WO2017050061A1 - 一种光纤配线管理系统、装置和方法 - Google Patents
一种光纤配线管理系统、装置和方法 Download PDFInfo
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- WO2017050061A1 WO2017050061A1 PCT/CN2016/094966 CN2016094966W WO2017050061A1 WO 2017050061 A1 WO2017050061 A1 WO 2017050061A1 CN 2016094966 W CN2016094966 W CN 2016094966W WO 2017050061 A1 WO2017050061 A1 WO 2017050061A1
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- rfid
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06K—GRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
- G06K17/00—Methods or arrangements for effecting co-operative working between equipments covered by two or more of main groups G06K1/00 - G06K15/00, e.g. automatic card files incorporating conveying and reading operations
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- the present application relates to, but is not limited to, the field of optical fiber wiring technology, and more particularly to an optical fiber distribution management system, apparatus and method.
- ODN optical distribution network
- optical fiber connector management technology realizes the input, display, control and management operations of optical fiber port resources by configuring a pair of electronic identity cards (eIDs) and control units on the quartz fiber. This visually visualizes and displays the location of the fiber optic connector, the connection status, and the availability of online fiber optic connectors.
- the optical fiber port positioning technology is used to modify the optical distribution network (ODN) of the existing optical fiber distribution network.
- ODN optical distribution network
- a printed circuit board (PCB) board is disposed in the smart upper cover, or a front extension smart strip is disposed on the front end of the original optical body of the optical fiber distribution frame.
- the traditional fiber-optic port positioning method used in the ODN of the existing network is transformed into the method of positioning by using the eID, and the original disk body needs to be changed or operated to a certain extent, especially in the application scenario of transforming into an intelligent fiber distribution frame, Each fiber distribution module adds a separate smart line card.
- the transformation requires an accurate correspondence between the physical position of the fiber port and the smart line card eID socket, thereby effectively and accurately guiding the position of the fiber port.
- due to the variety and brand of the ODN disk there is no uniform size. Constraints, so the transformation process involves more customization, which puts a lot of pressure on the operators to operate the spare parts.
- This paper provides an optical fiber wiring management system, device and method to solve the problem of transforming the existing network ODN. Due to the variety and brand of the ODN disk on the live network, there is no uniform size constraint, and the transformation process involves more Customization, which leads to a lot of pressure on the operator's operation and maintenance of spare parts.
- an embodiment of the present invention provides a fiber optic wiring management system, including:
- the RFID reading and writing device is configured to: send a label matching instruction, where the label matching instruction includes matching identity identification number ID information;
- the RFID tag device is configured to: receive a tag matching command sent by the RFID read/write device, compare the matching ID information with ID information of the RFID tag device, and compare the matching ID information with the When the ID information of the RFID tag device is the same, the light module in the RFID tag device is turned on.
- the RFID tag device includes: a receiving module, a control module, a storage module, and the light module;
- the receiving module is configured to: receive a tag matching instruction sent by the RFID reading and writing device, and transmit the tag matching instruction to the control module, where the tag matching instruction includes matching identity identification number ID information;
- the control module is configured to compare the matching ID information received by the receiving module with the ID information of the RFID tag device stored in the storage module, and the matching ID information and the RFID tag device When the ID information is the same, the lighting module is turned on.
- the receiving module is a radio frequency RF antenna, and the RF antenna is further configured to supply power to other modules in the RFID tag device.
- the RFID read/write device is disposed in an optical fiber distribution frame ODF, and the ODF is further provided with a plurality of optical fibers, two ends or one end of each of the optical fibers.
- the fiber optic connector is disposed, and the plurality of RFID tag devices are disposed on the plurality of fiber optic connectors in a one-to-one relationship or a one-to-many relationship;
- the optical fiber distribution management system further includes a plurality of mirror lights disposed in the ODF, and the plurality of mirror lights are respectively connected to the RFID read/write device, and the plurality of mirror lights and the plurality of The RFID tag device has a one-to-one correspondence or a one-to-many relationship;
- the RFID reading and writing device is further configured to: obtain the ID information of the plurality of RFID tag devices, send a control command sent by the server including the matching ID information, and control according to the control, before sending the tag matching instruction Instructing to turn on a mirror light corresponding to the matching ID information;
- the RFID reading and writing device is configured to: send the tag matching instruction according to the received control instruction.
- the RFID read/write device is further configured to: send the control instruction by matching ID information and indication in the control instruction One or more of the personnel information, the execution time and the operation content of the control command, and the use state of the fiber connector corresponding to the matching ID information are transmitted to the server.
- the RFID tag device is further configured to: open the RFID tag After the light module in the device, returning status information to the RFID read/write device;
- the RFID reading and writing device is further configured to: receive the status information, and send an end instruction to the RFID tag device according to the status information;
- the RFID tag device is further configured to: receive the end command and close the light module in the RFID tag device in accordance with the end command.
- an embodiment of the present invention provides an optical fiber distribution management apparatus, including at least:
- the receiving module is configured to: receive a label matching instruction sent by the radio frequency identification RFID reading and writing device, And transmitting the tag matching command to the control module, where the tag matching instruction includes matching identity identification number ID information;
- the control module is configured to: compare the matching ID information with its own ID information, and turn on the light module when the matching ID information is the same as its own ID information.
- the receiving module is a radio frequency RF antenna
- the RF antenna is also configured to supply power to other modules.
- it also includes:
- the sending module is configured to: after turning on the light module in the RFID tag device, return status information to the RFID read/write device;
- the receiving module is further configured to:
- the control module is further configured to:
- the light module is turned off according to the end instruction.
- an embodiment of the present invention provides a fiber optic wiring management method, including:
- the RFID-enabled RFID read/write device sends a tag matching instruction, where the tag matching command includes matching identity identification number ID information;
- An RFID tag device disposed on the fiber connector receives a tag matching command sent by the RFID device, compares the matching ID information with ID information of the RFID tag device, and compares the ID information with the When the ID information of the RFID tag device is the same, the light module in the RFID tag device is turned on.
- the RFID tag device is powered by a radio frequency RF antenna.
- the RFID read/write device is disposed in the optical fiber distribution frame ODF, and the ODF is further provided with a plurality of optical fibers, two ends or one end of each of the optical fibers.
- the fiber optic connector is disposed, and the plurality of RFID tag devices are disposed on the plurality of fiber optic connectors in a one-to-one relationship or a one-to-many relationship; wherein the RFID read/write devices are respectively connected to the plurality of optical fiber connectors a mirror light, a plurality of the mirror lights and a plurality of the RFID tag devices being a pair A relationship or a one-to-many relationship;
- the method further includes:
- the RFID reading and writing device acquires ID information of a plurality of the RFID tag devices, receives a control command sent by the server and includes the matching ID information, and starts a mirror light corresponding to the matching ID information according to the control command;
- the RFID read/write device sends a tag matching instruction, including:
- the RFID reading and writing device transmits the tag matching instruction according to the received control instruction.
- the ID information in the label matching instruction includes ID information at both ends of the optical fiber; and the RFID tag device that turns on the light module is A one-to-one or one-to-many RFID tag device at both ends of the fiber.
- the method further includes:
- the RFID reading and writing device matches matching ID information in the control command, personnel information indicating the sending of the control command, execution time and operation content of the control command, and an optical fiber connector corresponding to the matching ID information.
- One or more of the usage states are sent to the server.
- any one of the first to fourth possible implementation manners of the second aspect, in the fifth possible implementation, after the RFID tag device turns on the light in the RFID tag device ,Also includes:
- the RFID tag device returns status information to the RFID read/write device
- the RFID reading and writing device receives the status information, and sends an end instruction to the RFID tag device according to the status information;
- the RFID tag device receives the end command and closes the light module in the RFID tag device in accordance with the end command.
- an embodiment of the present invention provides a computer readable storage medium storing computer executable instructions, which are implemented when the computer executable instructions are executed by a processor.
- the optical fiber distribution management system and method provided by the embodiments of the present invention include an RFID read/write device and an RFID tag device disposed on the optical fiber connector, wherein the RFID read/write device transmits the included With the ID information tag matching command, the RFID tag device, when receiving the tag matching command, compares the matching ID information with the ID information in the tag device, and when the matching ID information is the same as the ID information of the RFID tag device,
- the light module in the RFID tag device; the optical fiber wiring management system provided in this embodiment is used to modify the ODN of the existing network, and the RFID tag device can be added at both ends of the fiber jumper and the fiber pig end to realize intuitive and efficient
- the optical fiber distribution management system provided in this embodiment solves the problem of transforming the ODN of the existing network, because the type and brand of the ODN disk on the live network are large and there is no uniformity. Dimensional constraints, the transformation process involves more customization, which leads to a lot of pressure on the operators to operate the spare parts.
- FIG. 1 is a schematic structural diagram of an optical fiber distribution management system according to an embodiment of the present invention.
- FIG. 2 is a schematic diagram showing the working principle of the optical fiber distribution management system provided by the embodiment shown in FIG. 1;
- FIG. 3 is a schematic diagram showing the positional relationship of an RFID tag device in the optical fiber distribution management system provided by the embodiment shown in FIG. 1;
- FIG. 4 is a schematic structural diagram of an RFID tag device in the optical fiber distribution management system provided by the embodiment shown in FIG. 1;
- FIG. 5 is a schematic structural diagram of another optical fiber distribution management system according to an embodiment of the present disclosure.
- FIG. 6 is a flowchart of a fiber optic wiring management method according to an embodiment of the present invention.
- optical fiber connectors that have been widely used at present include the following:
- Technique 1 Using the label on the fiber connector that is printed/paste/bundled, the technology has the label being easily scattered, lost, illegible, and looking through the label information one by one to find the target end. Due to the above characteristics, the search efficiency is low and easy. Defects such as errors;
- This technique has limitations on the type of optical fiber, and must be a fiber of similar structure capable of providing a metal conduction path for the light-emitting diode, for example, An optical fiber having a metal reinforcing rib, thus making the application range of the technology limited;
- the technology identification method can directly, efficiently and accurately identify the connector of the fiber, but cannot directly identify whether the connector of the fiber port is reliably connected;
- the quartz fiber transmission service is adopted, and the plastic fiber transmits the identification information to transmit the identification signal.
- the above technique 1 cannot improve the search efficiency because the label is easily scattered or lost, and the label is also easy to affect the adjacent optical fiber and the wiring quality.
- the techniques 2 to 4 can directly identify the connector of the optical fiber, but cannot Enable online statistics and display utilization of fiber connectors.
- a new fiber optic connector management technology as described in the background art has been developed, although the technology can visually visualize and display the position and connection state of the fiber connector, and the online utilization of the fiber connector; however, if needed
- the ODN of the existing network is transformed into the above technical solution. Since the ODN disk type and brand of the existing network are large and there is no uniform size constraint, the transformation process involves more customization, which brings great pressure on the operator's operation and maintenance spare parts. .
- the solution for transforming the ODN of the existing network is, on the one hand, replacing the upper cover of the original disk in the pipeline distribution frame with the intelligent upper cover for the commonly used intermediate distribution frame type intelligent modification scheme,
- the solution relies on customized PCB components and customized PCB mounts.
- the disadvantages are higher customization costs, longer cycle times, and the need to add separate smart line cards for each fiber distribution module, which is prone to the location of fiber connectors.
- the physical position of the smart line card cannot be accurately matched one by one; on the other hand, in order to melt the integrated disc type intelligent transformation scheme, the front extension extension smart strip is disposed at the front end of the original disc body of the optical fiber distribution frame, and the same exists. All of the above problems exist in the intelligent distribution scheme of the intermediate distribution frame type.
- optical fiber connector in this embodiment may be a fiber jumper port connection.
- the connector may also be a connector of the pigtail port.
- the positioning provided in this embodiment may be used to modify the positioning mode of the fiber jumper or the pigtail port.
- FIG. 1 is a schematic structural diagram of an optical fiber distribution management system according to an embodiment of the present invention.
- the fiber distribution management system is usually implemented in hardware and software.
- the optical fiber distribution management system 100 of the present embodiment includes: a radio frequency identification (RFID) read/write device 110 and a fiber connector 130 (neither in FIG. 1 and FIG. 2).
- RFID tag device 120 of the fiber optic connector 130 is shown in FIG. Only the RFID read/write device 110 and the RFID tag device 120 are shown in FIG. 1, and the relationship between the RFID tag device 120 and the fiber optic connector 130 is not shown.
- RFID radio frequency identification
- the RFID reading and writing device 110 is configured to: send a label matching instruction, where the label matching instruction includes a matching identity number (ID).
- the RFID read/write device 110 in this embodiment may be handheld, that is, set for mobility, or the RFID read/write device 110 may be installed in an optical distribution frame (ODF). A fixed position.
- ODF optical distribution frame
- FIG. 2 which is a schematic diagram of the working principle of the optical fiber distribution management system provided in the embodiment shown in FIG. 1, the RFID reading and writing device 110 can send a label matching command for positioning the optical fiber connector 130.
- the fiber connector 130 can be located and located by carrying a matching ID information in the tag matching command.
- the RFID tag device 120 is configured to receive the tag matching command sent by the RFID reading and writing device 110, compare the matching ID information with the ID information of the RFID tag device 120, and when the matching ID information is the same as the ID information of the RFID tag device 120, The light module 121 in the RFID tag device 120 is turned on to emit light.
- FIG. 3 is a schematic diagram showing the positional relationship of the RFID tag device in the optical fiber distribution management system provided in the embodiment shown in FIG. 1.
- the optical fiber connector 130 in FIG. 3 may be a connector of a fiber jumper or a tail.
- the connector of the fiber that is, the RFID tag device 120, determines the specific matching and connection relationship between the two ends of the fiber jumper or the end of the pigtail, for example, the RFID tag device 120 is connected to the fiber.
- the heads 130 have a one-to-one correspondence or a one-to-many relationship (i.e., one RFID tag device 120 corresponds to a plurality of fiber optic connectors 130).
- a plurality of optical fiber jumpers and pigtails are disposed in a common ODF, that is, the RFID tag device 120 is disposed at both ends of each fiber jumper or at one end of the pigtail, that is, the RFID tag device 120 passes the physical
- the manner of fixed connection is matched and bound to the connector of the fiber jumper and the pigtail, that is, the RFID tag device 120 has a certain matching relationship with the ends of the fiber jumper or one end of the pigtail, and therefore, each RFID
- the ID information in the tag device 120 can characterize the ID information of the fiber jumper connector or the ID information of the pigtail connector.
- the light module 121 in the RFID tag device 120 in this embodiment may be a Light Emitting Diode (LED), and the RFID tag device 120 matches the matching ID information with its own ID information. If the information is consistent with the ID information of the RFID tag device 120, the light module 121 in the RFID tag device 120 is turned on. If the comparison is inconsistent, the operation of turning on the light module 121 is not performed. At this time, the opened light module 121 can be intuitive. The position of the RFID tag device 120 to which the light belongs is highlighted to indicate the physical location of the fiber optic connector 130 corresponding to the RFID tag device 120.
- LED Light Emitting Diode
- FIG. 4 is a schematic structural diagram of an RFID tag device in the optical fiber distribution management system provided in the embodiment shown in FIG. 1.
- the RFID tag device 120 may include: a receiving module 122, a control module 123, and a storage.
- the control module 123 is configured to compare the matching ID information received by the receiving module 122 with the ID information of the RFID tag device 120 stored in the storage module 124, and when the matching ID information is the same as the ID information of the RFID tag device 120, Turn on the light module 121. At this time, the opened light module 121 can intuitively indicate the position of the RFID tag device 120 to which the operator belongs to the light module 121, thereby indicating the physical location of the fiber connector corresponding to the RFID tag device 120.
- the RFID reading and writing device 110 and the RFID tag device 120 in this embodiment perform information exchange and comparison by using a radio frequency method, and perform an opening operation of the light according to an agreed mechanism.
- the RFID tag device 120 itself is passive.
- the RFID reading and writing device 110 is required to supply power by radio frequency.
- the receiving module 122 in this embodiment may be a radio frequency (Radio Frequency, Referred to as: RF) antenna, the RF antenna is configured to supply power to other modules in the RFID tag device 120.
- RF Radio Frequency
- the control module 123 if the result of the comparison by the control module 123 is that the matching ID information is different from the ID information of the RFID tag device 120, the control module 123 does not perform any control processing. In the above manner, the light module 121 provided in the RFID tag device 120 that is consistent with the matching ID information is turned on, thereby identifying the position of the fiber connector indicating the search.
- the optical fiber distribution management system 100 In terms of physical properties, in the optical fiber distribution management system 100 provided in this embodiment, since the RFID tag device 120 is fixed at the port of the fiber jumper or the pigtail, the structural component is simple in form, and therefore has an environment-independent and industrial survey. The superior attributes are more versatile. Therefore, the optical fiber distribution management system 100 provided in this embodiment is used in the intelligent transformation of the existing network ODN, and the existing network fiber and the original disk body can be modified without any modification, and only needs to be at both ends and ends of the fiber jumper. One end of the fiber is added to the plug-and-play RFID tag device 120, thereby enabling intuitive visual inspection, efficient identification of the position of the fiber jumper and the pigtail port, and reducing construction investment and engineering investment.
- the optical fiber distribution management system includes an RFID reading and writing device and an RFID tag device disposed on the optical fiber connector, wherein the RFID tag device transmits a matching tag information including the matching ID information, and the RFID tag device receives the When the tag matching command is compared, the matching ID information is compared with the ID information in the tag device, and when the matching ID information is the same as the ID information of the RFID tag device, the light module in the RFID tag device is turned on;
- the optical fiber distribution management system provided for the modification of the ODN of the existing network can realize the intuitive and efficient identification of the position of the fiber jumper and the pigtail port by adding an RFID tag device at both ends of the fiber jumper and one end of the pigtail.
- the optical fiber distribution management system provided in this embodiment solves the problem of transforming the ODN of the existing network. Because the type and brand of the ODN disk on the live network are large and there is no uniform size constraint, the transformation process involves more customization, resulting in It puts a lot of pressure on operators to operate spare parts.
- FIG. 5 is a schematic structural diagram of another optical fiber distribution management system according to an embodiment of the present invention.
- the RFID read/write device 110 in this embodiment may be disposed in the ODF.
- the ODF is further provided with a plurality of optical fibers (not shown in FIG. 5), and the optical fiber connector 130 is provided at both ends or one end of each optical fiber (FIG. 5).
- the plurality of RFID tag devices 120 are disposed on the plurality of fiber optic connectors 130 in a one-to-one relationship or a one-to-many relationship; wherein the fiber optic wiring management system 100 provided in this embodiment further includes settings.
- the RFID reading and writing device 110 is connected, and the plurality of mirror lamps 141 are disposed in a one-to-one correspondence or a one-to-many relationship with the plurality of RFID tag devices 120 (i.e., one RFID tag device 120 corresponds to the plurality of mirror lamps 141).
- the number of the mirror lamps 141 in this embodiment is the same as the number of the RFID tag devices 120, that is, the number of the mirror lamps 141 and the light module 121 are the same, and are arranged one-to-one, and the mirror lamp is in the physical position and the light module.
- 121 is also corresponding, as shown in FIG.
- the light module "1" corresponds to the mirror light “1'”
- the light module "2” corresponds to the mirror light “2'”
- the plurality of mirror lights 141 and the RFID read/write device 110 may be disposed in the mirror plate 140 of the ODF
- the plurality of optical fibers and the plurality of RFID tag devices 120 may be disposed in the wiring module 150 of the ODF.
- the RFID read/write device 110 is further configured to: before sending the label matching command, acquire ID information of the plurality of RFID tag devices 120, receive a control command sent by the server including the matching ID information, and start according to the control instruction.
- the mirror lamp 141 corresponding to the matching ID information in the mirroring board 140; the RFID reading and writing device 110 is configured to: send the tag matching command, which means: sending the tag matching command according to the received control command.
- the RFID reading and writing device 110 may collect the ID information in each of the RFID tag devices 120 by RF, or may pre-record the ID information in the RFID tag device 120 by the operator, and store the IDs of the plurality of acquired RFID tag devices 120.
- the information when the RFID read/write device 110 receives the control command, firstly turns on the corresponding mirror light 141 in the mirror plate 140 according to the matching ID information in the control command; meanwhile, in one of the RFID tag devices 120 according to the received tag
- the matching command is turned on, the physical relationship between the mirror light 141 and the RFID tag device 120 is correct, and the control command is determined according to the mirror light 141 turned on in the mirror plate 140 and the light module 121 that is turned on on the wiring module 150.
- the embodiment shown in Fig. 5 is shown by taking the light module "3" and the mirror light "3'" on as an example.
- the optical fiber distribution management system 100 can collect the ID information in the RFID tag device 120 by RF wirelessly, and automatically collect and count the optical fiber/resource information; and simultaneously transmit the matching ID information through the RFID reading and writing device 110.
- the method of turning on the light module 121 in the RFID tag device 120 to compare with the mirror light turned on in the mirror plate 140 can more accurately locate the fiber connector 130 of the specified ID information, thereby improving the search speed and accuracy of the positioning target.
- the RFID read/write device 110 can also be configured to: control commands The match ID information, the person information indicating the transmission control command, the execution time and operation content of the control command, and one or more of the use states of the fiber connector 130 corresponding to the match ID information are sent to the server, the optical fiber The usage state of the connector 130 is usually occupied or idle; thus the storage and statistics of the fiber-optic wiring usage information are performed by the server.
- the optical fiber distribution management system 100 provided in this embodiment can collect resource data of the fiber jumper and the pigtail port, and can insert the operation record of managing the port into the management process to realize execution time, operation personnel, operation content, and the like. The active collection and recording of information facilitates the subsequent statistical analysis of port usage information.
- the RFID tag device 120 is further configured to: after turning on the light module 121 in the RFID tag device 120, return status information to the RFID read/write device 110;
- the RFID read/write device 110 is further configured to: receive status information, and send an end command to the RFID tag device 120 according to the status information, and the RFID read/write device 110 may further turn off the mirror light 141 when transmitting the end command; and further the RFID tag device 120 is further configured to: receive an end command, and close the light module 121 in the RFID tag device 120 according to the end command; in an actual implementation, the RFID tag device 120 may also return an acknowledgement message to the RFID read/write device 110, the confirmation The message is used to instruct the RFID read/write device 110 to end the above operational flow.
- the RFID read/write device 110 can transmit the content of the above-mentioned operation, port maintenance, or change to the server or send it to a preset data platform for storage, and is called as resource data when it is subsequently maintained.
- the embodiment of the invention further provides an optical fiber wiring management device, which at least includes:
- the receiving module is configured to: receive a tag matching instruction sent by the radio frequency identification RFID reading and writing device, and transmit the tag matching matching instruction to the control module, where the tag matching instruction includes matching identity identification number ID information;
- the control module is configured to: compare the matching ID information with its own ID information, and turn on the light module when the matching ID information is the same as its own ID information.
- the receiving module is a radio frequency RF antenna
- the RF antenna is also configured to supply power to other modules.
- a sending module configured to: after turning on the light module in the RFID tag device, The RFID read/write device returns status information;
- the receiving module is further configured to:
- the control module is further configured to:
- the light module is turned off according to the end instruction.
- FIG. 6 is a flowchart of a fiber optic wiring management method according to an embodiment of the present invention.
- the optical fiber distribution management method provided by this embodiment is applicable to the management of the optical fiber jumper port or the pigtail port.
- the optical fiber distribution management method provided in this embodiment may be implemented in the foregoing embodiment shown in FIG. 1 and FIG.
- the fiber optic wiring management system is generally implemented in hardware and software.
- the structure can be referred to FIG. 1 above, including an RFID reading and writing device and an RFID tag device disposed on the fiber connector, RFID.
- the structure of the labeling device can be referred to FIG. 4 above.
- the optical fiber wiring management method provided in this embodiment may include:
- the RFID read/write device sends a tag matching command, where the tag matching command includes matching ID information.
- the RFID reading and writing device in this embodiment can also be hand-held or can be installed in a fixed position value in the ODF.
- S120 The RFID tag device disposed on the fiber connector is compared with the matching ID information and the ID information of the RFID tag device.
- the RFID tag device turns on the light module in the RFID tag device to emit light when the comparison result is that the matching ID information is the same as the ID information of the RFID tag device.
- the RFID tag device ends the operation flow when the comparison result is that the matching ID information is different from the ID information of the RFID tag device.
- the corresponding positions of the RFID tag device in this embodiment and the corresponding positions of the fiber connector are the same as those in the above embodiment, and therefore will not be described herein.
- the receiving module may be an RF antenna
- the RFID tag device is powered by a radio frequency RF antenna
- the LED tag device is provided with a light module for emitting light, and the light module is provided.
- the S120 in this embodiment may include: the RF antenna receives the tag matching matching command sent by the RFID reading and writing device, and transmits the tag matching command to the control module; The control module compares the matching ID information with the ID information of the RFID tag device stored in the storage module, and instructs to turn on the light module when the matching ID information is the same as the ID information of the RFID tag device.
- optical fiber distribution management method provided by the embodiment of the present invention can be performed by the optical fiber distribution management system provided by the embodiment shown in FIG. 1 , and the steps of the method and the function of the device in the optical fiber distribution management system provided by the embodiment of the present invention. Correspondingly, its implementation principle and technical effect are similar, and will not be described here.
- the execution steps of the embodiment are described by taking the RFID read/write device in the ODF as an example.
- a plurality of optical fibers are further disposed in the ODF.
- a fiber connector is disposed at two ends or one end of the root fiber, and the plurality of RFID tag devices are disposed on the plurality of fiber connectors in a one-to-one relationship or a one-to-many relationship; wherein the RFID read/write devices are respectively connected to the plurality of fiber connectors
- the mirror light, the plurality of mirror lights and the plurality of RFID tag devices are arranged in a one-to-one relationship or a one-to-many relationship; in actual implementation, the RFID read/write device and the mirror light can be disposed in the mirror plate of the ODF, and more
- the root fiber and the plurality of RFID tag devices may be disposed in the wiring module 150 of the ODF.
- the embodiment further includes: S100, the RFID reading and writing device acquires ID information of the plurality of RFID tag devices.
- the RFID read/write device receives a control command sent by the server and includes matching ID information.
- the control command received by the RFID reading and writing device in this embodiment may be a work order including the content indicating the operation and the ID information of the indication.
- the RFID read/write device starts the mirror light corresponding to the matching ID information in the mirror board according to the control instruction.
- S110 in this embodiment may be: sending a label matching instruction according to the received control instruction.
- the execution sequence of S102 and S110-S120 is not limited.
- the RFID read/write device may first turn on the mirror light, or the RFID read/write device may first send a label matching command to turn on the light module of the RFID tag device. .
- the mirror light and the RFID read/write device are wired, and no comparison judgment is required, so the opening speed is faster.
- FIG. 6 is shown by taking S102 before S110 to S120 as an example.
- the ID information indicated in the work order may be the ID information of the two ends of the optical fiber, and correspondingly, the ID information service in the label matching instruction sent by the RFID reading and writing device is the above.
- the ID information of the two ends of the optical fiber so that when the light module of the RFID tag device is illuminated by the RFID reading and writing device, the RFID tag device that is one-to-one or one-to-many of the two ends of the optical fiber is actually lit, that is, at this time, Illuminating two RFID tag devices, it is convenient to find both ends of one fiber through two illuminated RFID tag devices; this method is applied to actual operation, if it is necessary to plug two ends of one fiber separately
- the interface can accurately and efficiently find both ends of a fiber and improve the accuracy of the connection.
- the method provided in this embodiment, after the S tag is performed by the RFID tag device, further includes:
- the RFID tag device returns status information to the RFID read/write device.
- the RFID reading and writing device transmits an end command to the RFID tag device according to the status information.
- the RFID tag device turns off the light module in the RFID tag device according to the end command.
- the RFID read/write device can also turn off the mirror light when the end command is sent.
- the method further includes: S160, the RFID tag device returns an acknowledgement message to the RFID read/write device.
- the RFID reading and writing device ends the operation flow according to the confirmation message.
- optical fiber distribution management method provided by the embodiment of the present invention can be performed by the optical fiber distribution management system provided by the embodiment shown in FIG. 5, and the steps of the method and the function of the device in the optical fiber distribution management system provided by the embodiment of the present invention. Correspondingly, its implementation principle and technical effect are similar, and will not be described here.
- the port entry mode in the modification is the same as the input input mode in the foregoing positioning port, and both need to be in the fiber jumper and the pigtail.
- the RFID tag device is bound to the port, thereby physically mapping and recording the port of the RFID tag device, and uploading the recorded data to the server or the data platform for subsequent maintenance calls;
- the mirror light connected to the writing device is used to determine whether the physical mapping relationship with the RFID tag device is correct. If the physical position of the opened mirror light and the RFID tag device that turns on the light module is different, the mapping relationship between the mirror light and the RFID tag device needs to be adjusted. If the turned-on mirror light is the same as the physical location of the RFID tag device that turns on the light module, the mapping relationship can be uploaded to the server or the data platform.
- the RFID read/write device may be further configured to: match ID information in the control command, personnel information indicating the sending of the control command, execution time and operation content of the control command, and corresponding to the matching ID information.
- One or more of the states of use of the fiber optic connector are sent to the server, and the state of use of the fiber optic connector is usually occupied or idle; thus, the server stores and counts the information of the fiber optic wiring usage.
- the embodiment of the invention further provides a computer readable storage medium storing computer executable instructions, which are implemented by the processor to implement the optical fiber wiring management method.
- the optical fiber distribution management system provided in this embodiment is used to modify the ODN of the existing network, and the RFID tag device can be added at both ends of the fiber jumper and the end of the pigtail to realize the optical fiber jumper and pigtail.
- the location of the port is used to modify the ODN of the existing network, and the RFID tag device can be added at both ends of the fiber jumper and the end of the pigtail to realize the optical fiber jumper and pigtail.
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Abstract
本文公布一种光纤配线管理系统、装置和方法。所述光纤配线管理系统包括:射频识别RFID读写装置和设置于光纤连接头的RFID标签装置;RFID读写装置,设置为发送标签匹配指令,标签匹配指令中包括匹配身份标识号ID信息;RFID标签装置,设置为接收RFID读写装置发送的标签匹配指令,将匹配ID信息与RFID标签装置的ID信息进行对比,并在匹配ID信息与RFID标签装置的ID信息相同时,开启RFID标签装置中的灯光模块使其发光。
Description
本申请涉及但不限于光纤配线技术领域,尤指一种光纤配线管理系统、装置和方法。
随着光分配网络(Optical Distribution Network,简称为:ODN)技术的发展,为了满足用户数量迅速增加的需求,不仅需要大容量光纤配线可以自动收集、分配资源与端口数据和提高端口利用率的功能,还需要大容量光纤配线可以迅速、准确定位光纤跳线(Optical Fiber Jumper)或尾纤(Pigtail)的端口,从而提高施工效率和正确性。
传统的光纤连接头定位技术虽然可以查找和识别出光纤的端口,但是无法进行在线统计和显示光纤连接头的利用率。目前已经发展出新型的光纤连接头管理技术,其通过在石英光纤上配置成对的电子身份证(Electronic Identity,eID),控制单元等来实现光纤端口资源的录入、显示、控制和管理操作,从而直观的目测和显示光纤连接头的位置、连接状态,以及在线统计光纤连接头的利用率。采用上述新型光纤端口定位技术,对现网光分配网络(Optical Distribution Network,简称为:ODN)进行改造的方式通常为:将光纤配线架中原盘体的上盖板更换为智能上盖板,该智能上盖板中配置有印制电路板(Printed Circuit Board,简称为:PCB)板,或者在光纤配线架的原盘体的前端配置前挂延伸智能条等。将现网ODN中使用的传统光纤端口定位方式改造成通过使用eID进行定位的方式,需要在一定程度上改变或操作原盘体,尤其在改造为智能光纤配线架的应用场景中,需要为每个光纤配线模块增加独立的智能线卡。改造通过要求达到光纤端口与智能线卡eID插座物理位置的准确对应,进而实现有效、准确的指导光纤端口所在位置的效果,然而,由于现网ODN盘体种类、品牌较多且无统一的尺寸约束,因此改造过程涉及较多的定制,从而给运营商运维备件带来很大的压力。
综上所述,对现网ODN进行改造的方式中,由于现网ODN盘体种类、品牌较多且无统一的尺寸约束,改造过程涉及较多的定制,从而导致给运营商运维备件带来很大的压力。
发明内容
以下是对本文详细描述的主题的概述。本概述并非是为了限制权利要求的保护范围。
本文提供了一种光纤配线管理系统、装置和方法,以解决对现网ODN进行改造的方式中,由于现网ODN盘体种类、品牌较多且无统一的尺寸约束,改造过程涉及较多的定制,从而导致给运营商运维备件带来很大的压力的问题。
第一方面,本发明实施例提供一种光纤配线管理系统,包括:
射频识别RFID读写装置和设置于光纤连接头的RFID标签装置;
所述RFID读写装置,设置为:发送标签匹配指令,所述标签匹配指令中包括匹配身份标识号ID信息;
所述RFID标签装置,设置为:接收所述RFID读写装置发送的标签匹配指令,将所述匹配ID信息与所述RFID标签装置的ID信息进行对比,并在所述匹配ID信息与所述RFID标签装置的ID信息相同时,开启所述RFID标签装置中的灯光模块。
在第一方面的第一种可能的实现方式中,所述RFID标签装置包括:接收模块、控制模块、存储模块和所述灯光模块;
其中,所述接收模块,设置为:接收RFID读写装置发送的标签匹配指令,并将所述的标签匹配指令传输给所述控制模块,所述标签匹配指令中包括匹配身份标识号ID信息;
所述控制模块,设置为:将所述接收模块接收的匹配ID信息与所述存储模块中存储的所述RFID标签装置的ID信息进行对比,并且在所述匹配ID信息与所述RFID标签装置的ID信息相同时,开启所述灯光模块。
根据第一方面的第一种可能的实现方式,在第二种可能的实现方式中,
所述接收模块为射频RF天线,所述RF天线还设置为:给所述RFID标签装置中的其它模块供电。
在第一方面的第三种可能的实现方式中,所述RFID读写装置设置于光纤配线架ODF中,所述ODF中还设置有多根光纤,每根所述光纤的两端或一端设置有所述光纤连接头,多个所述RFID标签装置按照一一对应的关系或一对多的关系设置于多个所述光纤连接头上;
其中,所述光纤配线管理系统还包括设置于所述ODF中的多个镜像灯,多个所述镜像灯分别与所述RFID读写装置相连接,多个所述镜像灯与多个所述RFID标签装置为一一对应的关系或一对多的关系;
所述RFID读写装置还设置为:在发送所述标签匹配指令之前,获取多个所述RFID标签装置的ID信息,接收服务器发送的包括所述匹配ID信息的控制指令,并根据所述控制指令开启与所述匹配ID信息对应的镜像灯;
所述RFID读写装置设置为:根据接收到的所述控制指令发送所述标签匹配指令。
根据第一方面的第三种可能的实现方式,在第四种可能的实现方式中,所述RFID读写装置还设置为:将所述控制指令中的匹配ID信息、指示发送所述控制指令的人员信息、所述控制指令的执行时间和操作内容,以及与所述匹配ID信息对应的光纤连接头的使用状态中的一项或多项发送给所述服务器。
根据第一方面、第一方面的第一种到第四种可能的实现方式中任意一种,在第五种可能的实现方式中,所述RFID标签装置还设置为:在开启所述RFID标签装置中的灯光模块之后,向所述RFID读写装置返回状态信息;
所述RFID读写装置还设置为:接收所述状态信息,并根据所述状态信息向所述RFID标签装置发送结束指令;
所述RFID标签装置还设置为:接收所述结束指令,并根据所述结束指令关闭所述RFID标签装置中的灯光模块。
第二方面,本发明实施例提供一种光纤配线管理装置,至少包括:
接收模块,设置为:接收射频识别RFID读写装置发送的标签匹配指令,
并将标签配匹配指令传输给控制模块,标签匹配指令中包括匹配身份标识号ID信息;
控制模块,设置为:将匹配ID信息与自身的ID信息进行对比,并在匹配ID信息与自身的ID信息相同时,开启灯光模块。
可选地,所述接收模块为射频RF天线;
所述RF天线还设置为:为其他模块供电。
可选地,还包括:
发送模块,设置为:在开启所述RFID标签装置中的灯光模块之后,向所述RFID读写装置返回状态信息;
所述接收模块还设置为:
接收来自所述RFID读写装置的结束指令;
所述控制模块还设置为:
根据所述结束指令关闭灯光模块。
第三方面,本发明实施例提供一种光纤配线管理方法,包括:
射频识别RFID读写装置发送标签匹配指令,所述标签匹配指令中包括匹配身份标识号ID信息;
设置于光纤连接头上的RFID标签装置接收所述RFID读写装置发送的标签匹配指令,将所述匹配ID信息与所述RFID标签装置的ID信息进行对比,并在所述匹配ID信息与所述RFID标签装置的ID信息相同时,开启所述RFID标签装置中的灯光模块。
在第三方面的第一种可能的实现方式中,所述RFID标签装置通过射频RF天线供电。
在第三方面的第二种可能的实现方式中,所述RFID读写装置设置于光纤配线架ODF中,所述ODF中还设置有多根光纤,每根所述光纤的两端或一端设置有所述光纤连接头,多个所述RFID标签装置按照一一对应的关系或一对多的关系设置于多个所述光纤连接头上;其中,所述RFID读写装置分别连接多个镜像灯,多个所述镜像灯与多个所述RFID标签装置为一一对
应的关系或一对多的关系;
所述RFID读写装置发送标签匹配指令之前,还包括:
所述RFID读写装置获取多个所述RFID标签装置的ID信息,接收服务器发送的包括所述匹配ID信息的控制指令,并根据所述控制指令开启与所述匹配ID信息对应的镜像灯;
所述RFID读写装置发送标签匹配指令,包括:
所述RFID读写装置根据接收到的所述控制指令发送所述标签匹配指令。
根据第三方面的第二种可能的实现方式,在第三种可能的实现方式中,所述标签匹配指令中的ID信息包括光纤两端的ID信息;则开启灯光模块的RFID标签装置为与所述光纤两端一一对应或一对多的RFID标签装置。
根据第三方面的第二种可能的实现方式,在第四种可能的实现方式中,所述方法还包括:
所述RFID读写装置将所述控制指令中的匹配ID信息、指示发送所述控制指令的人员信息、所述控制指令的执行时间和操作内容,以及与所述匹配ID信息对应的光纤连接头的使用状态中的一项或多项发送给所述服务器。
根据第三方面、第二方面的第一种到第四种可能的实现方式中任意一种,在第五种可能的实现方式中,所述RFID标签装置开启所述RFID标签装置中的灯光之后,还包括:
所述RFID标签装置向所述RFID读写装置返回状态信息;
所述RFID读写装置接收所述状态信息,并根据所述状态信息向所述RFID标签装置发送结束指令;
所述RFID标签装置接收所述结束指令,并根据所述结束指令关闭所述RFID标签装置中的灯光模块。
第四方面,本发明实施例提供一种计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令被处理器执行时实现上述方法。
本发明实施例提供的光纤配线管理系统和方法,包括RFID读写装置和设置于光纤连接头的RFID标签装置,其中,通过RFID读写装置发送包括匹
配ID信息标签匹配指令,RFID标签装置在接收到标签匹配指令时,通过将匹配ID信息与标签装置中的ID信息进行对比,并且在匹配ID信息与该RFID标签装置的ID信息相同时,开启该RFID标签装置中的灯光模块;采用本实施例提供的光纤配线管理系统对现网ODN进行改造,可以通过在光纤跳线的两端和尾纤的一端增加RFID标签装置,实现直观、高效的识别出光纤跳纤和尾纤端口的位置,本实施例提供的光纤配线管理系统解决了对现网ODN进行改造的方式中,由于现网ODN盘体种类、品牌较多且无统一的尺寸约束,改造过程涉及较多的定制,从而导致给运营商运维备件带来很大的压力的问题。
在阅读并理解了附图和详细描述后,可以明白其他方面。
附图概述
图1为本发明实施例提供的一种光纤配线管理系统的结构示意图;
图2为图1所示实施例提供的光纤配线管理系统的工作原理示意图;
图3为图1所示实施例提供的光纤配线管理系统中RFID标签装置的位置关系示意图;
图4为图1所示实施例提供的光纤配线管理系统中一种RFID标签装置的结构示意图;
图5为本发明实施例提供的另一种光纤配线管理系统的结构示意图;
图6为本发明实施例提供的一种光纤配线管理方法的流程图。
下文中将结合附图对本发明的实施例进行详细说明。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任意组合。
在附图的流程图示出的步骤可以在诸如一组计算机可执行指令的计算机系统中执行。并且,虽然在流程图中示出了逻辑顺序,但是在某些情况下,可以以不同于此处的顺序执行所示出或描述的步骤。
目前已经广泛使用的光纤连接头的定位识别技术包括如下几种:
技术1:使用打印/粘贴/绑扎的在光纤连接头上的标签,该技术存在标签容易散落、丢失、字迹模糊、逐个翻看标签信息来找到目标端头,由于以上特点导致查找效率低、容易出错等缺陷;
技术2:通过发光二极管点亮光纤的连接头来定位到光纤的两端或一端,该技术对光纤的类型有限制,必须是能够为发光二极管提供金属导通回路的类似结构形式的光纤,例如具有金属加强筋的光纤,因此,使得该技术的应用范围被限制;
技术3:通过点亮塑料光纤的方式识别光纤的连接头,该技术识别方法可以直观、高效、准确的识别出光纤的连接头,但是无法直观标识光纤端口的连接头是否可靠连接;
技术4:通过一根石英光纤与多根塑料光纤集成到光纤连接头上,采用石英光纤传递业务,塑料光纤传递识别信息的方式来传递识别信号。
上述技术1由于标签容易散落、丢失等导致无法提高查找效率,而且翻看标签也容易影响相邻光纤及布线质量等,技术2~技术4,虽然可以直观的识别出光纤的连接头,但无法实现在线统计和显示光纤连接头的利用率。目前,已经发展出如背景技术中所述的新型光纤连接头管理技术,虽然该技术可直观目测和显示光纤连接头的位置、连接状态,以及在线统计光纤连接头的利用率;然而,若需要将现网ODN改造为上述技术方案,由于现网ODN盘体种类、品牌较多且无统一的尺寸约束,因此改造过程涉及较多的定制,从而给运营商运维备件带来很大的压力。
举例说明对现网ODN进行改造的方案,一方面,为通常使用的中间配线架式模条智能化改造方案,将管线配线架中原盘体的上盖板更换为智能上盖板,该方案依赖于定制化PCB组件以及定制化的PCB安装件,缺点在于定制成本较高,改造周期较长,同时需要为每个光纤配线模块增加独立的智能线卡,容易出现光纤连接头的位置与智能线卡的物理位置无法准确一一对应的情况;另一方面,为熔配一体盘式智能化改造方案,在光纤配线架的原盘体的前端配置前挂延伸智能条,同样存在中间配线架式模条智能化改造方案存在的上述所有问题。
需要说明的是,以下本实施例中的光纤连接头可以是光纤跳线端口的连
接头,也可以是尾纤端口的连接头,本实施例提供的可以用于对光纤跳线或尾纤端口的定位方式进行改造。下面通过实施例对本申请的技术方案进行详细说明,本文提供的以下几个实施例可以相互结合,对于相同或相似的概念或过程可能在某些实施例不再赘述。
图1为本发明实施例提供的一种光纤配线管理系统的结构示意图。本实施例提供的光纤配线管理系统适用于对光纤跳线端口或者尾纤端口进行管理的情况中,该光纤配线管理系统通常以硬件和软件的方式来实现。如图1所示,本实施例的光纤配线管理系统100包括:射频识别(Radio Frequency Identification,简称为:RFID)读写装置110和设置于光纤连接头130(图1和图2中均未示出,图3中示出该光纤连接头130)的RFID标签装置120。图1中仅示出RFID读写装置110和RFID标签装置120,并未示出RFID标签装置120与光纤连接头130的关系。
其中,RFID读写装置110设置为:发送标签匹配指令,该标签匹配指令中包括匹配身份标识号(Identity,简称为:ID)信息。
本实施例中的RFID读写装置110可以为手持式的,即为移动性设置的,或者该RFID读写装置110可以安装于光纤配线架(Optical Distribution Frame,简称为:ODF)中的某一固定位置。如图2所示,为图1所示实施例提供的光纤配线管理系统的工作原理示意图,RFID读写装置110可以发送标签匹配指令,该标签匹配指令用于定位光纤连接头130中的其中一个或多个,由于每个光纤连接头130都具有特定的ID信息,因此,可以通过在标签匹配指令携带一个匹配ID信息来查找定位指定的光纤连接头130。
RFID标签装置120设置为:接收RFID读写装置110发送的标签匹配指令,将匹配ID信息与RFID标签装置120的ID信息进行对比,并在匹配ID信息与RFID标签装置120的ID信息相同时,开启RFID标签装置120中的灯光模块121使其发光。
如图3所示,为图1所示实施例提供的光纤配线管理系统中RFID标签装置的位置关系示意图,图3中的光纤连接头130可以为光纤跳线的连接头,也可以为尾纤的连接头,即RFID标签装置120与光纤跳线的两端或尾纤的一端确定特定的匹配和连接关系,例如RFID标签装置120与光纤连接
头130为一一对应的关系或一对多的关系(即一个RFID标签装置120对应多个光纤连接头130)。需要说明的是,通常的ODF中布设有多根光纤跳线和尾纤,即每个光纤跳线的两端或者尾纤的一端都设置有上述RFID标签装置120,即RFID标签装置120通过物理固定连接的方式与光纤跳线和尾纤的连接头匹配和绑定,也就是说,RFID标签装置120与光纤跳纤的两端或尾纤的一端具有确定的匹配关系,因此,每个RFID标签装置120中的ID信息可以表征与其对应的光纤跳纤连接头的ID信息或尾纤连接头的ID信息。
本实施例中的RFID标签装置120中的灯光模块121如可以为发光二极管(Light Emitting Diode,简称为:LED),该RFID标签装置120在对比匹配ID信息与其自身的ID信息时,当匹配ID信息与该RFID标签装置120的ID信息比对一致,则开启RFID标签装置120中的灯光模块121,若对比不一致,则不执行开启灯光模块121的操作,此时,开启的灯光模块121可以直观醒目指示操作人员该灯光所属的RFID标签装置120的位置,进而指示RFID标签装置120对应的光纤连接头130所在的物理位置。
如图4所示,为图1所示实施例提供的光纤配线管理系统中一种RFID标签装置的结构示意图,本实施例提供RFID标签装置120可以包括:接收模块122、控制模块123和存储模块124和上述灯光模块121;在实际实现中,接收模块122,设置为:接收RFID读写装置发送的标签配匹配指令,并将的标签配匹配指令传输给控制模块123,该标签匹配指令中包括匹配ID。
控制模块123,设置为:将接收模块122接收的匹配ID信息与存储模块124中存储的RFID标签装置120的ID信息进行对比,并且在匹配ID信息与RFID标签装置120的ID信息相同时,指示开启灯光模块121。此时,开启的灯光模块121可以直观醒目指示操作人员该灯光模块121所属的RFID标签装置120的位置,进而指示RFID标签装置120对应的光纤连接头所在的物理位置。
在实际实现中,本实施例中的RFID读写装置110与RFID标签装置120通过无线射频方式进行信息交互和比对,并按约定机制进行灯光的开启操作,RFID标签装置120本身是无源的,需要RFID读写装置110通过射频方式对其供电。举例来说,本实施例中的接收模块122可以为射频(Radio Frequency,
简称为:RF)天线,该RF天线设置为:给RFID标签装置120中的其它模块供电。
在本实施例中,若控制模块123在对比的结果为:匹配ID信息与RFID标签装置120的ID信息不同,控制模块123则不做任何控制处理。通过上述方式实现与匹配ID信息一致的RFID标签装置120中设置的灯光模块121被开启,进而识别出指示查找的光纤连接头的位置。
就物理属性而言,本实施例提供的光纤配线管理系统100中,由于RFID标签装置120是固定在光纤跳线或尾纤的端口,结构件形式简单,因此具有不依赖于环境和工勘的优越属性,通用性更强。因此,将本实施例提供的光纤配线管理系统100用于对现网ODN的智能改造中,可以对现网光纤和原盘体不做任何改造,仅需要在光纤跳线的两端和尾纤的一端增加可即插即用的RFID标签装置120,从而实现直观目测、高效识别光纤跳纤和尾纤端口的位置是否正确并且可降低建设投入和工勘投入。
本实施例所提供的光纤配线管理系统,包括RFID读写装置和设置于光纤连接头的RFID标签装置,其中,通过RFID读写装置发送包括匹配ID信息标签匹配指令,RFID标签装置在接收到标签匹配指令时,通过将匹配ID信息与标签装置中的ID信息进行对比,并且在匹配ID信息与该RFID标签装置的ID信息相同时,开启该RFID标签装置中的灯光模块;采用本实施例提供的光纤配线管理系统对现网ODN进行改造,可以通过在光纤跳线的两端和尾纤的一端增加RFID标签装置,实现直观、高效的识别出光纤跳纤和尾纤端口的位置,本实施例提供的光纤配线管理系统解决了对现网ODN进行改造的方式中,由于现网ODN盘体种类、品牌较多且无统一的尺寸约束,改造过程涉及较多的定制,从而导致给运营商运维备件带来很大的压力。
可选地,图5为本发明实施例提供的另一种光纤配线管理系统的结构示意图。本实施例中的RFID读写装置110可以设置于ODF中,该ODF中还设置有多根光纤(图5中未示出),每根光纤的两端或一端具有光纤连接头130(图5中未示出),多个RFID标签装置120按照一一对应的关系或一对多的关系设置于多个光纤连接头130上;其中,本实施例提供的光纤配线管理系统100还包括设置于ODF中的多个镜像灯141,多个镜像灯141分别与
RFID读写装置110相连接,多个镜像灯141与多个RFID标签装置120为一一对应的关系或一对多的关系(即一个RFID标签装置120对应多个镜像灯141)设置的。例如,本实施例中的镜像灯141与RFID标签装置120的数量相同,也就是镜像灯141与灯光模块121的数量相同,并且一一对应设置的,并且该镜像灯在物理位置上与灯光模块121也是对应的,如图5所示,灯光模块“1”对应于镜像灯“1’”,灯光模块“2”对应于镜像灯“2’”,以此类推。本实施例在实现中,多个镜像灯141和RFID读写装置110可以设置于ODF的镜像板140中,多根光纤和多个RFID标签装置120可以设置于ODF的配线模块150中。
在本实施例中,RFID读写装置110还设置为:在发送标签匹配指令之前,获取多个RFID标签装置120的ID信息,接收服务器发送的包括匹配ID信息的控制指令,并根据控制指令开启镜像板140中与匹配ID信息对应的镜像灯141;RFID读写装置110设置为:发送标签匹配指令,是指:根据接收到的控制指令发送标签匹配指令。RFID读写装置110可以通过RF方式收集每个RFID标签装置120中的ID信息,也可以由操作人员预先录入RFID标签装置120中的ID信息,并且存储上述获取的多个RFID标签装置120的ID信息,在该RFID读写装置110接收到控制指令时,根据该控制指令中的匹配ID信息先开启镜像板140中相应地镜像灯141;同时,在其中一个RFID标签装置120根据接收到的标签匹配指令开启灯光模块121时,可以根据镜像板140中开启的镜像灯141和配线模块150上开启的灯光模块121,确认镜像灯141与RFID标签装置120的物理关系是正确,以及判断控制指令所指示查找的是否为当前开启灯光模块121的RFID标签装置120。图5所示实施例以灯光模块“3”和镜像灯“3’”开启为例予以示出。
本实施例提供的光纤配线管理系统100,可以通过RF无线方式收集RFID标签装置120中的ID信息,用于自动收录和统计光纤/资源信息;同时通过RFID读写装置110发送匹配ID信息的方式开启RFID标签装置120中的灯光模块121,与镜像板140中开启的镜像灯进行对比,可以更加准确的定位到指定ID信息的光纤连接头130,从而提高定位目标的查找速度和准确度。
本实施例在实际实现中,RFID读写装置110还可以设置为:将控制指令
中的匹配ID信息、指示发送控制指令的人员信息、该控制指令的执行时间和操作内容,以及与匹配ID信息对应的光纤连接头130的使用状态中的一项或多项发送给服务器,光纤连接头130的使用状态通常为占用或空闲;从而由服务器进行光纤配线使用信息的存储和统计。本实施例提供的光纤配线管理系统100,可以收集光纤跳线和尾纤端口的资源数据,并且可以将对端口进行管理的操作记录嵌入管理流程中,实现执行时间、操作人员、操作内容等信息的主动收集和记录,有利于后续对端口的使用信息进行统计分析。
可选地,本实施例提供的光纤配线管理系统100中,RFID标签装置120还设置为:在开启RFID标签装置120中的灯光模块121之后,向RFID读写装置110返回状态信息;从而该RFID读写装置110还设置为:接收状态信息,并根据该状态信息向RFID标签装置120发送结束指令,该RFID读写装置110还可以在发送结束指令时关闭镜像灯141;进而该RFID标签装置120还设置为:接收结束指令,并根据该结束指令关闭该RFID标签装置120中的灯光模块121;在实际实现中,该RFID标签装置120还可以向RFID读写装置110返回确认消息,该确认消息用于指示RFID读写装置110结束上述操作流程。此时,RFID读写装置110可以将上述执行的操作、端口维护或变更的内容发送至服务器端或者发送至预先设置的数据平台进行保存,已被后续维护时作为资源数据调用。
本发明实施例还提出了一种光纤配线管理装置,至少包括:
接收模块,设置为:接收射频识别RFID读写装置发送的标签匹配指令,并将标签配匹配指令传输给控制模块,标签匹配指令中包括匹配身份标识号ID信息;
控制模块,设置为:将匹配ID信息与自身的ID信息进行对比,并在匹配ID信息与自身的ID信息相同时,开启灯光模块。
其中,所述接收模块为射频RF天线;
所述RF天线还设置为:为其他模块供电。
其中,还包括:
发送模块,设置为:在开启所述RFID标签装置中的灯光模块之后,向
所述RFID读写装置返回状态信息;
所述接收模块还设置为:
接收来自所述RFID读写装置的结束指令;
所述控制模块还设置为:
根据所述结束指令关闭灯光模块。
图6为本发明实施例提供的一种光纤配线管理方法的流程图。本实施例提供的光纤配线管理方法适用于对光纤跳线端口或者尾纤端口进行管理的情况中,本实施例提供的光纤配线管理方法可以由上述图1和图5所示实施例中的光纤配线管理系统来执行,该光纤配线管理系统通常以硬件和软件的方式来实现,其结构可以参考上述图1,包括RFID读写装置和设置于光纤连接头的RFID标签装置,RFID标签装置的结构可以参考上述图4。如图6所示,本实施例提供的光纤配线管理方法可以包括:
S110,RFID读写装置发送标签匹配指令,该标签匹配指令中包括匹配ID信息。
本实施例中的RFID读写装置同样可以为手持式的,或者可以安装于ODF中的某一固定位值。
S120,设置于光纤连接头上的RFID标签装置对比匹配ID信息与RFID标签装置的ID信息是否相同。
S121,RFID标签装置在对比结果为匹配ID信息与RFID标签装置的ID信息相同时,开启RFID标签装置中的灯光模块使其发光。
S122,RFID标签装置在对比结果为匹配ID信息与RFID标签装置的ID信息不同时,结束操作流程。
本实施例中的RFID标签装置的设置位置,与光纤连接头的对应关系均与上述实施例相同,故在此不再赘述。本实施例中的RFID标签装置的结构可以参考上述图4,其中,接收模块可以为RF天线,RFID标签装置通过射频RF天线供电,该RFID标签装置中设置有用于发光的灯光模块,该灯光模块例如可以为LED,即本实施例中的S120可以包括:RF天线接收RFID读写装置发送的标签配匹配指令,并将的标签配匹配指令传输给控制模块;该
控制模块将匹配ID信息与存储模块中存储的RFID标签装置的ID信息进行对比,并且在匹配ID信息与RFID标签装置的ID信息相同时,指示开启灯光模块。
本发明实施例提供的光纤配线管理方法可以由图1所示实施例提供的光纤配线管理系统来执行,该方法的步骤与本发明实施例提供的光纤配线管理系统中的装置的功能对应,其实现原理和技术效果类似,此处不再赘述。
可选地,参考图5所示光纤配线管理系统,以RFID读写装置设置于ODF中为例说明本实施例的执行步骤,如图5所示,ODF中还设置有多根光纤,每根光纤的两端或一端设置有光纤连接头,多个RFID标签装置按照一一对应的关系或一对多的关系设置于多个光纤连接头上;其中,RFID读写装置分别连接有多个镜像灯,多个镜像灯与多个RFID标签装置为一一对应的关系或一对多的关系设置的;在实际实现中,RFID读写装置和镜像灯可以设置于ODF的镜像板中,多根光纤和多个RFID标签装置可以设置于ODF的配线模块150中。
在上述图6所示光纤配线管理方法的基础上,本实施例在S110之前,还包括:S100,RFID读写装置获取多个RFID标签装置的ID信息。
S101,RFID读写装置接收服务器发送的包括匹配ID信息的控制指令。本实施例中RFID读写装置接收到的控制指令可以为一项工单,其中包括指示操作的内容和指示的ID信息。
S102,RFID读写装置根据所述控制指令开启镜像板中与匹配ID信息对应的镜像灯。
本实施例中的S110可以为:根据接收到的控制指令发送标签匹配指令。
需要说明的是,本实施例不限制S102和S110~S120的执行顺序,可以是RFID读写装置先开启镜像灯,也可以是RFID读写装置先发送标签匹配指令以开启RFID标签装置的灯光模块。通常的,镜像灯与RFID读写装置为有线连接,并且不需要对比判断,因此开启的速度较快。图6以S102在S110~S120之前执行为例予以示出。
本实施例在实际实现中,工单、即控制指令中指示的ID信息可以为某一光纤两端的ID信息,相应地,RFID读写装置发送的标签匹配指令中的ID信息业务上述为某一光纤两端的ID信息,这样,在通过RFID读写装置点亮RFID标签装置的灯光模块时,实际上是点亮了上述光纤两端一一对应或一对多的RFID标签装置,即此时可以点亮两个RFID标签装置,可以通过已点亮的两个RFID标签装置便捷的找到一个光纤的两端;将该方式应用于实际操作中,若需要将一个光纤的两端分别插接在不同的接口上,可以准确、高效的找到一根光纤的两端,并且可以提高连接的准确性。
本实施例提供的方法,在RFID标签装置执行S121之后,还包括:
S130,RFID标签装置向RFID读写装置返回状态信息。
S140,RFID读写装置根据该状态信息向RFID标签装置发送结束指令。
S150,RFID标签装置根据结束指令关闭RFID标签装置中的灯光模块;在本实施例中,该RFID读写装置还可以在发送结束指令时关闭镜像灯。
在实现中,还包括:S160,RFID标签装置向RFID读写装置返回确认消息。
S170,RFID读写装置根据确认消息结束操作流程。
本发明实施例提供的光纤配线管理方法可以由图5所示实施例提供的光纤配线管理系统来执行,该方法的步骤与本发明实施例提供的光纤配线管理系统中的装置的功能对应,其实现原理和技术效果类似,此处不再赘述。
可以将本实施例提供的关系配线管理方法应用与对现网ODN进行改造的方式中,改造时的端口录入方式与上述定位端口时的输入录入方式相同,均需要在光纤跳线和尾纤的端口上绑定RFID标签装置,从而对绑定RFID标签装置的端口进行物理位置的映射和记录,并将记录的数据上传至服务器或数据平台中,以供后续维护调用;可以与通过RFID读写装置相连接的镜像灯来判断与RFID标签装置的物理映射关系是否正确,如果开启的镜像灯与开启灯光模块的RFID标签装置的物理位置不同,则需要调整镜像灯与RFID标签装置的映射关系,如果开启的镜像灯与开启灯光模块的RFID标签装置的物理位置相同,可以将该映射关系上传至服务器或数据平台中。
本实施例在实现中,RFID读写装置还可以设置为:将控制指令中的匹配ID信息、指示发送控制指令的人员信息、该控制指令的执行时间和操作内容,以及与匹配ID信息对应的光纤连接头的使用状态中的一项或多项发送给服务器,光纤连接头的使用状态通常为占用或空闲;从而由服务器进行光纤配线使用信息的存储和统计。
本发明实施例还提供一种计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令被处理器执行时实现上述光纤配线管理方法。
虽然本文所揭露的实施方式如上,但所述的内容仅为便于理解本申请而采用的实施方式,并非用以限定本申请。任何本申请所属领域内的技术人员,在不脱离本申请所揭露的精神和范围的前提下,可以在实施的形式及细节上进行任何的修改与变化,但本申请的专利保护范围,仍须以所附的权利要求书所界定的范围为准。
采用本实施例提供的光纤配线管理系统对现网ODN进行改造,可以通过在光纤跳线的两端和尾纤的一端增加RFID标签装置,实现直观、高效的识别出光纤跳纤和尾纤端口的位置。
Claims (15)
- 一种光纤配线管理系统,包括:射频识别RFID读写装置和设置于光纤连接头的RFID标签装置;所述RFID读写装置,设置为:发送标签匹配指令,所述标签匹配指令中包括匹配身份标识号ID信息;所述RFID标签装置,设置为:接收所述RFID读写装置发送的标签匹配指令,将所述匹配ID信息与所述RFID标签装置的ID信息进行对比,并在所述匹配ID信息与所述RFID标签装置的ID信息相同时,开启所述RFID标签装置中的灯光模块。
- 根据权利要求1所述的光纤配线管理系统,其中,所述RFID标签装置包括:接收模块、控制模块、存储模块和所述灯光模块;其中,所述接收模块,设置为:接收RFID读写装置发送的标签匹配指令,并将所述的标签匹配指令传输给所述控制模块,所述标签匹配指令中包括匹配身份标识号ID信息;所述控制模块,设置为:将所述接收模块接收的匹配ID信息与所述存储模块中存储的所述RFID标签装置的ID信息进行对比,并且在所述匹配ID信息与所述RFID标签装置的ID信息相同时,开启所述灯光模块。
- 根据权利要求2所述的光纤配线管理系统,其中,所述接收模块为射频RF天线,所述RF天线还设置为:给所述RFID标签装置中的其它模块供电。
- 根据权利要求1所述的光纤配线管理系统,其中,所述RFID读写装置设置于光纤配线架ODF中,所述ODF中还设置有多根光纤,每根所述光纤的两端或一端设置有所述光纤连接头,多个所述RFID标签装置按照一一对应的关系或一对多的关系设置于多个所述光纤连接头上;其中,所述光纤配线管理系统还包括设置于所述ODF中的多个镜像灯,多个所述镜像灯分别与所述RFID读写装置相连接,多个所述镜像灯与多个所述RFID标签装置为一一对应的关系或一对多的关系;所述RFID读写装置还设置为:在发送所述标签匹配指令之前,获取多个所述RFID标签装置的ID信息,接收服务器发送的包括所述匹配ID信息的控制指令,并根据所述控制指令开启与所述匹配ID信息对应的镜像灯;所述RFID读写装置设置为:根据接收到的所述控制指令发送所述标签匹配指令。
- 根据权利要求4所述的光纤配线管理系统,其中,所述RFID读写装置还设置为:将所述控制指令中的匹配ID信息、指示发送所述控制指令的人员信息、所述控制指令的执行时间和操作内容,以及与所述匹配ID信息对应的光纤连接头的使用状态中的一项或多项发送给所述服务器。
- 根据权利要求1~5中任一项所述的光纤配线管理系统,其中,所述RFID标签装置还设置为:在开启所述RFID标签装置中的灯光模块之后,向所述RFID读写装置返回状态信息;所述RFID读写装置还设置为:接收所述状态信息,并根据所述状态信息向所述RFID标签装置发送结束指令;所述RFID标签装置还设置为:接收所述结束指令,并根据所述结束指令关闭所述RFID标签装置中的灯光模块。
- 一种光纤配线管理装置,包括:接收模块,设置为:接收射频识别RFID读写装置发送的标签匹配指令,并将标签配匹配指令传输给控制模块,标签匹配指令中包括匹配身份标识号ID信息;控制模块,设置为:将匹配ID信息与自身的ID信息进行对比,并在匹配ID信息与自身的ID信息相同时,开启灯光模块。
- 根据权利要求7所述的光纤配线管理装置,其中,所述接收模块为射频RF天线;所述RF天线还设置为:为其他模块供电。
- 根据权利要求7或8所述的光纤配线管理装置,其中,还包括:发送模块,设置为在开启所述RFID标签装置中的灯光模块之后,向所述RFID读写装置返回状态信息;所述接收模块还设置为:接收来自所述RFID读写装置的结束指令;所述控制模块还设置为:根据所述结束指令关闭灯光模块。
- 一种光纤配线管理方法,包括:射频识别RFID读写装置发送标签匹配指令,所述标签匹配指令中包括匹配身份标识号ID信息;设置于光纤连接头上的RFID标签装置接收所述RFID读写装置发送的标签匹配指令,将所述匹配ID信息与所述RFID标签装置的ID信息进行对比,并在所述匹配ID信息与所述RFID标签装置的ID信息相同时,开启所述RFID标签装置中的灯光模块。
- 根据权利要求10所述的光纤配线管理方法,其中,所述RFID标签装置通过射频RF天线供电。
- 根据权利要求10所述的光纤配线管理方法,其中,所述RFID读写装置设置于光纤配线架ODF中,所述ODF中还设置有多根光纤,每根所述光纤的两端或一端设置有所述光纤连接头,多个所述RFID标签装置按照一一对应的关系或一对多的关系设置于多个所述光纤连接头上;其中,所述RFID读写装置分别连接多个镜像灯,多个所述镜像灯与多个所述RFID标签装置为一一对应的关系或一对多的关系;所述RFID读写装置发送标签匹配指令之前,还包括:所述RFID读写装置获取多个所述RFID标签装置的ID信息,接收服务器发送的包括所述匹配ID信息的控制指令,并根据所述控制指令开启与所述匹配ID信息对应的镜像灯;所述RFID读写装置发送标签匹配指令,包括:所述RFID读写装置根据接收到的所述控制指令发送所述标签匹配指令。
- 根据权利要求12所述的光纤配线管理方法,其中,所述标签匹配指令中的ID信息包括光纤两端的ID信息;则开启灯光模块的RFID标签装置为与所述光纤两端一一对应或一对多的RFID标签装置。
- 根据权利要求12所述的光纤配线管理方法,所述方法还包括:所述RFID读写装置将所述控制指令中的匹配ID信息、指示发送所述控制指令的人员信息、所述控制指令的执行时间和操作内容,以及与所述匹配ID信息对应的光纤连接头的使用状态中的一项或多项发送给所述服务器。
- 根据权利要求10~14中任一项所述的光纤配线管理方法,其中,所述RFID标签装置开启所述RFID标签装置中的灯光之后,还包括:所述RFID标签装置向所述RFID读写装置返回状态信息;所述RFID读写装置接收所述状态信息,并根据所述状态信息向所述RFID标签装置发送结束指令;所述RFID标签装置接收所述结束指令,并根据所述结束指令关闭所述RFID标签装置中的灯光模块。
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