WO2013177914A1 - 跳纤连接检测方法和跳纤连接检测装置 - Google Patents

跳纤连接检测方法和跳纤连接检测装置 Download PDF

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Publication number
WO2013177914A1
WO2013177914A1 PCT/CN2012/086029 CN2012086029W WO2013177914A1 WO 2013177914 A1 WO2013177914 A1 WO 2013177914A1 CN 2012086029 W CN2012086029 W CN 2012086029W WO 2013177914 A1 WO2013177914 A1 WO 2013177914A1
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WO
WIPO (PCT)
Prior art keywords
port
ports
optical fiber
plug
fiber distribution
Prior art date
Application number
PCT/CN2012/086029
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English (en)
French (fr)
Inventor
吴诗全
李阳贤
贾国昌
Original Assignee
华为技术有限公司
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 华为技术有限公司 filed Critical 华为技术有限公司
Priority to EP12877693.7A priority Critical patent/EP2858267B1/en
Publication of WO2013177914A1 publication Critical patent/WO2013177914A1/zh
Priority to US14/554,464 priority patent/US9461737B2/en

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B10/00Transmission systems employing electromagnetic waves other than radio-waves, e.g. infrared, visible or ultraviolet light, or employing corpuscular radiation, e.g. quantum communication
    • H04B10/07Arrangements for monitoring or testing transmission systems; Arrangements for fault measurement of transmission systems
    • H04B10/075Arrangements for monitoring or testing transmission systems; Arrangements for fault measurement of transmission systems using an in-service signal
    • H04B10/079Arrangements for monitoring or testing transmission systems; Arrangements for fault measurement of transmission systems using an in-service signal using measurements of the data signal
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B10/00Transmission systems employing electromagnetic waves other than radio-waves, e.g. infrared, visible or ultraviolet light, or employing corpuscular radiation, e.g. quantum communication
    • H04B10/07Arrangements for monitoring or testing transmission systems; Arrangements for fault measurement of transmission systems
    • H04B10/075Arrangements for monitoring or testing transmission systems; Arrangements for fault measurement of transmission systems using an in-service signal
    • H04B10/077Arrangements for monitoring or testing transmission systems; Arrangements for fault measurement of transmission systems using an in-service signal using a supervisory or additional signal
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q1/00Details of selecting apparatus or arrangements
    • H04Q1/02Constructional details
    • H04Q1/13Patch panels for monitoring, interconnecting or testing circuits, e.g. patch bay, patch field or jack field; Patching modules
    • H04Q1/135Patch panels for monitoring, interconnecting or testing circuits, e.g. patch bay, patch field or jack field; Patching modules characterized by patch cord details
    • H04Q1/136Patch panels for monitoring, interconnecting or testing circuits, e.g. patch bay, patch field or jack field; Patching modules characterized by patch cord details having patch field management or physical layer management arrangements
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/24Coupling light guides
    • G02B6/36Mechanical coupling means
    • G02B6/38Mechanical coupling means having fibre to fibre mating means
    • G02B6/3807Dismountable connectors, i.e. comprising plugs
    • G02B6/3895Dismountable connectors, i.e. comprising plugs identification of connection, e.g. right plug to the right socket or full engagement of the mating parts

Definitions

  • the invention relates to a Chinese patent application for a fiber-optic connection detection method and a fiber-optic connection detection device.
  • the application is filed on May 30, 2012, the application number is 201210173419.8, and the invention name is "jump connection detection method and jumper connection detection device".
  • Priority is hereby incorporated by reference in its entirety.
  • the present invention relates to information technology, and in particular, to a fiber jumper connection detecting method and a fiber jumper connection detecting device. Background technique
  • ODN optical distribution network
  • a two-dimensional identification code or an identification (ID) identification chip is usually disposed on the jumper plug, and the two-dimensional identification code on the jumper plug inserted on each port on the ODN device is identified by the reading device. Or ID to determine whether the device port connected to each fiber jumper is correct.
  • this method requires the reading device to read the two-dimensional identification code or ID of the fiber plug one by one, so that the jumper connection detection efficiency is low.
  • the embodiment of the invention provides a method for detecting a fiber jumper connection and a fiber jumper connection device to improve the detection efficiency of the fiber jumper connection.
  • an embodiment of the present invention provides a method for connecting a fiber jumper, including:
  • the optical fiber distribution device Receiving second configuration information reported by the optical fiber distribution device, where the second configuration information includes a port identifier of at least one pair of ports connected to the optical fiber distribution device;
  • An embodiment of the present invention provides another method for connecting a fiber jumper, including:
  • the second configuration information is reported to the fiber-optic connection detecting device, where the second configuration information includes a port identifier of at least one pair of ports connected to the fiber-optic wiring device, so that the jumper fiber connection detecting device is delivered according to the management system.
  • the matching port indicated by the first configuration information is matched with the connected port indicated by the second configuration information to obtain a matching result, where the matching result includes the connected port that does not match the port to be connected.
  • the port identifier of the unconnected port where the first configuration information includes a port identifier of at least one pair of ports to be connected on the fiber distribution device.
  • the embodiment of the present invention further provides a device for detecting a fiber jumper connection, comprising: a receiver, configured to receive first configuration information delivered by a management system, where the first configuration information includes an optical fiber distribution device a port identifier of the at least one pair of ports connected; the second configuration information reported by the fiber distribution device, the second configuration information includes a port of at least one pair of ports connected to the fiber distribution device Identification
  • a matching module configured to match a port to be connected indicated by the first configuration information with a connected port indicated by the second configuration information, to obtain a matching result, where the matching result includes the The connected port does not match the port ID of the connected port and the unconnected port.
  • the embodiment of the invention further provides an optical fiber configuration device, including:
  • a transmitter configured to report second configuration information to the fiber jumper connection detecting device, where the second configuration
  • the information includes a port identifier of the at least one pair of ports connected to the fiber distribution device, so that the jumper connection detecting device indicates the port to be connected and the second configuration indicated by the first configuration information delivered by the management system.
  • the matched port indicated by the information is matched to obtain a matching result, where the matching result includes the port identifier of the connected port and the unconnected port that do not match the port to be connected, and the first configuration information includes the optical fiber.
  • the port identification of at least one pair of ports to be connected to the wiring device is configured to report second configuration information to the fiber jumper connection detecting device, where the second configuration
  • the information includes a port identifier of the at least one pair of ports connected to the fiber distribution device, so that the jumper connection detecting device indicates the port to be connected and the second configuration indicated by the first configuration information delivered by the management system.
  • the matched port indicated by the information is matched to obtain a matching
  • the method for detecting the fiber-optic connection and the fiber-optic connection device obtained by the embodiment of the present invention obtains the port identifier of the port to be connected and the port identifier of the connected port reported by the fiber-optic wiring device, which are obtained by the fiber-optic connection detecting device.
  • FIG. 1 is a flowchart of an embodiment of a method for detecting a fiber jumper connection according to the present invention
  • FIG. 2 is a schematic diagram of a connection relationship of each device in the embodiment shown in FIG.
  • FIG. 3 is a flowchart of still another embodiment of a method for detecting a fiber jumper according to the present invention
  • FIG. 4 is a flowchart of an embodiment of a method for connecting a fiber jumper according to the present invention
  • FIG. 5 is a schematic diagram of a connection relationship of each device in the embodiment shown in FIG. 4;
  • FIG. 5 is a schematic diagram of a connection relationship of each device in the embodiment shown in FIG. 4;
  • FIG. 6 is a schematic structural diagram of an embodiment of a fiber jumper connection detecting device according to the present invention
  • FIG. 7 is a schematic structural diagram of another embodiment of a fiber jumper connection detecting device according to the present invention
  • FIG. 9 is a schematic structural diagram of still another embodiment of an optical fiber configuration device according to the present invention.
  • FIG. 1 is a flowchart of an embodiment of a method for detecting a fiber jumper connection according to the present invention. As shown in FIG. 1, the method includes:
  • the first configuration information is sent by the management system, and the first configuration information includes port identifiers of at least one pair of ports that should be connected to the optical fiber distribution device.
  • the fiber-optic connection detection device can be independent of the management device and at least one fiber configuration device, for example, an intelligent optical distribution network (iODN).
  • iODN intelligent optical distribution network
  • the jumper connection detection device and the fiber distribution device can communicate wirelessly or by wire, for example: through a Universal Serial Bus (USB), a serial port, a SegBee, and the like.
  • the fiber jumper connection detection device and the management system can also communicate wirelessly or by wire, for example: through a mobile communication network (2G, 3G, 4G, etc.), Wireless Fidelity (WIFI), Global Microwave Interconnection Worldwide Interoperability for Microwave Access (WiMAX), copper wire, fiber jumper, USB, etc.
  • a mobile communication network 2G, 3G, 4G, etc.
  • WIFI Wireless Fidelity
  • WiMAX Global Microwave Interconnection Worldwide Interoperability for Microwave Access
  • the jumper fiber in the embodiment of the present invention may correspond to a plug identifier on each plug, and the plug identifier may pass, for example, an electronic identity (elD), a two-dimensional identification code (QR), and a radio frequency identification chip (Radio). Frequency IDentification, RFID) and other forms of implementation.
  • elD electronic identity
  • QR two-dimensional identification code
  • Radio radio frequency identification chip
  • the jumper fiber connection detecting device involved in the embodiment of the present invention can detect the connection between at least one fiber distribution device port.
  • the detection may be performed periodically, or may be triggered by a management device, a fiber distribution device, or a fiber jump connection detecting device according to actual needs.
  • a human-computer interaction interface can be set on the jumper connection detecting device, and the detection can be triggered by an operator.
  • the management device may carry the port identifier of each port of the port pair to be connected on the fiber distribution device in the first configuration information and send the data to the fiber jump connection detecting device.
  • the fiber distribution device The second configuration information carried by the port identifier of each port of the connected port pair on the fiber distribution device may also be sent to the fiber jumper connection detecting device.
  • the fiber-optic connection detecting device may request the management device to acquire the first configuration information. Requesting acquisition of the second configuration information from the fiber distribution device.
  • the fiber jumper connection detecting device may indicate the port to be connected and the second configuration information indicated in the first configuration information.
  • the connected ports are matched to determine the port IDs of the connected and unconnected ports that do not match the port that should be connected.
  • the jumper connection detecting device detects the connection between the ports of the optical fiber distribution device
  • the port identifier of all the connected port pairs on the fiber distribution device can be obtained from the fiber distribution device, and the first configuration information is obtained.
  • the ports that should be connected in the match are matched to determine which ports on the fiber distribution device are connected incorrectly and which ports are missing.
  • the matching result can be directly output, so as to operate Based on the matching result, the worker plugs in the connected port and the unconnected port that do not match the port to be connected.
  • the display module may be disposed in the jumper connection detecting device to display the connected port and the unconnected port that do not match the port to be connected, and may also be used to display information such as the first configuration information, the second configuration information or the human-machine interaction.
  • the matching result can also be reported to the management system to enable the management system to maintain the connection information of the ports on the fiber distribution device.
  • the jumper connection detecting device can also send the matching result to the fiber distribution device, so that the fiber distribution device illuminates the indicator light on the connected port and the unconnected port in the matching result that does not match the port to be connected.
  • the matching result may also include a connected port that matches the port to be connected, because in the process of performing the port connection, the fiber distribution device usually needs to light the indicator light on the two ports to be connected to indicate The operator performs the plugging operation. Therefore, in the implementation scenario, the fiber jumper connection detecting device can also send the matching result to the fiber distribution device, so that the fiber distribution device extinguishes the connected port that matches the port to be connected. And the indicator light on the unconnected port.
  • the fiber distribution device is a passive device, it is also possible to provide a power supply module in the fiber jump connection detecting device, for example, a battery pack or the like.
  • the fiber-optic connection detection device can supply power to the fiber-optic wiring device so that the fiber-optic wiring device can illuminate the indicator light on the connected port and the unconnected port in the matching result that does not match the port to be connected.
  • the method for detecting the fiber-optic connection obtaineds the port to be connected by the port identifier of the port to be connected issued by the management system and the port identifier of the connected port reported by the fiber distribution device.
  • the port connection identifier of the unconnected port and the unconnected port is detected
  • the jumper connection detecting device detects the connection between the ports of the fiber distribution device
  • the port identification of all connected port pairs on the fiber distribution device can be obtained from the fiber distribution device, and the ports connected to the fiber distribution device can be determined by matching with the port to be connected as indicated in the first configuration information. If the port connection is missing, the port connection reported by the fiber distribution device is maintained to improve the detection efficiency of the fiber jumper connection.
  • FIG. 3 is a flowchart of still another embodiment of a method for detecting a fiber jumper connection according to the present invention. As shown in FIG. 3, the method includes:
  • the S30K reads the plug ID of the jumper plug inserted in each port on the fiber distribution device.
  • the second configuration information includes the port identifier of the at least one pair of ports connected to the fiber-optic wiring device, so that the jumper fiber connection detecting device sends the first according to the management system.
  • the matching port indicated by the configuration information is matched with the connected port indicated by the second configuration information to obtain a matching result, and the matching result includes the port identifier of the connected port and the unconnected port that do not match the port to be connected.
  • the first configuration information includes port identifiers of at least one pair of ports to be connected on the fiber distribution device.
  • the main body of the above steps is an optical fiber distribution device.
  • the detection of the connection between the ports of the at least one optical fiber distribution device by the jumper connection detecting device may be performed periodically, or may be triggered by the management device, the fiber distribution device or the fiber jump connection detecting device according to actual needs.
  • the fiber distribution device can also send the second configuration information carried by the port identifier of each port of the connected port pair on the fiber distribution device to the jumper connection detecting device.
  • the second configuration information may be reported to the fiber jump connection detecting device.
  • the optical fiber distribution device can read the plug identifier of the jumper plug inserted in each port.
  • the jumper fiber involved in the embodiment of the present invention, each plug thereof The plug identification can be implemented by, for example, eID, QR, RFID, etc., and accordingly, an eID, QR or RFID reader can be provided in the fiber distribution device to read the plug identification of the jumper plug.
  • the optical fiber distribution device can be inserted according to each port.
  • the illustration of the plug identifies the ports that have been connected by the same fiber jumper.
  • the matching result can be directly output, so that the operator can insert and disconnect the connected port and the unconnected port that do not match the port to be connected according to the matching result.
  • the fiber jump connection detecting device may also send the matching result to the fiber distribution device.
  • the optical fiber distribution device may light the indicator on the connected port and the unconnected port in the matching result that does not match the port to be connected, to indicate the operator to the corresponding port.
  • An indicator light can be set on each port of the fiber distribution device, for example: a Ught Emitting Diode (LED) lamp, or a shared indicator can be shared by several ports, and the indicator can be shared by the display. Indicates the port ID of the indicator.
  • LED Ught Emitting Diode
  • the fiber jump connection detecting device can also supply power to the fiber distribution device, so that the fiber distribution device can illuminate the connected port in the matching result that does not match the port to be connected and The indicator light on the port is not connected.
  • the optical fiber distribution device can receive the power supply signal of the fiber jump connection detecting device to light up before the indicator light on the connected port and the unconnected port that does not match the port to be connected in the lighting matching result. Indicator light.
  • the optical fiber distribution device can read the plug identifier of the plug inserted in each port of the port, and identify the port pair connected by the same fiber-hopping fiber, and the device is connected to the fiber-optic connection detecting device. Sends the port ID of the connected port pair.
  • Fiber jumper connection detecting device You can obtain the port ID of the port to be connected and the port ID of the connected port reported by the fiber distribution device, and obtain the port ID of the connected port and the unconnected port that do not match the port to be connected.
  • the line device can send the port identifier of all the connected port pairs on the fiber jumper connection detecting device, so that the fiber jump connection detecting device can determine which ports of the fiber distribution device are connected incorrectly, and which ports are missing, to the optical fiber.
  • the port connection reported by the wiring device is maintained to improve the detection efficiency of the fiber jumper connection.
  • the management system can carry the port identifier of the at least one pair of ports to be connected to the fiber jump connection detecting device in the first connection information.
  • the jumper connection detecting device may send the first connection information to the optical fiber distribution device, and the optical fiber distribution device includes the port according to the first connection information.
  • the logo lights up the lights on each pair of ports in sequence. That is, the fiber distribution device can illuminate the indicator lights on a pair of ports at a time, and the operator can illuminate a pair of ports of the indicator lights through a jumper connection.
  • the method for connecting the fiber jumper provided in this embodiment may include:
  • the fiber jumper connection detecting device sends the second connection information to the fiber distribution device.
  • the optical fiber distribution device illuminates the indicator light on the first port of each pair of ports according to the second connection information including the port identifier.
  • the first port is any one of each pair of ports.
  • the fiber distribution device can illuminate the indicator light on the first port of each pair of ports, and the operator can respectively be in each pair of ports.
  • a first plug of the jumper is inserted into the first port of the first port.
  • the second plug of each jumper has not been inserted into the port of the fiber distribution device.
  • the third connection information sent by the optical fiber distribution device to the fiber jumper connection detecting device, the third The connection information includes a port identifier of the first port and a plug identifier of the first plug of the jumper inserted in the first port.
  • the fiber distribution device After inserting a first plug of the jumper on the first port of each pair of ports, the fiber distribution device can read the plug identifier of the first plug inserted in each of the first ports, and each of the first ports The port identifier and the plug identifier of the first plug of the inserted fiber jumper are sent to the jumper connection detecting device.
  • the fiber jumper connection detecting device sequentially detects the plug identifier of the second plug of each jumper in which the first plug has been inserted into the first port, and determines each pair of ports that the second plug should be inserted according to the second connection information and the third connection information.
  • the port identifier of the second port matches, and the first plug of the same jumper matches the plug identifier of the second plug.
  • the jumper connection detecting device can separately detect the plug identifier of the second plug of each of the jumpers. Since the plugs of the first plug and the second plug of the same jumper match, the jumper connection detecting device can be configured according to the second connection information after detecting the plug identifier of the second plug of the jumper. The three connection information determines the port identification of the second port of each pair of ports to which the second plug should be inserted.
  • a reader such as eID, QR, or RFID corresponding to the plug identifier of the jumper may be set in the jumper connection detecting device to read the plug identifier of the jumper plug.
  • the fiber jumper connection detecting device sequentially sends the port identifier of the second port into which the second plug of each fiber jumper should be inserted to the fiber distribution device.
  • the optical fiber distribution device sequentially lights the indicator lights on each of the second ports.
  • the fiber jumper connection detecting device may send the port identifier of the second port to the fiber distribution device, and the fiber distribution device may The indicator light on the second port is illuminated, so that the operator can insert the second plug of the jumper into the second port.
  • the fiber jumper connection detection device and the fiber distribution device can be executed once.
  • the operations of S405 to S407 are performed until the second plug in which all the first plugs have been inserted into the jumper of the first port are inserted into the second port.
  • the fiber jump connection detecting device can also supply power to the fiber distribution device to enable the fiber distribution device to illuminate the indicator light on the first port or the second port.
  • the fiber-hopping connection detection device can send the port identifier of the port to be connected sent by the management system to the fiber in the implementation scenario where the port is connected to the fiber-optic distribution device.
  • the optical fiber wiring device illuminates the indicator light on the first port of each pair of ports for inserting the first plug of the jumper, and the fiber distribution device can insert the port identifier of the first port and the corresponding plugged
  • the plug identifier of a plug is sent to the jumper connection detecting device, and the jumper connection detecting device can detect the plug identifier of the second plug of each jumper, and respectively determine the second port corresponding to the second plug of each jumper, and
  • the fiber distribution device can be instructed to sequentially light the indicator light on the second port for inserting the second plug of the fiber jumper to improve the efficiency of the fiber jump connection.
  • the aforementioned program can be stored in a computer readable storage medium.
  • the program when executed, performs the steps including the above-described method embodiments; and the foregoing storage medium includes: a medium that can store program codes, such as a ROM, a RAM, a magnetic disk, or an optical disk.
  • FIG. 6 is a schematic structural diagram of an embodiment of a fiber jumper connection detecting device according to the present invention. As shown in FIG. 6, the device includes: a receiver 11 and a matching module 12;
  • the receiver 11 is configured to receive first configuration information that is sent by the management system, where the first configuration information includes a port identifier of at least one pair of ports that should be connected to the optical fiber distribution device, and is also used to receive the report of the optical fiber distribution device. Second configuration information, where the second configuration information includes port identifiers of at least one pair of ports connected to the fiber distribution device;
  • a matching module 12 configured to indicate, by the first configuration information, a port to be connected and a second configuration The connected ports indicated by the information are matched to obtain a matching result.
  • the matching result includes the port identifier of the connected port and the unconnected port that do not match the port to be connected.
  • FIG. 7 is a schematic structural diagram of still another embodiment of a fiber jumper connection detecting apparatus according to the present invention. As shown in FIG. 7, the apparatus may further include:
  • the transmitter 13 is configured to send the matching result to the fiber distribution device such that the fiber distribution device illuminates the indicator on the connected port and the unconnected port of the matching result that does not match the port to be connected.
  • the receiver 11 is specifically configured to: receive, by the management system, first connection information, where the first connection information includes a port identifier of at least one pair of ports to be connected on the fiber distribution device; the transmitter is further configured to: : Send the first connection information to the fiber distribution device, so that the fiber distribution device sequentially lights the indicators on each pair of ports according to the port identification.
  • the receiver 11 is further configured to: receive, by the management system, second connection information, where the second connection information includes port identifiers of at least two pairs of ports to be connected on the fiber distribution device;
  • the transmitter 13 is further configured to: send the second connection information to the fiber distribution device, so that the fiber distribution device illuminates the indicator light on the first port of each pair of ports according to the port identifier; the receiver 11
  • the third connection information is sent by the optical fiber distribution device, and the third connection information includes a port identifier of the first port and a plug identifier of the first plug of the jumper inserted in the first port;
  • the device may further include: a detecting module 14, configured to detect a plug identifier of the second plug of each of the jumpers in which the first plug has been inserted into the first port, and determine a second according to the second connection information and the third connection information The port identifier of the second port of each pair of ports to which the plug should be inserted, the first plug of the same jumper and the plug identifier of the second plug match;
  • the transmitter 13 is further configured to: sequentially send the port identifier of the second port into which the second plug of each jumper should be inserted to the optical fiber distribution device, so that the optical fiber distribution device sequentially lights up according to each The indicator light on the second port.
  • the device may further include:
  • the power supply module 15 is used to supply power to the fiber distribution device.
  • the device for detecting a fiber-optic connection according to the embodiment of the present invention is an apparatus for performing a method for detecting a fiber-optic connection according to an embodiment of the present invention.
  • a specific process of performing a method for detecting a fiber-optic connection refer to the method embodiment, and details are not described herein.
  • the jumper connection detecting device obtaineds the port to be connected by using the port identification of the port to be connected and the port identifier of the connected port reported by the fiber distribution device. If the mismatched connected port and the port identifier of the unconnected port are detected, the jumper connection detection device can detect all the connected port pairs on the fiber distribution device when detecting the connection between the fiber distribution device ports. The port identifier, by matching the port to be connected indicated in the first configuration information, can determine which ports on the fiber distribution device are connected incorrectly, and which ports are missing, to perform port connection reported by the fiber distribution device. Maintenance, to improve the efficiency of fiber jumper connection detection.
  • FIG. 8 is a schematic structural diagram of an embodiment of an optical fiber configuration device according to the present invention. As shown in FIG. 8, the device includes: a reading module 21, a processing module 22, and a transmitter 23;
  • the reading module 21 is used for the plug identification of the jumper plug inserted in each port of the optical fiber distribution device;
  • the processing module 22 is configured to determine, according to the plug identifier, at least one pair of ports connected to the fiber distribution device, and the plug identifiers of the first plug and the second plug of the same jumper match;
  • the transmitter 23 is configured to report the second configuration information to the jumper connection detecting device, where the second configuration information includes a port identifier of the at least one pair of ports connected to the fiber distribution device, so that the fiber jump connection detecting device is configured according to the management system.
  • the matching port indicated by the first configuration information sent by the first configuration information is matched with the connected port indicated by the second configuration information to obtain a matching result, and the matching result includes the connected port and the unconnected port that do not match the port to be connected.
  • Port identification, first configuration The information includes the port identification of at least one pair of ports to be connected to the fiber distribution device.
  • FIG. 9 is a schematic structural diagram of still another embodiment of a fiber configuration device according to the present invention, where an indicator light is set on a port of the fiber configuration device shown in FIG. 9;
  • the device may further include: a receiver 24, configured to receive a matching result sent by the fiber jump connection detecting device;
  • the processing module 22 is configured to illuminate the indicators on the connected port and the unconnected port of the matching result that do not match the port to be connected.
  • the receiver 24 is further configured to: receive the first connection information sent by the fiber jump connection detecting device, where the first connection information includes a port identifier of at least one pair of ports to be connected on the fiber distribution device;
  • the processing module 22 is further configured to: illuminate the indicator lights on each pair of ports in sequence according to the port identifier included in the first connection information.
  • the receiver 24 is further configured to: receive second connection information sent by the fiber jump connection detecting device, where the second connection information includes port identifiers of at least two pairs of ports to be connected on the fiber distribution device;
  • the transmitter 23 is further configured to: send, to the jumper connection detection device, the third connection information, where the third connection information includes the port identifier of the first port and the first plug of the jumper inserted in the first port. Plug identification
  • the receiver 24 may be further configured to: sequentially receive the port identifier of the second port into which the second plug of each of the jumpers sent by the jumper connection detecting device is to be sent to the optical fiber distribution device; Module 22 can also be used to: illuminate the indicators on each of the second ports in sequence.
  • the optical fiber distribution device provided by the embodiment of the present invention is an execution device of the method for detecting a fiber-optic connection according to the embodiment of the present invention.
  • the optical fiber distribution device provided by the embodiment of the present invention can read the plug identifier of the plug inserted in each port of the port, identify the port pair connected through the same fiber jumper, and send the connected port to the fiber jumper connection detecting device. The port ID of the pair.
  • the jumper connection detection device can obtain the port identifier of the port to be connected issued by the management system and the port identifier of the connected port reported by the fiber distribution device, and obtain the port that is not matched with the port to be connected and the port that is not connected to the port. Identification, because the fiber distribution device can send the port identification of all connected port pairs on the fiber jump connection detecting device, so that the fiber jump connection detecting device can determine which ports on the fiber distribution device are connected incorrectly, and which ports are connected. Occasionally, the port connection reported by the fiber distribution device is maintained to improve the detection efficiency of the fiber jumper connection.

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Abstract

本发明实施例提供一种跳纤连接检测方法和跳纤连接检测装置。一种方法包括:接收管理系统下发的第一配置信息,第一配置信息中包括光纤配线设备上应连接的至少一对端口的端口标识;接收光纤配线设备上报的第二配置信息,第二配置信息包括光纤配线设备上已连接的至少一对端口的端口标识;对第一配置信息所指示的应连接的端口与第二配置信息所指示的已连接的端口进行匹配,得到匹配结果,匹配结果中包括与应连接的端口不匹配的已连接端口和未连接端口的端口标识。实现提高跳纤连接检测效率。

Description

跳纤连接检测方法和跳纤连接检测装置 本申请要求申请日为 2012年 05月 30日、 申请号为 201210173419.8、 发 明名称为 "跳纤连接检测方法和跳纤连接检测装置" 的中国专利申请的优 先权, 其全部内容通过引用结合在本申请中。 技术领域
本发明涉及信息技术, 尤其涉及一种跳纤连接检测方法和跳纤连接检 测装置。 背景技术
随着光纤到户、 光纤到驻地、 光纤到路边 /小区和光纤到结点的逐渐普 及, 光纤基础配线网络 (Optical Distribution Network, ODN) 技术得到飞 速发展。 ODN设备上通常具有数量较多的端口, 端口之间通常通过跳纤连 接, 这就使得 ODN设备上连接有大量跳纤。
现有技术中,通常在跳纤插头上设置二维识别代码或者标识(Identity, ID) 识别芯片, 通过读取装置来识别 ODN设备上每个端口上插入的跳纤插 头上的二维识别代码或者 ID来判断每根跳纤所连接的设备端口是否正确。 然而, 这种方法需要读取装置逐个读取光纤插头的二维识别代码或者 ID, 使得跳纤连接检测效率低。 发明内容
本发明实施例提供一种跳纤连接检测方法和跳纤连接装置, 以提高跳 纤连接检测效率。
一方面, 本发明实施例提供一种跳纤连接方法, 包括:
接收管理系统下发的第一配置信息, 所述第一配置信息中包括光纤配 线设备上应连接的至少一对端口的端口标识;
接收所述光纤配线设备上报的第二配置信息, 所述第二配置信息包括 所述光纤配线设备上已连接的至少一对端口的端口标识;
对所述第一配置信息所指示的应连接的端口与所述第二配置信息所指 示的已连接的端口进行匹配, 得到匹配结果, 所述匹配结果中包括与所述 应连接的端口不匹配的已连接端口和未连接端口的端口标识。
本发明实施例提供另一种跳纤连接方法, 包括:
向跳纤连接检测装置上报第二配置信息, 所述第二配置信息包括光纤 配线设备上已连接的至少一对端口的端口标识, 以使所述跳纤连接检测装 置根据管理系统下发的第一配置信息所指示的应连接的端口与所述第二配 置信息所指示的已连接的端口进行匹配得到匹配结果, 所述匹配结果中包 括与所述应连接的端口不匹配的已连接端口和未连接端口的端口标识, 所 述第一配置信息中包括光纤配线设备上应连接的至少一对端口的端口标 识。
另一方面, 本发明实施例还提供一种跳纤连接检测装置, 包括- 接收器, 用于接收管理系统下发的第一配置信息, 所述第一配置信息 中包括光纤配线设备上应连接的至少一对端口的端口标识; 还用于接收所 述光纤配线设备上报的第二配置信息, 所述第二配置信息包括所述光纤配 线设备上已连接的至少一对端口的端口标识;
匹配模块, 用于对所述第一配置信息所指示的应连接的端口与所述第 二配置信息所指示的已连接的端口进行匹配, 得到匹配结果, 所述匹配结 果中包括与所述应连接的端口不匹配的已连接端口和未连接端口的端口标 识。
本发明实施例还提供一种光纤配置设备, 包括:
发送器, 用于向跳纤连接检测装置上报第二配置信息, 所述第二配置 信息包括光纤配线设备上已连接的至少一对端口的端口标识, 以使所述跳 纤连接检测装置根据管理系统下发的第一配置信息所指示的应连接的端口 与所述第二配置信息所指示的已连接的端口进行匹配得到匹配结果, 所述 匹配结果中包括与所述应连接的端口不匹配的已连接端口和未连接端口的 端口标识, 所述第一配置信息中包括光纤配线设备上应连接的至少一对端 口的端口标识。
本发明实施例提供的跳纤连接检测方法和跳纤连接装置, 通过跳纤连 接检测装置对管理系统下发的应连接端口的端口标识与光纤配线设备上报 的已连接端口的端口标识, 获得与应连接的端口不匹配的已连接端口和未 连接端口的端口标识, 从而对光纤配线设备上报的端口连接进行维护, 实 现提高跳纤连接检测效率。 附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案, 下面将对 实施例或现有技术描述中所需要使用的附图作简单地介绍, 显而易见地, 下面描述中的附图是本发明的一些实施例,对于本领域普通技术人员来讲, 在不付出创造性劳动性的前提下, 还可以根据这些附图获得其他的附图。
图 1为本发明提供的跳纤连接检测方法一个实施例的流程图; 图 2为图 1所示实施例中各设备的一种连接关系示意图;
图 3为本发明提供的跳纤连接检测方法又一个实施例的流程图; 图 4为本发明提供的跳纤连接方法一个实施例的流程图;
图 5为图 4所示实施例中各设备的一种连接关系示意图;
图 6为本发明提供的跳纤连接检测装置一个实施例的结构示意图; 图 7为本发明提供的跳纤连接检测装置又一个实施例的结构示意图; 图 8为本发明提供的光纤配置设备一个实施例的结构示意图; 图 9为本发明提供的光纤配置设备又一个实施例的结构示意图。 具体实施方式
为使本发明实施例的目的、 技术方案和优点更加清楚, 下面将结合本 发明实施例中的附图, 对本发明实施例中的技术方案进行清楚、 完整地描 述, 显然, 所描述的实施例是本发明一部分实施例, 而不是全部的实施例。 基于本发明中的实施例, 本领域普通技术人员在没有做出创造性劳动前提 下所获得的所有其他实施例, 都属于本发明保护的范围。
图 1为本发明提供的跳纤连接检测方法一个实施例的流程图, 如图 1所 示, 该方法包括:
5101、 接收管理系统下发的第一配置信息, 第一配置信息中包括光纤 配线设备上应连接的至少一对端口的端口标识。
5102、 接收光纤配线设备上报的第二配置信息, 第二配置信息包括光 纤配线设备上已连接的至少一对端口的端口标识。
5103、 对第一配置信息所指示的应连接的端口与第二配置信息所指示 的已连接的端口进行匹配, 得到匹配结果, 匹配结果中包括与应连接的端 口不匹配的已连接端口和未连接端口的端口标识。
上述步骤的执行主体为跳纤连接检测装置,如图 2所示, 该跳纤连接检 测装置可以为独立于管理设备和至少一个光纤配置设备, 例如: 智能光配 置网(Intelligent Optical Distribution Network, iODN)设备的连接检测辅助 装置, 或者, 还可以与光纤配线设备一体集成设置。
其中, 跳纤连接检测装置与光纤配线设备之间可以通过无线或者有线 的方式通信, 例如: 通过通用串行总线 (Universal Serial Bus, USB ) 、 串 口、 紫蜂 (SgBee ) 等。 跳纤连接检测装置与管理系统之间也可以通过无 线或者有线的方式通信, 例如: 可以通过移动通信网络(2G、 3G、 4G等制 式)、无线保真(Wireless Fidelity, WIFI)、全球微波互联接入(Worldwide Interoperability for Microwave Access, WiMAX) 、 铜线、 跳纤、 USB等。 本发明实施例中涉及的跳纤, 其每个插头上可以对应一个插头标识, 该插头标识可以通过例如: 电子标签 (electronic Identity, elD) , 二维识 别代码 (QR) , 射频识别芯片 (Radio Frequency IDentification, RFID) 等 形式实现。
本发明实施例中涉及的跳纤连接检测装置, 可以对至少一个光纤配线 设备端口之间的连接情况进行检测。 该检测可以周期性进行, 也可以根据 实际需求由管理设备、 光纤配线设备或者跳纤连接检测装置来触发检测。 举例来说, 可以在者跳纤连接检测装置上设置人机交互接口, 可以由操作 人员触发检测。
作为一种可行的实施方式, 管理设备可以将光纤配线设备上应连接的 端口对中每个端口的端口标识携带在第一配置信息中发送给跳纤连接检测 装置, 同样, 光纤配线设备也可以将光纤配线设备上已连接的端口对中每 个端口的端口标识携带的第二配置信息中发送给跳纤连接检测装置。
作为另一种可行的实施方式, 在跳纤连接检测装置需要对光纤配线设 备端口之间的连接情况进行检测的实施场景下, 跳纤连接检测装置可以向 管理设备请求获取第一配置信息, 向光纤配线设备请求获取第二配置信息。
跳纤连接检测装置接收到管理设备下发的第一配置信息和光纤配线设 备上报的第二配置信息后, 可以对第一配置信息中所指示的应连接的端口 与第二配置信息所指示的已连接的端口进行匹配, 确定包括与应连接的端 口不匹配的已连接端口和未连接端口的端口标识。
可以看出, 跳纤连接检测装置对光纤配线设备端口之间的连接情况进 行检测时, 可以从光纤配线设备上获取其上所有已连接的端口对的端口标 识, 通过与第一配置信息中所指示的应连接的端口进行匹配, 可以确定光 纤配线设备上哪些端口的连接错误, 哪些端口连接遗漏。
跳纤连接检测装置得到匹配结果后, 可以直接输出匹配结果, 以便操 作人员根据匹配结果插拔与应连接的端口不匹配的已连接端口和未连接端 口。 可以在跳纤连接检测装置中设置显示模块来显示与应连接的端口不匹 配的已连接端口和未连接端口, 还可以用来显示第一配置信息, 第二配置 信息或人机交互等信息。
还可以将匹配结果上报至管理系统, 以使管理系统对光纤配线设备上 端口的连接信息进行维护。 跳纤连接检测装置还可以将该匹配结果发送给 光纤配线设备, 以使光纤配线设备点亮匹配结果中与应连接的端口不匹配 的已连接端口和未连接端口上的指示灯, 来指示操作人员对对应端口进行 跳纤插拔操作。 举例来说, 对于与应连接的端口不匹配的已连接端口, 可 以以指示灯快速闪烁的方式来指示, 对于与应连接的端口不匹配的未连接 端口, 可以以指示灯缓慢闪烁的方式来指示。
可以理解的是, 匹配结果中还可以包括与应连接端口匹配的己连接端 口, 由于在进行端口连接的过程中, 光纤配线设备通常需要点亮待连接的 两个端口上的指示灯来指示操作人员进行插接操作, 因此, 在该实施场景 下, 跳纤连接检测装置还可以将该匹配结果发送给光纤配线设备, 以使光 纤配线设备熄灭与应连接的端口匹配的已连接端口和未连接端口上的指示 灯。
由于光纤配线设备为无源设备, 因此, 还可以在跳纤连接检测装置中 设置供电模块, 例如: 电池组等。 跳纤连接检测装置可以向光纤配线设备 供电, 以使光纤配线设备能够点亮匹配结果中与应连接的端口不匹配的已 连接端口和未连接端口上的指示灯。
本发明实施例提供的跳纤连接检测方法, 通过跳纤连接检测装置对管 理系统下发的应连接端口的端口标识与光纤配线设备上报的已连接端口的 端口标识, 获得与应连接的端口不匹配的已连接端口和未连接端口的端口 标识,跳纤连接检测装置对光纤配线设备端口之间的连接情况进行检测时, 可以从光纤配线设备上获取其上所有已连接的端口对的端口标识, 通过与 第一配置信息中所指示的应连接的端口进行匹配, 可以确定光纤配线设备 上哪些端口的连接错误, 哪些端口连接遗漏, 以对光纤配线设备上报的端 口连接进行维护, 实现提高跳纤连接检测效率。 图 3为本发明提供的跳纤连接检测方法又一个实施例的流程图, 如图 3 所示, 该方法包括:
S30K 读取光纤配线设备上各端口中插入的跳纤插头的插头标识。
5302、 根据插头标识确定光纤配线设备上已连接的至少一对端口, 同 一跳纤的第一插头和第二插头的插头标识相匹配。
5303. 向跳纤连接检测装置上报第二配置信息, 第二配置信息包括光 纤配线设备上已连接的至少一对端口的端口标识, 以使跳纤连接检测装置 根据管理系统下发的第一配置信息所指示的应连接的端口与第二配置信息 所指示的己连接的端口进行匹配得到匹配结果, 匹配结果中包括与应连接 的端口不匹配的已连接端口和未连接端口的端口标识, 第一配置信息中包 括光纤配线设备上应连接的至少一对端口的端口标识。
以上步骤的执行主体为光纤配线设备。
跳纤连接检测装置对至少一个光纤配线设备端口之间的连接情况的检 测可以周期性进行, 也可以根据实际需求由管理设备、 光纤配线设备或者 跳纤连接检测装置来触发检测。
光纤配线设备也可以将光纤配线设备上己连接的端口对中每个端口的 端口标识携带的第二配置信息中发送给跳纤连接检测装置。 或者, 也可以 在接收到跳纤连接检测装置发出的获取第二配置信息请求时, 向跳纤连接 检测装置上报第二配置信息。
本发明实施例涉及的光纤配线设备, 能够对其上每个端口中插入的跳 纤插头的插头标识进行读取。 本发明实施例中涉及的跳纤, 其每个插头上 的插头标识可以通过例如: eID、 QR、 RFID等形式实现, 因此, 相应的, 可以在光纤配线设备中设置 eID、 QR或者 RFID的阅读器来读取跳纤插头的 插头标识。
由于同一跳纤的第一插头和第二插头的插头标识相匹配, 例如: 由于 同一跳纤的第一插头和第二插头可以设置同一插头标识, 因此, 光纤配线 设备可以根据每个端口插入的插头的插图标识判断出哪些端口已由同一根 跳纤连接。
作为一种可行的实施方式, 跳纤连接检测装置得到匹配结果后, 可以 直接输出匹配结果, 以便操作人员根据匹配结果插拔与应连接的端口不匹 配的已连接端口和未连接端口。
作为另一种可行的实施方式, 跳纤连接检测装置也可以将该匹配结果 发送给光纤配线设备。 光纤配线设备接收到跳纤连接检测装置发送的匹配 结果后, 可以点亮匹配结果中与应连接的端口不匹配的已连接端口和未连 接端口上的指示灯, 来指示操作人员对对应端口进行跳纤插拔操作。其中, 光纤配线设备的每个端口上可以设置指示灯, 例如: 发光二极管 (Ught Emitting Diode, LED) 灯, 或者, 还可以几个端口共用已给指示灯, 该指 示灯可以通过显示共用该指示灯的端口标识等方式来指示。
由于光纤配线设备为无源设备, 因此, 跳纤连接检测装置还可以向光 纤配线设备供电, 以使光纤配线设备能够点亮匹配结果中与应连接的端口 不匹配的已连接端口和未连接端口上的指示灯。 具体的, 光纤配线设备在 点亮匹配结果中与应连接的端口不匹配的已连接端口和未连接端口上的指 示灯之前, 还可以接收跳纤连接检测装置的供电信号, 来实现点亮指示灯。
本发明实施例提供的跳纤连接检测方法, 光纤配线设备可以读取其上 每个端口中插入插头的插头标识, 识别出通过同一根跳纤连接的端口对, 向跳纤连接检测装置下发已连接的端口对的端口标识。 跳纤连接检测装置 可以对管理系统下发的应连接端口的端口标识与光纤配线设备上报的已连 接端口的端口标识, 获得与应连接的端口不匹配的已连接端口和未连接端 口的端口标识, 由于光纤配线设备可以将其上所有已连接的端口对的端口 标识发送给跳纤连接检测装置, 使得跳纤连接检测装置可以确定光纤配线 设备上哪些端口的连接错误, 哪些端口连接遗漏, 以对光纤配线设备上报 的端口连接进行维护, 实现提高跳纤连接检测效率。 在光纤配线设备上的端口需要通过跳纤连接的实施场景下, 管理系统 可以将待连接的至少一对端口的端口标识携带在第一连接信息中下发给跳 纤连接检测装置。 作为一种可行的实施方式, 跳纤连接检测装置接收管理 系统下发的第一连接信息后, 可以将第一连接信息发送至光纤配线设备, 光纤配线设备根据第一连接信息中包括端口标识, 依次点亮每对端口上的 指示灯。 即, 光纤配线设备可以每次点亮一对端口上的指示灯, 操作人员 可以通过一根跳纤连接点亮指示灯的一对端口。
作为另一种可行的实施方式, 在待连接的端口对为 2对或 2对以上时, 如图 4和图 5所示, 本实施例提供的跳纤连接方法可以包括:
5401、 管理系统向跳纤连接检测装置下发的第二连接信息, 第二连接 信息中包括光纤配线设备上待连接的至少两对端口的端口标识。
5402、 跳纤连接检测装置将第二连接信息发送至光纤配线设备。
5403、 光纤配线设备根据第二连接信息中包括端口标识, 点亮每对端 口中第一端口上的指示灯。
其中, 第一端口为每对端口中的任意一个端口, 光纤配线设备接收到 第二连接信息后, 可以点亮每对端口中第一端口上的指示灯, 操作人员可 以分别在每对端口中的第一端口上插入一根跳纤的第一插头, 此时, 每根 跳纤的第二插头尚未插入光纤配线设备的端口中。
5404、 光纤配线设备向跳纤连接检测装置发送的第三连接信息, 第三 连接信息中包括第一端口的端口标识以及第一端口中已插入的跳纤第一插 头的插头标识。
每对端口中的第一端口上插入一根跳纤的第一插头之后, 光纤配线设 备可以读取每个第一端口中插入的第一插头的插头标识, 并将每个第一端 口的端口标识及其中已插入的跳纤第一插头的插头标识发送给跳纤连接检 测装置。
5405、 跳纤连接检测装置依次检测第一插头已插入第一端口的每根跳 纤的第二插头的插头标识, 根据第二连接信息和第三连接信息确定第二插 头应插入的每对端口中第二端口的端口标识, 同一跳纤的第一插头和第二 插头的插头标识相匹配。
由于此时每根跳纤的第二插头尚未插入光纤配线设备的端口中,因此, 跳纤连接检测装置可以分别检测每根跳纤的第二插头的插头标识。 由于同 一跳纤的第一插头和第二插头的插头标识相匹配, 因此, 在每检测到一根 跳纤的第二插头的插头标识后, 跳纤连接检测装置可以根据第二连接信息 和第三连接信息确定第二插头应插入的每对端口中第二端口的端口标识。
在本实施例的实施场景下, 可以在跳纤连接检测装置中设置与跳纤的 插头标识对应的 eID、 QR或者 RFID等阅读器来读取跳纤插头的插头标识。
5406、 跳纤连接检测装置依次将每根跳纤的第二插头应插入的第二端 口的端口标识发送至光纤配线设备。
5407、 光纤配线设备依次点亮每个第二端口上的指示灯。
跳纤连接检测装置每获取一根跳纤第二插头应插入的每对端口中第二 端口的端口标识后, 可以将该第二端口的端口标识发送给光纤配线设备, 光纤配线设备可以点亮该第二端口上的指示灯, 进而使操作人员可以将这 根跳纤的第二插头插入该第二端口上。
对于每根跳纤, 跳纤连接检测装置和光纤配线设备可以执行一次 S405〜S407的操作,直至将所有第一插头已插入第一端口的跳纤中的第二插 头均插入第二端口为止。
由于光纤配线设备为无源设备, 因此, 跳纤连接检测装置还可以向光 纤配线设备供电, 以使光纤配线设备能够点亮第一端口或第二端口上的指 示灯。
本发明实施例提供的跳纤连接方法, 在光纤配线设备上同时有多对端 口待连接的实施场景下, 跳纤连接检测装置可以将管理系统下发的待连接 端口的端口标识发送给光纤配线设备, 由光纤配线设备点亮每对端口中第 一一端口上的指示灯以供插入跳纤的第一插头, 光纤配线设备可以将第一 端口的端口标识和对应插入的第一插头的插头标识发送给跳纤连接检测装 置, 跳纤连接检测装置可以检测依次每根跳纤的第二插头的插头标识, 分 别确定每根跳纤的第二插头对应的第二端口, 并可以指示光纤配线设备依 次点亮第二端口上的指示灯以供插入跳纤的第二插头,提高跳纤连接效率。
本领域普通技术人员可以理解: 实现上述各方法实施例的全部或部分 步骤可以通过程序指令相关的硬件来完成。 前述的程序可以存储于一计算 机可读取存储介质中。 该程序在执行时, 执行包括上述各方法实施例的步 骤; 而前述的存储介质包括: ROM、 RAM, 磁碟或者光盘等各种可以存储 程序代码的介质。
图 6为本发明提供的跳纤连接检测装置一个实施例的结构示意图,如图 6所示, 该装置包括: 接收器 11和匹配模块 12;
接收器 11, 用于接收管理系统下发的第一配置信息, 第一配置信息中 包括光纤配线设备上应连接的至少一对端口的端口标识; 还用于接收光纤 配线设备上报的第二配置信息, 第二配置信息包括光纤配线设备上已连接 的至少一对端口的端口标识;
匹配模块 12, 用于对第一配置信息所指示的应连接的端口与第二配置 信息所指示的已连接的端口进行匹配, 得到匹配结果, 匹配结果中包括与 应连接的端口不匹配的已连接端口和未连接端口的端口标识。
图 7为本发明提供的跳纤连接检测装置又一个实施例的结构示意图,如 图 7所示, 在图 6所示实施例的基础上, 该装置还可以包括:
发送器 13, 用于将匹配结果发送至光纤配线设备, 以使光纤配线设备 点亮匹配结果中与应连接的端口不匹配的已连接端口和未连接端口上的指 示灯。
可选的,接收器 11可以具体用于: 接收管理系统下发的第一连接信息, 第一连接信息中包括光纤配线设备上待连接的至少一对端口的端口标识; 发送器还用于: 将第一连接信息发送至光纤配线设备, 以使光纤配线设备 根据端口标识依次点亮每对端口上的指示灯。
可选的, 接收器 11还可以具体用于: 接收管理系统下发的第二连接信 息, 第二连接信息中包括光纤配线设备上待连接的至少两对端口的端口标 识;
可选的, 发送器 13还可以用于: 将第二连接信息发送至光纤配线设备, 以使光纤配线设备根据端口标识点亮每对端口中第一端口上的指示灯; 接收器 11还可以用于: 接收光纤配线设备发送的第三连接信息, 第三 连接信息中包括第一端口的端口标识以及第一端口中已插入的跳纤第一插 头的插头标识;
进一步的, 该装置还可以包括: 检测模块 14, 用于检测第一插头已插 入第一端口的每根跳纤的第二插头的插头标识, 根据第二连接信息和第三 连接信息确定第二插头应插入的每对端口中第二端口的端口标识, 同一跳 纤的第一插头和第二插头的插头标识相匹配;
相应的, 发送器 13还用于: 依次将每根跳纤的第二插头应插入的第二 端口的端口标识发送至光纤配线设备, 以使光纤配线设备根据依次点亮每 个第二端口上的指示灯。
进一步的, 该装置还可以包括:
供电模块 15, 用于向光纤配线设备供电。
本发明实施例提供的跳纤连接检测装置, 为本发明实施例提供的跳纤 连接检测方法的执行设备, 其执行跳纤连接检测方法的具体过程可参见方 法实施例, 在此不再赘述。
本发明实施例提供的跳纤连接检测装置, 通过跳纤连接检测装置对管 理系统下发的应连接端口的端口标识与光纤配线设备上报的已连接端口的 端口标识, 获得与应连接的端口不匹配的已连接端口和未连接端口的端口 标识,跳纤连接检测装置对光纤配线设备端口之间的连接情况进行检测时, 可以从光纤配线设备上获取其上所有已连接的端口对的端口标识, 通过与 第一配置信息中所指示的应连接的端口进行匹配, 可以确定光纤配线设备 上哪些端口的连接错误, 哪些端口连接遗漏, 以对光纤配线设备上报的端 口连接进行维护, 实现提高跳纤连接检测效率。 图 8为本发明提供的光纤配置设备一个实施例的结构示意图, 如图 8所 示, 该设备包括: 读取模块 21、 处理模块 22和发送器 23 ;
读取模块 21, 用于光纤配线设备上各端口中插入的跳纤插头的插头标 识;
处理模块 22, 用于根据插头标识确定光纤配线设备上已连接的至少一 对端口, 同一跳纤的第一插头和第二插头的插头标识相匹配;
发送器 23, 用于向跳纤连接检测装置上报第二配置信息, 第二配置信 息包括光纤配线设备上已连接的至少一对端口的端口标识, 以使跳纤连接 检测装置根据管理系统下发的第一配置信息所指示的应连接的端口与第二 配置信息所指示的已连接的端口进行匹配得到匹配结果, 匹配结果中包括 与应连接的端口不匹配的已连接端口和未连接端口的端口标识, 第一配置 信息中包括光纤配线设备上应连接的至少一对端口的端口标识。
图 9为本发明提供的光纤配置设备又一个实施例的结构示意图, 如图 9 所示光纤配置设备的端口上设置指示灯;
可选的, 该设备还可以包括: 接收器 24, 用于接收跳纤连接检测装置 发送的匹配结果;
处理模块 22, 用于点亮匹配结果中与应连接的端口不匹配的己连接端 口和未连接端口上的指示灯。
可选的, 接收器 24还可以用于: 接收跳纤连接检测装置发送的第一连 接信息, 第一连接信息中包括光纤配线设备上待连接的至少一对端口的端 口标识;
相应的, 处理模块 22还可以用于: 根据第一连接信息中包括端口标识, 依次点亮每对端口上的指示灯。
可选的, 接收器 24还可以用于: 接收跳纤连接检测装置发送的第二连 接信息, 第二连接信息中包括光纤配线设备上待连接的至少两对端口的端 口标识;
进一步的, 发送器 23还可以用于: 向跳纤连接检测装置发送的第三连 接信息, 第三连接信息中包括第一端口的端口标识以及第一端口中已插入 的跳纤第一插头的插头标识;
进一歩的, 接收器 24还可以用于: 依次接收跳纤连接检测装置发送的 每根跳纤的第二插头应插入的第二端口的端口标识发送至光纤配线设备; 进一歩的, 处理模块 22还可以用于: 依次点亮每个第二端口上的指示 灯。
本发明实施例提供的光纤配线设备, 为本发明实施例提供的跳纤连接 检测方法的执行设备, 其执行跳纤连接检测方法的具体过程可参见方法实 施例, 在此不再赘述。 本发明实施例提供的光纤配线设备, 可以读取其上每个端口中插入插 头的插头标识, 识别出通过同一根跳纤连接的端口对, 向跳纤连接检测装 置下发已连接的端口对的端口标识。 跳纤连接检测装置可以对管理系统下 发的应连接端口的端口标识与光纤配线设备上报的已连接端口的端口标 识, 获得与应连接的端口不匹配的已连接端口和未连接端口的端口标识, 由于光纤配线设备可以将其上所有已连接的端口对的端口标识发送给跳纤 连接检测装置, 使得跳纤连接检测装置可以确定光纤配线设备上哪些端口 的连接错误, 哪些端口连接遗漏, 以对光纤配线设备上报的端口连接进行 维护, 实现提高跳纤连接检测效率。
最后应说明的是: 以上各实施例仅用以说明本发明的技术方案, 而非 对其限制; 尽管参照前述各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, 或者对其中部分或者全部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范围。

Claims

权利 要求
1、 一种跳纤连接检测方法, 其特征在于, 包括:
接收管理系统下发的第一配置信息, 所述第一配置信息中包括光纤配 线设备上应连接的至少一对端口的端口标识;
接收所述光纤配线设备上报的第二配置信息, 所述第二配置信息包括 所述光纤配线设备上已连接的至少一对端口的端口标识;
对所述第一配置信息所指示的应连接的端口与所述第二配置信息所指 示的已连接的端口进行匹配, 得到匹配结果, 所述匹配结果中包括与所述 应连接的端口不匹配的已连接端口和未连接端口的端口标识。
2、根据权利要求 1所述的方法, 其特征在于, 所述得到匹配结果之后, 还包括:
将所述匹配结果发送至所述光纤配线设备, 以使所述光纤配线设备点 亮所述匹配结果中与所述应连接的端口不匹配的已连接端口和未连接端口 上的指示灯。
3、 根据权利要求 1或 2所述的方法, 其特征在于, 还包括:
接收所述管理系统下发的第一连接信息, 所述第一连接信息中包括所 述光纤配线设备上待连接的至少一对端口的端口标识;
将所述第一连接信息发送至所述光纤配线设备, 以使所述光纤配线设 备根据所述端口标识依次点亮每对所述端口上的指示灯。
4、 根据权利要求 1或 2所述的方法, 其特征在于, 还包括:
接收所述管理系统下发的第二连接信息, 所述第二连接信息中包括所 述光纤配线设备上待连接的至少两对端口的端口标识;
将所述第二连接信息发送至所述光纤配线设备, 以使所述光纤配线设 备根据所述端口标识点亮每对所述端口中第一端口上的指示灯;
接收所述光纤配线设备发送的第三连接信息, 所述第三连接信息中包 括所述第一端口的端口标识以及所述第一端口中已插入的跳纤第一插头的 插头标识;
依次检测第一插头己插入所述第一端口的每根跳纤的第二插头的插头 标识, 根据所述第二连接信息和所述第三连接信息确定所述第二插头应插 入的每对所述端口中第二端口的端口标识, 同一跳纤的第一插头和第二插 头的插头标识相匹配;
依次将每根所述跳纤的第二插头应插入的所述第二端口的端口标识发 送至所述光纤配线设备, 以使所述光纤配线设备根据依次点亮每个所述第 二端口上的指示灯。
5、 根据权利要求 2或 4所述的方法, 其特征在于, 还包括- 向所述光纤配线设备供电。
6、 一种跳纤连接检测方法, 其特征在于,
读取光纤配线设备上各端口中插入的跳纤插头的插头标识; 根据所述插头标识确定所述光纤配线设备上已连接的至少一对端口, 同一跳纤的第一插头和第二插头的插头标识相匹配;
向跳纤连接检测装置上报第二配置信息, 所述第二配置信息包括光纤 配线设备上已连接的至少一对端口的端口标识, 以使所述跳纤连接检测装 置根据管理系统下发的第一配置信息所指示的应连接的端口与所述第二配 置信息所指示的已连接的端口进行匹配得到匹配结果, 所述匹配结果中包 括与所述应连接的端口不匹配的已连接端口和未连接端口的端口标识, 所 述第一配置信息中包括光纤配线设备上应连接的至少一对端口的端口标 识。
7、 根据权利要求 6所述的方法, 其特征在于, 所述向跳纤连接检测装 置上报第二配置信息之后, 还包括:
接收所述跳纤连接检测装置发送的所述匹配结果; 点亮所述匹配结果中与所述应连接的端口不匹配的已连接端口和未连 接端口上的指示灯。
8、 根据权利要求 6或 7所述的方法, 其特征在于, 还包括:
接收所述跳纤连接检测装置发送的第一连接信息, 所述第一连接信息 中包括所述光纤配线设备上待连接的至少一对端口的端口标识;
根据第一连接信息中包括所述端口标识, 依次点亮每对所述端口上的 指示灯。
9、 根据权利要求 6或 7所述的方法, 其特征在于, 还包括:
接收所述跳纤连接检测装置发送的第二连接信息, 所述第二连接信息 中包括所述光纤配线设备上待连接的至少两对端口的端口标识;
根据第二连接信息中包括所述端口标识, 点亮每对所述端口中第一端 口上的指示灯;
向所述跳纤连接检测装置发送的第三连接信息, 所述第三连接信息中 包括所述第一端口的端口标识以及所述第一端口中已插入的跳纤第一插头 的插头标识;
依次接收所述跳纤连接检测装置发送的每根所述跳纤的第二插头应插 入的所述第二端口的端口标识发送至所述光纤配线设备;
依次点亮每个所述第二端口上的指示灯。
10、 一种跳纤连接检测装置, 其特征在于, 包括:
接收器, 用于接收管理系统下发的第一配置信息, 所述第一配置信息 中包括光纤配线设备上应连接的至少一对端口的端口标识; 还用于接收所 述光纤配线设备上报的第二配置信息, 所述第二配置信息包括所述光纤配 线设备上已连接的至少一对端口的端口标识;
匹配模块, 用于对所述第一配置信息所指示的应连接的端口与所述第 二配置信息所指示的已连接的端口进行匹配, 得到匹配结果, 所述匹配结 果中包括与所述应连接的端口不匹配的已连接端口和未连接端口的端口标 识。
11、 根据权利要求 10所述的装置, 其特征在于, 还包括:
发送器, 用于将所述匹配结果发送至所述光纤配线设备, 以使所述光 纤配线设备点亮所述匹配结果中与所述应连接的端口不匹配的已连接端口 和未连接端口上的指示灯。
12、 根据权利要求 10或 11所述的装置, 其特征在于,
所述接收器具体用于: 接收所述管理系统下发的第一连接信息, 所述 第一连接信息中包括所述光纤配线设备上待连接的至少一对端口的端口标 识; 发送器还用于: 将所述第一连接信息发送至所述光纤配线设备, 以使 所述光纤配线设备根据所述端口标识依次点亮每对所述端口上的指示灯。
13、 根据权利要求 10或 11所述的装置, 其特征在于,
所述接收器具体用于: 接收所述管理系统下发的第二连接信息, 所述 第二连接信息中包括所述光纤配线设备上待连接的至少两对端口的端口标 识;
发送器还用于: 将所述第二连接信息发送至所述光纤配线设备, 以使 所述光纤配线设备根据所述端口标识点亮每对所述端口中第一端口上的指 示灯;
所述接收器还用于: 接收所述光纤配线设备发送的第三连接信息, 所 述第三连接信息中包括所述第一端口的端口标识以及所述第一端口中已插 入的跳纤第一插头的插头标识;
还包括: 检测模块, 用于检测第一插头已插入所述第一端口的每根跳 纤的第二插头的插头标识, 根据所述第二连接信息和所述第三连接信息确 定所述第二插头应插入的每对所述端口中第二端口的端口标识, 同一跳纤 的第一插头和第二插头的插头标识相匹配; 所述发送器还用于: 依次将每根所述跳纤的第二插头应插入的所述第 二端口的端口标识发送至所述光纤配线设备, 以使所述光纤配线设备根据 依次点亮每个所述第二端口上的指示灯。
14、 根据权利要求 11或 13所述的装置, 其特征在于, 还包括: 供电模块, 用于向所述光纤配线设备供电。
15、 一种光纤配置设备, 其特征在于, 包括:
读取模块,用于光纤配线设备上各端口中插入的跳纤插头的插头标识; 处理模块, 用于根据所述插头标识确定所述光纤配线设备上巳连接的 至少一对端口, 同一跳纤的第一插头和第二插头的插头标识相匹配;
发送器, 用于向跳纤连接检测装置上报第二配置信息, 所述第二配置 信息包括光纤配线设备上已连接的至少一对端口的端口标识, 以使所述跳 纤连接检测装置根据管理系统下发的第一配置信息所指示的应连接的端口 与所述第二配置信息所指示的已连接的端口进行匹配得到匹配结果, 所述 匹配结果中包括与所述应连接的端口不匹配的已连接端口和未连接端口的 端口标识, 所述第一配置信息中包括光纤配线设备上应连接的至少一对端 口的端口标识。
16、 根据权利要求 15所述的光纤配置设备, 其特征在于, 所述光纤配 置设备的端口上设置指示灯;
所述接收器还用于:接收所述跳纤连接检测装置发送的所述匹配结果; 所述处理模块还用于: 点亮所述匹配结果中与所述应连接的端口不匹 配的已连接端口和未连接端口上的指示灯。
17、 根据权利要求 15或 16所述的光纤配置设备, 其特征在于, 所述接收器还用于:接收所述跳纤连接检测装置发送的第一连接信息, 所述第一连接信息中包括所述光纤配线设备上待连接的至少一对端口的端 口标识; 所述处理模块还用于: 根据第一连接信息中包括所述端口标识, 依次 点亮每对所述端口上的指示灯。
18、 根据权利要求 15或 16所述的光纤配置设备, 其特征在于, 所述接收器还用于:接收所述跳纤连接检测装置发送的第二连接信息, 所述第二连接信息中包括所述光纤配线设备上待连接的至少两对端口的端 口标识;
所述发送器还用于: 向所述跳纤连接检测装置发送的第三连接信息, 所述第三连接信息中包括所述第一端口的端口标识以及所述第一端口中已 插入的跳纤第一插头的插头标识;
所述接收器还用于: 依次接收所述跳纤连接检测装置发送的每根所述 跳纤的第二插头应插入的所述第二端口的端口标识发送至所述光纤配线设 备;
所述处理模块还用于: 依次点亮每个所述第二端口上的指示灯。
PCT/CN2012/086029 2012-05-30 2012-12-06 跳纤连接检测方法和跳纤连接检测装置 WO2013177914A1 (zh)

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