CN203645671U - Fiber switching protection system - Google Patents

Fiber switching protection system Download PDF

Info

Publication number
CN203645671U
CN203645671U CN201320764723.XU CN201320764723U CN203645671U CN 203645671 U CN203645671 U CN 203645671U CN 201320764723 U CN201320764723 U CN 201320764723U CN 203645671 U CN203645671 U CN 203645671U
Authority
CN
China
Prior art keywords
optical fiber
unit
signal
transmission
fiber switching
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201320764723.XU
Other languages
Chinese (zh)
Inventor
郑国华
唐龙江
王阳
朱兵
叶水勇
倪谷平
宁卫东
汪永丰
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Huangshan Power Supply Co of State Grid Anhui Electric Power Co Ltd
State Grid Corp of China SGCC
Original Assignee
Huangshan Power Supply Co of State Grid Anhui Electric Power Co Ltd
State Grid Corp of China SGCC
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Huangshan Power Supply Co of State Grid Anhui Electric Power Co Ltd, State Grid Corp of China SGCC filed Critical Huangshan Power Supply Co of State Grid Anhui Electric Power Co Ltd
Priority to CN201320764723.XU priority Critical patent/CN203645671U/en
Application granted granted Critical
Publication of CN203645671U publication Critical patent/CN203645671U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Landscapes

  • Optical Communication System (AREA)

Abstract

Provided is fiber switching protection system which comprises a transmitting device for transmitting a communication signal, transmission routes for conveying a signal, and a fiber switching device for switching fibers. The fiber switching device is equipped with a switching unit and a detecting unit. The communication signal enters the fiber switching device and then is conveyed to a transmission route. The transmitting device is provided with a power supply unit, a control unit, and a network management unit. The power supply unit supplies power to the system. The network management unit is connected with the control unit. The system resolves a problem that a great number manpower is required if a fiber is broken, and simultaneously provides two transmission routes for a transmitted signal. If a fault occurs to a route, the signal can be immediately switched to the other transmission route within 35 ms, thereby guaranteeing the signal not to be interrupted.

Description

光纤切换保护系统Optical Fiber Switching Protection System

技术领域technical field

本实用新型涉及电力通信技术领域,具体涉及到光纤切换保护系统。The utility model relates to the technical field of electric power communication, in particular to an optical fiber switching protection system.

背景技术Background technique

随着通信技术的发展和需求的变化,通信传输网络已基本形成全光网络,并对传输网络安全性能提出了更高的要求。光纤通信网络的传输媒介为光缆,常采用埋地,架空等方式,由于近年来城市建设的需求,各种工程施工建设较为频繁,对通信光缆的安全产生了极大的隐患,在施工中挖断通信光缆的事件常有发生,同时频发的自然灾害也威胁到通信光缆的安全。在通信故障事件中,其中因通信光缆故障发生的往往占有极高的比例。若能在通信光缆发故障时,找到一种应急手段保障整个网络的正常通信,无疑大大提高网络的安全性。目前应急手段主要有两种:1.组建环形网络,使其具有自愈功能;2.人工手动调度,在出现故障时,通过人工现场将业务调度到另外一条光缆路由上。前者,能够实现一定的网络保护,但是无法应对两点及以上同时发生故障的情况,且必须要求网络成环,无法适应全部情况。后者,实时性差,当今形势下,对网络中断的时间有着严苛的要求,人工现场调度显然不能满足需求。With the development of communication technology and changes in requirements, the communication transmission network has basically formed an all-optical network, and puts forward higher requirements for the security performance of the transmission network. The transmission medium of the optical fiber communication network is optical cable, which is often buried or overhead. Due to the needs of urban construction in recent years, various engineering constructions are relatively frequent, which poses a great hidden danger to the safety of communication optical cables. Incidents of breaking communication optical cables often occur, and frequent natural disasters also threaten the safety of communication optical cables. Among the communication failure events, the failure of communication optical cables often accounts for a very high proportion. If an emergency method can be found to ensure the normal communication of the entire network when the communication optical cable fails, the security of the network will undoubtedly be greatly improved. At present, there are two main emergency measures: 1. Set up a ring network to make it have a self-healing function; 2. Manual scheduling. In the event of a failure, the business is scheduled to another optical cable route through manual on-site. The former can achieve a certain degree of network protection, but it cannot cope with the situation that two or more points fail at the same time, and must require the network to form a loop, which cannot adapt to all situations. The latter has poor real-time performance. Under the current situation, there are strict requirements on the time of network interruption, and manual on-site scheduling obviously cannot meet the demand.

正是在上面描述的背景下,产生了通信光纤切换系统。即:当光纤发生断裂时,通过系统可以将发生断裂的光纤断切换到事先准备好的备用光纤进行通信,保证在尽可能短的时间内恢复正常通信。It is under the background described above that the communication optical fiber switching system is produced. That is: when the optical fiber is broken, the system can switch the broken optical fiber to the prepared spare optical fiber for communication, so as to ensure that normal communication can be restored in the shortest possible time.

实用新型内容Utility model content

本实用新型的目的是提供一种光纤切换保护系统,该系统能够在光缆线路出现故障时,自动实现光缆线路的切换,从而保障业务正常通信。The purpose of the utility model is to provide an optical fiber switching protection system, which can automatically realize the switching of the optical cable line when the optical cable line fails, so as to ensure the normal communication of the business.

为实现上述目的,本实用新型采用了以下技术方案:In order to achieve the above object, the utility model adopts the following technical solutions:

一种光纤切换保护系统,该系统包括发送通信信号的传输设备和输送信号的传输路由,该系统还包括进行光纤切换的光纤切换设备,光纤切换设备上设有切换单元和探测单元,通信信号进入光纤切换设备后输送到传输路由。所述传输设备上设有供电单元、控制单元和网管单元,供电单元为系统供电,网管单元连接控制单元。An optical fiber switching protection system, the system includes a transmission device for sending communication signals and a transmission route for transmitting signals, the system also includes an optical fiber switching device for performing optical fiber switching, the optical fiber switching device is provided with a switching unit and a detection unit, and the communication signal enters After the optical fiber switches the equipment, it is transported to the transmission route. The transmission equipment is provided with a power supply unit, a control unit and a network management unit, the power supply unit supplies power to the system, and the network management unit is connected to the control unit.

所述探测单元包括激光器、探测器和97:3的分光器。The detection unit includes a laser, a detector and a 97:3 beam splitter.

一种光纤切换保护方法,其步骤包括:步骤一、信号发送端,传输设备发送通信信号进入光纤切换设备;步骤二、光纤切换设备上的探测单元探测传输路由的状态;步骤三、若传输路由出现故障,光纤切换设备上的切换单元收到信号切换路由;步骤四、通信信号通过光纤切换设备的输出端进入传输路由;步骤五、信号接收端,通信信号通过光纤切换设备的输入端到达传输设备。A kind of optical fiber switching protection method, its steps include: Step 1, signal sending end, transmission equipment sends communication signal and enters optical fiber switching equipment; Step 2, the detection unit on the optical fiber switching equipment detects the state of transmission route; When a fault occurs, the switching unit on the fiber optic switching device receives a signal to switch the route; step 4, the communication signal enters the transmission route through the output end of the fiber optic switching device; step 5, the signal receiving end, the communication signal reaches the transmission route through the input end of the fiber optic switching device equipment.

所述光纤切换设备有两个输入端和输出端分别均连接相应不同的传输路由。The optical fiber switching device has two input ends and output ends which are respectively connected to corresponding different transmission routes.

本实用新型的有益效果在于:当采用上述结构以后,由于同时给传输信号提供了两条传输路由,当一条路由出现故障时,可以在35ms内立即切换至另外一个传输路由,保证信号传输不会中断。The beneficial effect of the utility model is that: after the above-mentioned structure is adopted, since two transmission routes are provided for the transmission signal at the same time, when one route fails, it can be switched to another transmission route immediately within 35ms to ensure that the signal transmission will not interruption.

附图说明Description of drawings

图1为本系统的应用结构示意图;Figure 1 is a schematic diagram of the application structure of the system;

1为光纤切换设备;2为传输路由一;3为传输路由二。1 is the optical fiber switching device; 2 is the transmission route one; 3 is the transmission route two.

具体实施方式Detailed ways

下面对照附图,通过对实施例的描述,本实用新型的具体实施方式如所涉及的各构件的形状、构造、各部分之间的相互位置及连接关系、各部分的作用及工作原理、制造工艺及操作使用方法等,作进一步详细的说明,以帮助本领域技术人员对本实用新型的实用新型构思、技术方案有更完整、准确和深入的理解。Below, referring to the accompanying drawings, through the description of the embodiments, the specific implementation of the present utility model, such as the shape and structure of each component involved, the mutual position and connection relationship between each part, the function and working principle of each part, and manufacturing The process, operation and use methods, etc. are further described in detail to help those skilled in the art have a more complete, accurate and in-depth understanding of the utility model concept and technical solution of the utility model.

如图2所示,一种光纤切换保护系统,系统包括发送通信信号的传输设备、进行光纤切换的光纤切换设备和输送信号的传输路由,传输设备上设有供电单元、控制单元和网管单元,光纤切换设备上设有切换单元和探测单元,传输路由有两个分别记为传输路一和传输路由二。控制单元:采用ARM芯片,写入控制程序,ARM芯片体积小、功耗低、成本低、性能高,控制单元用于控制整个系统的工作;切换单元:由4个1×2光开关组成,单个光开关插入损耗小于0.8dB,切换时间小于15ms,短暂的切换单元可以保证通信的正常运行;探测单元:由激光器、探测器、分光器组成,分光器可选型号为97:3,探测单元能够探测光信号的通断;供电单元:支持模块式热插拔双电源,可支持-48V和220V供电,双电源增加了可选择性,热插拔模式使得不需要关闭设备就可插拔电源,使用更加方便;网管单元:支持TCP/IP网管管理,提供RS232和RJ45控制接口,RS232和RJ45是常用的数据传输接口,接口有多种模式,选择范围大,使用广泛。因为探测单元和切换单元的综合使用,该系统能够自动实现光缆线路的切换,从而保障业务正常通信。As shown in Figure 2, an optical fiber switching protection system, the system includes transmission equipment for sending communication signals, optical fiber switching equipment for performing optical fiber switching, and transmission routes for transmitting signals. The transmission equipment is provided with a power supply unit, a control unit and a network management unit. The optical fiber switching device is provided with a switching unit and a detection unit, and there are two transmission routes, which are respectively recorded as transmission route 1 and transmission route 2. Control unit: ARM chip is used to write the control program. The ARM chip is small in size, low in power consumption, low in cost and high in performance. The control unit is used to control the work of the entire system; switching unit: composed of four 1×2 optical switches, The insertion loss of a single optical switch is less than 0.8dB, and the switching time is less than 15ms. The short switching unit can ensure the normal operation of the communication; the detection unit: consists of a laser, a detector, and a beam splitter. The optional model of the beam splitter is 97:3, and the detection unit Can detect the on-off of optical signals; power supply unit: support modular hot-swappable dual power supplies, which can support -48V and 220V power supply, dual power supplies increase selectivity, and the hot-swappable mode makes it possible to plug and unplug the power supply without shutting down the device , more convenient to use; network management unit: support TCP/IP network management, provide RS232 and RJ45 control interface, RS232 and RJ45 are commonly used data transmission interface, the interface has a variety of modes, a wide range of choices, widely used. Due to the comprehensive use of the detection unit and the switching unit, the system can automatically realize the switching of the optical cable line, thereby ensuring the normal communication of the business.

一种光纤切换保护方法,其步骤包括:步骤一、信号发送端,传输设备发送通信信号进入光纤切换设备;步骤二、光纤切换设备有两个输出端分别连接不同的传输路由,传输路由有两个为工作状态的工作路由和空闲状态的空闲路由,光纤切换设备上的探测单元探测工作路由和空闲路由的状态;步骤三、若工作路由出现故障,同时检测到空闲路由无障碍,光纤切换设备上的切换单元接收信号立即发送切换动作,将信号切换到无故障路由上传输,保证信号传输不中断;步骤四、通信信号通过光纤切换设备的输出端进入传输路由;步骤五、信号接收端,通信信号通过光纤切换设备的输入端到达传输设备。A kind of optical fiber switching protection method, its steps include: step 1, signal sending end, transmission equipment sends communication signal and enters optical fiber switching equipment; One is the working route in the working state and the idle route in the idle state. The detection unit on the optical fiber switching device detects the status of the working route and the idle route; The switching unit on the switch immediately sends a switching action after receiving the signal, and switches the signal to the fault-free route for transmission to ensure that the signal transmission is not interrupted; step 4, the communication signal enters the transmission route through the output end of the optical fiber switching device; step 5, the signal receiving end, The communication signal reaches the transmission device through the input end of the optical fiber switching device.

通信信号由传输设备发出后,进入到光纤切换设备,光纤切换设备两个输出端分别连接不同的传输路由,在信号接收端,光纤切换设备的两个输入端分别连接对应的不同传输路由,输出信号给传输设备。整个系统的核心组成为切换单元的4个1×2光开关,配合控制电路及ARM芯片,实现光纤的切换。当通信信号接入到光纤切换设备时,由于光开关同一时间只能连通一路,其信号需要选择在路由一或者路由二传输,保持一路工作,一路空闲,当探测单元探测到当前工作路由出现故障时,并同时检测到空闲路由无故障时,切换单元立即发送切换动作,将信号切换到无故障路由上传输,保证信号传输不中断。当采用上述结构以后,由于同时给传输信号提供了两条传输路由,当一条路由出现故障时,控制单元可以在35ms内立即判断并发送指令切换至另外一个传输路由,保证信号传输不会中断。After the communication signal is sent by the transmission equipment, it enters the optical fiber switching equipment. The two output ends of the optical fiber switching equipment are respectively connected to different transmission routes. At the signal receiving end, the two input ends of the optical fiber switching signal to the transmission device. The core of the whole system consists of four 1×2 optical switches of the switching unit, which cooperate with the control circuit and ARM chip to realize the switching of optical fibers. When the communication signal is connected to the optical fiber switching device, since the optical switch can only connect to one channel at the same time, its signal needs to be transmitted in route one or route two, keep one channel working and one channel idle, when the detection unit detects that the current working route is faulty , and at the same time detect that the idle route is fault-free, the switching unit immediately sends a switching action to switch the signal to the fault-free route for transmission, ensuring that the signal transmission is not interrupted. After the above structure is adopted, since two transmission routes are provided for the transmission signal at the same time, when one route fails, the control unit can immediately judge and send an instruction to switch to another transmission route within 35ms to ensure that the signal transmission will not be interrupted.

上面结合附图对本实用新型进行了示例性描述,显然本实用新型具体实现并不受上述方式的限制,只要采用了本实用新型的方法构思和技术方案进行的各种非实质性的改进,或未经改进将本实用新型的构思和技术方案直接应用于其它场合的,均在本实用新型的保护范围之内。The utility model has been exemplarily described above in conjunction with the accompanying drawings. Obviously, the specific implementation of the utility model is not limited by the above-mentioned methods, as long as various insubstantial improvements are made by adopting the method concept and technical solutions of the utility model, or Directly applying the ideas and technical solutions of the utility model to other occasions without improvement is within the protection scope of the utility model.

Claims (4)

1. an optical fiber switch protecting system; this system comprises the transmission route of the transmission equipment and the conveying signal that send signal of communication; it is characterized in that; this system also comprises the optical fiber switching device that carries out optical fiber switching; optical fiber switching device is provided with switch unit and probe unit, and signal of communication is transported to transmission route after entering optical fiber switching device.
2. optical fiber switch protecting system according to claim 1, is characterized in that, described transmission equipment is provided with power supply unit, control unit and network management unit, and power supply unit is system power supply, network management unit connection control unit.
3. optical fiber switch protecting system according to claim 1, is characterized in that, described probe unit comprises laser, detector and optical splitter.
4. optical fiber switch protecting system according to claim 1, is characterized in that, described optical fiber switching device has two inputs to be all connected respectively corresponding different transmission route with output.
CN201320764723.XU 2013-11-27 2013-11-27 Fiber switching protection system Expired - Fee Related CN203645671U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320764723.XU CN203645671U (en) 2013-11-27 2013-11-27 Fiber switching protection system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320764723.XU CN203645671U (en) 2013-11-27 2013-11-27 Fiber switching protection system

Publications (1)

Publication Number Publication Date
CN203645671U true CN203645671U (en) 2014-06-11

Family

ID=50876889

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201320764723.XU Expired - Fee Related CN203645671U (en) 2013-11-27 2013-11-27 Fiber switching protection system

Country Status (1)

Country Link
CN (1) CN203645671U (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103795458A (en) * 2013-11-27 2014-05-14 国家电网公司 Optical fiber switching protection system and control method thereof
CN104301032A (en) * 2014-10-29 2015-01-21 国家电网公司 Optical line automatic switchover protection system
CN104617553A (en) * 2015-02-15 2015-05-13 桂林恒毅金宇通信技术有限公司 Photo-switch switching protection device
CN107070543A (en) * 2017-04-13 2017-08-18 国家电网公司 A kind of intelligent substation do not have a power failure carry out optical-fibre channel inspection method
CN111049570A (en) * 2019-12-20 2020-04-21 国家电网有限公司 Optical fiber line automatic switching protection system

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103795458A (en) * 2013-11-27 2014-05-14 国家电网公司 Optical fiber switching protection system and control method thereof
CN104301032A (en) * 2014-10-29 2015-01-21 国家电网公司 Optical line automatic switchover protection system
CN104617553A (en) * 2015-02-15 2015-05-13 桂林恒毅金宇通信技术有限公司 Photo-switch switching protection device
CN107070543A (en) * 2017-04-13 2017-08-18 国家电网公司 A kind of intelligent substation do not have a power failure carry out optical-fibre channel inspection method
CN107070543B (en) * 2017-04-13 2019-07-05 国家电网公司 A kind of intelligent substation does not have a power failure the method for carrying out optical-fibre channel inspection
CN111049570A (en) * 2019-12-20 2020-04-21 国家电网有限公司 Optical fiber line automatic switching protection system

Similar Documents

Publication Publication Date Title
CN103795458A (en) Optical fiber switching protection system and control method thereof
CN102801467A (en) Device and method for implementing dual optical fiber protection switching based on ONU
CN104753585A (en) Intelligent optical fiber distribution device
CN102412896A (en) Optical line protection system for realizing single-end monitoring
CN111817778A (en) Optical cable remote monitoring device and method at the end of power optical transmission network
CN201805421U (en) Communication device between direct current (DC) protection systems and DC control systems
CN202334524U (en) Optical link protecting system realizing single-end monitoring
CN103267918A (en) In-place installed remote debugging system and in-place installed remote debugging method for relay protective device
CN102082454B (en) Based-battery power supply unit and power supply control method
CN110247700B (en) Intelligent optical cable monitoring system and method with optical cable protection function
CN204256103U (en) A kind of monitoring system of the transmission line travelling wave localization of fault based on mobile Internet
CN202679365U (en) An optical fiber protection device
CN209930259U (en) Intelligent optical cable monitoring system with optical cable protection function
CN205081785U (en) Light bypass protection system
CN103117800A (en) Fiber optic cable anti-theft monitoring system
CN105141357A (en) Automatic detection and verification system based on secondary system of vehicle-mounted mobile station
CN203287457U (en) Remote debugging system of on-site installation type protective relaying device
CN207369037U (en) A kind of optical cable multichannel fibre core real-time monitoring device and system
CN207304564U (en) With Backup lightpath and failure can self-healing double mode optic-fiber monitoring system
CN203104451U (en) Industrial ONU equipment
CN201976106U (en) Automatic reversing switch based on protection of light communication device
CN102568179B (en) Two-channel wireless transmission power monitoring system and monitoring method thereof
CN215268278U (en) A power optical cable network line detection system
CN202721676U (en) Intelligentized optical fiber communication network protection system
CN201403096Y (en) Fault and power-off protection device for optical transmission device

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
C53 Correction of patent of invention or patent application
CB03 Change of inventor or designer information

Inventor after: Dong Yong

Inventor after: Zheng Guohua

Inventor after: Tang Longjiang

Inventor after: Wang Yang

Inventor after: Zhu Bing

Inventor after: Ye Shuiyong

Inventor after: Ni Guping

Inventor after: Ning Weidong

Inventor after: Wang Yongfeng

Inventor before: Zheng Guohua

Inventor before: Tang Longjiang

Inventor before: Wang Yang

Inventor before: Zhu Bing

Inventor before: Ye Shuiyong

Inventor before: Ni Guping

Inventor before: Ning Weidong

Inventor before: Wang Yongfeng

COR Change of bibliographic data

Free format text: CORRECT: INVENTOR; FROM: ZHENG GUOHUA TANG LONGJIANG WANG YANG ZHU BING YE SHUIYONG NI GUPING NING WEIDONG WANG YONGFENG TO: DONG YONG ZHENG GUOHUA TANG LONGJIANG WANG YANG ZHU BING YE SHUIYONG NI GUPING NING WEIDONG WANG YONGFENG

CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140611

CF01 Termination of patent right due to non-payment of annual fee