Identification method and system based on thermal transfer identification
By using thermal transfer marking and RFID components in the identification technology, the problem of untimely, inaccurate and incomplete information data transmission in the existing identification technology is solved, and efficient and accurate asset management and line inspection are achieved.
Patent Information
- Application Number
- CN202510465497.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2025-05-13
AI Technical Summary
Existing identification technology is difficult to ensure the timeliness, accuracy and completeness of information data, and is inefficient in asset management and line inspection, which is prone to information errors and manual intervention.
The identification method based on thermal transfer mark is adopted. By integrating RFID components with thermal transfer marks, the thermal transfer marks are stored, written and printed using an RFID printer, and data upload and download are combined with a handheld terminal to ensure the timeliness, accuracy and completeness of information data.
It realizes timely, accurate and complete transmission of information data, reduces manual intervention and information errors, improves the efficiency of asset management and line inspection, and reduces resource and labor costs.
Smart Images

Figure CN119990170A_ABST
Abstract
Description
Background Art
[0002] The current identification technology on the market lags far behind demand. Some traditional identification codes are easily affected by the external environment; information cannot be rewritten; the target must be within the field of view when scanning; if the label is scratched, contaminated or falls off, the scanner cannot recognize the target. The linkage mechanism between account cards and objects cannot be effectively implemented. When assets are transferred, the equipment information cannot be accurately grasped and data needs to be queried repeatedly, resulting in reduced work efficiency. Summary of the invention
[0003] The present application provides a labeling method and system based on thermal transfer labeling to ensure the timeliness, accuracy and completeness of information data and improve work efficiency.
[0004] In a first aspect, a thermal transfer marking method is provided, comprising the following steps: Use thermal transfer labels to mark the equipment; Using an RFID printer, storing and writing identification information into the thermal transfer label and printing it into a finished thermal transfer label; The handheld terminal is used to upload and download data or identification tasks of the thermal transfer mark.
[0005] In the above technical scheme, the equipment is identified by thermal transfer labels; the thermal transfer labels are stored, identification information is written and printed into finished thermal transfer labels by RFID printers; the thermal transfer labels are uploaded and downloaded with handheld terminals for data or identification tasks; the thermal transfer labels and radio frequency chips are unified to ensure the timeliness, accuracy and completeness of information data, reduce resources and lower costs; the management process does not require a lot of manual intervention, reducing labor costs; RFID radio frequency network technology reduces management time, eliminates manual records and information errors, and improves efficiency; the use of RFID technology and thermal transfer labels is unified with asset management and line inspection functions to improve management levels.
[0006] In a specific embodiment, the thermal transfer label comprises: an RFID component and a thermal transfer component, wherein: The RFID component and the thermal transfer component are integrated into one piece.
[0007] In a specific implementation manner, the RFID component is embedded in the thermal transfer component.
[0008] In a specific embodiment, the RFID component is bonded to the thermal transfer component.
[0009] In a specific implementation manner, the RFID component includes an RFID chip, and the RFID chip is embedded in the thermal transfer component.
[0010] In a specific implementation manner, the thermal transfer component includes a thermal transfer label tape, and the RFID chip is embedded in the thermal transfer label tape.
[0011] In a specific embodiment, the thermal transfer labeling tape comprises a substrate, an adhesive layer and a release paper arranged from top to bottom, wherein: The RFID chip is disposed between the substrate and the adhesive layer.
[0012] In a second aspect, a marking system based on thermal transfer marking is provided, comprising: Thermal transfer marking, used to mark the equipment; An RFID printer, used to store and write identification information into the thermal transfer label and print it into a finished thermal transfer label; The handheld terminal is used to upload and download data or identification tasks for the thermal transfer mark.
[0013] In the above technical scheme, the equipment is identified by thermal transfer labels; the thermal transfer labels are stored, identification information is written and printed into finished thermal transfer labels by RFID printers; the thermal transfer labels are uploaded and downloaded with handheld terminals for data or identification tasks; the thermal transfer labels and radio frequency chips are unified to ensure the timeliness, accuracy and completeness of information data, reduce resources and lower costs; the management process does not require a lot of manual intervention, reducing labor costs; RFID radio frequency network technology reduces management time, eliminates manual records and information errors, and improves efficiency; the use of RFID technology and thermal transfer labels is unified with asset management and line inspection functions to improve management levels.
[0014] In a third aspect, an electronic device is provided, comprising a processor, wherein the processor is coupled to a memory, wherein at least one computer program is stored in the memory, and the at least one computer program is loaded and executed by the processor so that the electronic device implements any one of the thermal transfer marking-based marking methods.
[0015] In the above technical scheme, the equipment is identified by thermal transfer labels; the thermal transfer labels are stored, identification information is written and printed into finished thermal transfer labels by RFID printers; the thermal transfer labels are uploaded and downloaded with handheld terminals for data or identification tasks; the thermal transfer labels and radio frequency chips are unified to ensure the timeliness, accuracy and completeness of information data, reduce resources and lower costs; the management process does not require a lot of manual intervention, reducing labor costs; RFID radio frequency network technology reduces management time, eliminates manual records and information errors, and improves efficiency; the use of RFID technology and thermal transfer labels is unified with asset management and line inspection functions to improve management levels.
[0016] In a fourth aspect, a computer-readable storage medium is provided, wherein at least one computer program is stored in the computer-readable storage medium, and the at least one computer program is loaded and executed by a processor so that the computer-readable storage medium implements any one of the thermal transfer marking-based marking methods.
[0017] In the above technical scheme, the equipment is identified by thermal transfer labels; the thermal transfer labels are stored, identification information is written and printed into finished thermal transfer labels by RFID printers; the thermal transfer labels are uploaded and downloaded with handheld terminals for data or identification tasks; the thermal transfer labels and radio frequency chips are unified to ensure the timeliness, accuracy and completeness of information data, reduce resources and lower costs; the management process does not require a lot of manual intervention, reducing labor costs; RFID radio frequency network technology reduces management time, eliminates manual records and information errors, and improves efficiency; the use of RFID technology and thermal transfer labels is unified with asset management and line inspection functions to improve management levels. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 A flowchart of a marking method based on thermal transfer marking provided in an embodiment of the present application; Figure 2 A structural block diagram of a marking system based on thermal transfer marking provided in an embodiment of the present application; Figure 3 A schematic diagram of the structure of a thermal transfer label provided in an embodiment of the present application; Figure 4 A schematic diagram of the structure of another thermal transfer mark provided in an embodiment of the present application.
[0019] Among them, 1-RFID component, 2-thermal transfer component, 3-RFID chip, 4-substrate, 5-adhesive layer, 6-release paper. DETAILED DESCRIPTION
[0020] The present application is further described in detail below through the accompanying drawings and embodiments. Through these descriptions, the characteristics and advantages of the present application will become clearer and more specific.
[0021] The word "exemplary" is used exclusively herein to mean "serving as an example, embodiment, or illustration." Any embodiment described herein as "exemplary" is not necessarily to be construed as preferred or advantageous over other embodiments. Although various aspects of the embodiments are shown in the drawings, the drawings are not necessarily drawn to scale unless otherwise noted.
[0022] In addition, the technical features involved in different embodiments of the present application described below can be combined with each other as long as they do not conflict with each other.
[0023] To facilitate understanding of the identification method and system based on thermal transfer marking provided in the embodiment of the present application, its application scenario is first explained. The identification method and system based on thermal transfer marking provided in the embodiment of the present application are used to ensure the timeliness, accuracy and completeness of information data and improve work efficiency. The identification technology on the market is far behind the demand. Some traditional identification codes are easily affected by the external environment; information cannot be rewritten; they must appear within the field of view when scanning; if the label is scratched, contaminated or falls off, the scanner cannot recognize the target. The linkage mechanism between accounts, cards and objects cannot be effectively implemented. When assets are transferred, the equipment information cannot be accurately grasped, and the data needs to be queried repeatedly, resulting in a decrease in work efficiency. For this reason, the embodiment of the present application provides a method and system based on thermal transfer marking to ensure the timeliness, accuracy and completeness of information data and improve work efficiency. The following is a detailed description of the embodiment in conjunction with specific drawings.
[0024] refer to Figures 1 to 4 , Figure 1 A flowchart of a marking method based on thermal transfer marking provided in an embodiment of the present application; Figure 2 A structural block diagram of a marking system based on thermal transfer marking provided in an embodiment of the present application; Figure 3 A schematic diagram of the structure of a thermal transfer label provided in an embodiment of the present application; Figure 4 A schematic diagram of the structure of another thermal transfer mark provided in an embodiment of the present application.
[0025] exist Figure 1 In the embodiment of the present application, a marking method based on thermal transfer marking is provided, comprising the following steps: Use thermal transfer labels to mark the equipment; Using an RFID printer, storing and writing identification information into the thermal transfer label and printing it into a finished thermal transfer label; The handheld terminal is used to upload and download data or identification tasks of the thermal transfer mark.
[0026] In the above technical scheme, the equipment is identified by thermal transfer labels; the thermal transfer labels are stored, identification information is written and printed into finished thermal transfer labels by RFID printers; the thermal transfer labels are uploaded and downloaded with handheld terminals for data or identification tasks; the thermal transfer labels and radio frequency chips are unified to ensure the timeliness, accuracy and completeness of information data, reduce resources and lower costs; the management process does not require a lot of manual intervention, reducing labor costs; RFID radio frequency network technology reduces management time, eliminates manual records and information errors, and improves efficiency; the use of RFID technology and thermal transfer labels is unified with asset management and line inspection functions to improve management levels.
[0027] refer to Figure 3 or Figure 4 In a specific implementation scheme, the thermal transfer label includes: an RFID component 1 and a thermal transfer component 2, wherein: The RFID component and the thermal transfer component are integrated into one piece.
[0028] In the above technical solution, by setting up an RFID component and a thermal transfer component, the RFID component and the thermal transfer component are integrated into an integrated arrangement; the thermal transfer label and the radio frequency chip are unified to ensure the timeliness, accuracy and completeness of information data, reduce resources and reduce costs; the management process does not require a large amount of manual intervention, reducing labor costs; RFID radio frequency network technology reduces management time, eliminates manual records and information errors, and improves efficiency; RFID technology and thermal transfer labels are used to unify asset management and line inspection functions, thereby improving management levels.
[0029] In a specific implementation manner, the RFID component is embedded in the thermal transfer component.
[0030] In a specific embodiment, the RFID component is bonded to the thermal transfer component.
[0031] In a specific implementation manner, the RFID component includes an RFID chip 3, and the RFID chip is embedded in the thermal transfer component.
[0032] In a specific implementation manner, the thermal transfer component includes a thermal transfer label tape, and the RFID chip is embedded in the thermal transfer label tape.
[0033] In a specific embodiment, the thermal transfer labeling tape comprises a substrate 4, an adhesive layer 5 and a release paper 6 arranged from top to bottom, wherein: The RFID chip is disposed between the substrate and the adhesive layer.
[0034] Specifically, refer to Figure 3 and Figure 4 The thermal transfer label strengthens the supervision and management of operation and maintenance personnel, replaces the existing GPS positioning or line path navigation supervision measures, strengthens the responsibility of patrol personnel, and supervises the implementation of management to ensure that necessary repairs are carried out and repairs are done well to avoid equipment disrepair or over-repair. On the other hand, it can ensure that information such as equipment status inspection, maintenance, testing, overhaul and emergency repair work is entered into the production management system to ensure the timeliness, accuracy and completeness of information data, thereby substantially improving work efficiency.
[0035] The thermal transfer label realizes radio frequency information labeling, embeds the radio frequency chip into the thermal transfer label tape, and uses a radio frequency printer to print, so that it can store and write the label information and print it into a finished thermal transfer label. The label can be connected to the State Grid PMS2.0 system through a handheld terminal, and wirelessly upload and download data or tasks. The chip information corresponds to the information downloaded from the State Grid one by one, and the label of the inspection line is located and inspected routinely through the radio frequency tablet. Reading, writing and storing internal information can also realize information feedback and real-time update and sharing of databases. When the RFID chip is active, the maximum recognition distance is 1 kilometer; when it is passive, the maximum recognition distance is 15 meters. It can be written repeatedly and the number of erasures exceeds 100,000 times. By building an information label that integrates RFID tags, thermal transfer labels and backplanes, the investment cost of information label construction can be effectively reduced, construction costs can be reduced, and information consistency can be ensured.
[0036] The working principle of the thermal transfer label is as follows: after the information label enters the magnetic field, it receives the radio frequency signal sent by the reader, and uses the energy obtained from the induced current to send out the product information stored in the chip (PassiveTag, passive tag or passive tag), or actively sends a signal of a certain frequency (ActiveTag, active tag or active tag); after the reader reads and decodes the information, it is sent to the central information system for relevant data processing.
[0037] exist Figure 2 In the embodiment of the present application, a marking system based on thermal transfer marking is provided, comprising: Thermal transfer marking, used to mark the equipment; An RFID printer, used to store and write identification information into the thermal transfer label and print it into a finished thermal transfer label; The handheld terminal is used to upload and download data or identification tasks for the thermal transfer mark.
[0038] In the above technical scheme, the equipment is identified by thermal transfer labels; the thermal transfer labels are stored, identification information is written and printed into finished thermal transfer labels by RFID printers; the thermal transfer labels are uploaded and downloaded with handheld terminals for data or identification tasks; the thermal transfer labels and radio frequency chips are unified to ensure the timeliness, accuracy and completeness of information data, reduce resources and lower costs; the management process does not require a lot of manual intervention, reducing labor costs; RFID radio frequency network technology reduces management time, eliminates manual records and information errors, and improves efficiency; the use of RFID technology and thermal transfer labels is unified with asset management and line inspection functions to improve management levels.
[0039] An embodiment of the present application also provides an electronic device, which includes a processor, the processor is coupled to a memory, and the memory stores at least one computer program. The at least one computer program is loaded and executed by the processor so that the electronic device can implement any one of the thermal transfer marking-based marking methods.
[0040] In the above technical scheme, the equipment is identified by thermal transfer labels; the thermal transfer labels are stored, identification information is written and printed into finished thermal transfer labels by RFID printers; the thermal transfer labels are uploaded and downloaded with handheld terminals for data or identification tasks; the thermal transfer labels and radio frequency chips are unified to ensure the timeliness, accuracy and completeness of information data, reduce resources and lower costs; the management process does not require a lot of manual intervention, reducing labor costs; RFID radio frequency network technology reduces management time, eliminates manual records and information errors, and improves efficiency; the use of RFID technology and thermal transfer labels is unified with asset management and line inspection functions to improve management levels.
[0041] An embodiment of the present application also provides a computer-readable storage medium, in which at least one computer program is stored. The at least one computer program is loaded and executed by a processor so that the computer-readable storage medium implements any one of the thermal transfer marking-based marking methods.
[0042] In the above technical scheme, the equipment is identified by thermal transfer labels; the thermal transfer labels are stored, identification information is written and printed into finished thermal transfer labels by RFID printers; the thermal transfer labels are uploaded and downloaded with handheld terminals for data or identification tasks; the thermal transfer labels and radio frequency chips are unified to ensure the timeliness, accuracy and completeness of information data, reduce resources and lower costs; the management process does not require a lot of manual intervention, reducing labor costs; RFID radio frequency network technology reduces management time, eliminates manual records and information errors, and improves efficiency; the use of RFID technology and thermal transfer labels is unified with asset management and line inspection functions to improve management levels.
[0043] Those skilled in the art will appreciate that the present application may be implemented as a system, method or computer program product.
[0044] Therefore, the present disclosure may be specifically implemented in the following forms, namely: it may be completely hardware, it may be completely software (including firmware, resident software, microcode, etc.), or it may be a combination of hardware and software, generally referred to herein as a "circuit", "module" or "system". In addition, in some embodiments, the present application may also be implemented in the form of a computer program product in one or more computer-readable media, and the computer-readable medium may contain computer-readable program code.
[0045] Any combination of one or more computer-readable media can be used. Computer-readable media can be computer-readable signal media or computer-readable storage media. Computer-readable storage media can be, for example, but not limited to, electrical, magnetic, optical, electromagnetic, infrared, or semiconductor systems, devices or devices, or any combination of the above. More specific examples (non-exhaustive list) of computer-readable storage media include: electrical connections with one or more wires, portable computer disks, hard disks, random access memories (RAM), read-only memories (ROM), erasable programmable read-only memories (EPROM or flash memory), optical fibers, portable compact disk read-only memories (CD-ROM), optical storage devices, magnetic storage devices, or any suitable combination of the above. In this document, computer-readable storage media can be any tangible medium containing or storing a program, which can be used by an instruction execution system, device or device or used in combination with it.
[0046] Although the embodiments of the present application have been shown and described above, it is understood that the above embodiments are exemplary and cannot be understood as limiting the present application. A person of ordinary skill in the art can change, modify, replace and modify the above embodiments within the scope of the present application. On this basis, a variety of replacements and improvements can be made to the present application, all of which fall within the scope of protection of the present application.
Claims
1. A marking method based on thermal transfer marking, characterized in that: The following steps are involved: Use thermal transfer labels to mark the equipment; Using an RFID printer, storing and writing identification information into the thermal transfer label and printing it into a finished thermal transfer label; The handheld terminal is used to upload and download data or identification tasks of the thermal transfer mark.
2. The marking method based on thermal transfer marking according to claim 1, characterized in that: The thermal transfer label comprises: an RFID component and a thermal transfer component, wherein: The RFID component and the thermal transfer component are integrated into one piece.
3. The marking method based on thermal transfer marking according to claim 2, characterized in that: The RFID component is embedded in the thermal transfer component.
4. The marking method based on thermal transfer marking according to claim 3, characterized in that: The RFID member is bonded to the thermal transfer member.
5. The marking method based on thermal transfer marking according to claim 4, characterized in that: The RFID component includes an RFID chip, and the RFID chip is embedded in the thermal transfer component.
6. The marking method based on thermal transfer marking according to claim 5, characterized in that: The thermal transfer component comprises a thermal transfer marking tape, and the RFID chip is embedded in the thermal transfer marking tape.
7. The marking method based on thermal transfer marking according to claim 6, characterized in that: The thermal transfer labeling tape comprises a substrate, an adhesive layer and a release paper arranged from top to bottom, wherein: The RFID chip is disposed between the substrate and the adhesive layer.
8. A marking system based on thermal transfer marking, characterized in that: include: Thermal transfer marking, used to mark the equipment; An RFID printer, used to store and write identification information into the thermal transfer label and print it into a finished thermal transfer label; The handheld terminal is used to upload and download data or identification tasks for the thermal transfer mark.
9. An electronic device, characterized in that: The electronic device includes a processor, the processor is coupled to a memory, the memory stores at least one computer program, and the at least one computer program is loaded and executed by the processor so that the electronic device implements the marking method based on thermal transfer marking as described in any one of claims 1 to 7.
10. A computer-readable storage medium, characterized in that: The computer-readable storage medium stores at least one computer program, and the at least one computer program is loaded and executed by the processor, so that the computer-readable storage medium implements the marking method based on thermal transfer marking as described in any one of claims 1 to 7.
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