WO2015051701A1 - Wifi同步apn网络多通道并发上网并自动优选wifi联网的方法 - Google Patents

Wifi同步apn网络多通道并发上网并自动优选wifi联网的方法 Download PDF

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WO2015051701A1
WO2015051701A1 PCT/CN2014/087293 CN2014087293W WO2015051701A1 WO 2015051701 A1 WO2015051701 A1 WO 2015051701A1 CN 2014087293 W CN2014087293 W CN 2014087293W WO 2015051701 A1 WO2015051701 A1 WO 2015051701A1
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wifi
networking
network
channel
apn
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PCT/CN2014/087293
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English (en)
French (fr)
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朱雄关
刘晓岩
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成都达信通通讯设备有限公司
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    • 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
    • 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
    • H04W88/02Terminal devices
    • H04W88/06Terminal devices adapted for operation in multiple networks or having at least two operational modes, e.g. multi-mode terminals

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  • the invention relates to a method for supporting multi-channel concurrent network transmission of a WIFI and a mobile APN network by using a wireless network on a mobile terminal, and supporting the mobile terminal operating system to detect the network in the data networking application, automatically switching the network channel and preferentially selecting the WIFI channel. .
  • APN Access Point Name
  • the APN is an indispensable identifier for routing user IP packets to the corresponding GGSN and the external network.
  • the role of the APN is as follows: the APN is used as the route identifier: the SGSN queries the specific DNS server according to the APN.
  • the GGSN IP address corresponding to the APN is used to determine the GGSN that the user should access; the APN is used as the service domain identifier: the GGSN sends the user's service flow to different service domains according to different APNs, and different industries
  • the service domain corresponds to different service bearer networking modes, user ID acquisition mode, and charging mode.
  • CMWAP APN is mainly for HTTP-based services, such as WAP Internet browsing, MMS, and so on.
  • WAP domain has gradually evolved into a default service domain for most self-operated services and cooperative services by upgrading and configuring, and providing MMS to users.
  • PIM streaming media
  • the CMWAP APN uses the WAP gateway as a proxy node for HTTP access, and provides some auxiliary functions for users, such as free input of handheld device numbers, content conversion, and adaptive prediction.
  • CMNET is an APN set up for open Internet access services. Users can access the Internet using any protocol without any control and restriction policies, but also do not provide other accessibility features.
  • the mobile terminal accesses the GGSN through the access SGSN, and the service data stream is translated into the Internet through the NAT corresponding to the firewall of the GGSN.
  • WIFI Internet access
  • APN Access Point Name
  • WIFI wireless fidelity
  • the WIFI network often produces Blocked.
  • the mobile operator's APN network is not free, it is a relatively reliable means of networking.
  • WIFI and APN are all connected at the same time, when WIFI can WIFI channel is used when networking; when WIFI is blocked, the mobile operator's APN is used for networking; once WIFI can be networked, the operating system automatically switches to the WIFI network.
  • the current mobile terminal operating system adopts a fixed channel selection mode when wirelessly accessing the Internet. When the user specifies a certain networking mode, the operating system cannot automatically switch the network in the networked application.
  • the object of the present invention is to provide a shortcoming in the above prior art, and provide a method for supporting concurrent connection between a WIFI and a mobile APN network on a mobile terminal, and supporting the mobile terminal operating system to detect a network and automatically switch in a data networking application.
  • Network channel and preferred method of WIFI channel are preferred methods of WIFI channel.
  • a WIFI synchronous APN network multi-channel concurrent Internet access and automatically preferred WIFI networking method having the following technical features: setting a networking module between the application layer and the driver module and the WIFI module The network monitoring management module; in the process of surfing the mobile terminal, the networking module receives the networking instruction sent by the application layer, parses the network channel type parameter in the networking instruction, and identifies the WIFI channel and different APN channel parameters as different networking channels, and According to the networking instruction of the application layer, one or more Internet access channels are connected; the network monitoring module periodically detects the network, and automatically switches the network channel and preferentially selects the WIFI channel when the WIFI and the mobile APN network are concurrently connected.
  • the present invention fully considers the requirement of the multi-channel networking when the user accesses the mobile device, and adopts the mode of simultaneously connecting the WIFI and the APN network through the operating system or application software of the mobile terminal, so that the mobile terminal can perform through multiple networking paths. Networking has revolutionized the bottleneck of single-channel networking in the mobile terminal field.
  • the invention provides an interface function for modifying the network configuration information of the application layer in the operating system of the mobile terminal, and provides a human-machine interface for configuring and modifying the access channel mode for the mobile terminal user, so that the mobile terminal user can modify multiple networking through the human-machine interface. Parameter setting of the channel.
  • the invention includes parameters of the network networking protocol in the configuration information of the APN channel parameters, so that the operating system and the driver module can identify the networking protocol required in the application layer networking request, and use the corresponding networking protocol for networking as required. . Since the present invention is multi-channel concurrency, the operating system or application software supports different APN networks of a plurality of different networking protocols for concurrent networking. Each node is not only a server but also a client. They are equal in status and can exchange data directly between nodes. If compared with the traditional client/server model, the peer-to-peer network model has great advantages in terms of system scalability, adaptability, system resource utilization, and so on.
  • the present invention provides a preferred policy under the multi-channel network connection management through the network monitoring management module.
  • the built-in application or the third-party application on the mobile device can fail the WIFI network connection, no manual intervention is required, and the system is applied according to the application.
  • the layer configuration requires automatic switching of other available access points to access the network; if the WIFI is restored to use, the system automatically switches back to the WIFI network.
  • FIG. 1 is a schematic structural diagram of a WIFI synchronous APN network multi-channel concurrent access network and automatically optimizing a WIFI networking system module according to the present invention.
  • FIG. 2 is a schematic structural diagram of a related channel information model of a WIFI synchronous APN network with multiple channels concurrently connected to the WIFI network and automatically optimized for WIFI networking.
  • the WIFI synchronous APN network multi-channel concurrent Internet access and automatically optimizes the WIFI networking system module which in turn includes an application layer, a networking module, a network monitoring management module, a driving module, and a WIFI module; wherein, the application layer
  • the operating system or application software of the mobile terminal is included; the driver module is used for APN networking, and the WIFI module is used for networking of the WIFI network.
  • the networking module presets a plurality of networking channels, and each networking channel corresponds to a data connection of a WIFI or APN network.
  • the networking module In the process of the mobile terminal accessing the Internet, after receiving the networking instruction issued by the application layer, the networking module analyzes the network channel type parameter in the networking command, and connects the Internet access channel or the multiple Internet access channel according to the requirements of the application layer. .
  • the WIFI connection request is networked through the WIFI module, and the APN connection request is networked through the driver module.
  • the network channel type can identify the WIFI channel and the APN channel.
  • the APN channel contains the APN channel parameter configuration information.
  • the different APN channel parameters are identified as different APN channels.
  • APN channel parameters include, but are not limited to, access point name, QOS level, networking protocol, etc.
  • the networking module After receiving each networking instruction sent by the application layer, the networking module sequentially creates or allocates to one or more virtual network units according to the foregoing networking instruction, and the virtual network unit sends the network to the mobile base station or the WIFI network through the driving module or the WIFI module. Request; when the networking module receives the driver module or WIFI After the network successfully returns the message, the networking module sets the parameters in each successful networking message to the virtual network unit created or assigned above. After one or more virtual network elements are created or allocated, the application layer initiates another different networking request, and the networking module will again create or assign a new virtual network unit that exists at the same time as the original virtual network unit, and continue. Waiting for the next networking request.
  • the network monitoring management module monitors all running networks according to the requirements of the application layer networking. When the WIFI network is found to be blocked, the routing management and network connection information are managed according to the networking requirements of the application layer.
  • the network monitoring management module monitors the status of the WIFI network operation by periodically transmitting the monitoring packet; once the blocking is found, the network monitoring management module checks the networking requirements of the application layer, and requires the WIFI and the APN network to concurrently connect at the application layer. Under the premise, the network monitoring management module automatically activates the APN networking channel CMNET or CMWAP, and modifies the default path of the application using the networking channel, and identifies the networked route as the new APN networking channel.
  • the network monitoring management module periodically queries the connection state of the WIFI network by sending a monitoring packet to the WIFI channel, once the WIFI is available. Immediately modify the default path of the application using the networked channel, automatically identify the networked route as a WIFI network, and disconnect the APN networking channel.
  • concurrent networking between WIFI network and APN networking channel refers to the relevant regulations of the operator.
  • China Mobile WIFI can be concurrent with CMNET or CMWAP
  • China Telecom WIFI can be concurrent with CTNET or CTWAP.
  • the networked channel can preset more networked channels, while the WIFI network is concurrently connected with CMNET or CMWAP, concurrent access of other APN networks is not excluded, such as Other APN networks such as MMS and CMSIP.
  • the WIFI synchronous APN network supports multi-channel concurrent Internet access and automatically optimizes the related channel information model of the WIFI networking.
  • the networking module in the above Embodiment 1 the network configuration information module and the network are embedded. Connect the information module.
  • the network configuration information module is used to record related networking instructions of the application layer to the network channel, including but not limited to channel number, network channel type, APN parameter setting, network opening, disconnecting, and closing instructions.
  • the network connection information module records the actual connection and channel usage information of the current network.
  • a human-machine interface for configuring and modifying the Internet access channel mode for the mobile terminal user is provided, so that the mobile terminal user can modify and query the parameters of multiple networking channels and access the Internet through the human-machine interface.
  • the internet mode can include a single channel networking mode or a multi-channel networking mode.
  • the networking request of the application layer may be initiated by the operating system or the application layer program of the mobile terminal; the networking request of the operating system of the mobile terminal is initiated by the mobile terminal user modifying the network configuration information by the human machine interface; the networking request of the application program is corresponding through the networking module
  • the interface function is initiated.
  • the networking module receives the networking request of the application layer. After the networking is successful, the networking module writes the networking information into the network configuration information module and the network connection information module, and the supply layer performs the query.
  • the network monitoring management module monitors the status of the WIFI network operation by periodically transmitting the monitoring packet; once the blocking is found, the network monitoring management module checks the networking requirements of the application layer in the network configuration module, and requires the WIFI and the APN network to concurrently network at the application layer. Next, the network monitoring management module automatically activates the APN networking channel CMNET or CMWAP, and modifies the default path of the application using the networking channel, and identifies the networked route as a new APN networking channel. At the same time, network monitoring management The module modifies the network connection information module to identify the WIFI as unavailable, the APN network channel identifier is in use, and the supply layer queries the current network connection channel status.
  • the application layer requires the WIFI and the APN network to be concurrently connected.
  • the network monitoring management module periodically queries the WIFI network connection by sending a monitoring packet to the WIFI channel. Status, once WIFI is available, immediately modify the default path of the application using the networked channel, automatically identify the networked route as a WIFI network, disconnect the APN networking channel, and modify the network connection information module to identify the WIFI as available, APN network channel identification For disconnection, the provisioning layer queries the current network connection channel status.
  • the mobile terminal can query the actual connection and channel usage information of the current network in the network connection information module through the human machine interface or the application program.
  • the mobile terminal can query or set the channel setting and networking settings of the current network in the network configuration information module through the man-machine interface or the application program.

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  • Engineering & Computer Science (AREA)
  • Computer Security & Cryptography (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Mobile Radio Communication Systems (AREA)

Abstract

本发明提出的一种WIFI同步APN网络多通道并发上网并自动优选WIFI联网的方法,旨在提供一种支持移动终端上同时使用WIFI与移动APN网络进行并发联网,并支持移动终端操作系统在数据联网应用中侦测网络、自动切换网络通道并优先选择WIFI通道的方法。本发明通过下述技术方案予以实现:在应用层与驱动模块和WIFI模块之间设置联网模块和网络监测管理模块;在移动终端上网过程中,联网模块接收应用层下发的联网指令,解析联网指令中的网络通道类型参数,将WIFI通道和不同的APN通道参数标识为不同的联网通道,并根据应用层的联网指令进行一路或多路上网通道的连接;网络监测模块定时侦测网络,在WIFI和移动APN网络并发联网情况下,自动切换网络通道并优先选择WIFI通道。

Description

WIFI同步APN网络多通道并发上网并自动优选WIFI联网的方法
本申请要求于2013年10月10日提交中国专利局、申请号为201310469987.7、发明名称为“WIFI同步APN网络多通道并发上网并自动优选WIFI联网的方法”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
本发明是一种支持移动终端上同时使用无线网络传输WIFI与移动APN网络多通道并发联网,并支持移动终端操作系统在数据联网应用中侦测网络、自动切换网络通道并优先选择WIFI通道的方法。
背景技术
随着移动互联技术的发展,和无线网络更广泛的覆盖,基于手机的无线应用日益称为人们生活的必不可少的应用。伴随着手持设备上网技术的成熟和智能手持设备的普及,现在的手持设备已经成为电脑之外使用频度最高的网络接入终端。公车上,地铁里,走到哪里都会看到拿着手持设备听音乐、收邮件、发微博、看新闻上网的人群。特别是智能手持设备强大的可扩展性及其所带来丰富多样的功能和应用,更是为手持设备上网增添了无限乐趣。对于普通用户而言,APN(Access Point Name,接入点名称)只是为了上网而在手持设备终端上预先配置或手工设定的一组参数。而对于移动网络来说,APN是用来实现用户IP报文路由至相应GGSN及外部网络的必不可少的标识,其作用具体包括:APN作为路由标识:SGSN根据APN,向特定DNS服务器查询该APN对应的GGSN IP地址,以确定用户应接入的GGSN;APN作为业务域标识:GGSN根据APN不同,将用户的业务流送到不同的业务域,而不同的业 务域则对应了不同的业务承载组网方式、用户标识获取方式、计费模式等。以中国移动最早提供、也是目前用户使用最广的两个APN——CMWAP、CMNET为例:
1)CMWAP APN
CMWAP APN在设计之初主要面向基于HTTP协议的业务,如WAP上网浏览,彩信等。随着数据业务的不断发展,为了支持逐渐引入的非HTTP协议的业务,WAP域通过进行升级改造和配置,逐渐演变为面向绝大多数自营业务和合作业务的默认业务域,面向用户提供彩信、PIM、流媒体、通用下载、快讯、音乐随身听、游戏等业务。CMWAP APN使用了WAP网关作为HTTP访问的代理节点,同时可面向用户提供一些辅助功能,例如免输手持设备号码、内容转换、适配预判等。
2)CMNET APN
CMNET是为了开展开放的互联网接入服务设置的APN,用户可使用任何协议访问互联网,没有任何控制和限制策略,但同时也不提供其他辅助功能。使用CMNET APN时,移动终端通过接入地SGSN就近接入GGSN,业务数据流通过GGSN对应的防火墙进行NAT地址转换后接入互联网。但目前的手持设备终端和操作系统在使用不同方式上网时带来了一些不便的烦恼。而手持设备被问及最多的就是手机上网方面的问题。我们的手机在无线上网时主要有两种方式:一种是WIFI上网,一种是通过移动运营商的APN(Access Point Name,接入点名称)接入点上网。通常情况下,WIFI是免费的,APN联网是需要花费流量费的。所以,人们在使用无线上网应用的时候,往往希望优先选择WIFI。但是,WIFI网络在较多人同时联网的情况下,WIFI网络往往会产 生阻塞。这时候,手机上虽然有WIFI联网的标志,但是实际上,根本无法联网。移动运营商的APN联网虽然不是免费的,但是是一种较为可靠的联网手段。由于大多数人不知道怎样对网络通道进行配置或者切换,或者觉得手工切换无线上网通道非常麻烦,人们希望拥有这样一种自动的网络联网与切换模式:WIFI和APN同时都进行联网,当WIFI可以联网的时候使用WIFI通道;WIFI阻塞的时候,使用移动运营商的APN联网;一旦WIFI可以联网,操作系统再自动切换到WIFI网络。当前的移动终端操作系统在无线上网的时候采用的是固定通道选择的模式,当用户指定某种联网方式以后,操作系统是无法在联网应用中自动切换网络的。
发明内容
本发明的目的是针对上述现有技术存在不足之处,提供一种支持移动终端上同时使用WIFI与移动APN网络进行并发联网,并支持移动终端操作系统在数据联网应用中侦测网络、自动切换网络通道并优先选择WIFI通道的方法。
本发明的上述目的可以通过以下措施来得到,一种WIFI同步APN网络多通道并发上网并自动优选WIFI联网的方法,具有如下技术特征:在应用层与驱动模块和WIFI模块之间设置联网模块和网络监测管理模块;在移动终端上网过程中,联网模块接收应用层下发的联网指令,解析联网指令中的网络通道类型参数,将WIFI通道和不同的APN通道参数标识为不同的联网通道,并根据应用层的联网指令进行一路或多路上网通道的连接;网络监测模块定时侦测网络,在WIFI和移动APN网络并发联网情况下,自动切换网络通道并优先选择WIFI通道。
本发明相比现有的操作系统有以下有益效果:
1)本发明充分考虑了用户在手持设备上网时对多通道联网的需求,通过移动终端的操作系统或应用软件,采用同时连接WIFI和APN网络的模式,使得移动终端可以通过多条联网路径进行联网,革命性地突破了移动终端领域目前单通道联网的瓶颈限制。
2)本发明在移动终端操作系统提供应用层修改网络配置信息的接口函数,提供了为移动终端用户配置、修改上网通道模式的人机界面,使移动终端用户可以通过人机界面修改多个联网通道的参数设定。
3)本发明在APN通道参数的配置信息中,包含了网络联网协议的参数,使得操作系统和驱动模块可以识别应用层联网请求中所要求的联网协议,并按要求使用相应的联网协议进行联网。由于本发明是多通道并发,使得操作系统或应用软件支持多种不同的联网协议的不同APN网络并发联网。每个节点不仅是服务器而且还是客户机,它们地位相等,在节点之间可以直接进行数据交换。如果和传统的客户机/服务器模型进行对比,在系统的可扩展性、适应性、系统的资源利用率等等方面,对等网络模型都具有巨大的优势。
4)本发明通过网络监测管理模块提供了多通道网络连接管理下的优选策略,当移动设备上的内置应用或第三方应用,可以WIFI网络连接失败的情况下,不需要人工干预,系统根据应用层配置要求自动切换其它可用的接入点访问网络;如果WIFI恢复使用状态,系统自动切回WIFI网络。
附图说明
为使本发明的目的、技术方案和优点更加清楚明白,下面将结合附图对本发明的实施例进行详细说明。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任意组合。
图1是本发明WIFI同步APN网络多通道并发上网并自动优选WIFI联网系统模块的结构示意图。
图2是本发明WIFI同步APN网络多通道并发上网并自动优选WIFI联网的相关通道信息模型结构示意图。
具体实施方式
实施例1
参阅图1。在以下描述的最佳实施例中,支WIFI同步APN网络多通道并发上网并自动优选WIFI联网系统模块,依次包括应用层、联网模块、网络监测管理模块、驱动模块和WIFI模块;其中,应用层包含移动终端的操作系统或应用软件;驱动模块用来进行APN联网,WIFI模块用来进行WIFI网络联网。联网模块预先设定多个联网通道,每个联网通道对应一个WIFI或APN网络的数据连接。
在移动终端上网过程中,联网模块接收到应用层下发的联网指令后,通过对联网命令中网络通道类型参数的解析,根据应用层的要求进行一路上网通道的连接或多路上网通道的连接。WIFI的连接请求通过WIFI模块进行联网,APN的连接请求通过驱动模块进行联网。
网络通道类型可以标识WIFI通道和APN通道,APN通道包含APN通道参数配置信息;不同的APN通道参数标识为不同的APN通道。APN通道参数包括但不限于接入点名称、QOS等级、联网协议等等
联网模块在接收到应用层下发的每个联网指令后,根据上述联网指令依次创建或分配至一路或多路虚拟网络单元,虚拟网络单元通过驱动模块或WIFI模块向移动基站或WIFI网络发送联网请求;当联网模块收到驱动模块或WIFI 模块传回的联网成功的消息后,联网模块将每个成功联网消息中的参数设置到上述创建或分配的虚拟网络单元上。在一路或多路虚拟网络单元创建或分配完成后,应用层再次发起另一个不同的联网请求,联网模块将再次创建或分配一路新的与原有虚拟网络单元同时存在的虚拟网络单元,并继续等待下次联网请求。
网络监测管理模块根据应用层联网的要求,对所有运行网络进行监测,在发现WIFI网络运行出现阻塞的情况下,根据应用层的联网要求进行路由管理和网络连接信息的管理。
WIFI网络连接建立以后,网络监测管理模块通过定时发送监测包的形式对WIFI网络运行进行状态监测;一旦发现阻塞,网络监测管理模块查看应用层的联网要求,在应用层要求WIFI与APN网络并发联网的前提下,网络监测管理模块自动将APN联网通道CMNET或CMWAP激活,并修改应用程序使用联网通道的默认路径,将联网路由标识为新的APN联网通道。
在应用层要求WIFI与APN网络并发联网的前提下,当当前的网络连接使用APN联网通道上网时,网络监测管理模块通过向WIFI通道发送监测包的形式定时查询WIFI网络的连接状态,一旦WIFI可用,立即修改应用程序使用联网通道的默认路径,自动将联网路由标识为WIFI网络,同时断开APN联网通道。
WIFI网络与APN联网通道并发联网的规范参照运营商的相关规定,例如,中国移动WIFI可以与CMNET或CMWAP并发,中国电信WIFI可以与CTNET或CTWAP并发。由于联网通道可以预设更多的联网通道,在WIFI网络与CMNET或CMWAP并发联网的同时,不排斥其它APN网络的并发接入,如 彩信、CMSIP等其它APN网络。
实施例2
阅图2。在以下描述的最佳实施例中,支持WIFI同步APN网络多通道并发上网并自动优选WIFI联网的相关通道信息模型,在上述实施例1中的联网模块中,内嵌了网络配置信息模块和网络连接信息模块。
网络配置信息模块用来记录应用层对网络通道的相关联网指令,包括但不限于通道号、网络通道类型、APN参数设置、网络的开启、断开、关闭等指令。网络连接信息模块记录当前网络的实际连接和通道使用信息。
在为应用层修改网络配置信息的接口函数中,提供了为移动终端用户配置、修改上网通道模式的人机界面,使移动终端用户可以通过人机界面修改和查询多个联网通道的参数和上网模式的设定。上网模式可以包括单通道联网模式或多通道联网模式。
应用层的联网请求可以由移动终端的操作系统或应用层程序发起;移动终端的操作系统的联网请求通过移动终端用户由人机界面修改网络配置信息发起;应用程序的联网请求通过联网模块的相应接口函数发起。
联网模块接收应用层的联网请求,联网成功后,联网模块将联网信息写入网络配置信息模块和网络连接信息模块,供应用层进行查询。
网络监测管理模块通过定时发送监测包的形式对WIFI网络运行进行状态监测;一旦发现阻塞,网络监测管理模块查看网络配置模块中应用层的联网要求,在应用层要求WIFI与APN网络并发联网的前提下,网络监测管理模块自动将APN联网通道CMNET或CMWAP激活,并修改应用程序使用联网通道的默认路径,将联网路由标识为新的APN联网通道。同时,网络监测管理 模块修改网络连接信息模块将WIFI标识为不可用,APN联网通道标识为使用中,供应用层查询当前的网络连接通道状态。
在网络配置信息模块中应用层要求WIFI与APN网络并发联网的前提下,当当前的网络连接使用APN联网通道上网时,网络监测管理模块通过向WIFI通道发送监测包的形式定时查询WIFI网络的连接状态,一旦WIFI可用,立即修改应用程序使用联网通道的默认路径,自动将联网路由标识为WIFI网络,同时断开APN联网通道,并修改网络连接信息模块,将WIFI标识为可用,APN联网通道标识为断开,供应用层查询当前的网络连接通道状态。
利用联网模块中设置的查询接口,移动终端可以通过人机界面或应用程序查询网络连接信息模块中当前网络的实际连接和通道使用信息。
利用联网模块中设置的接口,移动终端可以通过人机界面或应用程序查询或设置网络配置信息模块中当前网络的通道设置和联网设置等信息。
以上所述的仅是本发明的优选实施例。应当指出,对于本领域的普通技术人员来说,在不脱离本发明原理的前提下,还可以作出若干变形和改进,比如所述各类信息可以存储于不同的软件功能模块中,可选地,上述实施例终端各模块/单元可以采用硬件的形式实现,也可采用软件功能模块的形式实现。本发明不限制于任何特定形式的硬件和软件的结合,亦属于本发明的范畴,这些变更和改变应视为属于本发明的保护范围。

Claims (10)

  1. 一种WIFI同步APN网络多通道并发上网并自动优选WIFI联网的方法,具有如下技术特征:在应用层与驱动模块和WIFI模块之间设置联网模块和网络监测管理模块;在移动终端上网过程中,联网模块接收应用层下发的联网指令,解析联网指令中的网络通道类型参数,将WIFI通道和不同的APN通道参数标识为不同的联网通道,并根据应用层的联网指令进行一路或多路上网通道的连接;网络监测模块定时侦测网络,在WIFI和移动APN网络并发联网情况下,自动切换网络通道并优先选择WIFI通道。
  2. 如权利要求1所述的WIFI同步APN网络多通道并发上网并自动优选WIFI联网的方法,其特征在于:移动终端可以通过人机界面或应用程序查询当前网络的实际连接和通道使用信息。
  3. 如权利要求1所述的WIFI同步APN网络多通道并发上网并自动优选WIFI联网的方法,其特征在于:网络监测管理模块根据网络配置信息的要求,对所有运行网络进行监测,在发现WIFI网络运行出现阻塞的情况下,根据应用层的配置要求进行路由管理和网络连接信息的管理。
  4. 如权利要求1所述的WIFI同步APN网络多通道并发上网并自动优选WIFI联网的方法,其特征在于:联网模块在接收到应用层下发的每个联网指令后,根据上述联网指令依次创建或分配至一路或多路虚拟网络单元,虚拟网络单元通过驱动模块或WIFI模块向移动基站或WIFI网络发送联网请求。
  5. 如权利要求1所述的WIFI同步APN网络多通道并发上网并自动优选WIFI联网的方法,其特征在于:移动终端用户通过人机界面或应用程序修改 和查询多个联网通道的参数和上网模式的设定,上网模式可以包括单通道联网模式或多通道联网模式。
  6. 如权利要求4所述的WIFI同步APN网络多通道并发上网并自动优选WIFI联网的方法,其特征在于:在一路或多路虚拟网络单元创建或分配完成后,应用层再次发起另一个不同的联网请求,联网模块将再次创建或分配一路新的与原有虚拟网络单元同时存在的虚拟网络单元,并继续等待下次联网请求。
  7. 如权利要求1所述的WIFI同步APN网络多通道并发上网并自动优选WIFI联网的方法,其特征在于:WIFI网络连接建立以后,网络监测管理模块通过定时发送监测包的形式对WIFI网络运行进行状态监测;一旦发现阻塞,网络监测管理模块查看网络配置信息,在应用层要求WIFI与APN网络并发联网的前提下,网络监测管理模块自动将APN联网通道激活,并修改应用程序使用联网通道的默认路径,将联网路由标识为新的APN联网通道,同时,网络监测管理模块修改网络连接信息将WIFI标识为不可用,APN联网通道标识为使用中,供应用层查询当前的网络连接通道状态。
  8. 如权利要求1所述的WIFI同步APN网络多通道并发上网并自动优选WIFI联网的方法,其特征在于:在应用层要求WIFI与APN网络并发联网的前提下,在当前的网络连接使用APN联网通道上网时,网络监测管理模块通过向WIFI通道发送监测包的形式定时查询WIFI网络的连接状态,一旦WIFI可用,立即修改应用程序使用联网通道的默认路径,自动将联网路由标识为WIFI网络,同时断开APN联网通道,并修改网络连接信息,将WIFI标识为可用,APN联网通道标识为断开,供应用层查询当前的网络连接通道状态。
  9. 如权利要求1所述的WIFI同步APN网络多通道并发上网并自动优选WIFI联网的方法,其特征在于:应用层发起的联网命令中的网络通道类型参数标识WIFI通道和APN通道,APN通道包含APN通道参数配置信息;不同的APN通道参数标识为不同的APN通道,APN通道参数包括但不限于接入点名称、QOS等级、联网协议。
  10. 如权利要求1所述的WIFI同步APN网络多通道并发上网并自动优选WIFI联网的方法,联网模块预先设定多个联网通道,每个联网通道对应一个WIFI或APN网络的数据连接;由于联网通道可以预设更多的联网通道,在WIFI网络与CMNET或CMWAP并发联网的同时,不排斥其它APN网络的并发接入,如彩信、CMSIP等其它APN网络。
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