An online fiber visualized searching system

By using luminescent electronic tags and reader systems, the problem of low efficiency in existing fiber optic identification has been solved, enabling online fiber optic identification and visual management, and improving the efficiency and accuracy of fiber optic management.

CN122113952APending Publication Date: 2026-05-29NANJING HUAMAI TECH

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
NANJING HUAMAI TECH
Filing Date
2026-01-22
Publication Date
2026-05-29

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Abstract

The application discloses an online fiber visual searching system, which comprises luminous electronic tags, a first tag reader and a second tag reader. The luminous electronic tags are provided with inductive coils and luminous LED lamps. The luminous electronic tags are arranged at two ends of optical fibers, and the luminous electronic tags at the two ends of the same optical fiber have corresponding marks. The first tag reader is used for reading a single luminous electronic tag at a time. The second tag reader is used for reading a single or multiple luminous electronic tags at a time. The first tag reader and the second tag reader are in communication connection, and the first tag reader transmits tag information to the second tag reader after reading the tag information. The application has the advantages of realizing online optical fiber identification and being beneficial to fiber information management.
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Description

Technical Field

[0001] This application relates to the field of fiber optic jumper management technology, and in particular to an online fiber optic jumper visualization and fiber optic locating system. Background Technology

[0002] Currently, most fiber optic identification technologies are broadly divided into two types: tag-based identification and instrument-based identification.

[0003] Using ordinary labels to locate whether the two ends of a fiber optic cable are the same has many problems: due to the error of manually writing labels or the possibility of forgetting to write them, once the cabling is completed, this identification method will cause great inconvenience to the maintenance personnel, and the search is time-consuming, labor-intensive and inefficient.

[0004] While using instruments to locate the same fiber optic cable eliminates the problem of human error, each cable tracing requires unplugging the fiber optic patch cord, which has a significant impact on network operation. In addition, fiber optic connections are precision connections, and the ends of the fiber optic patch cords need to be cleaned every time they are plugged in or unplugged, otherwise the transmission quality will be affected.

[0005] For the reasons mentioned above, existing fiber optic identification technologies suffer from low identification efficiency or difficulty in online identification. Summary of the Invention

[0006] This application provides an online fiber optic patching visualization system, which has the advantage of enabling online fiber identification and facilitating fiber optic patching information management.

[0007] The above-mentioned objective of this application is achieved through the following technical solution: an online fiber skipping visualization fiber locating system, comprising: A light-emitting electronic tag, wherein the light-emitting electronic tag has an induction coil and a light-emitting LED, the light-emitting electronic tag is disposed at both ends of an optical fiber, and the light-emitting electronic tags at both ends of the same optical fiber have corresponding markings; A first tag reader, the first tag reader being used to read a single luminous electronic tag at a time; And a second tag reader, which is used to read one or more luminous electronic tags at a time; The first tag reader and the second tag reader are connected in communication. After the first tag reader reads the tag information, it transmits the tag information to the second tag reader.

[0008] Based on the above scheme, the luminescent electronic tag is equipped with a paper label, and the luminescent electronic tag is written with information by a label printer and fixed to an optical fiber.

[0009] Based on the above scheme, the first tag reader includes a first body and a first reading end, wherein the first reading end has an antenna for reading a single luminous electronic tag at a time.

[0010] Based on the above scheme, the second tag reader includes a second body and a second reading end, which are detachably connected. The second reading end is plate-shaped and contains multiple antennas for group scanning of tags to read multiple luminous electronic tags at once.

[0011] Based on the above scheme, the second body is equipped with a display screen for displaying fiber optic link information.

[0012] Based on the above scheme, a management terminal is also included. The management terminal is communicatively connected to the first tag reader and the second tag reader, and the first tag reader and the second tag reader communicate through the management terminal.

[0013] Based on the above solution, a network management platform is also included. The network management platform is communicatively connected to the management terminal and is used to collect, store and analyze fiber optic management data.

[0014] Based on the above scheme, the method for identifying optical fibers according to the online fiber patching visualization fiber locating system includes the following steps: Emitted electronic tags are deployed at both ends of the optical fiber using a label printer; The first tag reader reads the luminous electronic tag at the first end of the optical fiber to be identified and communicates the tag information to the second tag reader. The second tag reader identifies the luminous electronic tags on several optical fibers containing the optical fiber to be identified, and activates the matching luminous electronic tag, which then emits light to complete the optical fiber identification.

[0015] In summary, the beneficial effects of this application are as follows: 1. In this invention, only luminous RFID electronic tags and readers are needed; online fiber optic cable location can be achieved by scanning, identifying and locating the peer port of the jumper without interrupting business operations. 2. The luminescent RFID electronic tag in this invention retains the function of a paper tag and can be pasted onto an optical fiber; 3. The wireless RFID tag with built-in LED in this invention can be loaded onto patch cables used in the network. The LED can light up or turn off according to commands issued by the reader / writer terminal to indicate the two ends of the connection; at the same time, the use of printable RFID tags allows routing information to be printed directly on the tags, retaining the habit of visual query on site; combined with the reader / writer terminal, APP, and network management, the optical route can be visualized. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the luminous RFID electronic tag of the present invention; Figure 2 This is a schematic diagram of the label printer of the present invention; Figure 3 This is a schematic diagram of the first tag reader in this invention; Figure 4 This is a schematic diagram of the second tag reader in this invention.

[0017] In the diagram, 1 is an LED light; 2 is a paper label; 3 is an luminous electronic label; 4 is a label printer; 5 is a first body; 6 is a first reading end; 7 is a second body; and 8 is a second reading end. Detailed Implementation

[0018] The specific embodiments of this application are described in detail below with reference to the accompanying drawings.

[0019] Example: This example provides an online fiber skipping visualization fiber locating system, including an luminous electronic tag 3, a first tag reader, and a second tag reader.

[0020] The luminous electronic tag 3 contains an induction coil and an LED light 1. The LED light 1 is powered by the induction coil and illuminates when activated. Specific parameters of the luminous electronic tag, such as its internal chip and resistors, refer to existing technologies. The luminous electronic tags are positioned at both ends of an optical fiber, and the luminous electronic tags at both ends of the same optical fiber have corresponding markings.

[0021] The luminous electronic tag has a paper label 2 attached, retaining its function as a paper label. Information is written to the luminous electronic tag via a label printer 4 and then fixed to the optical fiber. This ensures that each optical fiber has a unique identifier. The label printer 4 can be used to transmit port status information to the connection frame information management unit. The label printer 4 has a built-in battery and Bluetooth connectivity, allowing it to connect to a mobile app via Bluetooth. Users can edit the print content through the app and then distribute the printed labels.

[0022] The first tag reader is used to read a single luminous electronic tag at a time; Reference Figure 3 The first tag reader includes a first body 5 and a first reading end 6. The first reading end 6 has an antenna for reading a single luminous electronic tag at a time.

[0023] In some other embodiments of this application, the second tag reader uses the same product as the first tag reader.

[0024] In this embodiment, to improve fiber locating efficiency, the second tag reader is used to read multiple luminous electronic tags at once; Reference Figure 4The second tag reader includes a second body 7 and a second reading end 8, which are detachably connected. The second reading end 8 can be replaced depending on the actual pallet brand. The second reading end 8 is plate-shaped and contains multiple antennas for group scanning of tags to read multiple luminous electronic tags at once. The second body is equipped with a display screen for displaying fiber optic link information.

[0025] The first tag reader and the second tag reader are communicatively connected. After the first tag reader recognizes the tag information, it transmits the tag information to the second tag reader. In this embodiment, a management terminal is also included. The management terminal is communicatively connected to the first tag reader and the second tag reader, and the first tag reader and the second tag reader communicate through the management terminal.

[0026] In other embodiments of this application, a network management platform is also included, which is communicatively connected to a management terminal and is used to collect, store, and analyze fiber optic management data.

[0027] The method for identifying optical fibers using the above-mentioned online fiber patching visualization fiber locating system includes the following steps: Emitted electronic tags are deployed at both ends of the optical fiber using a label printer; The first tag reader reads the luminous electronic tag at the first end of the optical fiber to be identified and communicates the tag information to the second tag reader. The second tag reader identifies luminous electronic tags on several optical fibers containing the fiber to be identified and activates the matching luminous electronic tag, which then illuminates to complete fiber identification. When the second tag reader identifies the tag value of the jumper at the other end, it wirelessly senses the LED of the luminous RFID electronic tag through the reader plate and the coil of the luminous tag, and displays the link information on the display screen of the group scanner.

[0028] The above description is only a preferred embodiment of this application. It should be noted that for those skilled in the art, several modifications and improvements can be made without departing from the inventive concept of this application, and these all fall within the protection scope of this application.

Claims

1. An online fiber skipping visualization fiber locating system, characterized in that, include: A light-emitting electronic tag, wherein the light-emitting electronic tag has an induction coil and a light-emitting LED, the light-emitting electronic tag is disposed at both ends of an optical fiber, and the light-emitting electronic tags at both ends of the same optical fiber have corresponding markings; A first tag reader, the first tag reader being used to read a single luminous electronic tag at a time; And a second tag reader, which is used to read one or more luminous electronic tags at a time; The first tag reader and the second tag reader are connected in communication. After the first tag reader reads the tag information, it transmits the tag information to the second tag reader.

2. The online fiber skipping visualization fiber locating system according to claim 1, characterized in that, The luminescent electronic tag has a paper label attached, and information is written onto the luminescent electronic tag by a label printer and fixed to the optical fiber.

3. The online fiber skipping visualization fiber locating system according to claim 1, characterized in that, The first tag reader includes a first body and a first reading end, wherein the first reading end has an antenna for reading a single luminous electronic tag at a time.

4. The online fiber skipping visualization fiber locating system according to claim 1, characterized in that, The second tag reader includes a second body and a second reading end, which are detachably connected. The second reading end is plate-shaped and contains multiple antennas for group scanning of tags to read multiple luminous electronic tags at once.

5. The online fiber skipping visualization fiber locating system according to claim 4, characterized in that, The second body is equipped with a display screen for displaying fiber optic link information.

6. The online fiber skipping visualization fiber locating system according to claim 1, characterized in that, It also includes a management terminal, which is communicatively connected to the first tag reader and the second tag reader, and the first tag reader and the second tag reader communicate through the management terminal.

7. The online fiber skipping visualization fiber locating system according to claim 6, characterized in that, It also includes a network management platform, which is communicatively connected to the management terminal and used to collect, store, and analyze fiber optic management data.

8. The online fiber skipping visualization fiber locating system according to claim 1, characterized in that, The method for identifying optical fibers according to the online fiber optic patching visualization fiber locating system includes the following steps: Emitted electronic tags are deployed at both ends of the optical fiber using a label printer; The first tag reader reads the luminous electronic tag at the first end of the optical fiber to be identified and communicates the tag information to the second tag reader. The second tag reader identifies the luminous electronic tags on several optical fibers containing the optical fiber to be identified, and activates the matching luminous electronic tag, which then emits light to complete the optical fiber identification.