Emergency starting power supply detection protection method, emergency starting power supply and electronic equipment

By using a detection component to determine the electrode material of the vehicle battery, the problem of low intelligence in emergency jump starters has been solved. This enables the prevention of reverse polarity connection and normal discharge, thereby improving safety and intelligence.

CN119959636BActive Publication Date: 2025-12-12SHENZHEN ROYER TECH CO LTD
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Patent Information

Application Number
CN202510139279.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-08
Publication Date
2025-12-12
Estimated Expiration
2045-02-08

AI Technical Summary

Technical Problem

Existing vehicle emergency jump starters have a low level of intelligence and lack effective detection and protection measures, especially in the inability to promptly identify and prevent reversed positive and negative connections.

Method used

The detection component detects the material of the first electrode of the vehicle battery to determine if it is the positive terminal, and issues a prompt message based on the determination result to ensure that the positive discharge part of the emergency jump starter is correctly connected to the positive terminal of the vehicle battery, avoiding reverse polarity connection.

Benefits of technology

It improves the intelligence level of emergency start-up power supplies, prevents reverse polarity connection, ensures normal discharge, and enhances safety and intelligence.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application relates to the technical field of vehicle emergency starting power supplies, and provides an emergency starting power supply detection protection method, an emergency starting power supply and electronic equipment. The method comprises the following steps: determining that a positive electrode discharge part is connected with a first electrode, and acquiring detection data of a detection assembly; determining the material of the first electrode based on the detection data of the detection assembly; judging whether the first electrode is a positive electrode based on the material of the first electrode; and controlling prompt information to be sent, wherein the prompt information is used for reminding a user whether the first electrode is a positive electrode. According to the emergency starting power supply detection protection method provided by the embodiment of the application, the user can determine whether the positive electrode discharge part of the emergency starting power supply is correctly connected with the positive electrode of a vehicle storage battery, the situation that the positive electrode and the negative electrode are connected in reverse can be effectively prevented, and the intelligent degree of the emergency starting power supply is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of vehicle emergency starting power supply, in particular to an emergency starting power supply detection and protection method, an emergency starting power supply and an electronic device. BACKGROUND

[0002] The emergency starting power supply of a vehicle (also known as a car emergency starting battery or a vehicle-mounted emergency starting power supply) is usually used to provide emergency starting support when the main battery of the car is insufficient 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 normally when needed, the vehicle emergency starting power supply needs to be regularly detected and protected. The following are the detection and protection measures for the vehicle emergency starting power supply.

[0003] The emergency starting power supply in the related art needs to be improved in terms of intelligence. SUMMARY

[0004] The present application aims to at least solve one of the technical problems in the related art. To this end, the present application provides 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 an emergency starting power supply, the emergency starting power supply comprising a body and a detection assembly, the detection assembly being connected to the body, the vehicle battery being provided with a first electrode and a second electrode, the body being provided with a positive electrode discharge part and a negative electrode discharge part, when the positive electrode discharge part is connected to the first electrode, the detection assembly 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 part is connected to the first electrode, and acquiring detection data of the detection assembly;

[0008] determining the material of the first electrode based on the detection data of the detection assembly;

[0009] judging whether the first electrode is a positive electrode based on the material of the first electrode;

[0010] controlling to issue a prompt information, the prompt information being used to remind a user whether the first electrode is a positive electrode.

[0011] According to one embodiment of the present application, the step of judging whether the first electrode is a positive electrode comprises:

[0012] when the first electrode is a positive electrode, controlling the body to normally discharge.

[0013] According to one embodiment of the present application, the step of judging whether the first electrode is a positive electrode comprises:

[0014] When the first electrode is not a positive electrode, the body is controlled not to discharge.

[0015] According to one embodiment of the present application, the step of determining the material of the first electrode based on the detection data of the detection assembly comprises:

[0016] Determining the resistance value of the first electrode based on the detection data of the detection assembly;

[0017] Determining the material of the first electrode based on the resistance value of the first electrode.

[0018] According to 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 comprises:

[0019] Obtaining the type of the vehicle storage battery;

[0020] Determining the material of the first electrode based on the type of the vehicle storage battery and the detection data of the detection assembly.

[0021] According to one embodiment of the present application, the step of obtaining the type of the vehicle storage battery comprises:

[0022] Obtaining vehicle information;

[0023] Determining the type of the vehicle storage battery based on the vehicle information.

[0024] The emergency starting power supply according to the second aspect of the present application comprises a control component, which is used to execute the emergency starting power supply detection and protection method.

[0025] The emergency starting power supply detection and protection device according to the third aspect of the present application comprises:

[0026] An obtaining module is configured to determine that the positive electrode discharge part is connected with the first electrode, and obtain detection data of the detection assembly;

[0027] A determining module is configured to determine the material of the first electrode based on the detection data of the detection assembly;

[0028] A judging module is configured to judge whether the first electrode is a positive electrode based on the material of the first electrode;

[0029] A control module is configured to control prompt information to be sent, wherein the prompt information is used to remind a user whether the first electrode is a positive electrode.

[0030] The electronic device according to the fourth aspect of the present application includes a memory, a processor, and a computer program stored in the memory and executable on the processor, and the processor implements the emergency starting power detection protection method when executing the computer program.

[0031] The non-transitory computer readable storage medium according to the fifth aspect of the present application includes a computer program, and the computer program implements the emergency starting power detection protection method when executed by the processor.

[0032] The computer program product according to the sixth aspect of the present application includes a computer program, and the computer program implements the emergency starting power detection protection method when executed by the processor.

[0033] Additional aspects and advantages of the present application will be in part apparent and in part pointed out hereinafter. BRIEF DESCRIPTION OF DRAWINGS

[0034] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the related art, the drawings needed to be used in the embodiments or the related art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0035] Figure 1 is a flowchart of the emergency starting power detection protection method of the present application;

[0036] Figure 2 is a structural schematic diagram of the emergency starting power provided by the present application;

[0037] Figure 3 is a structural schematic diagram of the emergency starting power detection protection device provided by the present application;

[0038] Figure 4 is a structural schematic diagram of the electronic device provided by the present application. DETAILED DESCRIPTION

[0039] In order to make the purposes, technical solutions and advantages of the present application clearer, the technical solutions in the present application will be described clearly and completely with reference to the drawings in the present application. Obviously, the described embodiments are some of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.

[0040] It should be noted that, although the logical sequence is shown in the flowchart, under certain data, the steps shown or described can be completed in an order different from that shown.

[0041] Before introducing the emergency starting power supply detection protection method of the embodiments of the present application, the application scenario of the emergency starting power supply detection protection method is first explained. The emergency starting power supply detection protection method of the present application can be applied to smart terminals such as smart phones, tablets and computers, and can also be applied to servers. The present application does not make special limitations here, as long as it can carry and implement the emergency starting power supply detection protection method of the present application.

[0042] The emergency starting power supply detection protection method is applied to the server end in the following description, but it should be understood that the emergency starting power supply detection protection method is not limited to only being applied to the server end.

[0043] The emergency starting power supply detection protection method, emergency starting power supply and electronic device of the present application are described below. Figures 1 to 4 The emergency starting power supply detection protection method, emergency starting power supply and electronic device of the present application are described below.

[0044] According to the embodiments of the first aspect of the present application, as shown in Figure 1 and Figure 2 The emergency starting power supply detection protection method is applied to the emergency starting power supply, which includes a body and a detection assembly. The detection assembly 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 electrode discharge part and a negative electrode discharge part. When the positive electrode discharge part is connected with the first electrode, the detection assembly is used to detect the material of the first electrode.

[0045] The emergency starting power supply detection protection method includes:

[0046] Step 101, determining that the positive electrode discharge part is connected with the first electrode, and acquiring the detection data of the detection assembly;

[0047] Step 102, determining the material of the first electrode based on the detection data of the detection assembly;

[0048] Step 103, judging whether the first electrode is a positive electrode based on the material of the first electrode;

[0049] Step 104, controlling to send a prompt information, the prompt information is used to remind the user whether the first electrode is a positive electrode.

[0050] According to the emergency starting power supply detection protection method, when the vehicle battery is insufficient to start the vehicle, the emergency power supply and the vehicle battery can be electrically connected. When the emergency power supply and the vehicle battery are connected, the positive electrode discharge part of the emergency power supply needs to be connected with the positive electrode of the vehicle battery, and the negative electrode discharge part of the emergency power supply needs to be connected with the negative electrode of the vehicle battery.

[0051] When the positive electrode discharge part is connected with the first electrode, the detection assembly detects the material of the first electrode, and according to the detection data of the detection assembly, the material of the first electrode can be determined.

[0052] Since the materials of the positive electrode and the negative electrode of the vehicle battery are different, according to the material of the first electrode, it can be determined whether the first electrode is the positive electrode, and according to the determination result, a prompt information is sent to remind the user whether the first electrode is the positive electrode, so that the user can determine whether the positive electrode discharge part of the emergency starting power supply is correctly connected with the positive electrode of the vehicle battery, which can effectively prevent the positive and negative electrodes from being connected in reverse, and improve the intelligent degree 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 an embodiment of the present application, the step of determining whether the first electrode is the positive electrode comprises:

[0055] When the first electrode is the positive electrode, the body is controlled to normally discharge.

[0056] It can be understood that when it is determined that the first electrode is the positive electrode, it means that the positive electrode discharge part of the emergency starting power supply is connected with the positive electrode of the vehicle battery, that is, the positive and negative electrodes are not connected in reverse, and the body can normally discharge to charge the vehicle battery, so the body is controlled to normally discharge.

[0057] The step of controlling the body to normally discharge when the first electrode is the positive electrode comprises:

[0058] When the first electrode is the positive electrode, the offset of the resonance peak of the vehicle battery is obtained.

[0059] Based on the offset of the resonance peak of the vehicle battery, the fault state of the vehicle battery is determined.

[0060] When the vehicle battery has no fault, the body is controlled to normally discharge.

[0061] In an embodiment of the present application, the step of determining whether the first electrode is the positive electrode comprises:

[0062] When the first electrode is not the 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 indicates that the positive electrode of the emergency starting power supply and the negative electrode of the vehicle storage battery are connected, that is, the positive and negative electrodes are reversely connected, and if the body discharges to charge the vehicle storage battery, a short circuit problem will occur, so the control body does not 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 assembly comprises:

[0065] Determining the resistance value of the first electrode based on the detection data of the detection assembly.

[0066] Determining the material of the first electrode based on the resistance value of the first electrode.

[0067] It can be understood that the materials of the positive and negative electrodes of the vehicle storage battery are different, so the resistance values are also different, that is, the material of the first electrode can be determined by the resistance value, and then it can be determined whether the first electrode is the positive electrode.

[0068] Therefore, the detection assembly is used to detect the resistance value of the first electrode, and the resistance value of the first electrode can be determined according to the detection data of the detection assembly, and then the material of the first electrode can be determined based on the resistance value of the first electrode, and then it can be determined whether the first electrode is the positive electrode.

[0069] In 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 comprises:

[0070] Obtaining the type of the vehicle storage battery.

[0071] Determining the material of the first electrode based on the type of the vehicle storage battery and the detection data of the detection assembly.

[0072] It can be understood that the type of the vehicle storage battery may cause the resistance value of the positive electrode of the vehicle storage battery to be different, so when determining the material of the first electrode based on the resistance value of the first electrode, the type of the vehicle storage battery is obtained first, and then the standard resistance value of the positive electrode of the vehicle storage battery can be determined based on the type of the vehicle storage battery, and then the detection data of the detection assembly can be combined to determine whether the first electrode is the positive electrode material.

[0073] In an embodiment of the present application, the step of obtaining the type of the vehicle storage battery comprises:

[0074] Obtaining vehicle information.

[0075] Determining the type of the vehicle storage battery based on the vehicle information.

[0076] It can be understood that the vehicle information includes vehicle brand, model, frame identification number, etc.

[0077] In one embodiment of the present application, the detection assembly comprises a first detection electrode, a second detection electrode, a detection power supply, a current detection piece, a protection resistor and a voltage detection piece, one end of the first detection electrode, the detection power supply, the current detection piece, the protection resistor and one end of the second detection electrode are sequentially electrically connected, and the voltage detection piece 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 part is connected with the first electrode, the other end of the first detection electrode and the other end of the second detection electrode are respectively connected with different positions of the first electrode.

[0079] The emergency starting power supply 50 comprises a first emergency starting power supply 501, a second emergency starting power supply 502 and a preheating component 505, the preheating component 505 comprises 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, the second preheating component 5052 is connected to the second emergency starting power supply 502, and the emergency starting power supply detection protection method further comprises:

[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 improve the temperature of the second emergency starting power supply 502. The temperature of the second emergency starting power supply 502 is detected, and 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, and the intelligent degree of heating of the emergency starting power supply 50 is improved.

[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 indicates that the temperature will affect the emergency starting power supply 50, 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, as shown in Figure 2 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 assembly 503, a second stress detection assembly, 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 assembly 503 is installed on the first emergency starting power supply 501 and is used to detect the stress of the first emergency starting power supply 501. The second stress detection assembly is installed on the second emergency starting power supply 502 and 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, and the second preheating component 5052 is connected to the second emergency starting power supply 502. Before the first emergency starting power supply is controlled to supply power to the second preheating component, the method includes:

[0085] Obtaining the stress of the first emergency starting power supply 501 and the second emergency starting power supply 502;

[0086] Based on the stress of the first emergency starting power supply 501 and the second emergency starting power supply 502, determining the real-time temperature of the first emergency starting power supply 501 and the second emergency starting power supply 502;

[0087] Based on the real-time temperature, controlling the working of the first preheating component 5051 and the second preheating component 5052.

[0088] It can be understood 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 state of the emergency starting power supply 50 will cause the stress of the emergency starting power supply 50 to be different. That is, according to the stress of the emergency starting power supply 50, the real-time temperature of the emergency starting power supply 50 can be determined.

[0089] Therefore, the stress of the first emergency starting power supply 501 and the second emergency starting power supply 502 is obtained first, 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 working of the first preheating component 5051 and the second preheating component 5052 is controlled, which improves the intelligent degree of the emergency starting power supply 50 heating. And the real-time temperature of the emergency starting power supply 50 is directly determined by the stress, which is more intelligent than detecting the temperature of the emergency starting power supply 50 by using a temperature sensor and the like.

[0090] It can be understood 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 powered to work, so as to improve the temperature of the first emergency starting power supply 501.

[0091] It can be understood that the mapping relationship between the stress and the real-time temperature of the emergency starting power supply 50 can 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 can be arranged at the outer wall surface of the emergency starting power supply 50, and the stress of the emergency starting power supply 50 is determined according to the strain of the strain gauge.

[0093] In some examples, the emergency starting power supply 50 includes a body and a steel belt 504 sleeved on the body, and the first stress detection assembly 503 includes a strain gauge 5031 arranged on the steel belt 504, and the stress of the emergency starting power supply 50 is determined according to the strain of the strain gauge 5031.

[0094] In an 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 emergency starting power supply 501 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 the real-time stress of the first emergency starting power supply 501 is compared in the stress database to determine the real-time temperature of the first emergency starting power supply 501, and the real-time stress of the second emergency starting power supply 502 is compared in the stress database to determine the real-time temperature of the second emergency starting power supply 502.

[0097] In an 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 state 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 state database includes the stress of the emergency starting power supply 50 at different temperatures of the emergency starting power supply 50 in different health states.

[0099] It can be understood that the temperature and health status of the emergency starting power supply 50 will affect the stress of the emergency starting power supply 50, so 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 obtained first, and 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 compared with the state database, and then the real-time temperature of the first emergency starting power supply 501 is determined, which improves the detection accuracy of the real-time temperature of the first emergency starting power supply 501.

[0100] 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 first, 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 state database, and then the real-time temperature of the second emergency starting power supply 502 is determined, which improves 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 protection device corresponds to the emergency starting power supply detection protection method. As shown in Figure 3 The emergency starting power supply detection protection device includes:

[0102] The acquisition module 201 is configured to determine that the positive electrode discharge part is connected with the first electrode, and acquire detection data of the detection assembly.

[0103] The determination module 202 is configured to determine the material of the first electrode based on the detection data of the detection assembly.

[0104] The judging module 203 is 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 configured to control the sending of prompt information for reminding a user whether the first electrode is a positive electrode.

[0106] According to the third aspect of the present application, the emergency starting power supply 50 comprises a control component configured to execute the above-mentioned emergency starting power supply detection protection method.

[0107] According to the fourth aspect of the present application, as shown in the accompanying drawings, Figure 4 The electronic device can comprise a processor 310, a communications interface 320, a memory 330 and a communications bus 340, wherein the processor 310, the communications interface 320 and the memory 330 can communicate with each other through the communications bus 340. The processor 310 can invoke the logic instructions in the memory 330 to execute the emergency starting power supply detection protection method, which comprises:

[0108] determining that the positive electrode discharge part is connected with the first electrode, and obtaining detection data of the detection assembly;

[0109] judging the material of the first electrode based on the detection data of the detection assembly;

[0110] judging whether the first electrode is a positive electrode based on the material of the first electrode;

[0111] controlling the sending of prompt information for reminding a user whether the first electrode is a positive electrode.

[0112] In addition, the above-mentioned logic instructions in the memory 330 can be implemented in the form of a software functional unit and sold or used as an independent product, which can be stored in a computer readable storage medium. Based on such understanding, the technical solutions of the present application essentially or say the part that contributes to the prior art or part of the technical solutions can be embodied in the form of a software product, which is stored in a storage medium, includes a plurality of instructions to make a computer device (which can be a personal computer, a server, or a network device, etc.) execute all or part of the steps of the method of the present application. The above-mentioned storage medium includes a U disk, a mobile hard disk, a read-only memory (ROM, Read-Only Memory), a random access memory (RAM, Random Access Memory), a magnetic disk or an optical disk and various program code storage media.

[0113] In another aspect, the present application also provides a computer program product, which comprises a computer program stored on a non-transitory computer-readable storage medium, and the computer program comprises program instructions, and when the program instructions are executed by a computer, the computer can execute the emergency starting power detection protection method provided by the above-mentioned methods, and the method comprises the following steps of:

[0114] determining that the positive electrode discharge part is connected with the first electrode, and obtaining detection data of the detection assembly;

[0115] determining the material of the first electrode based on the detection data of the detection assembly;

[0116] judging whether the first electrode is a positive electrode based on the material of the first electrode;

[0117] controlling to send prompt information, and the prompt information is used to remind a user whether the first electrode is a positive electrode.

[0118] According to the embodiments of the fifth aspect of the present application, the present application also comprises a non-transitory computer-readable storage medium, which stores a computer program, and when the computer program is executed by a processor, the computer program realizes the emergency starting power detection protection method provided by the above-mentioned methods, and the method comprises the following steps of:

[0119] determining that the positive electrode discharge part is connected with the first electrode, and obtaining detection data of the detection assembly;

[0120] determining the material of the first electrode based on the detection data of the detection assembly;

[0121] judging whether the first electrode is a positive electrode based on the material of the first electrode;

[0122] controlling to send prompt information, and the prompt information is used to remind a user whether the first electrode is a positive electrode.

[0123] The device embodiments described above are only schematic, and the units shown as separate components can or can not be physically separate, and the components shown as units can or can not be physical units, that is, they can be located in one place, or can be distributed on multiple network units. According to actual needs, part or all of the modules can be selected to achieve the purpose of the present embodiment scheme. Those skilled in the art can understand and implement it without creative labor.

[0124] Those skilled in the art can clearly understand the implementation of the various embodiments by means of software and necessary general hardware platforms through the description of the above embodiments, and of course, the embodiments can also be implemented by hardware. Based on such understanding, the above technical solutions 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 a ROM / RAM, a magnetic disk, an optical disk, etc., and includes a plurality of instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) to execute the methods of the various embodiments or some parts of the embodiments.

[0125] Finally, it should be noted that the above embodiments are only used to illustrate the present application, and are not limiting to the present application. Although the present application is described in detail with reference to the embodiments, those skilled in the art should understand that various combinations, modifications or equivalent replacements of the technical solutions of the present application do not deviate from the spirit and scope of the present application, and should be covered in the scope of the claims of the present application.

Claims

1. A detection and protection method for emergency start-up power supplies, applied to emergency start-up power supplies, characterized in that, The emergency start-up power supply includes a main body and a detection component. The detection component is connected to the main body. The vehicle battery has a first electrode and a second electrode. The main body has a positive discharge section and a negative discharge section. When the positive discharge section is connected to the first electrode, the detection component is used to detect the material of the first electrode. The emergency start-up power supply detection and protection method includes: Determine that the positive discharge section is connected to the first electrode, and acquire the detection data of the detection component; Based on the detection data from the detection component, the material of the first electrode is determined; Based on the material of the first electrode, determine whether the first electrode is a positive electrode; The system issues a prompt message to remind the user whether the first electrode is the positive electrode. The step of determining the material of the first electrode based on the detection data from the detection component includes: Based on the detection data from the detection component, the resistance value of the first electrode is determined; The material of the first electrode is determined based on its resistance value.

2. The emergency start-up power supply detection and protection method according to claim 1, characterized in that, The step of determining whether the first electrode is a positive electrode includes: When the first electrode is the positive electrode, the body is controlled to discharge normally.

3. The emergency start-up power supply detection and protection method according to claim 1, characterized in that, The step of determining whether the first electrode is a positive electrode includes: When the first electrode is not the positive electrode, the body is controlled not to discharge.

4. The emergency start-up 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 its resistance 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 from the detection component.

5. The emergency start-up power supply detection and protection method according to claim 4, characterized in that, The step of obtaining the type of the vehicle battery includes: Obtain vehicle information; Based on the vehicle information, the type of the vehicle battery is determined.

6. An emergency start-up power supply, characterized in that, It includes a control component for performing the emergency start-up power supply detection and protection method as described in any one of claims 1 to 5.

7. An electronic device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that, When the processor executes the computer program, it implements the emergency start-up power supply detection and protection method according to any one of claims 1 to 5.

8. 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 the processor, it implements the emergency start-up power supply detection and protection method according to any one of claims 1 to 5.

Citation Information

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