An intelligent power line card reading process management method and intelligent power line
By incorporating current detection functionality into the smart power cord to control the on/off state of the NFC card reader module, the NFC tag card at the tail plug is read only when the device is working, thus solving the energy consumption problem caused by continuous card reading by the smart power cord and achieving energy-saving optimization of the system.
Patent Information
- Application Number
- CN202510262496.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-06
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2045-03-06
AI Technical Summary
The smart power cord continuously reads NFC tag cards while the device is working, resulting in unnecessary power consumption and violating environmental protection and energy-saving requirements.
By combining the current detection function of the device's operating status, the switch of the NFC card reader module at the plug and tail plug is controlled, so that the NFC tag card at the tail plug is read only when the device's operating current is detected, reducing unnecessary card reading operations.
This approach reduces unnecessary energy consumption and improves the rationality and energy-saving effect of system operation without affecting system functionality.
Smart Images

Figure CN120106103B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of power line, in particular to a smart power line card reading process management method and smart power line. BACKGROUND
[0002] In order to better control the device itself information and working state, the power line is processed to make it have device fixed asset coding identification and position coordinate identification, which can increase the NFC card reading function to realize.
[0003] The smart power line has the above functions, and after the smart power line is connected with the device and the power supply, if the card reading module is always reading the NFC tag card when the device starts working, it is very unreasonable for the whole system, and it also increases energy consumption from the energy consumption point of view, which is not conducive to environmental protection and energy saving. SUMMARY
[0004] This part aims to summarize some aspects of the embodiments of the present application and briefly introduce some preferred embodiments. Some simplifications or omissions may be made in this part and the abstract and title of the specification to avoid obscuring the purpose of this part, the abstract and the title, and such simplifications or omissions cannot be used to limit the scope of the present application.
[0005] Therefore, the purpose of the present application is to provide a smart power line card reading process management method and smart power line, which combines the current detection function of the device working state to realize the on-off control of the card reading module, so that the system runs more reasonably and reduces energy consumption.
[0006] To solve the above technical problems, according to one aspect of the present application, the present application provides the following technical scheme:
[0007] A smart power line card reading process management method, the steps are as follows:
[0008] S1, connecting the plug end of the smart power line with the external power socket, and connecting the tail plug end with the device to be powered;
[0009] S2, reading the NFC tag card of the plug end when the power is connected, and stopping reading the NFC tag card of the plug end according to the reading result;
[0010] S3, detecting the working current of the device to be powered, and starting to read the NFC tag card of the tail plug end when the working current is detected to exist, and stopping reading the NFC tag card of the tail plug end according to the reading result;
[0011] S4, real-time monitoring of the working current, and repeating the above steps S1-S3 when the working current of the device to be powered disappears.
[0012] As a preferred scheme of the intelligent power line card reading process management method, in step S2, when the power is connected, the NFC tag card at the plug end is read, and the specific steps of stopping reading the NFC tag card at the plug end according to the reading result are as follows:
[0013] The first NFC card reading module starts to work and reads the NFC tag card at the plug end.
[0014] When the card reading is successful, the first NFC card reading module is closed, the power supply circuit corresponding to the first NFC card reading module is also closed, and the storage module stores the read NFC tag data.
[0015] When the card reading is unsuccessful, it is judged whether the number of card reading times exceeds the set number of times, and when the number of card reading times does not exceed the set number of times, the first NFC card reading module continues to read the card.
[0016] If the set number of times is exceeded, an alarm is given in the form of sound and light, and then the first NFC card reading module function and the power supply circuit of the module are closed.
[0017] In the case that the intelligent power line is not powered off, the first NFC card reading module function is always closed.
[0018] As a preferred scheme of the intelligent power line card reading process management method, the number of card reading times of the first NFC card reading module is set to 5 times.
[0019] As a preferred scheme of the intelligent power line card reading process management method, in step S3, the working current of the device to be powered is detected, and when the working current is detected to exist, the NFC tag card at the tail plug end is read, and the specific steps of stopping reading the NFC tag card at the tail plug end according to the reading result are as follows:
[0020] When the first NFC card reading module is closed, it is judged whether the device has working current according to the value read by the current detection module, and when no working current is generated or the intelligent power line is not connected to the device, the tail plug card reading module does not need to take any action.
[0021] When it is detected that the device has working current, the second NFC card reading module starts to work and reads the NFC tag card at the tail plug end.
[0022] When the card reading is successful, the second NFC card reading module is closed, the corresponding power supply circuit is also closed, and the storage module stores the read NFC tag data.
[0023] When the card reading is unsuccessful, it is judged whether the number of card reading times exceeds the set number of times, and when the number of card reading times does not exceed the set number of times, the second NFC card reading module continues to read the card.
[0024] If the set number of times is exceeded, an alarm is given in the form of sound and light, and then the second NFC card reading module function and the power supply circuit of the module are closed.
[0025] As a preferred scheme of the intelligent power line card reading process management method, the number of times of reading the card by the second NFC card reading module is set to 5.
[0026] An intelligent power line comprises:
[0027] A first NFC card reading module is arranged at the plug end of the intelligent power line, and is used to read the NFC tag card at the plug end when the power is connected.
[0028] A control box comprises a current detection module, which is used to monitor the working current of the device in real time.
[0029] A second NFC card reading module is arranged at the tail plug end of the intelligent power line, and is used to read the second NFC tag information when the working current of the device to be powered is detected by the current detection unit.
[0030] A power management module is in communication connection with the current detection module, the first NFC card reading module and the second NFC card reading module, and is configured to activate the first NFC card reading module to read the tag when the power is connected, and to close the first NFC card reading module according to the reading result.
[0031] And based on the output signal of the current detection module, the second NFC card reading module is activated to read the tag when the working current exists, and the second NFC card reading module is closed according to the reading result.
[0032] A storage unit is used to store the first NFC tag information and the second NFC tag information.
[0033] The power management module is further configured to trigger an alarm operation and close the power supply circuit of the corresponding card reading module when the number of reading failures of any NFC card reading module exceeds a set threshold.
[0034] Compared with the prior art, the present application has the beneficial effect that when the power is connected, the NFC tag card at the plug end is read, and the reading of the NFC tag card at the plug end is stopped according to the reading result, then the working current of the device to be powered is detected, and when the working current is detected to exist, the NFC tag card at the tail plug end is read, and the reading of the NFC tag card at the tail plug end is stopped according to the reading result. The current detection function of the working state of the device is combined to realize the on-off control of the card reading module, so that the system runs more reasonably and the energy consumption is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0035] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the present application will be described in detail below with reference to the accompanying drawings and specific embodiments. Obviously, the drawings described below are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained from these drawings without creative labor. Among them:
[0036] Figure 1 The flow chart of the card reading process management method of the intelligent power line of the present application;
[0037] Figure 2 The structural diagram of the intelligent power line of the present application. DETAILED DESCRIPTION
[0038] In order to make the above-mentioned objects, features and advantages of the present application more apparent and easy to understand, the specific embodiments of the present application will be described in detail below with reference to the accompanying drawings.
[0039] Secondly, the present application is described in detail in combination with the schematic diagram. In the detailed description of the embodiments of the present application, the cross-sectional view of the device structure will be partially enlarged without the general proportion for the convenience of description, and the schematic diagram is only an example, which should not limit the scope of protection of the present application here. In addition, the three-dimensional spatial dimensions of length, width and depth should be included in the actual manufacture.
[0040] In order to make the objects, technical solutions and advantages of the present application more apparent, the embodiments of the present application will be further described in detail below with reference to the accompanying drawings.
[0041] The present application provides a card reading process management method of an intelligent power line and an intelligent power line. The current detection function of the working state of the equipment is combined to realize the on-off control of the card reading module, so that the system operation is more reasonable and the energy consumption is reduced.
[0042] As shown in the figure, a card reading process management method of an intelligent power line, the steps are as follows: Figure 1
[0043] S1, connecting the plug end of the intelligent power line to the external power socket, and connecting the tail plug end to the device to be powered;
[0044] S2, when the power is connected, reading the NFC tag card of the plug end, and stopping reading the NFC tag card of the plug end according to the reading result,
[0045] S3, detecting the working current of the device to be powered, and starting to read the NFC tag card of the tail plug end when the working current is detected to exist, and stopping reading the NFC tag card of the tail plug end according to the reading result;
[0046] S4, real-time monitoring of the working current, and repeating the above steps S1-S3 when the working current of the device to be powered disappears.
[0047] Specifically, in this embodiment, step S2, when power is connected, reads the NFC tag card at the plug end, and stops reading the NFC tag card at the plug end based on the reading result, the specific steps are as follows:
[0048] The first NFC card reader module starts working and reads the NFC tag card at the plug end;
[0049] When the card is successfully read, the first NFC card reader module is turned off, and the power supply circuit of the corresponding first NFC card reader module is also turned off. The storage module stores the NFC tag data it has read.
[0050] When the card reading fails, it checks whether the number of card reading attempts has exceeded the set number, for example, 5 times. If the number of card reading attempts has not exceeded the set number, the first NFC card reading module continues to read the card.
[0051] If the set number of attempts is exceeded, an alarm will be triggered by sound and light, and then the function of the first NFC card reader module and the power supply circuit of the module will be shut down.
[0052] The first NFC card reader module remains disabled as long as the smart power cord is powered on.
[0053] In this embodiment, in step S3, when the first NFC card reader module is turned off, the device is judged to have working current based on the value read by the current detection module. If no working current is generated, or the smart power cord is not connected to the device, the tail plug card reader module does not need to do anything.
[0054] When the device detects operating current, the second NFC card reader module starts working and reads the NFC tag card at the tail plug.
[0055] When the card is successfully read, the second NFC card reader module is turned off, and the corresponding power supply circuit is also turned off. The storage module stores the read NFC tag data.
[0056] If the card reading fails, check if the number of card reading attempts has exceeded the set number. If the number of card reading attempts has not exceeded the set number, the second NFC card reading module continues to read the card.
[0057] If the set number of attempts is exceeded, an alarm will be triggered by sound and light, and then the function of the second NFC card reader module and the power supply circuit of the module will be shut down.
[0058] like Figure 2 As shown, in order to implement the above steps of the intelligent power cord card reading process management method, the present invention also provides an intelligent power cord, which includes a first NFC card reading module, a control box, a second NFC card reading module, a power management module, a storage unit, and a current detection unit.
[0059] The first NFC card reading module is arranged at the plug end of the smart power line, and is used for reading the NFC tag card at the plug end when the power is connected;
[0060] The control box comprises a current detection module, which is used for monitoring the working current of the equipment in real time;
[0061] The second NFC card reading module is arranged at the tail plug end of the smart power line, and is used for reading the second NFC tag information when the current detection unit detects the working current of the equipment to be powered;
[0062] The power management module is in communication connection with the current detection module, the first NFC card reading module and the second NFC card reading module, and is configured to activate the first NFC card reading module to read the tag when the power is connected, and to close the first NFC card reading module according to the reading result;
[0063] and to activate the second NFC card reading module to read the tag when the working current exists based on the output signal of the current detection module, and to close the second NFC card reading module according to the reading result;
[0064] The storage unit is used for storing the first NFC tag information and the second NFC tag information;
[0065] The power management module is further configured to trigger an alarm operation and close the power supply circuit of the corresponding card reading module when the reading failure times of any NFC card reading module exceed a set threshold.
[0066] Although the present application has been described with reference to the embodiments above in the foregoing description, it is to be understood that various modifications can be made without departing from the scope of the present application. In particular, the features of the disclosed embodiments can be used in any combination without structural conflict, and the combinations of features are not exhaustively described in the specification only for the purpose of brevity and resource saving. Therefore, the present application is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.
Claims
1. A method for managing the intelligent power cord card reading process, characterized in that, The steps are as follows: S1. Connect the plug end of the smart power cord to an external power socket and the tail end to the device to be powered. S2. When the power is connected, read the NFC tag card at the plug end, and stop reading the NFC tag card at the plug end based on the reading result; S3. Detect the operating current of the device to be powered. When the operating current is detected, start reading the NFC tag card at the tail plug and stop reading the NFC tag card at the tail plug according to the reading result. S4. Monitor the operating current in real time. When the operating current of the device to be powered disappears, repeat the above steps S1-S3. In step S2, when power is connected, the NFC tag card at the plug end is read, and the reading of the NFC tag card at the plug end is stopped based on the reading result. The specific steps are as follows: The first NFC card reader module starts working and reads the NFC tag card at the plug end; When the card is successfully read, the first NFC card reader module is turned off, and the power supply circuit of the corresponding first NFC card reader module is also turned off. The storage module stores the NFC tag data it has read. If the card reading fails, check if the number of card reading attempts has exceeded the set number. If the number of card reading attempts has not exceeded the set number, the first NFC card reading module continues to read the card. If the set number of attempts is exceeded, an alarm will be triggered by sound and light, and then the function of the first NFC card reader module and the power supply circuit of the module will be shut down. The first NFC card reader module remains disabled as long as the smart power cord is powered on. In step S3, the operating current of the device to be powered is detected. When the operating current is detected, the operation begins to read the NFC tag card at the tail plug, and the reading of the NFC tag card at the tail plug is stopped based on the reading result. The specific steps are as follows: When the first NFC card reader module is turned off, the current detection module determines whether the device has operating current. If no operating current is generated, or the smart power cord is not connected to the device, the tail plug card reader module does not need to do anything. When the device detects operating current, the second NFC card reader module starts working and reads the NFC tag card at the tail plug. When the card is successfully read, the second NFC card reader module is turned off, and the corresponding power supply circuit is also turned off. The storage module stores the read NFC tag data. If the card reading fails, check if the number of card reading attempts has exceeded the set number. If the number of card reading attempts has not exceeded the set number, the second NFC card reading module continues to read the card. If the set number of attempts is exceeded, an alarm will be triggered by sound and light, and then the function of the second NFC card reader module and the power supply circuit of the module will be shut down.
2. The intelligent power cord card reading process management method according to claim 1, characterized in that, The first NFC card reader module is set to read cards 5 times.
3. The intelligent power cord card reading process management method according to claim 2, characterized in that, The second NFC card reader module is set to read cards 5 times.
4. A smart power cord, implementing the smart power cord card reading process management method according to any one of claims 1-3, characterized in that, include: The first NFC card reader module is located at the plug end of the smart power cord and is used to read the first NFC tag information at the plug end when the power is connected. The control box includes a current detection module for real-time monitoring of the operating current of the device; The second NFC card reader module is located at the tail plug of the smart power cord and is used to read the second NFC tag information when the current detection unit detects the operating current of the device to be powered. The power management module is communicatively connected to the current detection module, the first NFC card reader module, and the second NFC card reader module, and is configured to: activate the first NFC card reader module to read tags when the power is connected, and turn off the first NFC card reader module according to the reading result; Based on the output signal of the current detection module, the second NFC card reader module is activated to read the tag when the operating current is present, and the second NFC card reader module is turned off according to the reading result; Storage unit, used to store the first NFC tag information and the second NFC tag information; The power management module is further configured to trigger an alarm operation and shut down the power supply circuit of the corresponding card reader module when the number of reading failures of any NFC card reader module exceeds a set threshold.
Citation Information
Patent Citations
Intelligent power line with NFC function and system thereof
CN115660002A