WO2016173169A1 - 一种连接状态控制方法、装置及系统 - Google Patents

一种连接状态控制方法、装置及系统 Download PDF

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Publication number
WO2016173169A1
WO2016173169A1 PCT/CN2015/088784 CN2015088784W WO2016173169A1 WO 2016173169 A1 WO2016173169 A1 WO 2016173169A1 CN 2015088784 W CN2015088784 W CN 2015088784W WO 2016173169 A1 WO2016173169 A1 WO 2016173169A1
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Prior art keywords
client device
server
notification message
device information
information
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PCT/CN2015/088784
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English (en)
French (fr)
Inventor
朱正
徐晓进
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中兴通讯股份有限公司
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Publication of WO2016173169A1 publication Critical patent/WO2016173169A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L9/00Cryptographic mechanisms or cryptographic arrangements for secret or secure communications; Network security protocols
    • H04L9/40Network security protocols
    • 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
    • H04L67/104Peer-to-peer [P2P] networks
    • H04L67/1044Group management mechanisms 
    • H04L67/1046Joining mechanisms

Definitions

  • the present invention relates to the field of intelligent network technologies, and in particular, to a connection state control method, apparatus, and system.
  • Intelligent Network is a network architecture that generates and provides intelligent services quickly, economically, conveniently, and efficiently on a communication network. It is mainly composed of Service Switching Point (SSP) and Service Control Point (SCP).
  • a network element such as a service management point (SMP), a service management access point (SMAP), and a service creation environment (SCE).
  • SMP service management point
  • SMAP service management access point
  • SCE service creation environment
  • the goal of the intelligent network is to provide new services for all communication networks to meet user needs, including PSTN (Public Switched Telephone Network), ISDN (Integrated Services Digital Network), and PLMN (Public Land Mobile Network). , public land mobile network), Internet (Internet), etc., intelligent is the development direction of communication networks.
  • PSTN Public Switched Telephone Network
  • ISDN Integrated Services Digital Network
  • PLMN Public Land Mobile Network
  • public land mobile network public land mobile network
  • Internet Internet
  • Client-server model is a network architecture that distinguishes a client from a server. Each instance of the client software can make a request to a server or application server.
  • the C/S network architecture is widely used, such as between a service management point SMP device and a plurality of service control point SCP devices, a message distribution proxy server, and a message distribution target client.
  • the intelligent network networking architecture in the related art is shown in FIG. 1. It can be seen from FIG. 1 that the SMP133 device is simultaneously connected to multiple SCP devices. Under this architecture, the SMP133 device is fixedly connected to several SCP devices and manages these SCP devices. The SMP device detects the link between the SMP device and the SCP device. If an SCP device is abnormal, the SMP device detects and sends an alarm.
  • the C/S networking architecture in the related art of the intelligent network domain is a fixed architecture, and the application server and the client are connected by a fixed link.
  • the server detects the client by checking the client. If the client function is abnormal, the server can discover and send an alarm in time.
  • the drawback of this fixed architecture is that To a certain extent, it caused a waste of resources.
  • the current situation of the intelligent network industry is due to the large number of users of the intelligent network service, and the performance pressure of the SCP server is huge.
  • the industry usually uses multiple SCP C/S networking architectures to load the load. Multiple SCPs use load balancing or other logical methods to ensure that each SCP server does not. overload.
  • the performance pressure of the intelligent network business is not static. In the short term, the performance load during the day and night will fluctuate. In the long run, the monthly or even annual performance load will fluctuate.
  • the performance of an intelligent network site cannot meet the requirements of the intelligent network service, the problem is usually solved by the shutdown expansion and upgrade.
  • the expansion method is mainly to increase the performance pressure of the SCP server to share the existing SCP server, thereby increasing the overall location of the site.
  • Customer capacity When the number of business users of an intelligent network office is significantly reduced, it still needs to be similarly upgraded by downtime and reduced the number of SCP servers. However, in most of the time, the amount of intelligent network service users is fluctuating. In order to meet the peak performance requirements, the SCP server's customer capacity is redundant. In the fixed C/S architecture, regardless of the current performance pressure of the SCP device, the SCP Need to maintain the link with SMP, can not be interrupted. This actual situation actually causes a lot of waste of resources every day. This waste includes both the waste of power resources and the waste of server hardware resources.
  • connection state control method In order to solve the problem of waste of server hardware resources in the related art, embodiments of the present invention provide a connection state control method, apparatus, and system to solve at least the above problems.
  • a connection state control method including: a proxy server acquiring client device information; the proxy server sending a notification message to a server according to the client device information, where The notification message is used by the server to control a connection state of the server and the client device according to the client device information.
  • the proxy server sends a notification message to the server according to the client device information, including at least one of the following: in the case that the client device starts a job, the proxy server acquires the client device information. And sending, to the server, a first notification message, where the first notification message is used by the server to establish a connection with the client device according to the client device information; and the client device stops working.
  • the proxy server acquires the client device information and sends a second notification message to the server, where the second notification message is used by the server according to the client device information and the The client device stops connecting.
  • a connection state control method including: a server receives a notification message sent by a proxy server according to client device information; and the server is triggered by the notification message, Controlling, by the client device information, a connection status between the server and the client device.
  • the server controls, according to the client device information, a connection status between the server and the client device, including at least one of the following: the server receives the first notification sent by the proxy server. Message, the service The terminal establishes a connection with the client device according to the client device information, and the server receives the second notification message sent by the proxy server, where the server is located at the triggering of the first notification message. The triggering of the second notification message stops the connection with the client device according to the client device information.
  • the server further includes at least one of the following: establishing a connection between the server and the client device.
  • the server starts to detect the connection state; in case the server stops the connection with the client device, the server stops detecting the connection state.
  • a connection state control apparatus which is disposed on the proxy server, the device includes: an acquisition module configured to acquire client device information; and a notification module configured to The client device information sends a notification message to the server, where the notification message is used by the server to control a connection state between the server and the client device according to the client device information.
  • the notification module includes at least one of the following: a first notification unit, configured to: when the client device starts a job, and the proxy server acquires the client device information, to the server Sending a first notification message, where the first notification message is used by the server to establish a connection with the client device according to the client device information; and the second notification unit is configured to stop at the client device Working, the proxy server is configured to send the second notification message to the server, where the second notification message is used by the server according to the client device information The client device stops connecting.
  • a first notification unit configured to: when the client device starts a job, and the proxy server acquires the client device information, to the server Sending a first notification message, where the first notification message is used by the server to establish a connection with the client device according to the client device information
  • the second notification unit is configured to stop at the client device Working
  • the proxy server is configured to send the second notification message to the server, where the second notification message is used by the server according to the client device information The client device stops connecting.
  • a connection state control apparatus configured to control, according to the client device information, a connection state of the server and the client device, triggered by the notification message.
  • control module includes at least one of the following: a connecting unit, configured to establish a connection with the client device according to the client device information if the receiving module receives the first notification message And a disconnecting unit configured to stop the connection with the client device according to the client device information if the receiving module receives the second notification message.
  • the device further includes: a detecting module, wherein the detecting module comprises at least one of: a starting unit, configured to initiate detecting the connection state if the server establishes a connection with the client device;
  • the stopping unit is configured to stop detecting the connection state when the server terminates the connection with the client device.
  • a connection state control system including: a proxy server, configured to acquire client device information, and send a notification message to the server according to the obtained client device information;
  • the server is configured to receive the notification message sent by the proxy server, and, under the triggering of the notification message, control a connection state between the server and the client device according to the client device information.
  • the proxy server obtains the client device information, and the proxy server sends a notification message to the server according to the client device information, where the notification message is used by the server to control the server according to the client device information.
  • the connection status of the client device When the number of business users decreases or rises, the server can be reduced or expanded without suspending the service, thereby avoiding waste of server hardware resources caused by the server being in a working state.
  • FIG. 1 is a schematic diagram of an intelligent network networking architecture in a related art according to an embodiment of the present invention
  • FIG. 2 is a network architecture diagram of a SIP message distribution in a related art according to an embodiment of the present invention
  • FIG. 3 is a flow chart 1 of a connection state control method according to an embodiment of the present invention.
  • connection state control method 4 is a second flowchart of a connection state control method according to an embodiment of the present invention.
  • FIG. 5 is a schematic diagram of an intelligent network networking architecture according to an embodiment of the present invention.
  • FIG. 6 is a schematic diagram of a SIP message distribution networking architecture according to an embodiment of the present invention.
  • connection state control method 7 is a third flowchart of a connection state control method according to an embodiment of the present invention.
  • connection state control method 8 is a flowchart 4 of a connection state control method according to an embodiment of the present invention.
  • FIG. 9 is a structural diagram 1 of a connection state control apparatus according to an embodiment of the present invention.
  • FIG. 10 is a second structural diagram of a connection state control apparatus according to an embodiment of the present invention.
  • connection state control apparatus 11 is a third structural diagram of a connection state control apparatus according to an embodiment of the present invention.
  • Figure 12 is a fourth structural diagram of a connection state control device in accordance with an embodiment of the present invention.
  • FIG. 3 is a flowchart 1 of a connection state control method according to an embodiment of the present invention. As shown in FIG. 3, the method includes:
  • the proxy server acquires client device information.
  • the proxy server obtains the client device information, and the proxy server sends a notification message to the server according to the client device information, where the notification message is used by the server to control the connection state between the server and the client device according to the client device information.
  • the proxy server obtains the client device information, and the proxy server sends a notification message to the server according to the client device information, where the notification message is used by the server to control the server and the client according to the client device information.
  • the connection status of the device When the number of service users decreases or rises, the server can be reduced or expanded without suspending the service, thereby avoiding waste of server hardware resources caused by the server being in a working state.
  • the proxy server sends a notification message to the server according to the client device information, including at least one of the following: in the case that the client device starts the work, the proxy server acquires the client device information and sends the information to the server. a first notification message, wherein the first notification message is used by the server to establish a connection with the client device according to the client device information; and when the client device stops working, the proxy server acquires the client device information and sends the information to the server Sending a second notification message, where the second notification message is used by the server to stop connecting with the client device according to the client device information.
  • FIG. 4 is a flowchart 2 of a connection state control method according to an embodiment of the present invention.
  • the method includes: the server receives the proxy server according to the client device.
  • the notification message sent by the information, under the trigger of the notification message, the server controls the connection state of the server and the client device according to the client device information.
  • the server receives the notification message sent by the proxy server according to the client device information, and the server controls the connection state of the server and the client device according to the client device information, triggered by the notification message.
  • the server can be reduced or expanded without suspending the service, thereby avoiding waste of server hardware resources caused by the server being in a working state.
  • the server controls the connection status between the server and the client device according to the client device information, and includes at least one of the following: the server receives the first notification message sent by the proxy server, where the server is in the first The triggering of the notification message is to establish a connection with the client device according to the client device information; the server receives the second notification message sent by the proxy server, and the server is triggered by the second notification message according to the client device information.
  • the client device stops connecting.
  • the server further includes at least one of the following: in the case that the server establishes a connection with the client device, the server Start detecting the connection status; when the server stops connecting with the client device, the server stops detecting the connection status.
  • FIG. 5 is a schematic diagram of an intelligent network networking architecture according to an embodiment of the present invention.
  • Embodiments of the present invention implemented in the architecture shown in FIG. 5 include the following methods:
  • the proxy server agent is connected.
  • the agent can obtain the information list of the SCP device that needs to be used by the interface machine or the third-party service.
  • the SCP device only needs to start the SCP device in the information list provided by the Agent device.
  • the SCP device that is not provided does not need to be started.
  • the newly added SCP device can be started after the installation is completed.
  • the Agent device updates the information list of the currently used SCP device, and the information list includes information of the newly added SCP device.
  • the Agent device After updating the information list of the used SCP device, the Agent device notifies the SMP server.
  • the SMP device After receiving the Agent notification, the SMP device establishes a link to these newly added SCP devices and starts to detect whether the links of these new SCP devices are normal.
  • the new SCP device dynamically expands successfully without stopping the SMP device and other SCP devices.
  • the Agent device updates the information list of the SCP device currently in use, and the information in the information list is removed from the SCP device that needs to be reduced.
  • the Agent device notifies the SMP server after updating the information list of the used SCP device.
  • the SMP device After receiving the notification from the agent, the SMP device does not establish a link with the removed SCP device, and does not detect whether the link of the removed SCP device is normal.
  • the removed SCP device can be shut down, and the dynamic shrinkage is successful without affecting other SCP devices.
  • FIG. 6 is a schematic diagram of a SIP message distribution networking architecture according to an embodiment of the present invention.
  • Embodiments of the present invention implemented in the architecture shown in FIG. 6 include the following methods:
  • the proxy server agent When the SIP proxy device of the SIP message distribution server is started, the proxy server agent is connected, and the agent can obtain the information list of the distribution target client device AS that needs to be used by the interface machine or the third-party service.
  • the SIPproxy device After the SIPproxy device is started, it only needs to establish a link with several distribution target client devices (AS1-ASn) obtained from the Agent device, and only needs to detect whether the links of the distribution target client devices are normal.
  • AS1-ASn distribution target client devices
  • the new distribution target client device can be started after the installation is completed.
  • the Agent device updates the information list of the distribution target client device currently in use, and the information list includes information of the newly added target client device.
  • the Agent device notifies the message distribution server device after updating the information list of the distribution target client device used.
  • the SIPproxy device After receiving the Agent notification, the SIPproxy device establishes a link to these newly added target client devices and starts to detect whether the links of the new distribution target client devices are normal.
  • the new distribution target client device dynamically expands successfully without stopping the message distribution server device and other distribution target client devices.
  • the agent device updates the information list of the distribution target client device that is currently in use, and the information of the distribution target client device that needs to be reduced is removed in the information list.
  • the Agent device notifies the SIPproxy device after updating the information list of the distribution target client device used.
  • the SIPproxy device After receiving the notification from the agent, the SIPproxy device no longer establishes a link with the removed distribution target client device, and no longer detects whether the links of the removed distribution target client devices are normal.
  • the removed distribution target client device can be shut down, and the dynamic capacity reduction succeeds without affecting other distribution target client devices.
  • FIG. 7 is a third flowchart of a connection state control method according to an embodiment of the present invention. As shown in FIG. 7 , the method uses an intelligent network dynamic capacity expansion and capacity reduction as an example, and includes the following steps:
  • the intelligent network SMP device and the SCP device are started.
  • the intelligent network SMP device When the intelligent network SMP device starts, it obtains a sending request message from the agent device, and requests to obtain a list of currently used SCP devices.
  • the Agent device After receiving the SMP device request, the Agent device returns a response and pushes the list information of the currently used SCP device to the SMP device.
  • the list information includes necessary information of the SCP device, such as the office number, module number, and the like.
  • the SMP device establishes a link with the SCP device according to the received SCP information list, and detects the state of the SCP device in real time.
  • the Agent updates the information list of the currently used SCP device, and adds information to expand the SCP device.
  • the Agent notifies the SMP device that the SCP device information list currently used has been updated, and the SMP device responds after receiving the notification.
  • the agent device pushes the currently used SCP device list information to the SMP device, and the list information includes necessary information of the SCP device, such as the office number and the module number.
  • the Agent updates the information list of the currently used SCP device, and removes the information of the SCP device that needs to be reduced.
  • the Agent notifies the SMP device that the SCP device information list currently used has been updated, and the SMP device responds after receiving the notification.
  • the agent device pushes the currently used SCP device list information to the SMP device, and the list information does not include the removed SCP device information.
  • the SMP device receives the updated list of currently used SCP devices, and compares it with the previous received SCP device list.
  • the information of the SCP device that has not changed remains unchanged, and the added SCP device information is added and deleted. SCP device information.
  • the SMP device establishes a link to the newly added SCP device, and disconnects the link of the removed SCP device, so that the SCP device connected to the current SMP device is consistent with the updated SCP device list.
  • the intelligent network is dynamically expanded and the SCP device that is indented can be shut down.
  • FIG. 8 is a flowchart of a method for controlling a connection state according to an embodiment of the present invention. As shown in FIG. 8 , the method includes a dynamic expansion and capacity reduction of a message distribution server and a client device, and includes the following steps:
  • the Agent device After receiving the message distribution server request, the Agent device returns a response, and pushes the list information of the currently used client device to the message distribution server.
  • the list information includes necessary information of the client device, such as the IP address, port, and the like of the distribution target client.
  • the message distribution server establishes a link with the client device according to the received client information list, and detects the state of the client device in real time.
  • the Agent updates the information list of the currently used client device, and adds information about the client device to be expanded.
  • the Agent notifies the message distribution server that the list of client device information currently used has been updated, and the message distribution server responds after receiving the notification.
  • the agent device pushes the currently used client device list information to the message distribution server, and the list information includes necessary information of the client device, such as the office number and the module number.
  • the Agent updates the information list of the currently used client device, and removes the client device that needs to be reduced.
  • the Agent notifies the message distribution server that the list of client device information currently used has been updated, and the message distribution server responds after receiving the notification.
  • the agent device pushes the currently used client device list information to the message distribution server, and the list information does not include the removed client device information.
  • the message distribution server receives the updated list of currently used client devices, and compares with the list of client devices received before, and the information of the client device that has not changed remains unchanged, and the newly added client is added. Device information, delete the removed client device information.
  • the message distribution server updates the distribution policy, and distributes the newly added client device to the removed client device, so that the client device connected to the current message distribution server is consistent with the updated client device list.
  • the message distribution server and the client device complete dynamic scaling, and the reduced client device can be down.
  • FIG. 9 is a structural diagram of a connection state control device according to an embodiment of the present invention.
  • the device is disposed on a proxy server, and includes: an acquisition module 902.
  • the notification module 904 is configured to send a notification message to the server according to the client device information, where the notification message is used by the server to control the server and the client device according to the client device information. Connection status.
  • the obtaining module 902 obtains the client device information, and the notification module 904 sends a notification message to the server according to the client device information, where the notification message is used by the server to control the server according to the client device information.
  • the connection status of the client device When the number of service users decreases or rises, the server can be reduced or expanded without suspending the service, thereby avoiding waste of server hardware resources caused by the server being in a working state.
  • FIG. 10 is a structural diagram of a connection state control structure device according to an embodiment of the present invention.
  • the notification module 1004 includes at least one of the following:
  • a first notification unit configured to send a first notification message to the server when the client device starts the work and the proxy server acquires the client device information, where the first notification message is used by the server according to the client Device information establishes a connection with the client device;
  • a second notification unit configured to stop the work of the client device and obtain the information of the client device by the proxy server
  • the second notification message is sent to the server, where the second notification message is used by the server to stop the connection with the client device according to the client device information.
  • FIG. 11 is a structural diagram of a connection state control device according to an embodiment of the present invention.
  • the device is disposed on a server, and includes: a receiving module 1102.
  • the receiving module is configured to receive a notification message sent by the proxy server according to the client device information.
  • the control module 1104 is configured to control, according to the client device information, a connection state between the server and the client device, triggered by the notification message.
  • the receiving module 1102 receives the notification message sent by the proxy server according to the client device information, and the control module 1104 controls the connection state between the server and the client device according to the client device information, triggered by the notification message.
  • the server can be reduced or expanded without suspending the service, thereby avoiding waste of server hardware resources caused by the server being in a working state.
  • FIG. 12 is a structural diagram of a connection state control device according to an embodiment of the present invention.
  • the control module 1204 includes at least one of the following: a connection unit configured to receive at the receiving module. 1202 to the first notification message, establishing a connection with the client device according to the client device information; and the disconnecting unit is configured to, according to the client device information, the receiving device receiving the 1202 to the second notification message The client device stops connecting.
  • the apparatus further includes: a detecting module 1206, wherein the detecting module 1206 includes at least one of the following: an initiating unit configured to establish a connection with the client device at the server end. Next, the detection connection state is started; the stop unit is set to stop detecting the connection state when the server stops the connection with the client device.
  • the embodiment of the present invention further provides a connection state control system, including: a proxy server, configured to acquire client device information, and send a notification message to the server according to the obtained client device information; the server is configured to receive the foregoing The notification message sent by the proxy server, and triggered by the notification message, controls the connection state of the server and the client device according to the client device information.
  • a proxy server configured to acquire client device information, and send a notification message to the server according to the obtained client device information
  • the server is configured to receive the foregoing The notification message sent by the proxy server, and triggered by the notification message, controls the connection state of the server and the client device according to the client device information.
  • the proxy server acquires the client device information, and sends a notification message to the server according to the obtained client device information, and the server receives the notification message sent by the proxy server, and is triggered by the notification message.
  • the connection status of the server to the client device is controlled according to the client device information.
  • modules or steps of the embodiments of the present invention can be implemented by a general computing device, which can be concentrated on a single computing device or distributed in multiple computing devices. Alternatively, they may be implemented by program code executable by the computing device such that they may be stored in the storage device by the computing device and, in some cases, may be different from The steps shown or described are performed sequentially, or they are separately fabricated into individual integrated circuit modules, or a plurality of modules or steps thereof are fabricated into a single integrated circuit module. Thus, the invention is not limited to any specific combination of hardware and software.
  • the server when the number of service users decreases or rises, the server can be reduced or expanded without suspending the service, thereby avoiding the server caused by the server being in a working state. Waste of hardware resources.

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Abstract

本发明提供了一种连接状态控制方法,包括:代理服务器获取客户端设备信息,代理服务器根据所述客户端设备信息向服务端发送通知消息,其中,该通知消息用于服务端根据客户端设备信息控制服务端与客户端设备的连接状态。使得在业务用户量出现下降或上升时,不需要暂停业务即可实现服务器的缩容或扩容,从而避免了服务器一直处于工作状态所造成的服务器硬件资源浪费。

Description

一种连接状态控制方法、装置及系统 技术领域
本发明涉及智能网技术领域,尤其涉及一种连接状态控制方法、装置及系统。
背景技术
智能网(IN)是在通信网上快速、经济、方便、有效地生成和提供智能业务的网络体系结构,主要由业务交换点(SSP,Service Switching Point)、业务控制点(SCP,Service Control Point)、业务管理点(SMP,Service Management Point)、业务管理接入点(SMAP,service management access point)和业务生成环境(SCE,service creation environment)等网元组成。它是在原有通信网络的基础上为用户提供新业务而设置的附加网络结构,它的最大特点是将网络的交换功能与控制功能分开。由于在原有通信网络中采用智能网技术可向用户提供业务特性强、功能全面、灵活多变的移动新业务,具有很大市场需求,因此,智能网已逐步成为现代通信提供新业务的首选解决方案。智能网的目标是为所有通信网络提供满足用户需要的新业务,包括PSTN(Public Switched Telephone Network,公共交换电话网络)、ISDN(Integrated Services Digital Network,综合业务数字网)、PLMN(Public Land Mobile Network,公共陆地移动网络)、Internet(互联网)等,智能化是通信网络的发展方向。
客户服务器模式(Client–server model)简称C/S结构,是一种网络架构,它把客户端(Client)与服务器(Server)区分开来。每一个客户端软件的实例都可以向一个服务器或应用程序服务器发出请求。
目前在智能网领域,C/S网络架构被广泛使用,如业务管理点SMP设备与多个业务控制点SCP设备之间,消息分发代理服务器与消息分发目标客户端之间等。
相关技术中智能网组网架构如图1所示,由图1可以看到SMP133设备同时与多个SCP设备相连。在此架构下,SMP133设备固定与若干个SCP设备建立链路,并管理这些SCP设备。SMP设备与SCP设备之间的链接由SMP设备检测,若某个SCP设备出现异常,SMP设备会及时发现并发出告警。
相关技术中SIP(Session Initiation Protocol,会话初始协议)消息分发代理服务器与SIP消息分发目标客户端之间的架构如图2所示,由图2可以看到,SIP消息代理服务器SIPproxy同时与多个SIP消息分发目标客户端AS相连。在此架构下,SIPproxy设备固定与若干个AS设备建立链路,并定时检测这些AS设备的SIP消息链路状态。若某个AS的消息链路异常,SIPproxy设备会及时发现并发出告警。
由上所述可以看出,智能网领域相关技术中的C/S组网架构是固定架构,应用服务器端与客户端之间通过固定链路连接。服务器端通过对客户端进行检测,以确认客户端功能是否正常。若客户端功能异常,服务器端可以及时发现并发出告警。而此种固定架构的缺陷就是, 在一定程度上造成了资源的浪费。
智能网业界的现状是由于智能网业务的用户量大,SCP服务器的性能压力巨大。为了保证智能网业务的性能稳定,业界通常使用多个SCP的C/S组网架构来负荷均担,多个SCP之间通过负载均衡的方式或其他的逻辑方式来保证每个SCP服务器不至于过载。但是智能网业务的性能压力并不是一成不变的,从短期来看,每天白天夜间的性能负载会有波动,从长期来看每月甚至每年的性能负载都会出现波动。当一个智能网局点的性能无法满足智能网业务要求时,通常通过停机扩容升级来解决此问题,扩容的方式主要是增加SCP服务器以分担现有SCP服务器的性能压力,从而增加局点整体的客户容量。而当一个智能网局点的业务用户量明显下降时,仍然需要类似的通过停机缩容升级,减少SCP服务器数量来解决。但是在大多数时间内,智能网业务用户量是波动的,为了满足峰值性能的要求,SCP服务器的客户容量是存在冗余的,在固定C/S架构无论SCP设备当前性能压力大小,SCP都需要保持与SMP的链路,不能中断。这一实际情况实际上每天都在造成大量的资源浪费,这一浪费既包括电力资源的浪费也包括服务器硬件资源的浪费。
同样的消息分发代理服务器场景下,也存在类似的消息量波动的情况。而在固定的C/S架构下,无论分发到客户端AS设备的消息量多少,AS设备必须保持与消息分发代理服务器的链路,从而同样导致了大量电力资源与服务器硬件资源的浪费。
发明内容
为了解决相关技术中服务器硬件资源浪费的问题,本发明实施例提供了一种连接状态控制方法、装置及系统,以至少解决上述问题。
根据本发明实施例的一个方面,提供了一种连接状态控制方法,包括:代理服务器获取客户端设备信息;所述代理服务器根据所述客户端设备信息向服务端发送通知消息,其中,所述通知消息用于所述服务端根据所述客户端设备信息控制所述服务端与所述客户端设备的连接状态。
可选地,所述代理服务器根据所述客户端设备信息向服务器发送通知消息,包括以下至少之一:在所述客户端设备启动工作的情况下,所述代理服务器获取所述客户端设备信息并向所述服务端发送第一通知消息,其中,所述第一通知消息用于所述服务端根据所述客户端设备信息与所述客户端设备建立连接;在所述客户端设备停止工作的情况下,所述代理服务器获取所述客户端设备信息并向所述服务端发送第二通知消息,其中,所述第二通知消息用于所述服务端根据所述客户端设备信息与所述客户端设备停止连接。
根据本发明实施例的另一个方面,还提供了一种连接状态控制方法,包括:服务端接收代理服务器根据客户端设备信息发送的通知消息;所述服务端在所述通知消息的触发下,根据所述客户端设备信息控制所述服务端与所述客户端设备的连接状态。
可选地,所述服务端根据所述客户端设备信息控制所述服务端与所述客户端设备的连接状态,包括以下至少之一:所述服务端接收所述代理服务器发送的第一通知消息,所述服务 端在所述第一通知消息的触发下,根据所述客户端设备信息与所述客户端设备建立连接;所述服务端接收所述代理服务器发送的第二通知消息,所述服务端在所述第二通知消息的触发下,根据所述客户端设备信息与所述客户端设备停止连接。
可选地,所述服务端根据所述客户端设备信息控制所述服务端与所述客户端设备的连接状态之后,还包括以下至少之一:在所述服务端与客户端设备建立连接的情况下,所述服务端启动检测所述连接状态;在所述服务端与客户端设备停止连接的情况下,所述服务端停止检测所述连接状态。
根据本发明实施例的再一个方面,提供了一种连接状态控制装置,设置于所述代理服务器上,该装置包括:获取模块,设置为获取客户端设备信息;通知模块,设置为根据所述客户端设备信息向服务端发送通知消息,其中,所述通知消息用于所述服务端根据所述客户端设备信息控制所述服务端与所述客户端设备的连接状态。
可选地,所述通知模块包括以下至少之一:第一通知单元,设置为在所述客户端设备启动工作、所述代理服务器获取所述客户端设备信息的情况下,向所述服务端发送第一通知消息,其中,所述第一通知消息用于所述服务端根据所述客户端设备信息与所述客户端设备建立连接;第二通知单元,设置为在所述客户端设备停止工作、所述代理服务器获取所述客户端设备信息的情况下,向所述服务端发送第二通知消息,其中,所述第二通知消息用于所述服务端根据所述客户端设备信息与所述客户端设备停止连接。
根据本发明实施例的再一个方面,还提供了一种连接状态控制装置,设置于所述服务端,该装置包括:接收模块,设置为接收代理服务器根据客户端设备信息发送的通知消息;控制模块,设置为在所述通知消息的触发下,根据所述客户端设备信息控制所述服务端与所述客户端设备的连接状态。
可选地,所述控制模块,包括以下至少之一:连接单元,设置为在所述接收模块收到第一通知消息的情况下,根据所述客户端设备信息与所述客户端设备建立连接;断开单元,设置为在所述接收模块收到第二通知消息的情况下,根据所述客户端设备信息与所述客户端设备停止连接。
可选地,该装置还包括:检测模块,其中所述检测模块包括以下至少之一:启动单元,设置为在所述服务端与客户端设备建立连接的情况下,启动检测所述连接状态;停止单元,设置为在所述服务端与客户端设备停止连接的情况下,停止检测所述连接状态。
根据本发明实施例的还一个方面,提供了一种连接状态控制系统,包括:代理服务器,设置为获取客户端设备信息,并根据获取到的所述客户端设备信息向服务端发送通知消息;服务端,设置为接收所述代理服务器发送的所述通知消息,并在所述通知消息的触发下,根据所述客户端设备信息控制所述服务端与所述客户端设备的连接状态。
通过本发明实施例,代理服务器获取客户端设备信息,代理服务器根据客户端设备信息向服务端发送通知消息,其中,该通知消息用于服务端根据客户端设备信息控制该服务端与 该客户端设备的连接状态。使得在业务用户量出现下降或上升时,不需要暂停业务即可实现服务器的缩容或扩容,从而避免了服务器一直处于工作状态所造成的服务器硬件资源浪费
附图说明
此处所说明的附图用来提供对本发明的进一步理解,构成本申请的一部分,本发明的示意性实施例及其说明用于解释本发明,并不构成对本发明的不当限定。在附图中:
图1是根据本发明实施例的相关技术中智能网组网架构图;
图2是根据本发明实施例的相关技术中SIP消息分发组网架构图;
图3是根据本发明实施例的连接状态控制方法流程图一;
图4是根据本发明实施例的连接状态控制方法流程图二;
图5是根据本发明实施例的智能网组网架构示意图;
图6是根据本发明实施例的SIP消息分发组网架构示意图;
图7是根据本发明实施例的连接状态控制方法流程图三;
图8是根据本发明实施例的连接状态控制方法流程图四;
图9是根据本发明实施例的连接状态控制装置结构图一;
图10是根据本发明实施例的连接状态控制装置结构图二;
图11是根据本发明实施例的连接状态控制装置结构图三;
图12是根据本发明实施例的连接状态控制装置结构图四。
具体实施方式
下文中将参考附图并结合实施例来详细说明本发明。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组合。
需要说明的是,本发明的说明书和权利要求书及上述附图中的术语“第一”、“第二”等是用于区别类似的对象,而不必用于描述特定的顺序或先后次序。
下文中将参考附图并结合实施例来详细说明本发明。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组合。
本发明实施例提供了一种连接状态控制方法,图3是根据本发明实施例的连接状态控制方法流程图一,如图3所示,该方法包括:
S302,代理服务器获取客户端设备信息;
S304,代理服务器获取客户端设备信息,代理服务器根据客户端设备信息向服务端发送通知消息,其中,该通知消息用于服务端根据客户端设备信息控制该服务端与该客户端设备的连接状态。
通过本发明实施例,代理服务器获取客户端设备信息,代理服务器根据客户端设备信息向服务端发送通知消息,其中,该通知消息用于服务端根据客户端设备信息控制该服务端与该客户端设备的连接状态。使得在业务用户量出现下降或上升时,不需要暂停业务即可实现服务器的缩容或扩容,从而避免了服务器一直处于工作状态所造成的服务器硬件资源浪费。
在本发明的一个实施方式中,代理服务器根据客户端设备信息向服务器发送通知消息,包括以下至少之一:在客户端设备启动工作的情况下,代理服务器获取客户端设备信息并向服务端发送第一通知消息,其中,该第一通知消息用于服务端根据客户端设备信息与该客户端设备建立连接;在客户端设备停止工作的情况下,代理服务器获取客户端设备信息并向服务端发送第二通知消息,其中,该第二通知消息用于服务端根据客户端设备信息与该客户端设备停止连接。
本发明实施例还提供了一种连接状态控制方法,图4是根据本发明实施例的连接状态控制方法流程图二,如图4所示,该方法包括:服务端接收代理服务器根据客户端设备信息发送的通知消息,服务端在该通知消息的触发下,根据客户端设备信息控制该服务端与该客户端设备的连接状态。
通过本发明实施例,服务端接收代理服务器根据客户端设备信息发送的通知消息,服务端在该通知消息的触发下,根据客户端设备信息控制该服务端与该客户端设备的连接状态。使得在业务用户量出现下降或上升时,不需要暂停业务即可实现服务器的缩容或扩容,从而避免了服务器一直处于工作状态所造成的服务器硬件资源浪费。
在本发明的一个实施方式中,服务端根据客户端设备信息控制服务端与客户端设备的连接状态,包括以下至少之一:服务端接收代理服务器发送的第一通知消息,服务端在该第一通知消息的触发下,根据客户端设备信息与该客户端设备建立连接;服务端接收代理服务器发送的第二通知消息,服务端在该第二通知消息的触发下,根据客户端设备信息与该客户端设备停止连接。
在本发明的一个实施方式中,服务端根据客户端设备信息控制服务端与客户端设备的连接状态之后,还包括以下至少之一:在服务端与客户端设备建立连接的情况下,服务端启动检测连接状态;在服务端与客户端设备停止连接的情况下,服务端停止检测连接状态。
实例一
图5是根据本发明实施例的智能网组网架构示意图,在图5所示的架构中实现本发明实施例包括如下方法:
(一)智能网设备启动
1、SMP服务器启动时,连接代理服务器Agent,Agent可以通过接口机或第三方业务获取当前需要使用的SCP设备的信息列表。
2、SMP服务器启动后,仅需要与Agent获取到的若干SCP设备建立链接,并仅需要检 测这些SCP设备的链路是否正常。
3、SCP设备仅需要启动Agent设备提供信息列表中的SCP设备,未提供的SCP设备无需启动。
(二)智能网设备动态扩容
1、当需要扩容SCP设备时,新增的SCP设备在安装完成后即可启动。
2、新增的SCP设备都启动后,Agent设备更新当前在使用的SCP设备的信息列表,信息列表中包含新增的SCP设备的信息。
3、Agent设备在更新使用的SCP设备的信息列表后,通知SMP服务器。
4、SMP设备收到Agent通知后,对这些新增的SCP设备建立链接,并开始检测这些新SCP设备链路是否正常。
5、新SCP设备在无需停止SMP设备与其他SCP设备的情况下动态扩容成功。
(三)智能网设备动态缩容
1、当需要缩容SCP设备时,Agent设备更新当前在使用的SCP设备的信息列表,信息列表中将需要缩容的SCP设备的信息去除。
2、Agent设备在更新使用的SCP设备的信息列表后,通知SMP服务器。
3、SMP设备收到Agent通知后,不再与去除的SCP设备建立链接,并不再检测这些去除的SCP设备的链路是否正常。
4、去除的SCP设备即可停机,在不影响其他SCP设备的情况下动态缩容成功。
实例二
图6是根据本发明实施例的SIP消息分发组网架构示意图,在图6所示的架构中实现本发明实施例包括如下方法:
(一)SIP消息分发服务器与客户端设备启动
1、SIP消息分发服务器SIPproxy设备启动时,连接代理服务器Agent,Agent可以通过接口机或第三方业务获取当前需要使用的分发目标客户端设备AS的信息列表。
2、SIPproxy设备启动后,仅需要与从Agent设备获取到的若干分发目标客户端设备(AS1——ASn)建立链接,并仅需要检测这些分发目标客户端设备的链路是否正常。
3、分发目标客户端设备仅需要启动Agent设备所提供信息列表中的分发目标客户端设备,未提供的分发目标客户端设备无需启动。
(二)SIP消息分发服务器与客户端设备动态扩容
1、当需要扩容分发目标客户端设备时,新增的分发目标客户端设备在安装完成后即可启动。
2、新增的分发目标客户端设备都启动后,Agent设备更新当前在使用的分发目标客户端设备的信息列表,信息列表中包含新增的分发目标客户端设备的信息。
3、Agent设备在更新使用的分发目标客户端设备的信息列表后,通知消息分发服务器设备。
4、SIPproxy设备收到Agent通知后,对这些新增的分发目标客户端设备建立链接,并开始检测这些新分发目标客户端设备链路是否正常。
5、新分发目标客户端设备在无需停止消息分发服务器设备与其他分发目标客户端设备的情况下动态扩容成功。
(三)消息分发服务器与客户端设备动态缩容
1、当需要缩容分发目标客户端设备时,Agent设备更新当前在使用的分发目标客户端设备的信息列表,信息列表中将需要缩容的分发目标客户端设备的信息去除。
2、Agent设备在更新使用的分发目标客户端设备的信息列表后,通知SIPproxy设备。
3、SIPproxy设备收到Agent通知后,不再与去除的分发目标客户端设备建立链接,并不再检测这些去除的分发目标客户端设备的链路是否正常。
4、去除的分发目标客户端设备即可停机,在不影响其他分发目标客户端设备的情况下动态缩容成功。
实例三
图7是根据本发明实施例的连接状态控制方法流程图三,如图7所示,该方法以智能网动态扩容缩容为例,包括以下步骤:
1、智能网SMP设备与SCP设备启动。
2、智能网SMP设备启动时,向Agent设备获取发送请求消息,请求获取当前使用的SCP设备的列表。
3、Agent设备收到SMP设备请求后返回响应,并向SMP设备推送当前使用的SCP设备的列表信息。列表信息中包括SCP设备的必要信息,如局号、模块号等。
4、SMP设备根据收到的SCP信息列表,与SCP设备建立链接,并实时检测SCP设备的状态。
5、当智能网组网客户容量不足,需要扩容时,需完成如下步骤:
1)将需要扩容的SCP设备部署完毕并启动。
2)Agent更新当前使用的SCP设备的信息列表,新增需扩容SCP设备的信息。
3)Agent通知SMP设备当前使用的SCP设备信息列表已更新,SMP设备收到通知后响应。
4)Agent设备向SMP设备推送当前使用的SCP设备列表信息,列表信息中包括SCP设备的必要信息,如局号、模块号等。
6、当智能网组网客户容量过剩,需要缩容时,需完成如下步骤:
1)Agent更新当前使用的SCP设备的信息列表,去除需缩容SCP设备信息。
2)Agent通知SMP设备当前使用的SCP设备信息列表已更新,SMP设备收到通知后响应。
3)Agent设备向SMP设备推送当前使用的SCP设备列表信息,列表信息中不包括去除的SCP设备信息。
7、SMP设备收到更新后的当前使用的SCP设备列表,与前一次收到的SCP设备列表进行比较,对于没有变化的SCP设备信息保持不变,同时增加新增的SCP设备信息,删除去除的SCP设备信息。
8、SMP设备对新增的SCP设备建链,断开去除的SCP设备的链路,使当前SMP设备连接的SCP设备与更新后的SCP设备列表保持一致。
9、智能网组网完成动态伸缩,被缩容的SCP设备可停机。
实例四
图8是根据本发明实施例的连接状态控制方法流程图四,如图8所述,该方法以消息分发服务器与客户端设备动态扩容缩容为例,包括以下步骤:
1、消息分发服务器与客户端设备启动。
2、消息分发服务器启动时,向Agent设备获取发送请求消息,请求获取当前使用的客户端设备的列表。
3、Agent设备收到消息分发服务器请求后返回响应,并向消息分发服务器推送当前使用的客户端设备的列表信息。列表信息中包括客户端设备的必要信息,如分发目标客户端的IP地址、端口等。
4、消息分发服务器根据收到的客户端信息列表,与客户端设备建立链接,并实时检测客户端设备的状态。
5、当消息分发服务器与客户端的客户容量不足,需要扩容时,需完成如下步骤:
1)将需要扩容的客户端设备部署完毕并启动。
2)Agent更新当前使用的客户端设备的信息列表,新增需扩容客户端设备的信息。
3)Agent通知消息分发服务器当前使用的客户端设备信息列表已更新,消息分发服务器收到通知后响应。
4)Agent设备向消息分发服务器推送当前使用的客户端设备列表信息,列表信息中包括客户端设备的必要信息,如局号、模块号等。
6、当消息分发服务器与客户端的容量过剩,需要缩容时,需完成如下步骤:
1)Agent更新当前使用的客户端设备的信息列表,去除需缩容客户端设备。
2)Agent通知消息分发服务器当前使用的客户端设备信息列表已更新,消息分发服务器收到通知后响应。
3)Agent设备向消息分发服务器推送当前使用的客户端设备列表信息,列表信息中不包括去除的客户端设备信息。
7、消息分发服务器收到更新后的当前使用的客户端设备列表,与前一次收到的客户端设备列表进行比较,对于没有变化的客户端设备信息保持不变,同时增加新增的客户端设备信息,删除去除的客户端设备信息。
8、消息分发服务器更新分发策略,对新增的客户端设备分发,不再向去除的客户端设备分发,使当前消息分发服务器连接的客户端设备与更新后的客户端设备列表保持一致。
9、消息分发服务器与客户端设备完成动态伸缩,被缩容的客户端设备可停机。
本发明实施例还提供了一种连接状态控制装置,图9是根据本发明实施例的连接状态控制装置结构图一,如图9所示,该装置设置于代理服务器上,包括:获取模块902,设置为获取客户端设备信息;通知模块904,设置为根据客户端设备信息向服务端发送通知消息,其中,该通知消息用于服务端根据客户端设备信息控制该服务端与该客户端设备的连接状态。
通过本发明实施例,获取模块902获取客户端设备信息,通知模块904根据客户端设备信息向服务端发送通知消息,其中,该通知消息用于服务端根据客户端设备信息控制该服务端与该客户端设备的连接状态。使得在业务用户量出现下降或上升时,不需要暂停业务即可实现服务器的缩容或扩容,从而避免了服务器一直处于工作状态所造成的服务器硬件资源浪费。
在本发明的一个实施方式中,图10是根据本发明实施例的连接状态控制结构装置结构图二,如图10所示,通知模块1004包括以下至少之一:
第一通知单元,设置为在客户端设备启动工作、代理服务器获取该客户端设备信息的情况下,向该服务端发送第一通知消息,其中,该第一通知消息用于服务端根据客户端设备信息与该客户端设备建立连接;
第二通知单元,设置为在客户端设备停止工作、代理服务器获取该客户端设备信息的情 况下,向该服务端发送第二通知消息,其中,该第二通知消息用于服务端根据客户端设备信息与该客户端设备停止连接。
本发明实施例还提供了一种连接状态控制装置,图11是根据本发明实施例的连接状态控制装置结构图三,如图11所示,该装置设置于服务端,包括:接收模块1102,设置为接收代理服务器根据客户端设备信息发送的通知消息;控制模块1104,设置为在通知消息的触发下,根据客户端设备信息控制服务端与客户端设备的连接状态。
通过本发明实施例,接收模块1102接收代理服务器根据客户端设备信息发送的通知消息,控制模块1104在通知消息的触发下,根据客户端设备信息控制服务端与客户端设备的连接状态。使得在业务用户量出现下降或上升时,不需要暂停业务即可实现服务器的缩容或扩容,从而避免了服务器一直处于工作状态所造成的服务器硬件资源浪费。
在本发明的一个实施方式中,图12是根据本发明实施例的连接状态控制装置结构图四,如图12所示,控制模块1204包括以下至少之一:连接单元,设置为在接收模块收1202到第一通知消息的情况下,根据客户端设备信息与该客户端设备建立连接;断开单元,设置为在接收模块收1202到第二通知消息的情况下,根据客户端设备信息与该客户端设备停止连接。
在本发明的一个实施方式中,如图12所示,该装置还包括:检测模块1206,其中检测模块1206包括以下至少之一:启动单元,设置为在服务端与客户端设备建立连接的情况下,启动检测连接状态;停止单元,设置为在服务端与客户端设备停止连接的情况下,停止检测连接状态。
本发明实施例还提供了一种连接状态控制系统,包括:代理服务器,设置为获取客户端设备信息,并根据获取到的客户端设备信息向服务端发送通知消息;服务端,设置为接收上述代理服务器发送的通知消息,并在该通知消息的触发下,根据客户端设备信息控制该服务端与该客户端设备的连接状态。
通过本发明实施例,代理服务器,获取客户端设备信息,并根据获取到的客户端设备信息向服务端发送通知消息,服务端接收上述代理服务器发送的通知消息,并在该通知消息的触发下,根据客户端设备信息控制该服务端与该客户端设备的连接状态。使得在业务用户量出现下降或上升时,不需要暂停业务即可实现服务器的缩容或扩容,从而避免了服务器一直处于工作状态所造成的服务器硬件资源浪费。
显然,本领域的技术人员应该明白,上述的本发明实施例的各模块或各步骤可以用通用的计算装置来实现,它们可以集中在单个的计算装置上,或者分布在多个计算装置所组成的网络上,可选地,它们可以用计算装置可执行的程序代码来实现,从而,可以将它们存储在存储装置中由计算装置来执行,并且在某些情况下,可以以不同于此处的顺序执行所示出或描述的步骤,或者将它们分别制作成各个集成电路模块,或者将它们中的多个模块或步骤制作成单个集成电路模块来实现。这样,本发明不限制于任何特定的硬件和软件结合。
以上所述仅为本发明的优选实施例而已,并不用于限制本发明,对于本领域的技术人员 来说,本发明可以有各种更改和变化。凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。
工业实用性
如上所述,通过上述实施例及优选实施方式,使得在业务用户量出现下降或上升时,不需要暂停业务即可实现服务器的缩容或扩容,从而避免了服务器一直处于工作状态所造成的服务器硬件资源浪费。

Claims (11)

  1. 一种连接状态控制方法,包括:
    代理服务器获取客户端设备信息;
    所述代理服务器根据所述客户端设备信息向服务端发送通知消息,其中,所述通知消息用于所述服务端根据所述客户端设备信息控制所述服务端与所述客户端设备的连接状态。
  2. 根据权利要求1所述的方法,其中,所述代理服务器根据所述客户端设备信息向服务器发送通知消息,包括以下至少之一:
    在所述客户端设备启动工作的情况下,所述代理服务器获取所述客户端设备信息并向所述服务端发送第一通知消息,其中,所述第一通知消息用于所述服务端根据所述客户端设备信息与所述客户端设备建立连接;
    在所述客户端设备停止工作的情况下,所述代理服务器获取所述客户端设备信息并向所述服务端发送第二通知消息,其中,所述第二通知消息用于所述服务端根据所述客户端设备信息与所述客户端设备停止连接。
  3. 一种连接状态控制方法,包括:
    服务端接收代理服务器根据客户端设备信息发送的通知消息;
    所述服务端在所述通知消息的触发下,根据所述客户端设备信息控制所述服务端与所述客户端设备的连接状态。
  4. 根据权利要求3所述的方法,其中,所述服务端根据所述客户端设备信息控制所述服务端与所述客户端设备的连接状态,包括以下至少之一:
    所述服务端接收所述代理服务器发送的第一通知消息,所述服务端在所述第一通知消息的触发下,根据所述客户端设备信息与所述客户端设备建立连接;
    所述服务端接收所述代理服务器发送的第二通知消息,所述服务端在所述第二通知消息的触发下,根据所述客户端设备信息与所述客户端设备停止连接。
  5. 根据权利要求3所述的方法,其中,所述服务端根据所述客户端设备信息控制所述服务端与所述客户端设备的连接状态之后,还包括以下至少之一:
    在所述服务端与客户端设备建立连接的情况下,所述服务端启动检测所述连接状态;
    在所述服务端与客户端设备停止连接的情况下,所述服务端停止检测所述连接状态。
  6. 一种连接状态控制装置,设置于所述代理服务器上,该装置包括:
    获取模块,设置为获取客户端设备信息;
    通知模块,设置为根据所述客户端设备信息向服务端发送通知消息,其中,所述通 知消息用于所述服务端根据所述客户端设备信息控制所述服务端与所述客户端设备的连接状态。
  7. 根据权利要求6所述的装置,其中,所述通知模块包括以下至少之一:
    第一通知单元,设置为在所述客户端设备启动工作、所述代理服务器获取所述客户端设备信息的情况下,向所述服务端发送第一通知消息,其中,所述第一通知消息用于所述服务端根据所述客户端设备信息与所述客户端设备建立连接;
    第二通知单元,设置为在所述客户端设备停止工作、所述代理服务器获取所述客户端设备信息的情况下,向所述服务端发送第二通知消息,其中,所述第二通知消息用于所述服务端根据所述客户端设备信息与所述客户端设备停止连接。
  8. 一种连接状态控制装置,设置于服务端,该装置包括:
    接收模块,设置为接收代理服务器根据客户端设备信息发送的通知消息;
    控制模块,设置为在所述通知消息的触发下,根据所述客户端设备信息控制所述服务端与所述客户端设备的连接状态。
  9. 根据权利要求8所述的装置,其中,所述控制模块,包括以下至少之一:
    连接单元,设置为在所述接收模块收到第一通知消息的情况下,根据所述客户端设备信息与所述客户端设备建立连接;
    断开单元,设置为在所述接收模块收到第二通知消息的情况下,根据所述客户端设备信息与所述客户端设备停止连接。
  10. 根据权利要求8所述的装置,其中,该装置还包括:
    检测模块,其中所述检测模块包括以下至少之一:
    启动单元,设置为在所述服务端与客户端设备建立连接的情况下,启动检测所述连接状态;
    停止单元,设置为在所述服务端与客户端设备停止连接的情况下,停止检测所述连接状态。
  11. 一种连接状态控制系统,包括:
    代理服务器,设置为获取客户端设备信息,并根据获取到的所述客户端设备信息向服务端发送通知消息;
    服务端,设置为接收所述代理服务器发送的所述通知消息,并在所述通知消息的触发下,根据所述客户端设备信息控制所述服务端与所述客户端设备的连接状态。
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