WO2022170641A1 - 一种智能路由选择方法、系统、存储介质及终端设备 - Google Patents

一种智能路由选择方法、系统、存储介质及终端设备 Download PDF

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Publication number
WO2022170641A1
WO2022170641A1 PCT/CN2021/077507 CN2021077507W WO2022170641A1 WO 2022170641 A1 WO2022170641 A1 WO 2022170641A1 CN 2021077507 W CN2021077507 W CN 2021077507W WO 2022170641 A1 WO2022170641 A1 WO 2022170641A1
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network
bandwidth
wan
delay
intelligent
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PCT/CN2021/077507
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English (en)
French (fr)
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吴宇奇
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惠州Tcl移动通信有限公司
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W40/00Communication routing or communication path finding
    • H04W40/02Communication route or path selection, e.g. power-based or shortest path routing
    • H04W40/12Communication route or path selection, e.g. power-based or shortest path routing based on transmission quality or channel quality
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W40/00Communication routing or communication path finding
    • H04W40/02Communication route or path selection, e.g. power-based or shortest path routing
    • H04W40/18Communication route or path selection, e.g. power-based or shortest path routing based on predicted events
    • 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 disclosure relates to the technical field of routing, and in particular, to an intelligent routing method, system, storage medium and terminal device.
  • CPE Customer Premise Equipment
  • CPE Customer Premise Equipment
  • the route selection is basically based on the default route of the WAN port if there is a WAN port, and the cellular data if there is no WAN port, or, like a smartphone, reminds the user whether to switch to cellular when there is no network in the WAN port. data.
  • the advantage of this is that it is simple, stable, and less error-prone.
  • the WAN port network cannot meet the network requirements of end users, such as real-time video, games, and high-definition online video.
  • data traffic is getting cheaper and cheaper, and many operators have even withdrawn from unlimited traffic packages.
  • the cellular data latency is small and the broadband is large.
  • 5G the advantages of cellular data are becoming more and more obvious. Clearly, previous solutions could not take advantage of these advantages of cellular data more intelligently.
  • the purpose of the present disclosure is to provide an intelligent routing selection method, system, storage medium and terminal equipment, aiming at solving the problem that the terminal equipment is not intelligent enough in routing selection, and does not fully utilize the cellular data delay small broadband Big and other advantages.
  • An intelligent routing method comprising the steps of:
  • Routes are selected based on current network conditions, including WAN networks and cellular networks.
  • the current network condition includes whether the current route can browse the Internet.
  • the intelligent route selection method wherein the step of selecting a route according to the current network condition includes:
  • the cellular network can browse the Internet, select the cellular data as the default route;
  • the cellular network cannot browse the Internet, and the WAN network can browse the Internet, select the WAN network as the default route.
  • the intelligent route selection method wherein after the default route is determined, the method further comprises the steps of:
  • the different types of traffic include delay type traffic and bandwidth type traffic.
  • the delay type traffic includes real-time video, real-time voice and games.
  • bandwidth class traffic includes non-real-time video, non-real-time voice, and FTP protocol download.
  • the intelligent route selection method wherein the step of combining the default route with the QOS to perform priority processing on different types of traffic requests includes:
  • QOS is implemented on the default route, priority is given to processing delay traffic requests, and bandwidth traffic requests are processed when the network is idle.
  • the intelligent routing method wherein, in the step of processing bandwidth class traffic requests under the condition of network idle, the bandwidth for processing bandwidth class traffic requests is less than the full bandwidth of the default route.
  • the intelligent route selection method wherein the step of selecting a route according to the current network condition further comprises:
  • both the WAN network and the cellular network can browse the Internet, obtain the index parameters of the WAN network and the cellular network;
  • corresponding routes are selected to process different types of traffic requests.
  • the index parameters include delay and bandwidth
  • the different types of traffic include delay-type traffic and bandwidth-type traffic.
  • the intelligent route selection method wherein the step of selecting a corresponding route to process different types of traffic requests according to the index parameter includes:
  • the bandwidth of the WAN network is higher than the bandwidth of the cellular network, and the delay of the WAN network is greater than the delay of the cellular network, the WAN network is selected to process bandwidth-type traffic requests, and the cellular network is selected to process delay-type traffic requests.
  • the intelligent route selection method wherein the step of selecting a corresponding route to process different types of traffic requests according to the index parameter includes:
  • the bandwidth of the WAN network is lower than the bandwidth of the cellular network, and the delay of the WAN network is smaller than the delay of the cellular network, the cellular network is selected to process bandwidth-type traffic requests, and the WAN network is selected to process delay-type traffic requests.
  • the intelligent route selection method wherein the step of selecting a corresponding route to process different types of traffic requests according to the index parameter includes:
  • bandwidth of the WAN network is higher than the bandwidth of the cellular network, and the delay of the WAN network is smaller than the delay of the cellular network, QOS is implemented on the WAN network, and the delay-type traffic requests are preferentially processed, and the bandwidth-type traffic is processed when the network is idle. ask.
  • the intelligent route selection method wherein the step of selecting a corresponding route to process different types of traffic requests according to the index parameter includes:
  • bandwidth of the WAN network is lower than the bandwidth of the cellular network, and the delay of the WAN network is greater than the delay of the cellular network, QOS is implemented on the cellular network, and the delay-type traffic requests are preferentially processed, and the bandwidth-type traffic is processed when the network is idle. ask.
  • Described intelligent route selection method wherein, described according to described index parameter, the step that selects corresponding route to process different types of traffic requests comprises:
  • the bandwidth of the WAN network is equal to the bandwidth of the cellular network, the cellular network is selected to process delay-type traffic requests, and the WAN network is selected to process bandwidth-type traffic requests.
  • the intelligent routing method wherein when the intelligent routing enabling instruction is received, the step of detecting the current network condition further includes:
  • An intelligent routing system comprising:
  • the network monitoring module is used to detect the current network condition when receiving the intelligent routing opening command
  • the routing module is used to select a route according to the current network condition, and the route includes a WAN network and a cellular network.
  • a storage medium wherein the storage medium stores one or more programs, and the one or more programs can be executed by one or more processors to implement the steps in the intelligent routing method according to the present disclosure .
  • a terminal device comprising a processor adapted to implement various instructions; and a storage medium adapted to store a plurality of instructions, wherein the instructions are adapted to be loaded by the processor and execute the steps in the intelligent routing method of the present disclosure .
  • the present disclosure provides an intelligent route selection method.
  • an intelligent route opening instruction is received, the current network condition is detected; the route is selected according to the current network condition, and the route includes a WAN network. and cellular networks.
  • the present disclosure performs intelligent selection of routes by dynamically detecting network conditions, and can obtain a good network experience even in the case of poor WAN network conditions.
  • FIG. 1 is a flowchart of a preferred embodiment of an intelligent routing method disclosed.
  • FIG. 2 is a block diagram of a preferred embodiment of an intelligent routing system disclosed.
  • FIG. 3 is a schematic block diagram of a terminal device of the present disclosure.
  • the present disclosure provides an intelligent routing method, system, storage medium and terminal device.
  • the present disclosure will be further described below in detail. It should be understood that the specific embodiments described herein are only used to explain the present disclosure, but not to limit the present disclosure.
  • FIG. 1 is a flowchart of a preferred embodiment of an intelligent routing method provided by the present disclosure. As shown in the figure, it includes steps:
  • the user is provided with routing setting options on the interface of the terminal device.
  • routing setting options usually set on the interface of the terminal device: 1.
  • the intelligent routing setting option in this The option is to ask the user to set the data plan to unlimited data.
  • This embodiment performs real-time monitoring on the routing setting instruction of the terminal device.
  • the user selects the intelligent routing setting option that is, the terminal device receives the intelligent routing enabling instruction, and at this time, the current network status of the intelligent terminal is monitored. Detect and select appropriate routes to process different types of traffic requests according to the current network conditions.
  • the present disclosure performs intelligent selection of routes by dynamically detecting network conditions, and can also obtain a good network experience in the case of poor WAN network conditions.
  • the current network condition includes whether the current route can browse the Internet, and the step of selecting a route according to the current network condition includes:
  • the cellular network can browse the Internet, select the cellular data as the default route;
  • the cellular network cannot browse the Internet, and the WAN network can browse the Internet, select the WAN network as the default route.
  • the WAN port on the router is used to connect to an external network (public network), or to connect a device of a broadband operator.
  • the WAN port is used to connect the Moden (cat) when the telephone line accesses the Internet; when the optical fiber accesses the Internet, the WAN port is used to connect the optical modem; when the network cable is connected to the home, the WAN port is used to connect the home network cable; Refers to the network that accesses the Internet through the WAN port.
  • Cellular network or mobile network is a kind of mobile communication hardware architecture, which divides the service area of mobile phone into small sub-areas of regular hexagon, and each cell has a base station, forming a structure that resembles a "cellular”.
  • the cellular network consists of the following three parts: mobile station, base station subsystem, and network subsystem.
  • the mobile station is our network terminal equipment, such as mobile phones or some cellular industrial control equipment;
  • the base station subsystem includes the mobile base stations (large Towers), wireless transceiver equipment, dedicated networks (usually optical fibers), countless digital devices, etc., the base station subsystem can be regarded as a converter between wireless networks and wired networks.
  • the cellular data is selected as the default route, that is, the cellular network handles different types of traffic requests; if the cellular network cannot browse the Internet, the WAN network can browse the Internet.
  • the WAN network is selected as the default route, that is, the WAN network is used to handle different types of traffic requests.
  • the default route after the default route is determined, it further includes the steps:
  • QOS Quality of Service
  • a network that can use various basic technologies to provide better service capabilities for specified network communications. It is a network security mechanism and is used to solve network delay and A technique for problems such as blocking. Under normal circumstances, if the network is only used for a specific application system without time limit, QOS is not required, such as Web application, or E-mail settings, etc., but it is very necessary for key applications and multimedia applications.
  • QOS Quality of Service
  • all data streams may be discarded; in order to meet the user's requirements for different service qualities of different applications, the network needs to allocate and schedule resources according to the user's requirements, and provide different data streams for different data streams.
  • High quality of service prioritize the processing of important and real-time data packets; provide a lower processing priority for ordinary data packets that are not real-time, and even discard them when the network is congested, and QOS emerges as the times require.
  • a device that supports the QOS function can provide transmission quality services; for a certain type of data flow, it can be given a certain level of transmission priority to identify its relative importance, and use the various priorities provided by the device. Mechanisms such as forwarding strategies and congestion avoidance provide special transmission services for these data streams.
  • QOS in the network environment, different types of traffic requests are processed in priority order, which increases the predictability of network performance, can effectively allocate network bandwidth, and utilize network resources more reasonably.
  • the different types of traffic include delay-type traffic and bandwidth-type traffic.
  • the different types of traffic can be distinguished according to the header of the network protocol, wherein a request with a high requirement for delay is called a delay-type traffic request, and a request with a high requirement on bandwidth is called a bandwidth-type traffic request.
  • the delay type traffic includes, but is not limited to, real-time video, real-time voice, and games;
  • the bandwidth type traffic includes, but is not limited to, non-real-time video, non-real-time voice, and FTP protocol download.
  • the step of combining the default route with QOS to perform priority processing on different types of traffic requests includes: implementing QOS on the default route, preferentially processing delayed traffic requests, Handle bandwidth-type traffic requests in idle conditions.
  • the default route is the WAN network
  • QOS is implemented on the WAN network
  • delay-type traffic requests are preferentially processed through the WAN network
  • bandwidth-type traffic requests are processed under the condition that the WAN network is idle, wherein the processing bandwidth The bandwidth requested by this type of traffic is less than the full bandwidth of the default route, so as not to occupy the entire bandwidth and block requests for delayed type traffic.
  • the default route is the cellular network
  • QOS is implemented on the cellular network
  • the delay type traffic request is processed preferentially through the cellular network
  • the bandwidth type traffic request is processed under the condition that the cellular network is idle.
  • the bandwidth is less than the full bandwidth of the default route, so as not to occupy the full bandwidth and block requests for delayed traffic.
  • the step of selecting a route according to the current network condition further includes:
  • both the WAN network and the cellular network can browse the Internet, obtain the index parameters of the WAN network and the cellular network;
  • corresponding routes are selected to process different types of traffic requests.
  • the indicator parameters include delay and bandwidth
  • the different types of traffic include delay-type traffic and bandwidth-type traffic; if the bandwidth of the WAN network is higher than the bandwidth of the cellular network, the delay of the WAN network is greater than that of the cellular network. If the bandwidth of the WAN network is lower than the bandwidth of the cellular network, and the delay of the WAN network is smaller than the delay of the cellular network, then Select the cellular network to handle bandwidth-type traffic requests, and select the WAN network to handle delay-type traffic requests.
  • the corresponding network can be used for processing according to different types of traffic requests, so as to achieve the best data processing effect.
  • the step of selecting corresponding routes to process different types of traffic requests according to the indicator parameters further includes:
  • bandwidth of the WAN network is higher than the bandwidth of the cellular network, and the delay of the WAN network is smaller than the delay of the cellular network
  • QOS is implemented on the WAN network, and the delay-type traffic requests are preferentially processed, and the bandwidth-type traffic is processed when the network is idle.
  • Request if the bandwidth of the WAN network is lower than the bandwidth of the cellular network, and the delay of the WAN network is greater than the delay of the cellular network, QOS will be implemented on the cellular network, and the delay traffic request will be prioritized, and the bandwidth will be processed when the network is idle. Class traffic requests.
  • the step of selecting corresponding routes to process different types of traffic requests according to the indicator parameters includes:
  • the cellular network is selected to process delay-type traffic requests, and the WAN network is selected to process bandwidth-type traffic requests. Because the cellular network has small delay and large bandwidth, and with the promotion of 5G, the advantages of the cellular network are becoming more and more obvious. Therefore, in this embodiment, the cellular network is preferentially selected to process the delay type traffic request, and the WAN network is selected to process the bandwidth type. traffic request.
  • an intelligent routing system is also provided, as shown in FIG. 2 , which includes:
  • the network monitoring module 1 is used to detect the current network condition when receiving the intelligent routing opening instruction
  • the routing module 2 is configured to select a route according to the current network condition, and the route includes a WAN network and a cellular network.
  • the user is provided with routing setting options on the interface of the terminal device.
  • the interface of the terminal device is usually set as follows: 1. The setting option of always using the WAN network first; 2. Intelligent Routing setting option, in this option, the user is required to set the traffic plan to unlimited traffic.
  • This embodiment performs real-time monitoring on the routing setting instruction of the terminal device.
  • the intelligent routing setting option that is, the terminal device receives the intelligent routing enabling instruction, and at this time, the current network status of the intelligent terminal is monitored. Detect and select appropriate routes to process different types of traffic requests according to the current network conditions.
  • the present disclosure performs intelligent selection of routes by dynamically detecting network conditions, and can also obtain a good network experience in the case of poor WAN network conditions.
  • the routing module 2 is further configured to: if the WAN network cannot browse the Internet, but the cellular network can browse the Internet, select the cellular data as the default route; if the cellular network cannot browse the Internet, the WAN network can To browse the Internet, select the WAN network as the default route.
  • the WAN port on the router is used to connect to an external network (public network), or to connect a device of a broadband operator.
  • the WAN port is used to connect the Moden (cat) when the telephone line accesses the Internet; when the optical fiber accesses the Internet, the WAN port is used to connect the optical modem; when the network cable is connected to the home, the WAN port is used to connect the home network cable; Refers to the network that accesses the Internet through the WAN port.
  • Cellular network or mobile network is a kind of mobile communication hardware architecture, which divides the service area of mobile phone into small sub-areas of regular hexagon, and each cell has a base station, forming a structure that resembles a "cellular”.
  • the cellular network consists of the following three parts: mobile station, base station subsystem, and network subsystem.
  • the mobile station is our network terminal equipment, such as mobile phones or some cellular industrial control equipment;
  • the base station subsystem includes the mobile base stations (large Towers), wireless transceiver equipment, dedicated networks (usually optical fibers), countless digital devices, etc., the base station subsystem can be regarded as a converter between wireless networks and wired networks.
  • the cellular data is selected as the default route, that is, the cellular network handles different types of traffic requests; if the cellular network cannot browse the Internet, the WAN network can browse the Internet.
  • the WAN network is selected as the default route, that is, the WAN network is used to handle different types of traffic requests.
  • the default route is combined with QOS to perform priority processing on traffic requests of different types.
  • QOS Quality of Service
  • a network that can use various basic technologies to provide better service capabilities for specified network communications. It is a network security mechanism and is used to solve network delay and A technique for problems such as blocking. Under normal circumstances, if the network is only used for a specific application system without time limit, QOS is not required, such as Web application, or E-mail settings, etc., but it is very necessary for key applications and multimedia applications.
  • QOS Quality of Service
  • all data streams may be discarded; in order to meet the user's requirements for different service qualities of different applications, the network needs to allocate and schedule resources according to the user's requirements, and provide different data streams for different data streams.
  • High quality of service prioritize the processing of important and real-time data packets; provide a lower processing priority for ordinary data packets that are not real-time, and even discard them when the network is congested, and QOS emerges as the times require.
  • a device that supports the QOS function can provide transmission quality services; for a certain type of data flow, it can be given a certain level of transmission priority to identify its relative importance, and use the various priorities provided by the device. Mechanisms such as forwarding strategies and congestion avoidance provide special transmission services for these data streams.
  • QOS in the network environment, different types of traffic requests are processed in priority order, which increases the predictability of network performance, can effectively allocate network bandwidth, and utilize network resources more reasonably.
  • the different types of traffic include delay traffic and bandwidth traffic.
  • the different types of traffic can be distinguished according to the header of the network protocol, wherein a request with a high requirement for delay is called a delay-type traffic request, and a request with a high requirement on bandwidth is called a bandwidth-type traffic request.
  • the delay type traffic includes, but is not limited to, real-time video, real-time voice, and games;
  • the bandwidth type traffic includes, but is not limited to, non-real-time video, non-real-time voice, and FTP protocol download.
  • QOS is implemented on the default route, the delay type traffic request is preferentially processed, and the bandwidth type traffic request is processed under the condition of network idle.
  • the default route is the WAN network
  • QOS is implemented on the WAN network
  • delay-type traffic requests are preferentially processed through the WAN network
  • bandwidth-type traffic requests are processed under the condition that the WAN network is idle, wherein the processing bandwidth The bandwidth requested by this type of traffic is less than the full bandwidth of the default route, so as not to occupy the entire bandwidth and block requests for delayed type traffic.
  • the default route is the cellular network
  • QOS is implemented on the cellular network
  • the delay type traffic request is processed preferentially through the cellular network
  • the bandwidth type traffic request is processed under the condition that the cellular network is idle.
  • the bandwidth is less than the full bandwidth of the default route, so as not to occupy the full bandwidth and block requests for delayed traffic.
  • a storage medium is also provided, wherein the storage medium stores one or more programs, and the one or more programs can be executed by one or more processors to realize the implementation as disclosed in the present disclosure. Describe the steps in the intelligent routing method.
  • a terminal device is also provided, as shown in FIG. 3 , which includes at least one processor (processor) 20; a display screen 21; and a memory (memory) 22, and may also include a communications interface (Communications Interface) 23 and bus 24.
  • the processor 20 , the display screen 21 , the memory 22 and the communication interface 23 can communicate with each other through the bus 24 .
  • the display screen 21 is set to display a user guide interface preset in the initial setting mode.
  • the communication interface 23 can transmit information.
  • the processor 20 may invoke logic instructions in the memory 22 to perform the methods in the above-described embodiments.
  • logic instructions in the memory 22 can be implemented in the form of software functional units and can be stored in a computer-readable storage medium when sold or used as an independent product.
  • the memory 22 may be configured to store software programs and computer-executable programs, such as program instructions or modules corresponding to the methods in the embodiments of the present disclosure.
  • the processor 20 executes functional applications and data processing by running the software programs, instructions or modules stored in the memory 22, ie, implements the methods in the above embodiments.
  • the memory 22 may include a storage program area and a storage data area, wherein the storage program area may store an operating system, an application program required for at least one function; the storage data area may store data created according to the use of the terminal device, and the like. Additionally, memory 22 may include high-speed random access memory, and may also include non-volatile memory. For example, U disk, mobile hard disk, read-only memory (Read-Only Memory, ROM), random access memory (Random Access Memory, RAM), magnetic disk or optical disk and other media that can store program codes, or temporary state storage medium.
  • U disk U disk, mobile hard disk, read-only memory (Read-Only Memory, ROM), random access memory (Random Access Memory, RAM), magnetic disk or optical disk and other media that can store program codes, or temporary state storage medium.
  • the terminal device includes a processor 20, and the processor 20 can call logic instructions in the memory 22 to execute the following instructions:
  • Routes are selected based on current network conditions, including WAN networks and cellular networks.
  • the user is provided with routing setting options on the interface of the terminal device.
  • routing setting options usually set on the interface of the terminal device: 1.
  • the intelligent routing setting option in this The option is to ask the user to set the data plan to unlimited data.
  • This embodiment performs real-time monitoring on the routing setting instruction of the terminal device.
  • the user selects the intelligent routing setting option that is, the terminal device receives the intelligent routing enabling instruction, and at this time, the current network status of the intelligent terminal is monitored. Detect and select appropriate routes to process different types of traffic requests according to the current network conditions.
  • the present disclosure performs intelligent selection of routes by dynamically detecting network conditions, and can also obtain a good network experience in the case of poor WAN network conditions.
  • the terminal device includes a processor 20, and the processor 20 can call logic instructions in the memory 22 to execute the following instructions:
  • the cellular network can browse the Internet, select the cellular data as the default route;
  • the cellular network cannot browse the Internet, and the WAN network can browse the Internet, select the WAN network as the default route.
  • the WAN port on the router is used to connect to an external network (public network), or to connect a device of a broadband operator.
  • the WAN port is used to connect the Moden (cat) when the telephone line accesses the Internet; when the optical fiber accesses the Internet, the WAN port is used to connect the optical modem; when the network cable is connected to the home, the WAN port is used to connect the home network cable; Refers to the network that accesses the Internet through the WAN port.
  • Cellular network or mobile network is a kind of mobile communication hardware architecture, which divides the service area of mobile phone into small sub-areas of regular hexagon, and each cell has a base station, forming a structure that resembles a "cellular”.
  • the cellular network consists of the following three parts: mobile station, base station subsystem, and network subsystem.
  • the mobile station is our network terminal equipment, such as mobile phones or some cellular industrial control equipment;
  • the base station subsystem includes the mobile base stations (large Towers), wireless transceiver equipment, dedicated networks (usually optical fibers), countless digital devices, etc., the base station subsystem can be regarded as a converter between wireless networks and wired networks.
  • the cellular data is selected as the default route, that is, the cellular network handles different types of traffic requests; if the cellular network cannot browse the Internet, the WAN network can browse the Internet.
  • the WAN network is selected as the default route, that is, the WAN network is used to handle different types of traffic requests.
  • the terminal device may be any device including a touch screen, such as a mobile phone and a tablet.
  • the present disclosure provides an intelligent routing method, when receiving an intelligent routing enabling instruction, detecting the current network condition; selecting a route according to the current network condition, and the route includes a WAN network and a cellular network.
  • the present disclosure performs intelligent selection of routes by dynamically detecting network conditions, and can also obtain a good network experience in the case of poor WAN network conditions.

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Abstract

本公开公开了一种智能路由选择方法、系统、存储介质及终端设备,其中,方法包括步骤:当接收到智能路由开启指令时,对当前网络状况进行检测;根据当前网络状况选择路由,所述路由包括WAN网络和蜂窝网络。本公开通过动态检测网络状况,对路由进行智能选择,在WAN网络状况不佳的情况下,一样能获得良好的网络体验。

Description

一种智能路由选择方法、系统、存储介质及终端设备
优先权
所述PCT专利申请要求申请日为2021年2月9日,申请号为2021101871334的中国专利优先权,本专利申请结合了上述专利的技术方案。
技术领域
本公开涉及路由选择技术领域,尤其涉及一种智能路由选择方法、系统、存储介质及终端设备。
背景技术
客户前置设备(Customer Premise Equipment,CPE)实际上是一种接收移动信号并以无线WIFI信号转发出来的移动信号接入设备,它也是一种将高速4G或者5G信号转换成WIFI信号的设备,可支持同时上网的移动终端数量也较多。CPE可大量应用于农村,城镇、医院、单位、工厂和小区等无线网络接入,能节省铺设有线网络的费用。目前CPE产品可以提供两个或者两个以上的WAN口,一个是传统的路由器WAN口,另一个是蜂窝数据,有些CPE还可以提供外部无线网络(WIFI extender)的WAN口,即路由器可以通过WIFI连接其他路由器来提供网络。
现在路由选择基本都是按照如果有WAN口,就使用WAN口的默认路由,如果没有WAN口就使用蜂窝数据,或者是像智能手机的做法,在WAN口没有网络的时候提醒用户是否切换到蜂窝数据。这样做的优点是简单、稳定,不易出错。然而,由于很多终端用户并没有实现光纤到户,WAN口的网络并不能满足终端用户的网络需求,如实时视频,游戏、高清在线视频等。现在的数据流量越来越便宜,甚至有很多运营商退出无限流量的套餐,蜂窝数据时延小宽带大,且随着5G的推广,蜂窝数据的这种优势越来越明显。显然,以前的方案不能更智能利用蜂窝数据的这些优点。
因此,现有技术还有待于改进和发展。
发明内容
鉴于上述现有技术的不足,本公开的目的在于提供一种智能路由选择方法、系统、存储介质及终端设备,旨在解决终端设备对路由的选择不够智能,没有充分利用蜂窝数据时延小宽带大等优点的问题。
本公开的技术方案如下:
一种智能路由选择方法,其中,包括步骤:
当接收到智能路由开启指令时,对当前网络状况进行检测;
根据当前网络状况选择路由,所述路由包括WAN网络和蜂窝网络。
所述的智能路由选择方法,其中,所述当前网络状况包括当前路由能否浏览因特网。
所述的智能路由选择方法,其中,所述根据当前网络状况选择路由的步骤包括:
若WAN网络不能浏览因特网,蜂窝网络能浏览因特网,则选择蜂窝数据作为默认路由;
若蜂窝网络不能能浏览因特网,WAN网络能浏览因特网,则选择WAN网络作为默认路由。
所述的智能路由选择方法,其中,确定默认路由后,还包括步骤:
将所述默认路由与QOS结合,对不同类型的流量请求进行优先顺序处理。
所述的智能路由选择方法,其中,所述不同类型的流量包括延时类流量和带宽类流量。
所述的智能路由选择方法,其中,所述延时类流量包括实时视频,实时语音和游戏。
所述的智能路由选择方法,其中,所述带宽类流量包括非实时视频、非实时语音、FTP协议下载。
所述的智能路由选择方法,其中,所述将所述默认路由与QOS结合,对不同类型的流量请求进行优先顺序处理的步骤包括:
在默认路由上实行QOS,优先处理延时类流量请求,在网络空闲的条件下处理带宽类流量请求。
所述的智能路由选择方法,其中,所述在网络空闲的条件下处理带宽类流量请求的 步骤中,所述处理带宽类流量请求的带宽小于默认路由的全部带宽。
所述的智能路由选择方法,其中,所述根据当前网络状况选择路由的步骤还包括:
若WAN网络和蜂窝网络均能浏览因特网,则获取WAN网络和蜂窝网络的指标参数;
根据所述指标参数,选择相应的路由处理不同类型的流量请求。
所述的智能路由选择方法,其中,所述指标参数包括延时和带宽,所述不同类型的流量包括延时类流量和带宽类流量。
所述的智能路由选择方法,其中,所述根据所述指标参数,选择相应的路由处理不同类型的流量请求的步骤包括:
若WAN网络的带宽高于蜂窝网络的带宽,WAN网络的延时大于蜂窝网络的延时,则选择WAN网络处理带宽类流量请求,选择蜂窝网络处理延时类流量请求。
所述的智能路由选择方法,其中,所述根据所述指标参数,选择相应的路由处理不同类型的流量请求的步骤包括:
若WAN网络的带宽低于蜂窝网络的带宽,WAN网络的延时小于蜂窝网络的延时,则选择蜂窝网络处理带宽类流量请求,选择WAN网络处理延时类流量请求。
所述的智能路由选择方法,其中,所述根据所述指标参数,选择相应的路由处理不同类型的流量请求的步骤包括:
若WAN网络的带宽高于蜂窝网络的带宽,WAN网络的延时小于蜂窝网络的延时,则在WAN网络上实行QOS,优先处理延时类流量请求,在网络空闲的条件下处理带宽类流量请求。
所述的智能路由选择方法,其中,所述根据所述指标参数,选择相应的路由处理不同类型的流量请求的步骤包括:
若WAN网络的带宽低于蜂窝网络的带宽,WAN网络的延时大于蜂窝网络的延时,则在蜂窝网络上实行QOS,优先处理延时类流量请求,在网络空闲的条件下处理带宽类流量请求。
所述的智能路由选择方法,其中,所述根据所述指标参数,选择相应的路由处理不 同类型的流量请求的步骤包括:
若WAN网络的带宽等于蜂窝网络的带宽,则选择蜂窝网络处理延时类流量请求,选择WAN网络处理带宽类流量请求。
所述的智能路由选择方法,其中,所述当接收到智能路由开启指令时,对当前网络状况进行检测的步骤之前还包括:
对终端设备的路由设置指令进行实时监测。
一种智能路由选择系统,其中,包括:
网络监测模块,用于当接收到智能路由开启指令时,对当前网络状况进行检测;
路由选择模块,用于根据当前网络状况选择路由,所述路由包括WAN网络和蜂窝网络。
一种存储介质,其中,所述存储介质存储有一个或者多个程序,所述一个或者多个程序可被一个或者多个处理器执行,以实现如本公开所述智能路由选择方法中的步骤。
一种终端设备,其中,包括处理器,适于实现各指令;以及存储介质,适于存储多条指令,所述指令适于由处理器加载并执行本公开所述智能路由选择方法中的步骤。
有益效果:相较于现有技术,本公开提供了一种智能路由选择方法,当接收到智能路由开启指令时,对当前网络状况进行检测;根据当前网络状况选择路由,所述路由包括WAN网络和蜂窝网络。本公开通过动态检测网络状况,对路由进行智能选择,在WAN网络状况不佳的情况下,一样能获得良好的网络体验。
附图说明
图1为本公开一种智能路由选择方法较佳实施例的流程图。
图2为本公开一种智能路由选择系统较佳实施例的组成框图。
图3为本公开终端设备的原理框图。
具体实施方式
本公开提供一种智能路由选择方法、系统、存储介质及终端设备,为使本公开的目的、技术方案及效果更加清楚、明确,以下对本公开进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本公开,并不用于限定本公开。
本技术领域技术人员可以理解,除非特意声明,这里使用的单数形式“一”、“一个”、“所述”和“该”也可包括复数形式。应该进一步理解的是,本公开的说明书中使用的措辞“包括”是指存在所述特征、整数、步骤、操作、元件和/或组件,但是并不排除存在或添加一个或多个其他特征、整数、步骤、操作、元件、组件和/或它们的组。应该理解,当我们称元件被“连接”或“耦接”到另一元件时,它可以直接连接或耦接到其他元件,或者也可以存在中间元件。此外,这里使用的“连接”或“耦接”可以包括无线连接或无线耦接。这里使用的措辞“和/或”包括一个或更多个相关联的列出项的全部或任一单元和全部组合。
本技术领域技术人员可以理解,除非另外定义,这里使用的所有术语(包括技术术语和科学术语),具有与本公开所属领域中的普通技术人员的一般理解相同的意义。还应该理解的是,诸如通用字典中定义的那些术语,应该被理解为具有与现有技术的上下文中的意义一致的意义,并且除非像这里一样被特定定义,否则不会用理想化或过于正式的含义来解释。
请参阅图1,图1为本公开提供的一种智能路由选择方法较佳实施例的流程图,如图所示,其包括步骤:
S10、当接收到智能路由开启指令时,对当前网络状况进行检测;
S20、根据当前网络状况选择路由,所述路由包括WAN网络和蜂窝网络。
本实施例中,在终端设备的界面上为用户提供路由设置选项,作为举例,通常在终端设备界面上设置有:1、始终优先使用WAN网络的设置选项;2、智能路由设置选项,在该选项是需要求用户设置流量计划为无限制流量。本实施例对所述终端设备的路由设置指令进行实时监测,当监测到用户选择了智能路由设置选项时,即终端设备接收到了智能路由开启指令,此时对所述智能终端的当前网络状况进行检测,并根据当前网络状况选择合适的路由对不同类型的流量请求进行处理。本公开通过动态检测网络状况,对 路由进行智能选择,在WAN网络状况不佳的情况下,一样能获得良好的网络体验。
在一些具体的实施方式中,所述当前网络状况包括当前路由能否浏览因特网,则所述根据当前网络状况选择路由的步骤包括:
若WAN网络不能浏览因特网,蜂窝网络能浏览因特网,则选择蜂窝数据作为默认路由;
若蜂窝网络不能能浏览因特网,WAN网络能浏览因特网,则选择WAN网络作为默认路由。
在本实施例中,路由器上的WAN口是用来连接外网(公网),或者说是连接宽带运营商的设备的。例如电话线上网时WAN口用来连接Moden(猫);光纤上网时,WAN口用来连接光猫;网线入户上网时,WAN口用来连接入户网线;本实施例所述WAN网络是指通过WAN口来实现访问因特网的网络。蜂窝网络或移动网络(Cellular network)是一种移动通信硬件架构,把移动电话的服务区分为一个个正六边形的小子区,每个小区设一个基站,形成了形状酷似"蜂窝"的结构,因而把这种移动通信方式称为蜂窝移动通信方式。蜂窝网络组成主要有以下三部分:移动站,基站子系统,网络子系统.移动站就是我们的网络终端设备,比如手机或者一些蜂窝工控设备;基站子系统包括我们日常见到的移动基站(大铁塔)、无线收发设备、专用网络(一般是光纤)、无数的数字设备等等的,可以把基站子系统看作是无线网络与有线网络之间的转换器。
在本实施中,若WAN网络不能浏览因特网,蜂窝网络能浏览因特网,则选择蜂窝数据作为默认路由,即通过蜂窝网络来处理不同类型的流量请求;若蜂窝网络不能能浏览因特网,WAN网络能浏览因特网,则选择WAN网络作为默认路由,即通过WAN网络来处理不同类型的流量请求。
在一些具体的实施方式中,确定默认路由后,还包括步骤:
将所述默认路由与QOS结合,对不同类型的流量请求进行优先顺序处理。
具体来讲,QOS(Quality of Service,服务质量)指一个网络能够利用各种基础技术,为指定的网络通信提供更好的服务能力,是网络的一种安全机制,是用来解决网络延迟和阻塞等问题的一种技术。在正常情况下,如果网络只用于特定的无时间限制的应用 系统,并不需要QOS,比如Web应用,或E-mail设置等,但是对关键应用和多媒体应用就十分必要。而当网络发生拥塞的时候,所有的数据流都有可能被丢弃;为满足用户对不同应用不同服务质量的要求,就需要网络能根据用户的要求分配和调度资源,对不同的数据流提供不同的服务质量:对实时性强且重要的数据报文优先处理;对于实时性不强的普通数据报文,提供较低的处理优先级,网络拥塞时甚至丢弃,QOS应运而生。支持QOS功能的设备,能够提供传输品质服务;针对某种类别的数据流,可以为它赋予某个级别的传输优先级,来标识它的相对重要性,并使用设备所提供的各种优先级转发策略、拥塞避免等机制为这些数据流提供特殊的传输服务。本实施例通过在网络环境中配置QOS,对不同类型的流量请求进行优先顺序处理,增加了网络性能的可预知性,并能够有效地分配网络带宽,更加合理地利用网络资源。
在一些实施方式中,所述不同类型的流量包括延时类流量和带宽类流量。所述不同类型的流量可根据网络协议的报头进行区分,其中,对延时要求很高的请求称为延时类流量请求,对带宽要求很高的请求称为带宽类流量请求。作为举例,所述所述延时类流量包括实时视频,实时语音和游戏,但不限于此;所述带宽类流量包括非实时视频、非实时语音和FTP协议下载,但不限于此。
在一些具体的实施方式中,所述将所述默认路由与QOS结合,对不同类型的流量请求进行优先顺序处理的步骤包括:在默认路由上实行QOS,优先处理延时类流量请求,在网络空闲的条件下处理带宽类流量请求。
具体来讲,当默认路由为WAN网络时,则在WAN网络上实行QOS,通过WAN网络优先处理延时类流量请求,在WAN网络空闲的条件下处理带宽类流量请求,其中,所述处理带宽类流量请求的带宽小于默认路由的全部带宽,以免占据全部带宽,堵塞延时类流量的请求。
当默认路由为蜂窝网络时,则在蜂窝网络上实行QOS,通过蜂窝网络优先处理延时类流量请求,在蜂窝网络空闲的条件下处理带宽类流量请求,其中,所述处理带宽类流量请求的带宽小于默认路由的全部带宽,以免占据全部带宽,堵塞延时类流量的请求。
在一些实施方式中,所述根据当前网络状况选择路由的步骤还包括:
若WAN网络和蜂窝网络均能浏览因特网,则获取WAN网络和蜂窝网络的指标参数;
根据所述指标参数,选择相应的路由处理不同类型的流量请求。
本实施例中,所述指标参数包括延时和带宽,所述不同类型的流量包括延时类流量和带宽类流量;若WAN网络的带宽高于蜂窝网络的带宽,WAN网络的延时大于蜂窝网络的延时,则选择WAN网络处理带宽类流量请求,选择蜂窝网络处理延时类流量请求;若WAN网络的带宽低于蜂窝网络的带宽,WAN网络的延时小于蜂窝网络的延时,则选择蜂窝网络处理带宽类流量请求,选择WAN网络处理延时类流量请求。本实施例能够实现根据不同类型的流量请求采用相应的网络来处理,以达到最佳的数据处理效果。
在一些实施方式中,所述根据所述指标参数,选择相应的路由处理不同类型的流量请求的步骤还包括:
若WAN网络的带宽高于蜂窝网络的带宽,WAN网络的延时小于蜂窝网络的延时,则在WAN网络上实行QOS,优先处理延时类流量请求,在网络空闲的条件下处理带宽类流量请求;若WAN网络的带宽低于蜂窝网络的带宽,WAN网络的延时大于蜂窝网络的延时,则在蜂窝网络上实行QOS,优先处理延时类流量请求,在网络空闲的条件下处理带宽类流量请求。
在一些实施方式中,所述根据所述指标参数,选择相应的路由处理不同类型的流量请求的步骤包括:
若WAN网络的带宽等于蜂窝网络的带宽,则选择蜂窝网络处理延时类流量请求,选择WAN网络处理带宽类流量请求。由于蜂窝网络具有时延小带宽大,且随着5G的推广,蜂窝网络的这种优势越来越明显,因此,本实施例优先选择蜂窝网络处理延时类流量请求,选择WAN网络处理带宽类流量请求。
在一些实施方式中,还提供一种智能路由选择系统,如图2所示,其包括:
网络监测模块1,用于当接收到智能路由开启指令时,对当前网络状况进行检测;
路由选择模块2,用于根据当前网络状况选择路由,所述路由包括WAN网络和蜂窝网络。
本实施例提供的智能路由选择系统中,在终端设备的界面上为用户提供路由设置选项,作为举例,通常在终端设备界面上设置有:1、始终优先使用WAN网络的设置选项;2、智能路由设置选项,在该选项是需要求用户设置流量计划为无限制流量。本实施例对所述终端设备的路由设置指令进行实时监测,当监测到用户选择了智能路由设置选项时,即终端设备接收到了智能路由开启指令,此时对所述智能终端的当前网络状况进行检测,并根据当前网络状况选择合适的路由对不同类型的流量请求进行处理。本公开通过动态检测网络状况,对路由进行智能选择,在WAN网络状况不佳的情况下,一样能获得良好的网络体验。
在一些具体的实施方式中,所述路由选择模块2还用于:若WAN网络不能浏览因特网,蜂窝网络能浏览因特网,则选择蜂窝数据作为默认路由;若蜂窝网络不能能浏览因特网,WAN网络能浏览因特网,则选择WAN网络作为默认路由。
在本实施例中,路由器上的WAN口是用来连接外网(公网),或者说是连接宽带运营商的设备的。例如电话线上网时WAN口用来连接Moden(猫);光纤上网时,WAN口用来连接光猫;网线入户上网时,WAN口用来连接入户网线;本实施例所述WAN网络是指通过WAN口来实现访问因特网的网络。蜂窝网络或移动网络(Cellular network)是一种移动通信硬件架构,把移动电话的服务区分为一个个正六边形的小子区,每个小区设一个基站,形成了形状酷似"蜂窝"的结构,因而把这种移动通信方式称为蜂窝移动通信方式。蜂窝网络组成主要有以下三部分:移动站,基站子系统,网络子系统.移动站就是我们的网络终端设备,比如手机或者一些蜂窝工控设备;基站子系统包括我们日常见到的移动基站(大铁塔)、无线收发设备、专用网络(一般是光纤)、无数的数字设备等等的,可以把基站子系统看作是无线网络与有线网络之间的转换器。
在本实施中,若WAN网络不能浏览因特网,蜂窝网络能浏览因特网,则选择蜂窝数据作为默认路由,即通过蜂窝网络来处理不同类型的流量请求;若蜂窝网络不能能浏览因特网,WAN网络能浏览因特网,则选择WAN网络作为默认路由,即通过WAN网络来处理不同类型的流量请求。
在本实施例中,确定默认路由后,将所述默认路由与QOS结合,对不同类型的流 量请求进行优先顺序处理。
具体来讲,QOS(Quality of Service,服务质量)指一个网络能够利用各种基础技术,为指定的网络通信提供更好的服务能力,是网络的一种安全机制,是用来解决网络延迟和阻塞等问题的一种技术。在正常情况下,如果网络只用于特定的无时间限制的应用系统,并不需要QOS,比如Web应用,或E-mail设置等,但是对关键应用和多媒体应用就十分必要。而当网络发生拥塞的时候,所有的数据流都有可能被丢弃;为满足用户对不同应用不同服务质量的要求,就需要网络能根据用户的要求分配和调度资源,对不同的数据流提供不同的服务质量:对实时性强且重要的数据报文优先处理;对于实时性不强的普通数据报文,提供较低的处理优先级,网络拥塞时甚至丢弃,QOS应运而生。支持QOS功能的设备,能够提供传输品质服务;针对某种类别的数据流,可以为它赋予某个级别的传输优先级,来标识它的相对重要性,并使用设备所提供的各种优先级转发策略、拥塞避免等机制为这些数据流提供特殊的传输服务。本实施例通过在网络环境中配置QOS,对不同类型的流量请求进行优先顺序处理,增加了网络性能的可预知性,并能够有效地分配网络带宽,更加合理地利用网络资源。
在本实施例中,所述不同类型的流量包括延时类流量和带宽类流量。所述不同类型的流量可根据网络协议的报头进行区分,其中,对延时要求很高的请求称为延时类流量请求,对带宽要求很高的请求称为带宽类流量请求。作为举例,所述所述延时类流量包括实时视频,实时语音和游戏,但不限于此;所述带宽类流量包括非实时视频、非实时语音和FTP协议下载,但不限于此。
本实施例在默认路由上实行QOS,优先处理延时类流量请求,在网络空闲的条件下处理带宽类流量请求。
具体来讲,当默认路由为WAN网络时,则在WAN网络上实行QOS,通过WAN网络优先处理延时类流量请求,在WAN网络空闲的条件下处理带宽类流量请求,其中,所述处理带宽类流量请求的带宽小于默认路由的全部带宽,以免占据全部带宽,堵塞延时类流量的请求。
当默认路由为蜂窝网络时,则在蜂窝网络上实行QOS,通过蜂窝网络优先处理延时 类流量请求,在蜂窝网络空闲的条件下处理带宽类流量请求,其中,所述处理带宽类流量请求的带宽小于默认路由的全部带宽,以免占据全部带宽,堵塞延时类流量的请求。
在一些实施方式中,还提供一种存储介质,其中,所述存储介质存储有一个或者多个程序,所述一个或者多个程序可被一个或者多个处理器执行,以实现如本公开所述智能路由选择方法中的步骤。
在一些实施方式中,还提供一种终端设备,如图3所示,其包括至少一个处理器(processor)20;显示屏21;以及存储器(memory)22,还可以包括通信接口(Communications Interface)23和总线24。其中,处理器20、显示屏21、存储器22和通信接口23可以通过总线24完成相互间的通信。显示屏21设置为显示初始设置模式中预设的用户引导界面。通信接口23可以传输信息。处理器20可以调用存储器22中的逻辑指令,以执行上述实施例中的方法。
此外,上述的存储器22中的逻辑指令可以通过软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。
存储器22作为一种计算机可读存储介质,可设置为存储软件程序、计算机可执行程序,如本公开实施例中的方法对应的程序指令或模块。处理器20通过运行存储在存储器22中的软件程序、指令或模块,从而执行功能应用以及数据处理,即实现上述实施例中的方法。
存储器22可包括存储程序区和存储数据区,其中,存储程序区可存储操作系统、至少一个功能所需的应用程序;存储数据区可存储根据终端设备的使用所创建的数据等。此外,存储器22可以包括高速随机存取存储器,还可以包括非易失性存储器。例如,U盘、移动硬盘、只读存储器(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、磁碟或者光盘等多种可以存储程序代码的介质,也可以是暂态存储介质。
此外,上述存储介质以及终端设备中的多条指令处理器加载并执行的具体过程在上述方法中已经详细说明,在这里就不再一一陈述。
作为举例,所述终端设备包括处理器20,所述处理器20可以调用存储器22中的逻 辑指令,以执行以下指令:
当接收到智能路由开启指令时,对当前网络状况进行检测;
根据当前网络状况选择路由,所述路由包括WAN网络和蜂窝网络。
本实施例中,在终端设备的界面上为用户提供路由设置选项,作为举例,通常在终端设备界面上设置有:1、始终优先使用WAN网络的设置选项;2、智能路由设置选项,在该选项是需要求用户设置流量计划为无限制流量。本实施例对所述终端设备的路由设置指令进行实时监测,当监测到用户选择了智能路由设置选项时,即终端设备接收到了智能路由开启指令,此时对所述智能终端的当前网络状况进行检测,并根据当前网络状况选择合适的路由对不同类型的流量请求进行处理。本公开通过动态检测网络状况,对路由进行智能选择,在WAN网络状况不佳的情况下,一样能获得良好的网络体验。
作为举例,所述终端设备包括处理器20,所述处理器20可以调用存储器22中的逻辑指令,以执行以下指令:
若WAN网络不能浏览因特网,蜂窝网络能浏览因特网,则选择蜂窝数据作为默认路由;
若蜂窝网络不能能浏览因特网,WAN网络能浏览因特网,则选择WAN网络作为默认路由。
在本实施例中,路由器上的WAN口是用来连接外网(公网),或者说是连接宽带运营商的设备的。例如电话线上网时WAN口用来连接Moden(猫);光纤上网时,WAN口用来连接光猫;网线入户上网时,WAN口用来连接入户网线;本实施例所述WAN网络是指通过WAN口来实现访问因特网的网络。蜂窝网络或移动网络(Cellular network)是一种移动通信硬件架构,把移动电话的服务区分为一个个正六边形的小子区,每个小区设一个基站,形成了形状酷似"蜂窝"的结构,因而把这种移动通信方式称为蜂窝移动通信方式。蜂窝网络组成主要有以下三部分:移动站,基站子系统,网络子系统.移动站就是我们的网络终端设备,比如手机或者一些蜂窝工控设备;基站子系统包括我们日常见到的移动基站(大铁塔)、无线收发设备、专用网络(一般是光纤)、无数的数字设备等等的,可以把基站子系统看作是无线网络与有线网络之间的转换器。
在本实施中,若WAN网络不能浏览因特网,蜂窝网络能浏览因特网,则选择蜂窝数据作为默认路由,即通过蜂窝网络来处理不同类型的流量请求;若蜂窝网络不能能浏览因特网,WAN网络能浏览因特网,则选择WAN网络作为默认路由,即通过WAN网络来处理不同类型的流量请求。
在本实施例中,所述终端设备可以为手机、平板等任一含有触控屏的设备。
需要说明的是,在本文中,术语“包括”、“包含”或者其任何其它变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者系统不仅包括那些要素,而且还包括没有明确列出的其它要素,或者是还包括为这种过程、方法、物品或者系统所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括该要素的过程、方法、物品或者系统中还存在另外的相同要素。
上述本公开实施例序号仅仅为了描述,不代表实施例的优劣。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本公开的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台终端设备(可以是手机,计算机,服务器,空调器,或者网络设备等)执行本公开各个实施例所述的方法。
综上所述,本公开提供了一种智能路由选择方法,当接收到智能路由开启指令时,对当前网络状况进行检测;根据当前网络状况选择路由,所述路由包括WAN网络和蜂窝网络。本公开通过动态检测网络状况,对路由进行智能选择,在WAN网络状况不佳的情况下,一样能获得良好的网络体验。
应当理解的是,本公开的应用不限于上述的举例,对本领域普通技术人员来说,可以根据上述说明加以改进或变换,所有这些改进和变换都应属于本公开所附权利要求的保护范围。

Claims (20)

  1. 一种智能路由选择方法,其特征在于,包括步骤:
    当接收到智能路由开启指令时,对当前网络状况进行检测;
    根据当前网络状况选择路由,所述路由包括WAN网络和蜂窝网络。
  2. 根据权利要求1所述的智能路由选择方法,其特征在于,所述当前网络状况包括当前路由能否浏览因特网。
  3. 根据权利要求2所述的智能路由选择方法,其特征在于,所述根据当前网络状况选择路由的步骤包括:
    若WAN网络不能浏览因特网,蜂窝网络能浏览因特网,则选择蜂窝数据作为默认路由;
    若蜂窝网络不能能浏览因特网,WAN网络能浏览因特网,则选择WAN网络作为默认路由。
  4. 根据权利要求3所述的智能路由选择方法,其特征在于,确定默认路由后,还包括步骤:
    将所述默认路由与QOS结合,对不同类型的流量请求进行优先顺序处理。
  5. 根据权利要求4所述的智能路由选择方法,其特征在于,所述不同类型的流量包括延时类流量和带宽类流量。
  6. 根据权利要求5所述的智能路由选择方法,其特征在于,所述延时类流量包括实时视频,实时语音和游戏。
  7. 根据权利要求5所述的智能路由选择方法,其特征在于,所述带宽类流量包括非实时视频、非实时语音、FTP协议下载。
  8. 根据权利要求5所述的智能路由选择方法,其特征在于,所述将所述默认路由与QOS结合,对不同类型的流量请求进行优先顺序处理的步骤包括:
    在默认路由上实行QOS,优先处理延时类流量请求,在网络空闲的条件下处理带宽类流量请求。
  9. 根据权利要求8所述的智能路由选择方法,其特征在于,所述在网络空闲的条件下处理带宽类流量请求的步骤中,所述处理带宽类流量请求的带宽小于默认路由的全 部带宽。
  10. 根据权利要求1所述的智能路由选择方法,其特征在于,所述根据当前网络状况选择路由的步骤还包括:
    若WAN网络和蜂窝网络均能浏览因特网,则获取WAN网络和蜂窝网络的指标参数;
    根据所述指标参数,选择相应的路由处理不同类型的流量请求。
  11. 根据权利要求10所述的智能路由选择方法,其特征在于,所述指标参数包括延时和带宽,所述不同类型的流量包括延时类流量和带宽类流量。
  12. 根据权利要求11所述的智能路由选择方法,其特征在于,所述根据所述指标参数,选择相应的路由处理不同类型的流量请求的步骤包括:
    若WAN网络的带宽高于蜂窝网络的带宽,WAN网络的延时大于蜂窝网络的延时,则选择WAN网络处理带宽类流量请求,选择蜂窝网络处理延时类流量请求。
  13. 根据权利要求11所述的智能路由选择方法,其特征在于,所述根据所述指标参数,选择相应的路由处理不同类型的流量请求的步骤包括:
    若WAN网络的带宽低于蜂窝网络的带宽,WAN网络的延时小于蜂窝网络的延时,则选择蜂窝网络处理带宽类流量请求,选择WAN网络处理延时类流量请求。
  14. 根据权利要求11所述的智能路由选择方法,其特征在于,所述根据所述指标参数,选择相应的路由处理不同类型的流量请求的步骤包括:
    若WAN网络的带宽高于蜂窝网络的带宽,WAN网络的延时小于蜂窝网络的延时,则在WAN网络上实行QOS,优先处理延时类流量请求,在网络空闲的条件下处理带宽类流量请求。
  15. 根据权利要求11所述的智能路由选择方法,其特征在于,所述根据所述指标参数,选择相应的路由处理不同类型的流量请求的步骤包括:
    若WAN网络的带宽低于蜂窝网络的带宽,WAN网络的延时大于蜂窝网络的延时,则在蜂窝网络上实行QOS,优先处理延时类流量请求,在网络空闲的条件下处理带宽类流量请求。
  16. 根据权利要求11所述的智能路由选择方法,其特征在于,所述根据所述指标参数,选择相应的路由处理不同类型的流量请求的步骤包括:
    若WAN网络的带宽等于蜂窝网络的带宽,则选择蜂窝网络处理延时类流量请求,选择WAN网络处理带宽类流量请求。
  17. 根据权利要求1所述的智能路由选择方法,其特征在于,所述当接收到智能路由开启指令时,对当前网络状况进行检测的步骤之前还包括:
    对终端设备的路由设置指令进行实时监测。
  18. 一种智能路由选择系统,其特征在于,包括:
    网络监测模块,用于当接收到智能路由开启指令时,对当前网络状况进行检测;
    路由选择模块,用于根据当前网络状况选择路由,所述路由包括WAN网络和蜂窝网络。
  19. 一种存储介质,其特征在于,所述存储介质存储有一个或者多个程序,所述一个或者多个程序可被一个或者多个处理器执行,以实现如权利要求1-17任意一项智能路由选择方法中的步骤。
  20. 一种终端设备,其特征在于,包括处理器,适于实现各指令;以及存储介质,适于存储多条指令,所述指令适于由处理器加载并执行权利要求1-17任意一项智能路由选择方法中的步骤。
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