Emergency starting power supply detection protection method, emergency starting power supply and electronic equipment
By introducing detection components into the emergency start-up power supply, detecting the first electrode material of the vehicle battery and determining whether it is a positive electrode, the problem of low intelligence of emergency start-up power supply in the prior art is solved, effectively preventing the positive and negative electrodes from being connected in reverse, and improving the intelligence of emergency start-up power supply.
Patent Information
- Application Number
- CN202510139279.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-08
- Publication Date
- 2025-05-09
- Estimated Expiration
- 2045-02-08
AI Technical Summary
In the prior art, the degree of intelligence of emergency starting power supply is low, making it difficult to effectively detect and protect, resulting in problems such as the connection between the positive and negative poles during emergency start-up.
By introducing a detection component into the emergency startup power supply, the first electrode material of the vehicle battery is detected, and whether the electrode is positive is determined based on the detection data, and the prompt message is issued to remind the user.
Effectively prevent the positive and negative poles from being connected in reverse, improve the intelligence of the emergency starting power supply, and ensure that it can work normally during emergency starting.
Smart Images

Figure CN119959636A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of vehicle emergency starting power supplies, and in particular to an emergency starting power supply detection and protection method, an emergency starting power supply, and an electronic device. Background Art
[0002] The vehicle's emergency starting power supply (also called a car emergency starting battery or on-board emergency starting power supply) is usually used to provide emergency starting support when the vehicle's main battery is low on power or fails. It is usually a portable battery that can provide enough current to start the engine. In order to ensure that it can work properly when needed, the vehicle's emergency starting power supply needs to be regularly tested and protected. The following are the detection and protection measures for the vehicle's emergency starting power supply.
[0003] The intelligence level of emergency starting power supply in related technologies needs to be improved. Summary of the invention
[0004] The present application aims to solve at least one of the technical problems existing in the related art. To this end, the present application proposes an emergency starting power supply detection and protection method, an emergency starting power supply and an electronic device.
[0005] The emergency starting power supply detection and protection method according to the first aspect of the present application is applied to the emergency starting power supply, the emergency starting power supply includes a body and a detection component, the detection component is connected to the body, the vehicle battery is provided with a first electrode and a second electrode, the body is provided with a positive discharge part and a negative discharge part, when the positive discharge part is connected to the first electrode, the detection component is used to detect the material of the first electrode;
[0006] The emergency starting power supply detection and protection method comprises:
[0007] Determining that the positive electrode discharge portion is connected to the first electrode, and acquiring detection data of the detection component;
[0008] Determining the material of the first electrode based on the detection data of the detection component;
[0009] Based on the material of the first electrode, determining whether the first electrode is a positive electrode;
[0010] The control sends a prompt message, where the prompt message is used to remind the user whether the first electrode is a positive electrode.
[0011] According to an embodiment of the present application, the step of determining whether the first electrode is a positive electrode includes:
[0012] When the first electrode is a positive electrode, the body is controlled to discharge normally.
[0013] According to an embodiment of the present application, the step of determining whether the first electrode is a positive electrode includes:
[0014] When the first electrode is not a positive electrode, the body is controlled not to discharge.
[0015] According to an embodiment of the present application, the step of determining the material of the first electrode based on the detection data of the detection component includes:
[0016] Determining the resistance value of the first electrode based on the detection data of the detection component;
[0017] The material of the first electrode is determined based on the resistance value of the first electrode.
[0018] According to an embodiment of the present application, the step of determining the material of the first electrode based on the resistance value of the first electrode includes:
[0019] Obtain the type of the vehicle battery;
[0020] The material of the first electrode is determined based on the type of the vehicle battery and the detection data of the detection component.
[0021] According to one embodiment of the present application, the step of obtaining the type of the vehicle battery includes:
[0022] Get vehicle information;
[0023] Based on the vehicle information, a type of the vehicle battery is determined.
[0024] The emergency starting power supply according to the second aspect of the embodiment of the present application includes a control component, and the control component is used to execute the above-mentioned emergency starting power supply detection and protection method.
[0025] The emergency starting power supply detection protection device according to the third aspect of the present application includes:
[0026] An acquisition module, used to determine that the positive electrode discharge part is connected to the first electrode, and acquire detection data of the detection component;
[0027] A determination module, configured to determine the material of the first electrode based on the detection data of the detection component;
[0028] A judging module, used for judging whether the first electrode is a positive electrode based on the material of the first electrode;
[0029] The control module is used to control the sending of prompt information, where the prompt information is used to remind the user whether the first electrode is a positive electrode.
[0030] According to the electronic device of the fourth aspect embodiment of the present application, it includes a memory, a processor, and a computer program stored in the memory and executable on the processor, and the processor implements the above-mentioned emergency starting power supply detection and protection method when executing the computer program.
[0031] According to the non-transitory computer-readable storage medium of the fifth aspect embodiment of the present application, the non-transitory computer-readable storage medium includes a computer program, and when the computer program is executed by the processor, the emergency starting power supply detection and protection method described above is implemented.
[0032] According to the computer program product of the sixth aspect of the present application, the computer program product includes a computer program, and when the computer program is executed by the processor, the emergency starting power supply detection and protection method described above is implemented.
[0033] Additional aspects and advantages of the present application will be given in part in the description below, and in part will become apparent from the description below, or will be learned through the practice of the present application. BRIEF DESCRIPTION OF THE DRAWINGS
[0034] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the related technologies, the drawings required for use in the embodiments or the related technical descriptions are briefly introduced below. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0035] Figure 1 It is a flow chart of the emergency starting power supply detection and protection method of the present invention;
[0036] Figure 2 It is a structural schematic diagram of the emergency starting power supply provided by the present invention;
[0037] Figure 3 It is a structural schematic diagram of the emergency starting power supply detection and protection device provided by the present invention;
[0038] Figure 4 It is a structural schematic diagram of the electronic device provided by the present invention. DETAILED DESCRIPTION
[0039] In order to make the purpose, technical solutions and advantages of this application clearer, the technical solutions in this application will be clearly and completely described below in conjunction with the drawings in this application. Obviously, the described embodiments are part of the embodiments of this application, not all of them. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.
[0040] The embodiments of the present application provide an embodiment of an emergency starting power supply detection and protection method. It should be noted that although the logical order is shown in the flow chart, under certain data, the steps shown or described can be completed in an order different from that here.
[0041] Before introducing the emergency starting power supply detection and protection method of the embodiment of the present application, the application scenario of the emergency starting power supply detection and protection method is first explained. The emergency starting power supply detection and protection method of the present application can be applied to smart phones, tablets, computers and other smart terminals, and can also be applied to servers. The present application does not make any special limitations here, as long as it can carry and implement the emergency starting power supply detection and protection method of the present application.
[0042] The following description will be given by applying the emergency starting power supply detection and protection method to the server side, but it should be understood that the emergency starting power supply detection and protection method is not limited to being applied only to the server side.
[0043] Combine the following Figures 1 to 4 The present invention describes an emergency starting power supply detection and protection method, an emergency starting power supply, and an electronic device.
[0044] According to the embodiment of the first aspect of the present application, Figure 1 and Figure 2 As shown, the emergency starting power supply detection and protection method is applied to the emergency starting power supply, the emergency starting power supply includes a body and a detection component, the detection component is connected to the body, the vehicle battery is provided with a first electrode and a second electrode, the body is provided with a positive discharge part and a negative discharge part, when the positive discharge part is connected to the first electrode, the detection component is used to detect the material of the first electrode;
[0045] The emergency starting power supply detection and protection method comprises:
[0046] Step 101, determining that the positive electrode discharge part is connected to the first electrode, and acquiring detection data of the detection component;
[0047] Step 102: determining the material of the first electrode based on the detection data of the detection component;
[0048] Step 103: based on the material of the first electrode, determine whether the first electrode is a positive electrode;
[0049] Step 104: Control issuing a prompt message, wherein the prompt message is used to remind the user whether the first electrode is a positive electrode.
[0050] According to the emergency starting power supply detection and protection method of the present application, when the power of the vehicle battery is insufficient to start the vehicle, the emergency power supply and the vehicle battery can be electrically connected. When connecting the emergency power supply and the vehicle battery, it is necessary to connect the positive discharge part of the emergency power supply to the positive electrode of the vehicle battery, and connect the negative discharge part of the emergency power supply to the negative electrode of the vehicle battery.
[0051] When the positive discharge part is connected to the first electrode, the detection component will detect the material of the first electrode, and then the material of the first electrode can be determined according to the detection data of the detection component.
[0052] Since the positive and negative electrodes of the vehicle battery are made of different materials, it is possible to determine whether the first electrode is a positive electrode based on the material of the first electrode, and issue a prompt message based on the determination result to remind the user whether the first electrode is a positive electrode. The user can then determine whether the positive discharge portion of the emergency starting power supply is correctly connected to the positive electrode of the vehicle battery, which can effectively prevent the positive and negative electrodes from being connected in reverse, thereby improving the intelligence of the emergency starting power supply.
[0053] In some examples, the material of the positive electrode of the vehicle battery is generally lead oxide, and the material of the negative electrode of the vehicle battery is generally pure lead or lead alloy.
[0054] In one embodiment of the present application, the step of determining whether the first electrode is a positive electrode comprises:
[0055] When the first electrode is a positive electrode, the body is controlled to discharge normally.
[0056] It can be understood that when the first electrode is determined to be the positive electrode, it means that the positive discharge part of the emergency starting power supply is connected to the positive electrode of the vehicle battery, that is, there is no reverse connection of the positive and negative poles, and the main body can discharge normally to charge the vehicle battery, so the main body is controlled to discharge normally.
[0057] When the first electrode is a positive electrode, the step of controlling the body to discharge normally comprises:
[0058] When the first electrode is a positive electrode, obtaining a shift of a resonance peak of the vehicle battery;
[0059] determining a fault state of the vehicle battery based on a shift of a resonance peak of the vehicle battery;
[0060] When the vehicle battery has no faults, the main body is controlled to discharge normally.
[0061] In one embodiment of the present application, the step of determining whether the first electrode is a positive electrode comprises:
[0062] When the first electrode is not a positive electrode, the body is controlled not to discharge.
[0063] It can be understood that when it is determined that the first electrode is not the positive electrode, it means that the positive discharge part of the emergency starting power supply is connected to the negative electrode of the vehicle battery, that is, the positive and negative poles are reversed. If the main body discharges to charge the vehicle battery, a short circuit problem will occur. Therefore, the main body is controlled not to discharge, thereby improving safety.
[0064] In some embodiments, the step of determining the material of the first electrode based on the detection data of the detection component includes:
[0065] Determining the resistance value of the first electrode based on the detection data of the detection component;
[0066] The material of the first electrode is determined based on the resistance value of the first electrode.
[0067] It is understandable that the positive and negative electrodes of the vehicle battery are made of different materials, so the resistance values will also be different. In other words, the material of the first electrode can be judged by the resistance value, and then whether the first electrode is the positive electrode.
[0068] Therefore, the detection component is used to detect the resistance of the first electrode. According to the detection data of the detection component, the resistance of the first electrode can be determined. Then, based on the resistance of the first electrode, the material of the first electrode can be determined, and then whether the first electrode is a positive electrode can be determined.
[0069] In one embodiment of the present application, the step of determining the material of the first electrode based on the resistance value of the first electrode includes:
[0070] Obtain the type of the vehicle battery;
[0071] The material of the first electrode is determined based on the type of the vehicle battery and the detection data of the detection component.
[0072] It is understandable that different types of vehicle batteries may result in different resistance values of the positive electrode of the vehicle battery. Therefore, when determining the material of the first electrode based on the resistance value of the first electrode, the type of the vehicle battery is first obtained. Based on the type of the vehicle battery, the standard resistance value of the positive electrode of the vehicle battery can be determined. Then, combined with the detection data of the detection component, it can be determined whether the first electrode is made of positive electrode material.
[0073] In one embodiment of the present application, the step of obtaining the type of the vehicle battery includes:
[0074] Get vehicle information;
[0075] Based on the vehicle information, a type of the vehicle battery is determined.
[0076] It is understandable that the vehicle information includes information such as the vehicle brand, model, and frame identification number.
[0077] In one embodiment of the present application, the detection component includes a first detection electrode, a second detection electrode, a detection power supply, a current detection element, a protection resistor and a voltage detection element, one end of the first detection electrode, the detection power supply, the current detection element, the protection resistor and one end of the second detection electrode are electrically connected in sequence, and the voltage detection element is used to detect the voltage between the other end of the first detection electrode and the other end of the second detection electrode;
[0078] When the positive electrode discharge unit is connected to the first electrode, the other end of the first detection electrode and the other end of the second detection electrode are connected to different positions of the first electrode, respectively.
[0079] The emergency starting power supply 50 includes a first emergency starting power supply 501, a second emergency starting power supply 502 and a preheating component 505, the preheating component 505 includes a first preheating component 5051 and a second preheating component 5052, the first preheating component 5051 is connected to the first emergency starting power supply 501, and the second preheating component 5052 is connected to the second emergency starting power supply 502, and the emergency starting power supply detection and protection method also includes:
[0080] The first emergency starting power supply 501 is controlled to supply power to the second preheating component 5052 , so that the second preheating component 5052 heats the second emergency starting power supply 502 .
[0081] When the temperature of the second emergency starting power supply 502 reaches a preset temperature, the first emergency starting power supply 501 is controlled to stop supplying power to the second preheating component 5052 .
[0082] It can be understood that by controlling the first emergency starting power supply 501 to supply power to the second preheating component 5052, the second emergency starting power supply 502 is in a non-working state. The second preheating component 5052 starts to work to heat the second emergency starting power supply 502 and increase the temperature of the second emergency starting power supply 502. The temperature of the second emergency starting power supply 502 is detected. When it is determined that the temperature of the second emergency starting power supply 502 reaches the preset temperature, it means that the second emergency starting power supply 502 can work normally at this time, so the first emergency starting power supply 501 is controlled to stop supplying power to the second preheating component 5052. In this way, part of the emergency starting power supply 50 is used to heat another part of the emergency starting power supply 50, which improves the intelligence of the heating of the emergency starting power supply 50.
[0083] It can be understood that the temperature sensor is used to detect the ambient temperature or the temperature of the emergency starting power supply 50. When it is determined that the ambient temperature or the temperature of the emergency starting power supply 50 is lower than the preset temperature and greater than the minimum temperature, it means that the temperature will affect the emergency starting power supply 50 at this time, but the emergency starting power supply 50 still has a certain discharge capacity. At this time, the first emergency starting power supply 501 is controlled to supply power to the second preheating component 5052.
[0084] In some embodiments, Figure 2 As shown, the emergency starting power supply 50 includes a first emergency starting power supply 501, a second emergency starting power supply 502, a first stress detection component 503, a second stress detection component and a preheating component 505, the preheating component 505 includes a first preheating component 5051 and a second preheating component 5052, the first stress detection component 503 is installed on the first emergency starting power supply 501, the first stress detection component 503 is used to detect the stress of the first emergency starting power supply 501, the second stress detection component is installed on the second emergency starting power supply 502, the second stress detection component is used to detect the stress of the second emergency starting power supply 502, the first preheating component 5051 is connected to the first emergency starting power supply 501, the second preheating component 5052 is connected to the second emergency starting power supply 502, and before controlling the first emergency starting power supply to supply power to the second preheating component, it includes:
[0085] Obtain stresses of the first emergency starting power supply 501 and the second emergency starting power supply 502;
[0086] Determine the real-time temperature of the first emergency starting power supply 501 and the second emergency starting power supply 502 based on the stress of the first emergency starting power supply 501 and the second emergency starting power supply 502;
[0087] Based on the real-time temperature, the operations of the first preheating component 5051 and the second preheating component 5052 are controlled.
[0088] It is understandable that when the emergency starting power supply 50 is at different temperatures, the state of the emergency starting power supply 50 will also be different, and the different states of the emergency starting power supply 50 will cause different stresses of the emergency starting power supply 50, that is, the real-time temperature of the emergency starting power supply 50 can be determined based on the stress of the emergency starting power supply 50.
[0089] Therefore, the stress of the first emergency starting power supply 501 and the second emergency starting power supply 502 is first obtained, and then the real-time temperature of the first emergency starting power supply 501 and the real-time temperature of the second emergency starting power supply 502 are determined according to the stress of the first emergency starting power supply 501 and the stress of the second emergency starting power supply 502. According to the real-time temperature, it can be determined whether the temperature of the first emergency starting power supply 501 and the second emergency starting power supply 502 is too low, that is, whether the first emergency starting power supply 501 and the second emergency starting power supply 502 need to be heated, and then the work of the first preheating component 5051 and the second preheating component 5052 is controlled, thereby improving the intelligent degree of heating of the emergency starting power supply 50. Moreover, the real-time temperature of the emergency starting power supply 50 is directly determined by stress, which is more intelligent than detecting the temperature of the emergency starting power supply 50 by using a temperature sensor or the like.
[0090] It is understandable that when the real-time temperature of the first emergency starting power supply 501 is lower than the preset temperature, the first preheating component 5051 is controlled to be powered so that the first preheating component 5051 works to increase the temperature of the first emergency starting power supply 501 .
[0091] It is understandable that a mapping relationship between the stress of the emergency starting power supply 50 and the real-time temperature may be established in advance, so as to directly obtain the real-time temperature of the emergency starting power supply 50 according to the stress of the emergency starting power supply 50 .
[0092] In some examples, a strain gauge may be provided on the outer wall surface of the emergency starting power supply 50 , and the stress of the emergency starting power supply 50 may be determined according to the strain amount of the strain gauge.
[0093] In some examples, the emergency starting power supply 50 includes a main body and a steel belt 504 sleeved on the main body, and the first stress detection component 503 includes a strain gauge 5031, which is arranged on the steel belt 504, and the stress of the emergency starting power supply 50 is determined according to the strain amount of the strain gauge 5031.
[0094] In one embodiment of the present application, based on the stress of the first emergency starting power supply 501 and the second emergency starting power supply 502, the step of determining the real-time temperature of the first emergency starting power supply 501 and the second emergency starting power supply 502 includes:
[0095] Based on the real-time stress of the first emergency starting power supply 501, the real-time stress of the second emergency starting power supply 502 and the stress database, the real-time temperature of the first battery cell module and the second emergency starting power supply 502 is determined, wherein the stress database includes the stress of the emergency starting power supply 50 at different temperatures.
[0096] It can be understood that by comparing the real-time stress of the first emergency starting power supply 501 with the stress database, the real-time temperature of the first emergency starting power supply 501 can be determined, and by comparing the real-time stress of the second emergency starting power supply 502 with the stress database, the real-time temperature of the second emergency starting power supply 502 can be determined.
[0097] In one embodiment of the present application, based on the stress of the first emergency starting power supply 501 and the second emergency starting power supply 502, the step of determining the real-time temperature of the first emergency starting power supply 501 and the second emergency starting power supply 502 includes:
[0098] Based on the real-time stress of the first emergency starting power supply 501, the real-time stress of the second emergency starting power supply 502, the health status of the first emergency starting power supply 501, the health status of the second emergency starting power supply 502 and the status database, the real-time temperature of the first emergency starting power supply 501 and the second emergency starting power supply 502 is determined, wherein the status database includes the stress of the emergency starting power supply 50 in different health status at different temperatures.
[0099] It is understandable that the temperature and health status of the emergency starting power supply 50 will affect the stress of the emergency starting power supply 50. Therefore, the real-time stress of the first emergency starting power supply 501 and the health status of the first emergency starting power supply 501 are first obtained, and the real-time stress of the first emergency starting power supply 501 and the health status and status database of the first emergency starting power supply 501 are compared to determine the real-time temperature of the first emergency starting power supply 501, thereby improving the detection accuracy of the real-time temperature of the first emergency starting power supply 501.
[0100] First, the real-time stress of the second emergency starting power supply 502 and the health status of the second emergency starting power supply 502 are obtained, and the real-time stress of the second emergency starting power supply 502 and the health status of the second emergency starting power supply 502 are compared with the status database, and then the real-time temperature of the second emergency starting power supply 502 is determined, thereby improving the detection accuracy of the real-time temperature of the second emergency starting power supply 502.
[0101] According to the embodiment of the second aspect of the present application, the emergency starting power supply detection and protection device and the emergency starting power supply detection and protection method correspond to each other. Figure 3 As shown, the emergency starting power supply detection and protection device includes:
[0102] An acquisition module 201 is used to determine that the positive electrode discharge part is connected to the first electrode, and acquire detection data of the detection component;
[0103] A determination module 202, configured to determine the material of the first electrode based on the detection data of the detection component;
[0104] A judgment module 203, configured to judge whether the first electrode is a positive electrode based on the material of the first electrode;
[0105] The control module 204 is used to control the sending of prompt information, where the prompt information is used to remind the user whether the first electrode is a positive electrode.
[0106] According to an embodiment of the third aspect of the present application, the emergency starting power supply 50 includes a control component, which is used to execute the above-mentioned emergency starting power supply detection and protection method.
[0107] According to an embodiment of the fourth aspect of the present application, Figure 4 As shown, the electronic device may include: a processor 310, a communication interface 320, a memory 330 and a communication bus 340, wherein the processor 310, the communication interface 320, and the memory 330 communicate with each other through the communication bus 340. The processor 310 may call the logic instructions in the memory 330 to execute the emergency startup power supply detection and protection method, which includes:
[0108] Determining that the positive electrode discharge portion is connected to the first electrode, and acquiring detection data of the detection component;
[0109] Determining the material of the first electrode based on the detection data of the detection component;
[0110] Based on the material of the first electrode, determining whether the first electrode is a positive electrode;
[0111] The control sends a prompt message, where the prompt message is used to remind the user whether the first electrode is a positive electrode.
[0112] In addition, the logic instructions in the above-mentioned memory 330 can be implemented in the form of software functional units and can be stored in a computer-readable storage medium when sold or used as an independent product. Based on this understanding, the technical solution of the present application can be essentially or partly embodied in the form of a software product that contributes to the prior art. The computer software product is stored in a storage medium, including several instructions to enable a computer device (which can be a personal computer, a server, or a network device, etc.) to perform all or part of the steps of the methods of each embodiment of the present invention. The aforementioned storage medium includes: U disk, mobile hard disk, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), disk or optical disk, etc. Various media that can store program codes.
[0113] On the other hand, the present application also provides a computer program product, the computer program product includes a computer program stored on a non-transitory computer-readable storage medium, the computer program includes program instructions, when the program instructions are executed by the computer, the computer can execute the emergency starting power supply detection and protection method provided by the above methods, the method includes:
[0114] Determining that the positive electrode discharge portion is connected to the first electrode, and acquiring detection data of the detection component;
[0115] Determining the material of the first electrode based on the detection data of the detection component;
[0116] Based on the material of the first electrode, determining whether the first electrode is a positive electrode;
[0117] The control sends a prompt message, where the prompt message is used to remind the user whether the first electrode is a positive electrode.
[0118] According to an embodiment of the fifth aspect of the present application, the present application also includes a non-transitory computer-readable storage medium on which a computer program is stored. When the computer program is executed by a processor, it is implemented to perform the emergency starting power supply detection and protection method provided above, and the method includes:
[0119] Determining that the positive electrode discharge portion is connected to the first electrode, and acquiring detection data of the detection component;
[0120] Determining the material of the first electrode based on the detection data of the detection component;
[0121] Based on the material of the first electrode, determining whether the first electrode is a positive electrode;
[0122] The control sends a prompt message, where the prompt message is used to remind the user whether the first electrode is a positive electrode.
[0123] The device embodiments described above are merely illustrative, wherein the units described as separate components may or may not be physically separated, and the components shown as units may or may not be physical units, i.e., they may be located in one place, or they may be distributed on multiple network units. Some or all of the modules may be selected according to actual needs to achieve the purpose of the scheme of this embodiment. Those of ordinary skill in the art may understand and implement it without creative effort.
[0124] Through the description of the above implementation methods, those skilled in the art can clearly understand that each implementation method can be implemented by means of software plus a necessary general hardware platform, and of course, it can also be implemented by hardware. Based on this understanding, the above technical solution is essentially or the part that contributes to the prior art can be embodied in the form of a software product, and the computer software product can be stored in a computer-readable storage medium, such as ROM / RAM, a disk, an optical disk, etc., including a number of instructions for a computer device (which can be a personal computer, a server, or a network device, etc.) to execute the methods of each embodiment or some parts of the embodiment.
[0125] Finally, it should be noted that the above implementation modes are only used to illustrate the present application, rather than to limit the present application. Although the present application is described in detail with reference to the embodiments, a person skilled in the art should understand that various combinations, modifications or equivalent substitutions of the technical solutions of the present application do not depart from the spirit and scope of the technical solutions of the present application, and should be included in the scope of the claims of the present application.
Claims
1. A detection and protection method for an emergency starting power supply, applied to an emergency starting power supply, characterized in that: The emergency starting power supply includes a body and a detection component, the detection component is connected to the body, the vehicle battery is provided with a first electrode and a second electrode, the body is provided with a positive discharge part and a negative discharge part, when the positive discharge part is connected to the first electrode, the detection component is used to detect the material of the first electrode; The emergency starting power supply detection and protection method comprises: Determining that the positive electrode discharge portion is connected to the first electrode, and acquiring detection data of the detection component; Determining the material of the first electrode based on the detection data of the detection component; Based on the material of the first electrode, determining whether the first electrode is a positive electrode; The control sends a prompt message, where the prompt message is used to remind the user whether the first electrode is a positive electrode.
2. The emergency starting power supply detection and protection method according to claim 1 is characterized in that: The step of determining whether the first electrode is a positive electrode comprises: When the first electrode is a positive electrode, the body is controlled to discharge normally.
3. The emergency starting power supply detection and protection method according to claim 1 is characterized in that: The step of determining whether the first electrode is a positive electrode comprises: When the first electrode is not a positive electrode, the body is controlled not to discharge.
4. The emergency starting power supply detection and protection method according to claim 1, characterized in that: The step of determining the material of the first electrode based on the detection data of the detection component includes: Determining the resistance value of the first electrode based on the detection data of the detection component; The material of the first electrode is determined based on the resistance value of the first electrode.
5. The emergency starting power supply detection and protection method according to claim 4, characterized in that: The step of determining the material of the first electrode based on the resistance value of the first electrode includes: Obtain the type of the vehicle battery; The material of the first electrode is determined based on the type of the vehicle battery and the detection data of the detection component.
6. The emergency starting power supply detection and protection method according to claim 5, characterized in that: The step of obtaining the type of the vehicle battery comprises: Get vehicle information; Based on the vehicle information, a type of the vehicle battery is determined.
7. An emergency starting power supply, characterized in that: It includes a control component, which is used to execute the emergency starting power supply detection and protection method as described in any one of claims 1 to 6.
8. An emergency starting power supply detection and protection device, characterized in that: include: An acquisition module, used to determine that the positive electrode discharge part is connected to the first electrode, and acquire detection data of the detection component; A determination module, configured to determine the material of the first electrode based on the detection data of the detection component; A judging module, used for judging whether the first electrode is a positive electrode based on the material of the first electrode; The control module is used to control the sending of prompt information, where the prompt information is used to remind the user whether the first electrode is a positive electrode.
9. An electronic device, comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein: When the processor executes the computer program, the emergency starting power supply detection and protection method described in any one of claims 1 to 6 is implemented.
10. A non-transitory computer-readable storage medium, the non-transitory computer-readable storage medium comprising a computer program, characterized in that: When the computer program is executed by a processor, the emergency starting power supply detection and protection method according to any one of claims 1 to 6 is implemented.
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