WO2017215215A1 - 一种切换下载方式的方法、及其控制方法与控制系统 - Google Patents

一种切换下载方式的方法、及其控制方法与控制系统 Download PDF

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Publication number
WO2017215215A1
WO2017215215A1 PCT/CN2016/109870 CN2016109870W WO2017215215A1 WO 2017215215 A1 WO2017215215 A1 WO 2017215215A1 CN 2016109870 W CN2016109870 W CN 2016109870W WO 2017215215 A1 WO2017215215 A1 WO 2017215215A1
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Prior art keywords
terminal
wifi
small cell
file
lte
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PCT/CN2016/109870
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English (en)
French (fr)
Inventor
虞龙杰
蔡海
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惠州Tcl移动通信有限公司
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Priority to EP16885453.7A priority Critical patent/EP3276918A4/en
Priority to US15/549,224 priority patent/US20180091581A1/en
Publication of WO2017215215A1 publication Critical patent/WO2017215215A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/06Protocols specially adapted for file transfer, e.g. file transfer protocol [FTP]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/10Protocols in which an application is distributed across nodes in the network
    • H04L67/1095Replication or mirroring of data, e.g. scheduling or transport for data synchronisation between network nodes
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L69/00Network arrangements, protocols or services independent of the application payload and not provided for in the other groups of this subclass
    • H04L69/16Implementation or adaptation of Internet protocol [IP], of transmission control protocol [TCP] or of user datagram protocol [UDP]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W16/00Network planning, e.g. coverage or traffic planning tools; Network deployment, e.g. resource partitioning or cells structures
    • H04W16/24Cell structures
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/14Reselecting a network or an air interface
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/16Performing reselection for specific purposes
    • H04W36/22Performing reselection for specific purposes for handling the traffic
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/50Service provisioning or reconfiguring
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W84/00Network topologies
    • H04W84/005Moving wireless networks

Definitions

  • the present invention relates to the field of wireless communication technologies, and in particular, to a method for switching a download mode, a control method thereof, and a control system.
  • LTE Long Term Evolution
  • WIFI WIreless-FIdelity
  • the technical problem to be solved by the present invention is to provide a method for switching a downloading method, a control method thereof and a control system thereof for solving the deficiencies of the prior art, so as to solve the problem that an existing terminal downloads a file when encountering an LTE network or WIFI.
  • the download rate is extremely low, and the technical problem is a waste of time.
  • a method for switching a download mode which is applied to a terminal, and includes:
  • the terminal When the file is downloaded, the terminal establishes an LTE connection with the Small Cell, and connects to the WIFI network through the Small Cell, where the terminal simultaneously opens the LTE and WIFI interfaces;
  • the manner of receiving the downloaded file from the Small Cell wherein the manner in which the terminal downloads the file is switched according to the strength of the WIFI signal, including LET download and WIFI download.
  • the terminal when the file is downloaded, the terminal establishes an LTE connection with the Small Cell, and connects to the WIFI network through the Small Cell, including:
  • the terminal When the file is downloaded, the terminal connects to the LTE network, and establishes LTE UDP communication with the Small Cell through a UDP socket;
  • the terminal establishes a WIFI connection with the WIFI AP.
  • the terminal connects to the LTE network, and establishes LTE UDP communication with the Small Cell through a UDP socket, including:
  • the terminal When the terminal downloads a file, the terminal connects to the LTE network, and sends a download request to the server through the LTE network;
  • the terminal receives the response message of the download request from the server, and establishes LTE UDP communication with the Small Cell through the UDP socket.
  • the strength of the WIFI signal is detected in real time and reported to the Small Cell, including:
  • the terminal detects the WIFI signal of the environment in real time, and sends the strength of the WIFI signal to the Small Cell through LTE UDP communication.
  • the manner in which the terminal downloads a file is switched according to the strength of the WIFI signal, including:
  • the file is downloaded by using WIFI communication
  • the file is downloaded using LET communication.
  • the manner in which the terminal downloads a file is switched according to the strength of the WIFI signal, and further includes:
  • the files downloaded through the LTE communication are read in real time and the files downloaded through the WIFI communication, and the two are combined to complete the file download.
  • the terminal simultaneously opening the LTE and WIFI interfaces is specifically:
  • the terminal is called to connect to the high priority LTE at a predetermined interval, and the LTE and WIFI interfaces are kept open at the same time, wherein the predetermined time is less than 60 seconds.
  • a control method for switching a download mode is applied to a small cell, which includes:
  • the LTE and the WIFI interface are opened, and the Small Cell establishes an LTE connection with the terminal, so that the terminal connects to the WIFI network through the Small Cell;
  • the Small Cell switches the manner in which the terminal downloads a file according to the strength of the WIFI signal, where the downloaded file mode is a LET download and a WIFI download.
  • the LTE and the WIFI interface are opened when the terminal downloads the file, and the Small Cell establishes an LTE connection with the terminal, so that the terminal connects to the WIFI network through the Small Cell, including:
  • the Small Cell When the terminal downloads a file, the Small Cell receives a UDP socket of the terminal, and establishes LTE UDP communication with the terminal;
  • the Small Cell sends a WIFI AP to the terminal, so that the terminal establishes a WIFI connection with the WIFI AP.
  • the Small Cell receives the UDP socket of the terminal, and establishes LTE UDP communication with the terminal, including:
  • the server receives a download request from the terminal and sends a response message
  • the terminal receives the response packet and establishes LTE UDP communication with the Small Cell through a UDP socket.
  • the strength of the WIFI signal reported by the terminal by the Small Cell includes:
  • the Small Cell receives the strength of the WIFI signal of the terminal through LTE UDP communication.
  • the Small Cell switches the manner in which the terminal downloads a file according to the strength of the WIFI signal, including:
  • the Small Cell receives the WIFI signal strength reported by the terminal, and compares the WIFI signal strength with a preset threshold;
  • the file is downloaded by using WIFI communication
  • the file is downloaded using LET communication.
  • the Small Cell switches the manner in which the terminal downloads a file according to the strength of the WIFI signal, and further includes:
  • the terminal reads the file downloaded through the LTE communication and the file downloaded through the WIFI communication in real time, and merges the two to complete the file download.
  • the terminal simultaneously opening the LTE and WIFI interfaces is specifically:
  • the terminal is called to connect to the high priority LTE at a predetermined interval, and the LTE and WIFI interfaces are kept open at the same time, wherein the predetermined time is less than 60 seconds.
  • a control system for switching download modes comprising: a terminal and a Small Cell;
  • the terminal When the terminal downloads the file, the terminal establishes an LTE connection with the Small Cell, and connects to the WIFI network through the Small Cell, and detects the strength of the WIFI signal in real time and reports it to the Small Cell base station, where the terminal simultaneously Open LTE and WIFI interfaces; and
  • the Small Cell base station is configured to switch, according to the strength of the WIFI signal, a manner in which the terminal downloads a file, where the downloaded file mode is a LET download and a WIFI download.
  • the terminal comprises:
  • the terminal when the terminal downloads the file, the terminal establishes an LTE connection with the Small Cell, and connects to the WIFI network through the Small Cell;
  • the detecting module is configured to detect the strength of the WIFI signal in real time and report it to the Small Cell base station.
  • the terminal further includes:
  • a comparison module configured to receive, by the Small Cell, a WIFI signal strength reported by the terminal, and compare the WIFI signal strength with a preset threshold
  • the switching module is configured to: when the WIFI signal strength is greater than a preset threshold, download the file by using WIFI communication; when the WIFI signal strength is less than or equal to a preset threshold, download the file by using LET communication.
  • the terminal further includes:
  • the calling module is configured to call the connection high priority LTE at a predetermined time interval, and keep the LTE and WIFI interfaces open at the same time, wherein the predetermined time is less than 60 seconds.
  • the terminal further includes:
  • the module is merged, and the terminal reads the file downloaded through the LTE communication and the file downloaded through the WIFI communication in real time, and merges the two to complete the file download.
  • the Small Cell comprises:
  • the determining module is configured to determine whether the strength of the WIFI signal reported by the received terminal is greater than a preset threshold
  • the method for switching the downloading method, the control method thereof and the control system are provided by the present invention.
  • the terminal simultaneously connects the LTE network and the WIFI network, and the terminal dynamically detects the strength of the WIFI signal in real time and reports it to the Small Cell.
  • the WIFI signal strength is higher than the threshold
  • the Small Cell automatically downloads the file using the WIFI network.
  • the WIFI signal strength is lower than the threshold, the Small Cell automatically downloads the file using the LTE network.
  • FIG. 1 is a flowchart of a preferred implementation of a method for controlling a method of switching download files according to the present invention.
  • FIG. 2 is a detailed flowchart of step S100 provided by the present invention.
  • FIG. 3 is a schematic structural diagram of a control system for switching a download file manner according to the present invention.
  • FIG. 4 is a schematic diagram of a module of a control system for switching download files according to the present invention.
  • the present invention provides a method and a system for controlling a terminal to automatically switch between downloading files.
  • the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It is understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
  • the Small Cell refers to a base station other than a macro cell base station, and may be a micro cell base station, a pico cell base station, and a smaller cell base station.
  • LTE Long Term Evolution
  • SAE System Architecture Evolution
  • WIFI AP WIFI Access Point
  • WIFI WIreless-FIdelity
  • FIG. 1 is a flowchart of a preferred embodiment of a method for controlling a method for switching downloaded files according to the present invention.
  • the control method includes:
  • the terminal when the terminal downloads the file, the terminal simultaneously connects the Small Cell and the WIFI AP (WIFI Access Point, WIFI access point), and the Small Cell binds and controls the WIFI AP, and the Small Cell communicates with the HTTP server, so that the terminal simultaneously connects to the LTE. Network and WIFI network. Among them, the terminal downloads files from the HTTP server.
  • WIFI AP WIFI Access Point, WIFI access point
  • the detection process may further include: detecting whether the LTE network and the WIFI network function are enabled at the same time.
  • it may be a file download mode switching function.
  • a switch option can be newly added in the “Settings” interface in the terminal, and the switch option is used to control the file download mode switching function to be turned on/off.
  • the user turns on the switch of the option, it means that the user is allowed to use the switch download mechanism described in this patent to download the file instead of downloading the file using the normal mode LTE network or WIFI network.
  • the mobile phone automatically performs the above process in the background, and uses the LTE network or the WIFI network to download files according to the WIFI signal strength in real time, without manual operation by the user.
  • the terminal simultaneously opening the LTE and the WIFI interface means that the LTE interface and the WIFI interface of the terminal are simultaneously enabled.
  • the terminal invokes the Android “Connect High-Priority LTE” method at a predetermined time interval to keep the LTE and WIFI interfaces open at the same time.
  • the method can only be maintained for 60 seconds by default.
  • the fixed period needs to be less than 60 seconds.
  • the method can be called once by setting the period to 40 seconds.
  • the terminal when the terminal downloads a file, the terminal establishes an LTE connection with the Small Cell and connects to the WIFI network through the Small CELL.
  • the terminal connects to the LTE network.
  • the terminal will connect to the corresponding LTE network according to the type of SIM installed. That is to say, when the type of the SIM card belongs to the Small Cell, the mobile phone automatically connects to the LTE network of the Small Cell instead of the LTE network of the base station.
  • the SIM card type of the terminal belongs to a Small Cell.
  • the small cell refers to a base station other than the macro cell base station, and may be a micro cell base station, a pico cell base station, and a smaller cell base station.
  • the terminal establishes an LTE TCP connection with the HTTP server by using a TCP socket.
  • the terminal uses the Android TCP Socket to establish an LTE TCP connection with the HTTP server by using the domain name of the webpage or the client and the port number of the client.
  • the HTTP protocol is a TCP-based HTTP protocol. This allows the HTTP server to send file data to the Small Cell over the LTE link, and then, if and only if the WIFI signal strength is less than or equal to a preset threshold, the Small Cell sends file data to the handset over the LTE link.
  • the terminal sends a download request to the HTTP server through the LTE link.
  • the terminal sends a request message (GET download request) to the HTTP server through the LTE link, where the webpage or the server corresponding to the client is an HTTP server.
  • GET download request a request message
  • the server receives the download request, and sends a response packet to the terminal by using an LTE link.
  • the terminal receives the response message from the HTTP server through the LTE link, indicating that the HTTP server agrees to the download request of the mobile phone.
  • the status code of the response message of the server may be 200, and the status code description may be OK.
  • the terminal receives the response packet, and establishes LTE UDP communication with the Small Cell by using a UDP socket (Data Gram Socket).
  • the terminal receives the response packet, and uses the Android UDP Data Gram Socket to establish LTE UDP communication with the Small Cell by using the IP address of the Small Cell and the UDP port number agreed by the two parties, wherein the terminal functions as a UDP client.
  • Small Cell acts as a UDP server.
  • the LTE UDP communication has two functions: one is that the Small Cell sends the SSID (Service Set Identifier) of the WIFI AP to the terminal, the encryption type and the password; the second is that the terminal sends the WIFI signal strength to the Small Cell (Received Signal Strength) Indication, received signal strength indication) detection value.
  • SSID Service Set Identifier
  • the terminal sends the WIFI signal strength to the Small Cell (Received Signal Strength) Indication, received signal strength indication) detection value.
  • the format of the UDP data message is as shown in Table 1.
  • the data format in the UDP data packet may be as shown in Table 2.
  • Table 2 Data format in UDP data packets A table is displayed on one page as much as possible
  • Small Cell sends WIFI AP parameters to the mobile phone 1
  • the mobile phone sends a WIFI signal strength detection value to the Small Cell.
  • the UDP parameter type and its description may be as shown in Table 4, wherein when the encryption type is no encryption. When the corresponding parameter content is vacant.
  • the Small Cell sends the WIFI AP related parameters to the terminal through UDP, and the terminal connects to the WIFI AP, where the terminal simultaneously opens the LTE and WIFI interfaces.
  • the WIFI AP is bound to the Small Cell and sends WIFI AP related parameters to the Small Cell. That is to say, the Small Cell will control the WIFI AP.
  • the Small Cell sends the SSID, encryption type and password of the WIFI AP to the mobile phone through LTE UDP.
  • the mobile phone obtains the SSID, encryption type and password of the WIFI AP through UDP, the mobile phone automatically scans, automatically enters the password according to the encryption type and connects to the WIFI AP.
  • the UDP message that the Small Cell sends the WIFI AP parameter to the mobile phone is shown in Table 5.
  • the WIFI AP name is "APtest” and the encryption type is WEP, password. For "SecTest”).
  • S107 The terminal establishes a WIFI TCP connection with the WIFI AP by using a TCP Socket.
  • the terminal establishes a WIFI TCP connection with the WIFI AP by using the TCP Socket and the IP address of the WIFI AP and the previously agreed TCP port number.
  • the WIFI AP can send the file data to the mobile phone through the WIFI link.
  • S200 The terminal detects the strength of the WIFI signal in real time and reports it to the Small Cell.
  • the terminal detects the WIFI signal strength in real time, and then the mobile phone sends the WIFI signal strength to the Small Cell through UDP. In practical applications, the terminal may also emphasize the WIFI signal every fixed period (eg, 1 second).
  • the terminal sends a UDP message of WIFI signal strength to the Small Cell, and the UDP information can be as shown in Table 6 (for example, the WIFI signal strength is -87 dBm).
  • the Small Cell receives the file data sent by the HTTP server through the LTE link, and then compares the WIFI signal strength with a preset threshold according to the WIFI signal strength reported by the mobile phone, and selects the LTE chain according to the comparison result.
  • the road or WIFI link sends file data to the mobile phone.
  • the Small Cell switches a manner in which the terminal downloads a file according to the strength of the WIFI signal, where the download file mode is a LET download and a WIFI download.
  • the WIFI signal strength is greater than a preset threshold
  • the WIFI signal is strong enough
  • the Small Cell switches to the WIFI link to send file data to the mobile phone.
  • the WIFI signal strength is less than or equal to a preset threshold
  • the WIFI signal is not strong enough.
  • Small Cell switches to the LTE link to send file data to the handset.
  • IPinIP ie, nested IP
  • the IP data packet format is as shown in Table 7.
  • the format of the IP data packet received by the terminal from the LTE link at the IP layer is shown in Table 8 based on the format of the IP data packet shown in Table 7.
  • the terminal will automatically decapsulate at the IP layer, remove the Small Cell IP address and the LTE IP address of the mobile phone, leaving only TCP data packets and sending them to the TCP layer. Then the terminal will automatically decapsulate at the TCP layer, remove the TCP data packet header, and send it to the HTTP layer. Finally, the terminal acquires the file data of the LTE link at the HTTP layer, and removes the header of the HTTP response message to obtain real file data.
  • the Small Cell when the Small Cell switches to the WIFI link to send file data to the mobile phone, the Small Cell needs to perform IPinIP (ie, nested IP) encapsulation on the file data, so that the file data can be transmitted in the WIFI link.
  • IPinIP ie, nested IP
  • the terminal automatically decapsulates the IP layer and removes the WIFI AP IP address and the mobile phone WIFI IP address, leaving only the pseudo TCP data packet and sending it to the TCP layer. That is, the pseudo TCP data packet includes the Small Cell IP. Address, mobile phone LTE IP address and real TCP data message.
  • an additional processing module is required. That is, when the format of the TCP data packet received by the mobile phone at the TCP layer is abnormal, the mobile phone first removes the source IP address and the destination IP address ( Here, the description is simplified, in fact, the first part of the IP data message is removed first, and then the TCP data message header is automatically removed and sent to the HTTP layer.
  • the mobile phone obtains the file data of the WIFI link in the HTTP layer, and removes the header of the HTTP response message to obtain the real file data.
  • the terminal sequentially acquires the file data of the LTE link and the WIFI link in the HTTP layer. Since the Small Cell sequentially sends the file data, the mobile phone can sequentially merge the file data in the HTTP layer, and finally complete the file download.
  • the present invention also provides a control system for switching download files, as shown in FIG. 3, which includes: a terminal 32 and a Small Cell 31.
  • the terminal 32 establishes an LTE connection with the Small Cell 31 when the file is downloaded, and connects to the WIFI network through the Small CELL 31, and detects the strength of the WIFI signal in real time and reports it to the Small Cell 31, wherein the terminal 32 is simultaneously open.
  • LTE and WIFI interfaces
  • the Small Cell 31 is configured to switch, according to the strength of the WIFI signal, a manner in which the terminal 32 downloads a file, where the downloaded file mode establishes a connection with the server 33, and downloads through the LET and establishes a connection with the WIFI AP 34. And download it via WIFI.
  • the terminal 42 includes:
  • the establishing module 421 is configured to establish an LTE and WIFI network connection when the LTE and WIFI signals are available in the environment where the terminal 42 is located.
  • the detecting module 422 is configured to detect the strength of the WIFI signal in real time and report it to the Small Cell 41.
  • the comparison module 423 is configured to receive, by the Small Cell 41, the WIFI signal strength reported by the terminal, and compare the WIFI signal strength with a preset threshold.
  • the switching module 424 is configured to: when the WIFI signal strength is greater than a preset threshold, download the file by using WIFI communication; when the WIFI signal strength is less than or equal to a preset threshold, download the file by using LET communication.
  • the calling module 425 is configured to invoke the connection high priority LTE at predetermined intervals, and keep the LTE and WIFI interfaces open at the same time, wherein the predetermined time is less than 60 seconds.
  • the merging module 426 reads the files downloaded by the LTE communication and the files downloaded through the WIFI communication in real time, and merges the two to complete the file download.
  • the Small Cell 41 includes:
  • the determining module 411 is configured to determine whether the WIFI signal strength reported by the received terminal is greater than a preset threshold
  • the selecting module 412 is configured to: if the WIFI signal strength is greater than a preset threshold, download the file by using WIFI communication; and if the WIFI signal strength is less than or equal to a preset threshold, download the file by using LET communication.
  • the disclosed systems and methods may be implemented in other manners.
  • the device embodiments described above are merely illustrative.
  • the division of the modules is only a logical function division.
  • there may be another division manner for example, multiple units or components may be combined or Can be integrated into another system, or some features can be ignored or not executed.
  • the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, device or unit, and may be in an electrical, mechanical or other form.
  • the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, may be located in one place, or may be distributed to multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of the embodiment.
  • each functional unit in each embodiment of the present invention may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
  • the above integrated unit can be implemented in the form of hardware or in the form of hardware plus software functional units.
  • the above-described integrated unit implemented in the form of a software functional unit can be stored in a computer readable storage medium.
  • the above software functional unit is stored in a storage medium and includes instructions for causing a computer device (which may be a personal computer, a server, or a network device, etc.) or a processor to perform the methods of the various embodiments of the present invention. Part of the steps.
  • the foregoing storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk, and the like, which can store program codes. .

Abstract

本发明公开了一种切换下载方式的方法、及其控制方法与控制系统,在终端下载文件时,同时开放LTE接口和WIFI接口,且所述终端实时动态地检测WIFI信号的强度并上报给Small Cell。当WIFI信号强度高于预设阈值时,Small Cell控制终端使用WIFI网络下载文件,当WIFI信号强度低于阈值时,Small Cell控制终端使用LTE网络下载文件。

Description

一种切换下载方式的方法、及其控制方法与控制系统 技术领域
本发明涉及无线通信技术领域,特别涉及一种切换下载方式的方法、及其控制方法与控制系统。
背景技术
现如今,随着智能手机的普及,使用智能手机下载文件的需求和使用频率也越来越多。例如,从音乐网站下载音频文件、从视频网站下载视频文件、从应用市场下载客户端、从网盘下载文件、从手机邮箱下载附件等。多数情况下,用户选择长期演进(Long Term Evolution,LTE)网络或者无线保真(WIreless-FIdelity,WIFI)网络从HTTP服务器下载文件。
在实际应用场景中,当所选择的LTE网络或者WIFI网络信号比较差的时候,用户往往需要等待较长的时间才能完成下载,尤其是当这个文件比较大的时候,下载速率极低,且浪费时间。因而现有技术还有待改进和提高。
发明内容
本发明要解决的技术问题在于,针对现有技术的不足,提供一种切换下载方式的方法、及其控制方法与控制系统,以解决现有终端下载文件的方法中当遇到LTE网络或者WIFI网络信号比较差的时候,下载速率极低、且浪费时间的技术问题。
为了解决上述技术问题,本发明所采用的技术方案如下:
一种切换下载方式的方法,应用于终端,其包括:
下载文件时,所述终端与Small Cell建立LTE连接,并通过所述Small Cell连接WIFI网络,其中,所述终端同时开放LTE和WIFI接口;
实时检测所述WIFI信号的强度并上报给Small Cell;以及
从所述Small Cell接收下载文件的方式,其中所述终端下载文件的方式根据所述WIFI信号的强度进行切换,包括LET下载和WIFI下载。
优选地,其中下载文件时,所述终端与Small Cell建立LTE连接,并通过所述Small Cell连接WIFI网络连接,包括:
下载文件时,所述终端连接LTE网络,并通过UDP套接字与所述Small Cell建立LTE UDP通信;
所述Small Cell向所述终端发送WIFI AP;以及
所述终端与所述WIFI AP建立WIFI连接。
优选地,其中下载文件时,所述终端连接LTE网络,并通过UDP套接字与所述Small Cell建立LTE UDP通信,包括:
当所述终端下载文件时,所述终端连接所述LTE网络,并通过所述LTE网络向服务器发送下载请求;以及
所述终端从服务器接收所述下载请求的响应报文,并通过所述UDP套接字与Small Cell建立LTE UDP通信。
优选地,其中实时检测所述WIFI信号的强度并上报给Small Cell,包括:
所述终端实时检测所处环境的WIFI信号,并将所述WIFI信号的强度通过LTE UDP通信发送至Small Cell。
优选地,其中所述终端下载文件的方式根据所述WIFI信号的强度进行切换,包括:
根据终端上报的WIFI信号强度与预设阈值进行比较;
若所述WIFI信号强度大于预设阈值,则采用WIFI通信下载文件;
若所述WIFI信号强度小于等于预设阈值,则采用LET通信下载文件。
优选地,其中所述终端下载文件的方式根据所述WIFI信号的强度进行切换,之后还包括:
实时读取通过LTE通信下载的文件与通过WIFI通信下载的文件,并将两者合并完成文件下载。
优选地,其中所述终端同时开放LTE和WIFI接口具体为:
终端间隔预定时间调用连接高优先级别LTE,保持LTE和WIFI接口同时开放,其中,所述预定时间小于60秒。
一种切换下载方式的控制方法,应用于small Cell,其包括:
当终端下载文件时开放LTE和WIFI接口,所述Small Cell与所述终端建立LTE连接,使所述终端通过所述Small Cell连接WIFI网络;
所述Small Cell接收所述终端上报的WIFI信号的强度;
所述Small Cell根据所述WIFI信号的强度,切换所述终端下载文件的方式,其中,所述下载文件方式为LET下载和WIFI下载。
优选地,其中当终端下载文件时开放LTE和WIFI接口,所述Small Cell与所述终端建立LTE连接,使所述终端通过所述Small Cell连接WIFI网络,包括:
当所述终端下载文件时,所述Small Cell接收所述终端的UDP套接字,并与所述终端建立LTE UDP通信;以及
所述Small Cell向所述终端发送WIFI AP,以便所述终端与所述WIFI AP建立WIFI连接。
优选地,其中所述当所述终端下载文件时,所述Small Cell接收所述终端的UDP套接字,并与所述终端建立LTE UDP通信,包括:
所述服务器接收来自于所述终端的下载请求,并发送响应报文;以及
所述终端接收所述响应报文,并通过UDP套接字与Small Cell建立LTE UDP通信。
优选地,其中所述Small Cell接收所述终端上报的WIFI信号的强度,包括:
所述Small Cell通过LTE UDP通信,接收所述终端的WIFI信号的强度。
优选地,其中所述Small Cell根据所述WIFI信号的强度,切换所述终端下载文件的方式,包括:
所述Small Cell接收终端上报的WIFI信号强度,并将所述WIFI信号强度与预设阈值进行比较;
若所述WIFI信号强度大于预设阈值,则采用WIFI通信下载文件;
若所述WIFI信号强度小于等于预设阈值,则采用LET通信下载文件。
优选地,其中所述Small Cell根据所述WIFI信号的强度,切换所述终端下载文件的方式,之后还包括:
所述终端实时读取将通过LTE通信下载的文件与通过WIFI通信下载的文件,并将两者合并完成文件下载。
优选地,其中所述终端同时开放LTE和WIFI接口具体为:
终端间隔预定时间调用连接高优先级别LTE,保持LTE和WIFI接口同时开放,其中,所述预定时间小于60秒。
一种切换下载方式的控制系统,其包括:终端和Small Cell;
当所述终端下载文件时,所述终端与Small Cell建立LTE连接,并通过所述Small Cell连接WIFI网络,并实时检测所述WIFI信号的强度并上报给Small Cell基站,其中,所述终端同时开放LTE和WIFI接口;以及
所述Small Cell基站用于根据所述WIFI信号的强度,切换所述终端下载文件的方式,其中,所述下载文件方式为LET下载和WIFI下载。
优选地,其中所述终端包括:
建立模块,用于当终端下载文件时,终端与Small Cell建立LTE连接,并通过Small Cell连接WIFI网络;以及
检测模块,用于实时检测所述WIFI信号的强度并上报给Small Cell基站。
优选地,其中所述终端还包括:
比较模块,用于所述Small Cell接收终端上报的WIFI信号强度,并将所述WIFI信号强度与预设阈值进行比较;以及
切换模块,用于当所述WIFI信号强度大于预设阈值时,采用WIFI通信下载文件;当所述WIFI信号强度小于等于预设阈值时,采用LET通信下载文件。
优选地,其中所述终端还包括:
调用模块,用于间隔预定时间调用连接高优先级别LTE,保持LTE和WIFI接口同时开放,其中,所述预定时间小于60秒。
优选地,其中所述终端还包括:
合并模块,终端实时读取将通过LTE通信下载的文件与通过WIFI通信下载的文件,并将两者合并完成文件下载。
优选地,其中,所述Small Cell包括:
判断模块,用于判断接收的终端上报的WIFI信号强度是否大于预设阈值;
选择模块,用于若所述WIFI信号强度大于预设阈值,则采用WIFI通信下载文件;以及若所述WIFI信号强度小于等于预设阈值,则采用LET通信下载文件。
与现有技术相比,本发明提供的切换下载方式的方法、及其控制方法与控制系统,终端同时连接LTE网络和WIFI网络,且终端实时动态地检测WIFI信号的强度并上报给Small Cell,当WIFI信号强度高于阈值时,Small Cell自动使用WIFI网络下载文件,当WIFI信号强度低于阈值时,Small Cell自动使用LTE网络下载文件。本发明通过同时连接LTE网络和WIFI网络,采用其信号较好的进行文件下载,即使所选或默认的网络信号较差,也可以自动切换,可以保障下载速率,且缩短下载时间。
附图说明
图1为本发明提供的切换下载文件方式的控制方法较佳实施的流程图。
图2为本发明提供的步骤S100的细化流程图。
图3为本发明提供的切换下载文件方式的控制系统的结构原理图。
图4为本发明提供的切换下载文件方式的控制系统的模块示意图。
具体实施方式
本发明提供一种控制终端自动切换下载文件方式的方法及系统,为使本发明的目的、技术方案及效果更加清楚、明确,以下参照附图并举实施例对本发明进一步详细说明。应当理解,此处所描述的具体实施例仅用以解释本发明,并不用于限定本发明。
首先对本实施例中用语进行说明,所述Small Cell指的是指除宏蜂窝基站以外的基站,可以为微小区基站、微微小区基站以及更小的小区基站等。LTE(Long Term Evolution,长期演进),其包含核心网的系统整体结构的被称为SAE(System Architecture Evolution,系统架构演进)的新的通信方式。WIFI AP(WIFI Access Point)为WIFI(WIreless-FIdelity,无线保真)接入点。
下面结合附图,通过对实施例的描述,对发明内容作进一步说明。
请参照图1,图1为本发明提供切换下载文件方式的控制方法的较佳实施例的流程图。所述控制方法包括:
S100、当终端下载文件时,终端与Small Cell建立LTE连接,并通过Small CELL连接WIFI网络,其中,所述终端同时开放LTE和WIFI接口。
具体地,当终端下载文件时,终端同时连接Small Cell和WIFI AP(WIFI Access Point,WIFI接入点),Small Cell绑定并控制WIFI AP,Small Cell和HTTP服务器通信,实现了终端同时连接LTE网络和WIFI网络。其中,终端从HTTP服务器下载文件。
在本实施中,在终端同时连接LTE网络和WIFI网络之前,还可以包括一个检测过程,具体为检测所述终端同时LTE网络和WIFI网络功能是否开启。在本实施例中,可以是文件下载方式切换功能。在实际应用中,可以在终端中的“设置”界面新增加一个开关选项,所述开关选项用于控制文件下载方式切换功能开启/关闭。当用户打开该选项的开关后,表示用户允许使用本专利所描述的切换下载机制去下载文件,而非使用普通模式的LTE网络或WIFI网络下载文件。而且在下载过程中,手机在后台自动依次执行上述流程,根据WIFI信号强度实时使用LTE网络或者WIFI网络下载文件,无需用户手动操作。
进一步,所述终端同时开放LTE和WIFI接口指的是终端的LTE接口和WIFI接口同时开启。在实施例中,所述终端间隔预定时间调用一次Android“连接高优先级的LTE”方法,保持LTE和WIFI接口同时开放。但是该方法默认只能维持60秒,为了持续保持LTE和WIFI接口同时开放,所述每隔固定周期需要小于60秒,如,可以将周期设定为40秒调用一次该方法。
在本发明的一个实施例中,所述终端当终端下载文件时,终端与Small Cell建立LTE连接,并通过Small CELL连接WIFI网络具体可以采用如下过程:
S101、终端连接LTE网络。
终端会根据其安装的SIM的类型连接相应的LTE网络。也就是说,当SIM卡的类型属于Small Cell时,手机会自动连接Small Cell的LTE网络,而非基站的LTE网络。在本实施例中,所述终端的SIM卡类型属于Small Cell。其中,所述Small Cell指的是指除宏蜂窝基站以外的基站,可以为微小区基站、微微小区基站以及更小的小区基站等。
S102、终端利用TCP套接字(Socket)与HTTP服务器建立LTE TCP连接。
具体地,当用户打开网页或客户端且所述网页或客户端对应的服务器是HTTP服务器时,终端利用Android TCP Socket,以网页或客户端的域名和80端口号与HTTP服务器建立LTE TCP连接,所述HTTP协议为基于TCP的HTTP协议。这样可以让HTTP服务器通过LTE链路向Small Cell发送文件数据,然后当且仅当WIFI信号强度小于等于预设阈值时,Small Cell通过LTE链路向手机发送文件数据。
S103、终端通过LTE链路向HTTP服务器发送下载请求。
具体地,当用户在网页或客户端点击下载按钮时,终端通过LTE链路向HTTP服务器发送请求报文(GET下载请求),其中,所述网页或客户端对应的服务器是HTTP服务器。
S104、服务器接收所述下载请求,并通过LTE链路向终端发送响应报文。
具体地,终端通过LTE链路接收来自HTTP服务器的响应报文,表示HTTP服务器同意手机的下载请求。在实际应用中,所述服务器的响应报文的状态码可以为200,所述状态码描述可以为OK。
S105、终端接收所述响应报文,利用UDP套接字(Data Gram Socket),与Small Cell建立LTE UDP通信。
具体地,所述终端接收所述响应报文,并利用Android UDP Data Gram Socket,以Small Cell的IP地址和双方事先约定的UDP端口号与Small Cell建立LTE UDP通信,其中终端作为UDP客户端,Small Cell作为UDP服务器。
这里,LTE UDP通信有两个作用:一是Small Cell向终端发送WIFI AP的SSID(Service Set Identifier,服务集标识)、加密类型和密码;二是终端向Small Cell发送WIFI信号强度(Received Signal Strength Indication,接收的信号强度指示)检测值。
为了传输上述两类UDP消息,所述UDP数据报文的格式如表1所示。
表1 UDP数据报文的格式
Figure PCTCN2016109870-appb-000001
在本实施例中,所述UDP数据报文中的数据格式可以如表2所示。
表2 UDP数据报文中的数据格式一个表格尽量展示在一页内
Figure PCTCN2016109870-appb-000002
基于表2所示UDP数据报文中的数据部分的格式,那么UDP消息类型及其说明如表3所示。
表3 UDP消息类型及其说明
消息类型 说明
0 Small Cell向手机发送WIFI AP参数
1 手机向Small Cell发送WIFI信号强度检测值
基于表2所示UDP数据报文中的数据部分的格式和表3所示UDP参数类型及其说明,所述UDP参数类型及其说明可以如表4所示,其中,当加密类型为无加密时,对应的参数内容空缺。
表4 UDP参数类型及其说明
参数类型 说明
000 WIFI AP SSID
001 加密类型-无加密
010 加密类型-WEP
011 加密类型-WPA PSK
100 加密类型-WPA2 PSK
101 密码(可选)
110 WIFI信号强度检测值
S106、Small Cell通过UDP向终端发送WIFI AP相关参数,终端连接WIFI AP,其中,终端同时开放LTE和WIFI接口。
具体地,所述WIFI AP与Small Cell进行绑定并向Small Cell发送WIFI AP相关参数。也就是说Small Cell会控制WIFI AP。在实际应用中,Small Cell通过LTE UDP向手机发送WIFI AP的SSID,加密类型和密码。当手机通过UDP获取WIFI AP的SSID,加密类型和密码后,手机自动扫描,自动根据加密类型输入密码并连接该WIFI AP。
根据表3和表4所示的UDP消息类型和参数类型,Small Cell向手机发送WIFI AP参数的UDP消息如表5所示(举例说明,WIFI AP名称为“APtest”,加密类型为WEP,密码为“SecTest”)。
表5 Small Cell向手机发送WIFI AP参数的UDP消息
Figure PCTCN2016109870-appb-000003
S107、终端利用TCP Socket与WIFI AP建立WIFI TCP连接。
具体地,终端利用TCP Socket,以WIFI AP的IP地址和事先约定的TCP端口号与WIFI AP建立WIFI TCP连接。这样当WIFI信号强度高于阈值时,可以使WIFI AP通过WIFI链路向手机发送文件数据。
S200、终端实时检测所述WIFI信号的强度并上报给Small Cell。
具体地,终端实时检测WIFI信号强度,然后手机通过UDP向Small Cell发送WIFI信号强度。在实际应用中,所述终端也可以每隔固定周期(如,1秒)WIFI信号的强调。终端向Small Cell发送WIFI信号强度的UDP消息,所述UDP信息可以如表6所示(举例说明,WIFI信号强度为-87dBm)。
表6 手机向Small Cell发送WIFI信号强度的UDP消息
Figure PCTCN2016109870-appb-000004
示例性的,Small Cell通过LTE链路接收HTTP服务器下发的文件数据,然后根据手机上报的WIFI信号强度,Small Cell将所述WIFI信号强度与预设阈值进行比较,根据比较结果选择通过LTE链路或者WIFI链路向手机发送文件数据。
S300、所述Small Cell根据所述WIFI信号的强度,切换所述终端下载文件的方式,其中,所述下载文件方式为LET下载和WIFI下载。
具体地,当WIFI信号强度大于预设阈值时,说明WIFI信号足够强,Small Cell切换到WIFI链路向手机发送文件数据,当WIFI信号强度小于或等于预设阈值时,说明WIFI信号不够强,Small Cell切换到LTE链路向手机发送文件数据。特别地,当Small Cell切换到WIFI链路向手机发送文件数据时,Small Cell需要对该文件数据进行IPinIP(即嵌套IP)封装,使得该文件数据能够在WIFI链路中传输。
值得说明的,在下载文件的过程中,任何时刻只有LTE链路或WIFI链路中的一条链路有文件数据从Small Cell发送到手机,但是不管Small Cell 向哪条链路发送文件数据,终端侧的LTE TCP Socket和WIFI TCP Socket都在HTTP层一直执行读取文件数据的操作。
为了能够更加直观地描述IP数据报文格式,在本实施例中,所述IP数据报文格式如表7所示。
表7 IP数据报文的格式
源IP地址 目的IP地址 数据
当Small Cell切换到LTE链路向手机发送文件数据时,基于表7所示IP数据报文的格式,终端在IP层收到的来自LTE链路的IP数据报文格式如表8所示。终端会自动在IP层解封装,去除Small Cell IP地址和手机LTE IP地址,只剩下TCP数据报文,并发往TCP层。然后终端会自动在TCP层解封装,去除TCP数据报文首部,并发往HTTP层。最后终端在HTTP层获取LTE链路的文件数据,并去除HTTP响应报文的首部,获取真正的文件数据。
表8 手机在IP层收到的LTE链路的IP数据报文格式
Small Cell IP地址 手机LTE IP地址 TCP数据报文
特别地,当Small Cell切换到WIFI链路向手机发送文件数据时,Small Cell需要对该文件数据进行IPinIP(即嵌套IP)封装,使得该文件数据能够在WIFI链路中传输。基于表7所示IP数据报文的格式,手机在IP层收到的来自WIFI链路的IP数据报文格式如表9所示。
表9 手机在IP层收到的WIFI链路的IP数据报文格式
Figure PCTCN2016109870-appb-000005
所述终端会自动在IP层解封装,去除WIFI AP IP地址和手机WIFI IP地址,只剩下伪TCP数据报文,并发往TCP层,也就是说,伪TCP数据报文包括Small Cell IP地址,手机LTE IP地址和真正的TCP数据报文。然 后手机在TCP层解封装的时候,需要额外增加个处理模块,也就是说,当手机在TCP层收到的TCP数据报文的格式异常时,手机会先去除源IP地址和目的IP地址(这里在描述上做了简化,实际上是先去除IP数据报文的首部),然后自动去除TCP数据报文首部,并发往HTTP层。最后手机在HTTP层获取WIFI链路的文件数据,并去除HTTP响应报文的首部,获取真正的文件数据。终端在HTTP层依次获取LTE链路和WIFI链路的文件数据,由于Small Cell是依次发送文件数据,所以手机可以在HTTP层依次合并文件数据,最终完成文件下载。
故,即使所选或默认的网络信号较差,也可以自动切换,可以保障下载速率,且缩短下载时间。
本发明还提供了一种切换下载文件方式的控制系统,如图3所示,其包括:终端32和Small Cell 31。
所述终端32在下载文件时,与Small Cell 31建立LTE连接,并通过Small CELL 31连接WIFI网络,并实时检测所述WIFI信号的强度并上报给Small Cell 31,其中,所述终端32同时开放LTE和WIFI接口;
所述Small Cell 31用于根据所述WIFI信号的强度,切换所述终端32下载文件的方式,其中,所述下载文件方式与服务器33建立连接,并通过LET进行下载和与WIFI AP 34建立连接,并通过WIFI进行下载。
更进一步,如图4所示,在所述控制系统400中,所述终端42包括:
建立模块421,用于当终端42所处环境中同时存在可用LTE和WIFI信号时,建立LTE和WIFI网络连接。
检测模块422,用于实时检测所述WIFI信号的强度并上报给Small Cell 41。
比较模块423,用于所述Small Cell 41接收终端上报的WIFI信号强度,并将所述WIFI信号强度与预设阈值进行比较。
切换模块424,用于当所述WIFI信号强度大于预设阈值时,采用WIFI通信下载文件;当所述WIFI信号强度小于等于预设阈值时,采用LET通信下载文件。
调用模块425,用于间隔预定时间调用连接高优先级别LTE,保持LTE和WIFI接口同时开放,其中,所述预定时间小于60秒。
合并模块426,终端实时读取将通过LTE通信下载的文件与通过WIFI通信下载的文件,并将两者合并完成文件下载。
所述Small Cell 41,包括:
判断模块411,用于判断接收的终端上报的WIFI信号强度是否大于预设阈值;以及
选择模块412,用于若所述WIFI信号强度大于预设阈值,则采用WIFI通信下载文件;以及若所述WIFI信号强度小于等于预设阈值,则采用LET通信下载文件。
故,即使所选或默认的网络信号较差,也可以自动切换,可以保障下载速率,且缩短下载时间。
在本发明所提供的实施例中,应该理解到,所揭露的系统和方法,可以通过其它的方式实现。例如,以上所描述的装置实施例仅仅是示意性的,例如,所述模块的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。另一点,所显示或讨论的相互之间的耦合或直接耦合或通信连接可以是通过一些接口,装置或单元的间接耦合或通信连接,可以是电性,机械或其它的形式。
所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部单元来实现本实施例方案的目的。
另外,在本发明各个实施例中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。上述集成的单元既可以采用硬件的形式实现,也可以采用硬件加软件功能单元的形式实现。
上述以软件功能单元的形式实现的集成的单元,可以存储在一个计算机可读取存储介质中。上述软件功能单元存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)或处理器(processor)执行本发明各个实施例所述方法的部分步骤。而前述的存储介质包括: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)、磁碟或者光盘等各种可以存储程序代码的介质。
最后应说明的是:以上实施例仅用以说明本发明的技术方案,而非对其限制;尽管参照前述实施例对本发明进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本发明各实施例技术方案的精神和范围。

Claims (20)

  1. 一种切换下载方式的方法,应用于终端,其包括:
    下载文件时,所述终端与Small Cell建立LTE连接,并通过所述Small Cell连接WIFI网络,其中,所述终端调用连接高优先级别LTE,以保持LTE和WIFI接口同时开放;
    实时检测所述WIFI信号的强度并上报给Small Cell;以及
    从所述Small Cell接收下载文件的方式,其中所述终端下载文件的方式根据所述WIFI信号的强度进行切换,包括LET下载和WIFI下载。
  2. 根据权利要求1所述切换下载方式的方法,其中下载文件时,所述终端与Small Cell建立LTE连接,并通过所述Small Cell连接WIFI网络连接,包括:
    下载文件时,所述终端连接LTE网络,并通过UDP套接字与所述Small Cell建立LTE UDP通信;
    所述Small Cell向所述终端发送WIFI AP;以及
    所述终端与所述WIFI AP建立WIFI连接。
  3. 根据权利要求2所述切换下载方式的方法,其中下载文件时,所述终端连接LTE网络,并通过UDP套接字与所述Small Cell建立LTE UDP通信,包括:
    当所述终端下载文件时,所述终端连接所述LTE网络,并通过所述LTE网络向服务器发送下载请求;以及
    所述终端从服务器接收所述下载请求的响应报文,并通过所述UDP套接字与Small Cell建立LTE UDP通信。
  4. 根据权利要求3所述切换下载方式的方法,其中实时检测所述WIFI信号的强度并上报给Small Cell,包括:
    所述终端实时检测所处环境的WIFI信号,并将所述WIFI信号的强度通过LTE UDP通信发送至Small Cell。
  5. 根据权利要求1所述切换下载方式的方法,其中所述终端下载文件的方式根据所述WIFI信号的强度进行切换,包括:
    根据终端上报的WIFI信号强度与预设阈值进行比较;
    若所述WIFI信号强度大于预设阈值,则采用WIFI通信下载文件;
    若所述WIFI信号强度小于等于预设阈值,则采用LET通信下载文件。
  6. 根据权利要求1所述切换下载方式的方法,其中所述终端下载文件的方式根据所述WIFI信号的强度进行切换,之后还包括:
    实时读取通过LTE通信下载的文件与通过WIFI通信下载的文件,并将两者合并完成文件下载。
  7. 根据权利要求1所述切换下载方式的方法,其中所述终端调用连接高优先级别LTE,以保持LTE和WIFI接口同时开放,包括:
    终端间隔预定时间调用安卓系统内置的连接高优先级别LTE,以保持LTE和WIFI接口同时开放,其中,所述预定时间小于60秒。
  8. 一种切换下载方式的控制方法,应用于small Cell,其包括:
    当终端下载文件时开放LTE和WIFI接口,所述Small Cell与所述终端建立LTE连接,使所述终端通过所述Small Cell连接WIFI网络;
    所述Small Cell接收所述终端上报的WIFI信号的强度;
    所述Small Cell根据所述WIFI信号的强度,切换所述终端下载文件的方式,其中,所述下载文件方式为LET下载和WIFI下载。
  9. 根据权利要求8所述的控制方法,其中当终端下载文件时开放LTE和WIFI接口,所述Small Cell与所述终端建立LTE连接,使所述终端通过所述Small Cell连接WIFI网络,包括:
    当所述终端下载文件时,所述Small Cell接收所述终端的UDP套接字,并与所述终端建立LTE UDP通信;以及
    所述Small Cell向所述终端发送WIFI AP,以便所述终端与所述WIFI AP建立WIFI连接。
  10. 根据权利要求9所述的控制方法,其中所述当所述终端下载文件时,所述Small Cell接收所述终端的UDP套接字,并与所述终端建立LTE UDP通信,包括:
    所述服务器接收来自于所述终端的下载请求,并发送响应报文;以及
    所述终端接收所述响应报文,并通过UDP套接字与Small Cell建立LTE UDP通信。
  11. 根据权利要求10所述的控制方法,其中所述Small Cell接收所述终端上报的WIFI信号的强度,包括:
    所述Small Cell通过LTE UDP通信,接收所述终端的WIFI信号的强度。
  12. 根据权利要求8所述的控制方法,其中所述Small Cell根据所述WIFI信号的强度,切换所述终端下载文件的方式,包括:
    所述Small Cell接收终端上报的WIFI信号强度,并将所述WIFI信号强度与预设阈值进行比较;
    若所述WIFI信号强度大于预设阈值,则采用WIFI通信下载文件;
    若所述WIFI信号强度小于等于预设阈值,则采用LET通信下载文件。
  13. 根据权利要求8所述的控制方法,其中所述Small Cell根据所述WIFI信号的强度,切换所述终端下载文件的方式,之后还包括:
    所述终端实时读取将通过LTE通信下载的文件与通过WIFI通信下载的文件,并将两者合并完成文件下载。
  14. 根据权利要求8所述的控制方法,其中所述终端同时开放LTE和WIFI接口具体为:
    终端间隔预定时间调用连接高优先级别LTE,保持LTE和WIFI接口同时开放,其中,所述预定时间小于60秒。
  15. 一种切换下载方式的控制系统,其包括:终端和Small Cell;
    当所述终端下载文件时,所述终端与Small Cell建立LTE连接,并通过所述Small Cell连接WIFI网络,并实时检测所述WIFI信号的强度并上报给Small Cell基站,其中,所述终端同时开放LTE和WIFI接口;以及
    所述Small Cell基站用于根据所述WIFI信号的强度,切换所述终端下载文件的方式,其中,所述下载文件方式为LET下载和WIFI下载。
  16. 根据权利要求15所述的控制系统,其中所述终端包括:
    建立模块,用于当终端下载文件时,终端与Small Cell建立LTE连接,并通过Small Cell连接WIFI网络;以及
    检测模块,用于实时检测所述WIFI信号的强度并上报给Small Cell基站。
  17. 根据权利要求15所述的控制系统,其中所述终端还包括:
    比较模块,用于所述Small Cell接收终端上报的WIFI信号强度,并将所述WIFI信号强度与预设阈值进行比较;以及
    切换模块,用于当所述WIFI信号强度大于预设阈值时,采用WIFI通信下载文件;当所述WIFI信号强度小于等于预设阈值时,采用LET通信下载文件。
  18. 根据权利要求15所述的控制系统,其中所述终端还包括:
    调用模块,用于间隔预定时间调用连接高优先级别LTE,保持LTE和WIFI接口同时开放,其中,所述预定时间小于60秒。
  19. 根据权利要求15所述的控制系统,其中所述终端还包括:
    合并模块,终端实时读取将通过LTE通信下载的文件与通过WIFI通信下载的文件,并将两者合并完成文件下载。
  20. 根据权利要求15所述的控制系统,其中,所述Small Cell包括:
    判断模块,用于判断接收的终端上报的WIFI信号强度是否大于预设阈值;以及
    选择模块,用于若所述WIFI信号强度大于预设阈值,则采用WIFI通信下载文件;以及若所述WIFI信号强度小于等于预设阈值,则采用LET通信下载文件。
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