,第二天线L2为FPC天线。射频芯片U2与第二SIM卡连接,主控模块U1还通过UART接口和I/O接口实现与射频芯片U2的数据传输,实现选择支持GPRS网络接入。
本实施例中,主控芯片U1通过I2S/SPI/GPIO接口与McWiLL通讯模块连接,McWiLL通讯模块采用XWBP02C芯片,主控芯片U1通过连接McWiLL通讯模块,控制选择支持1785-1805MHz窄频3G/4G网络接入。
本实施例中,主控芯片U1还与WiFi模块U4连接,WiFi模块U4采用WCN3610芯片,WiFi模块U4与第三天线L3连接,第三天线L3为FPC天线。
本实施例中,当有外部电源接入时,外部电源通过DCDCs接口给主控芯片U1提供工作电源,当没有外部电源接入时,通过USB接口给电源模块充电,电源模块给主控芯片提供工作电源。
一种局域微蜂窝信号覆盖基站装置,根据不同网络的质量参数自由切换接入不同的网络,克服现有技术中无线路由器和MIFI均受制于接入网络的限制而不能自由切换网络的问题,降低接入网络对用户数据传输的影响,稳定性更好。
本发明实施例提供的一种局域微蜂窝信号覆盖基站装置用于执行上述的局域微蜂窝信号覆盖基站网络切换方法,其工作原理和有益效果一一对应,因而不再赘述。
实施例三
一种局域微蜂窝信号覆盖基站设备,包括:
至少一个处理器;以及与所述至少一个处理器通信连接的存储器;其中,
所述存储器存储有可被至少一个处理器执行的指令,所述指令被所述至少一个处理器执行,以使所述至少一个处理器能够执行如上述实施例的局域微蜂窝信号基站网络切换方法。
一种局域微蜂窝信号覆盖基站网络切换方法、装置及设备,根据不同网络的质量参数自由切换接入不同的网络,克服现有技术中无线路由器和MIFI均受制于接入网络的限制而不能自由切换网络的问题,降低接入网络对用户数据传输的影响,稳定性更好。
以上是对本发明的较佳实施进行了具体说明,但本发明创造并不限于所述实施例,熟悉本领域的技术人员在不违背本发明精神的前提下还可作出种种的等同变形或替换,这些等同的变形或替换均包含在本申请权利要求所限定的范围内。

Claims (10)

  1. 一种局域微蜂窝信号覆盖基站网络切换方法,其特征在于,其包括:
    注册第一网络,当第一网络的质量参数大于或等于第一阈值时,接入第一网络并启动WiFi热点服务;
    当第一网络的质量参数小于第一阈值时,注册第二网络,当第二网络的质量参数大于或等于第二阈值时,接入第二网络并启动WiFi热点服务;
    当第二网络的质量参数小于第二阈值时,注册第三网络,接入第三网络并启动WiFi热点服务。
  2. 根据权利要求1所述的一种局域微蜂窝信号覆盖基站网络切换方法,其特征在于,所述质量参数包括信号和信噪比。
  3. 根据权利要求1或2所述的一种局域微蜂窝信号覆盖基站网络切换方法,其特征在于,所述第一网络为1785MHZ至1805MHZ窄频段3G/4G网络。
  4. 根据权利要求3所述的一种局域微蜂窝信号覆盖基站网络切换方法,其特征在于,所述第二网络为2G/3G/4G网络。
  5. 根据权利要求4所述的一种局域微蜂窝信号覆盖基站网络切换方法,其特征在于,所述第三网络为GPRS网络。
  6. 一种局域微蜂窝信号覆盖基站装置,适用于如权利要求1至5任一项所述的局域微蜂窝信号覆盖基站网络切换方法,其特征在于,所述装置包括:
    第一注册模块,用于注册第一网络,当第一网络的质量参数大于或等于第一阈值时,接入第一网络并启动WiFi热点服务;
    第二注册模块,用于当第一网络的质量参数小于第一阈值时,注册第二网络,当第二网络的质量参数大于或等于第二阈值时,接入第二网络并启动WiFi热点服务;
    第三注册模块,用于当第二网络的质量参数小于第二阈值时,注册第三网络,接入第三网络并启动WiFi热点服务;
    WiFi模块,用于打开WiFi热点服务。
  7. 根据权利要求6所述的一种局域微蜂窝信号覆盖基站装置,其特征在于,所述第一注册模块为McWiLL通讯模块,所述第一网络为1785MHZ至1805MHZ窄频段3G/4G网络。
  8. 根据权利要求6所述的一种局域微蜂窝信号覆盖基站装置,其特征在于,所述第二注册模块为主控通讯模块,所述主控通讯模块内设有第一SIM卡,所述第二网络为2G/3G/4G网络。
  9. 根据权利要求6所述的一种局域微蜂窝信号覆盖基站装置,其特征在于,所述第三注册模块为RDA通讯模块,所述第三网络为GPRS网络。
  10. 一种局域微蜂窝信号覆盖基站设备,其特征在于,其包括:
    至少一个处理器;以及与所述至少一个处理器通信连接的存储器;其中,
    所述存储器存储有可被至少一个处理器执行的指令,所述指令被所述至少一个处理器执行,以使所述至少一个处理器能够执行如权利要求1至5任一项所述的局域微蜂窝信号基站网络切换方法。
PCT/CN2019/080334 2018-12-17 2019-03-29 一种局域微蜂窝信号覆盖基站网络切换方法、装置及设备 WO2020124851A1 (zh)

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