Charging method, device, apparatus, and storage medium

By identifying the global identifier of the charging device and analyzing the power supply operator information, the system automatically selects the target power supply operator for charging, solving the problem of low charging efficiency caused by users scanning codes one by one to select an operator, and achieving a more efficient and accurate charging process.

CN121361369BActive Publication Date: 2026-04-17MOS ZHILIAN TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-12-23
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Users need to scan QR codes from different operators one by one at charging stations to find the best price or service, resulting in low charging efficiency.

Method used

By identifying the charging code, the preset charging device is determined, and the power supply service information of multiple associated power supply operators is analyzed. Based on the analysis results, the target power supply operator is selected to start charging. The accuracy of search and selection is improved by using global device identifiers and coding rules.

Benefits of technology

It improves the charging efficiency and success rate of charging equipment, ensures uninterrupted charging process, and provides more comprehensive user reference information to select the target power supply operator.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application relates to a charging method, apparatus, device, and storage medium. The method includes: in response to the triggering of the identification of a charging code of a preset power operator, determining a preset charging device corresponding to the charging code, wherein the preset charging device is used to charge a device to be charged; determining multiple power operators associated with the preset charging device; analyzing the power supply service information of the multiple power operators to obtain analysis results; and based on the analysis results, determining a target power operator from the multiple power operators, so that the target power operator activates the preset charging device to charge the device to be charged. This method can improve charging efficiency.
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Description

Technical Field

[0001] This application relates to the field of new energy technology, and in particular to a charging method, apparatus, device, and storage medium. Background Technology

[0002] With the booming development of the new energy vehicle industry, the number of new energy vehicles on the road has shown a continuous and rapid growth trend, resulting in a surge in users' charging demand.

[0003] Charging stations often display multiple QR codes for different operators on the same charging gun, allowing users to choose the appropriate operator for their vehicle's charging service. To find the best price or service, users have to scan each QR code individually for comparison, reducing charging efficiency. Summary of the Invention

[0004] Based on this, this application provides a charging method, apparatus, device, and storage medium to improve the charging efficiency of charging devices.

[0005] On the one hand, a charging method is provided, the method comprising:

[0006] In response to the activation of the charging code of the preset power operator, the preset charging device corresponding to the charging code is determined, wherein the preset charging device is used to charge the device to be charged.

[0007] Identify the multiple power operators associated with the preset charging equipment;

[0008] The power supply service information of multiple power supply operators was analyzed, and the analysis results were obtained; and

[0009] Based on the analysis results, a target power supply operator is identified from multiple power supply operators so that the target power supply operator can activate the preset charging equipment to charge the equipment to be charged.

[0010] In some embodiments, the step of determining multiple power supply operators associated with a preset charging device includes:

[0011] Based on the identifier of the preset charging device in the preset power supply operator, determine the preset global device identifier corresponding to the preset charging device;

[0012] Based on the preset global device identifier of the preset charging device, determine the identifier of the preset charging device among multiple power supply operators; and

[0013] Based on the identifiers of the preset charging devices among multiple power supply operators, the multiple power supply operators associated with the preset charging devices are determined.

[0014] In some embodiments, before the step of determining the preset global device identifier corresponding to the preset charging device based on the identifier of the preset charging device in the preset power supply operator, the method further includes:

[0015] Identify matching charging equipment from multiple power supply operators, including preset charging equipment;

[0016] Retrieve the identifier of the matching charging device, and retrieve the global device identifier of the matching charging device; and

[0017] Establish and store the association between the identifier of the matching charging device and the global device identifier of the matching charging device.

[0018] In some embodiments, the step of determining a matching charging device among multiple power supply operators includes:

[0019] Obtain the codes of charging equipment from multiple power supply operators;

[0020] The encoding is parsed using the encoding rule parsing method to obtain the feature information of charging equipment from multiple power supply operators; and

[0021] Based on the feature information, the matching charging equipment among multiple power supply operators is determined.

[0022] In some embodiments, after parsing the encoding according to the encoding rule parsing method to obtain the feature information of charging equipment from multiple power supply operators, the process includes:

[0023] Detect whether there have been changes to the coding rules of multiple power supply operators; and

[0024] In response to the determination that the coding rules of a power supply operator have changed, the changed coding rules are parsed to obtain an updated coding rule parsing method, and the process is returned to parse the code according to the coding rule parsing method to obtain the feature information of the charging equipment of multiple power supply operators.

[0025] In some embodiments, after determining a target power supply operator from multiple power supply operators based on the analysis results, and enabling the target power supply operator to activate a preset charging device to charge the device to be charged, the method further includes:

[0026] Determine whether the preset charging device has successfully charged the device to be charged; and

[0027] In response to the determination that the preset charging device has failed to charge the device to be charged, the preset charging device is activated to charge the device to be charged through the preset power supply operator.

[0028] In some embodiments, based on the analysis results, a target power supply operator is determined from multiple power supply operators, so that the target power supply operator initiates a pre-set charging equipment charging step for the device to be charged, including:

[0029] Based on the analysis results, multiple power supply operators were ranked.

[0030] The system displays the sorted power supply operators and their corresponding service information, allowing users to select their target power supply operator from the sorted list.

[0031] On the other hand, embodiments of this application also provide a charging device, which includes:

[0032] The charging device determination module is used to determine the preset charging device corresponding to the charging code after the charging code of the preset power supply operator is triggered for recognition, wherein the preset charging device is used to charge the device to be charged.

[0033] The operator determination module is used to determine the multiple power supply operators associated with the preset charging equipment;

[0034] The analysis module is used to analyze power supply service information from multiple power supply operators and obtain analysis results; and

[0035] The target operator determination module is used to determine the target power operator from multiple power operators based on the analysis results, so that the target power operator can start the preset charging equipment to charge the equipment to be charged.

[0036] In some embodiments, the operator determination module includes:

[0037] The global device identifier determination submodule is used to determine the preset global device identifier corresponding to the preset charging device based on the identifier of the preset charging device in the preset power supply operator.

[0038] The identifier determination submodule is used to determine the identifier of a preset charging device among multiple power supply operators based on the preset global device identifier of the preset charging device; and

[0039] The associated operator determination submodule is used to determine the multiple power supply operators associated with a preset charging device based on the identifier of the preset charging device among multiple power supply operators.

[0040] In some embodiments, the global device identifier determination submodule is used for:

[0041] Identify matching charging equipment from multiple power supply operators, including preset charging equipment;

[0042] Retrieve the identifier of the matching charging device, and retrieve the global device identifier of the matching charging device; and

[0043] Establish and store the association between the identifier of the matching charging device and the global device identifier of the matching charging device.

[0044] In some embodiments, the global device identifier determination submodule is further configured to:

[0045] Obtain the codes of charging equipment from multiple power supply operators;

[0046] The encoding is parsed using the encoding rule parsing method to obtain the feature information of charging equipment from multiple power supply operators; and

[0047] Based on the feature information, the matching charging equipment among multiple power supply operators is determined.

[0048] In some embodiments, the charging device further includes:

[0049] The rule detection module is used to detect whether there have been changes to the coding rules of multiple power supply operators; and

[0050] The rule parsing module is used to respond to the determination that the coding rules of the power supply operator have changed, to parse the changed coding rules, to obtain the updated coding rule parsing method, and to return the steps of parsing the code according to the coding rule parsing method to obtain the feature information of the charging equipment of multiple power supply operators.

[0051] In some embodiments, the charging device further includes:

[0052] The charging judgment module is used to determine whether the preset charging device has successfully charged the device to be charged; and

[0053] The startup module is used to start the preset charging device to charge the device to be charged in response to the determination that the preset charging device has failed to charge the device to be charged.

[0054] In some embodiments, the target operator determination module includes:

[0055] The sorting submodule is used to sort multiple power supply operators based on the analysis results;

[0056] The display submodule is used to show the sorted power supply operators and their corresponding service information, so that users can select the target power supply operator from the sorted list.

[0057] In another aspect, embodiments of this application provide a computer device, including: a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor executes the computer program to implement the above method steps.

[0058] In another aspect, embodiments of this application provide a computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements the above method steps.

[0059] The aforementioned charging method, apparatus, computer equipment, and storage medium, after the charging code of the preset power supply operator is triggered and identified, first determine the preset charging device corresponding to the charging code, then determine the multiple power supply operators associated with the preset charging device, analyze the power supply service information of the multiple power supply operators, and determine the target power supply operator based on the analysis results, so as to start the preset charging device to charge the device to be charged through the target power supply operator, thereby improving charging efficiency. Attached Figure Description

[0060] Figure 1 An application environment diagram of the charging method provided in the embodiments of the present invention;

[0061] Figure 2 A schematic flowchart of the charging method provided in an embodiment of the present invention;

[0062] Figure 3 This is another schematic diagram of the charging method provided in an embodiment of the present invention;

[0063] Figure 4 This is a schematic diagram illustrating an application scenario of the charging method provided in an embodiment of the present invention;

[0064] Figure 5 This is a structural block diagram of a charging device provided in an embodiment of the present invention;

[0065] Figure 6 An internal structural diagram of a computer device provided in an embodiment of the present invention. Detailed Implementation

[0066] To make the objectives, technical solutions, and advantages of this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this application.

[0067] The charging method provided in this application can be applied to, for example... Figure 1In the application environment shown, server 1 communicates with first terminal 2 and second terminal 3 via a network. First terminal 2 integrates a power supply operator's system. The user scans a charging code set on a charging device by a preset power supply operator via second terminal 3 to trigger the identification of that code. Upon triggering the identification of the charging code, server 1 first determines the preset charging device corresponding to the code, which is used to charge the device to be charged. Then, it identifies multiple power supply operators associated with the preset charging device. Next, it analyzes the power supply service information of these multiple power supply operators to obtain analysis results. Finally, based on the analysis results, it determines the target power supply operator from among the multiple operators. Finally, it uses first terminal 2 to activate the preset charging device of the target power supply operator to charge the device to be charged. Server 1 can be implemented using a standalone server or a server cluster consisting of multiple servers. First terminal 2 and second terminal 3 can be, but are not limited to, various personal computers, laptops, smartphones, tablets, and portable wearable devices.

[0068] In one embodiment, such as Figure 2 As shown, a charging method is provided, which is applied to Figure 1 Taking server 1 as an example, the explanation includes the following steps:

[0069] Step S101: In response to the activation of the charging code of the preset power operator, the preset charging device corresponding to the charging code is determined, wherein the preset charging device is used to charge the device to be charged.

[0070] Charging equipment refers to devices used to charge other devices, such as charging piles. Power supply operators are companies or organizations specializing in the construction, operation, and management of charging facilities. Power supply operators provide charging codes on the charging equipment, which users scan to request charging services. These charging codes integrate information such as the charging equipment's identification, the power supply operator's information, charging service information, payment information, and status information. It should be noted that a single charging device often has multiple charging codes provided by multiple power supply operators, meaning multiple power supply operators provide charging services through the same charging device.

[0071] In practice, when a user scans any charging code set on a preset charging device using the second terminal 3, a request to generate and identify the charging code is triggered. The second terminal 3 sends this request to the server 1. After receiving the request, the server 1 first parses the charging code to obtain the identifier of the preset charging device in the preset power supply operator, and then determines the preset charging device based on the identifier.

[0072] Step S102: Determine the multiple power supply operators associated with the preset charging device;

[0073] Because different power supply operators use different methods to identify charging equipment, the same charging equipment has different identifiers in different power supply operators.

[0074] In advance, charging equipment across different power providers can be organized, and charging devices with different identifiers but essentially the same device can be set as matching charging devices. Then, these matching charging devices can be uniquely identified globally, for example, using a Global Equipment Identifier (GEID). Finally, the identifiers of these matching charging devices across multiple power providers and the GEID can be linked and stored.

[0075] Once the identifier of the preset charging device in the preset power supply operator is parsed from the charging code, the global device identifier of the preset charging device can be found based on the association between the identifiers of the matching charging devices in multiple power supply operators and the global device identifier. Then, the multiple power supply operators associated with the preset charging device can be found based on the global device identifier.

[0076] Because a global device identifier is set for the preset charging device in this embodiment, the preset charging device can be uniquely identified globally, thus improving the accuracy of finding the associated power supply operator.

[0077] Specifically, suppose the identifier of charging device X is operatorA_charger1 in power operator A, operatorB_charger1 in power operator B, and operatorC_charger2 in power operator C. Then, charging device X can be considered a matching charging device in power operators A, B, and C, and the global device identifier of this matching charging device X can be set to operator_charger1.

[0078] Similarly, suppose the identifier of charging device Y is operatorA_charger3 in power operator A, operatorB_charger2 in power operator B, and operatorC_charger1 in power operator C. Then, charging device Y can be considered a matched charging device in power operators A, B, and C, and the global device identifier of the matched charging device Y can be set to operator_charger2.

[0079] Furthermore, assuming that the identifier of charging device Z is operatorA_charger2 in power operator A, operatorB_charger3 in power operator B, and operatorC_charger3 in power operator C, then charging device Z can also be considered a matching charging device in power operators A, B, and C. The global device identifier of the matching charging device Z can be set to operator_charger3.

[0080] Then, establish an association relationship between the identifiers of the matched charging devices X, Y, and Z in power supply operators A, B, and C, respectively, and the global device identifiers of the matched charging devices X, Y, and Z, and store them to obtain the mapping relationship table shown in Table 1 below.

[0081] Table 1 Mapping Relationship Table

[0082]

[0083] Assuming the default power provider is A, and the identifier of the default charging device within power provider A is operatorA_charger3, then according to Table 1, the global device identifier of the default charging device can be found to be operator_charger2. Furthermore, the identifiers associated with operator_charger2 within each power provider are operatorA_charger3, operatorB_charger2, and operatorC_charger1. Since these identifiers contain the power provider's identification information and the default charging device's identification information within the power provider, parsing these identifiers reveals that the default charging device is associated with power providers A, B, and C.

[0084] Step S103: Analyze the power supply service information of multiple power supply operators to obtain the analysis results;

[0085] The power supply service information includes real-time prices, charging success rates, service quality, user ratings, and channel preferences of power supply operators. In some embodiments, the analysis results may include scoring; for example, based on the aforementioned power supply service information, the services of multiple power supply operators can be scored from multiple dimensions to obtain analysis results containing scores. Furthermore, a multi-dimensional comprehensive evaluation model can be set up to score multiple power supply operators from dimensions such as price, charging success rate, service quality, user reviews, and channel preferences. The model weights can be dynamically adjusted or customized based on SaaS (Software as a Service) channels; for example, high-end brand terminals may prioritize success rate / service quality, while mid-to-low-end terminals may prioritize price.

[0086] In some embodiments, the analysis results may include a ranking of multiple power supply operators. For example, information on multiple power supply operators may be displayed in order of their scores.

[0087] Step S104: Based on the analysis results, determine the target power supply operator from multiple power supply operators so that the target power supply operator can start the preset charging equipment to charge the device to be charged.

[0088] The target power supply operator can be the operator with the highest charging efficiency or the best price among multiple power supply operators.

[0089] In some embodiments, after receiving scores from multiple power supply operators, the server sets the power supply operator with the highest score as the target power supply operator, and then requests to call the target power supply operator's initiation charging interface to start the preset charging device to charge the device to be charged. In this embodiment, selecting the target power supply operator for charging from multiple power supply operators through analysis results can improve charging efficiency or reduce charging costs.

[0090] In some embodiments, based on the analysis results, a target power supply operator is determined from multiple power supply operators, so that the target power supply operator initiates a pre-set charging equipment charging step for the device to be charged, including:

[0091] (A1) Based on the analysis results, the multiple power supply operators are ranked;

[0092] (A2) Display the sorted power supply operators and their corresponding service information so that users can select the target power supply operator from the sorted power supply operators.

[0093] While sorting power supply operators, the system can also display their charging service information, such as charging prices, charging success rates, service quality, and service reviews, providing users with more comprehensive reference information when choosing a target power supply operator.

[0094] In some embodiments, after determining a target power supply operator from multiple power supply operators based on the analysis results, and enabling the target power supply operator to activate a preset charging device to charge the device to be charged, the method further includes:

[0095] (B1) Determine whether the preset charging device has successfully charged the device to be charged; and

[0096] (B2) In response to determining that the preset charging device has failed to charge the device to be charged, the preset charging device is activated to charge the device to be charged through the preset power supply operator.

[0097] Furthermore, such as Figure 4 As shown, after the target power operator starts charging the device with a preset charging device, server 1 can check whether the preset charging device has successfully charged the device after a preset time period. If it determines that the preset charging device has failed to charge the device, it can switch back to the target power operator to start the preset charging device, improving the charging success rate and ensuring the charging process is not interrupted. If it determines that the preset charging device has successfully charged the device, it will notify the user of successful charging via the second terminal 3. Furthermore, the server can cache the target power operator's information and provide it directly to the user when the user scans the code again, further improving charging efficiency.

[0098] The following is combined Figure 3 and 4 A detailed analysis is conducted on step S102, which determines the multiple power supply operators associated with the preset charging equipment. Steps S201-S205 involve establishing associations between the preset charging equipment and multiple power supply operators in advance, while steps S206-S208 detail the specific process of determining the multiple power supply operators associated with the preset charging equipment during actual charging. Figure 3 As shown, the charging method of this application further includes the following steps:

[0099] Step S201: Obtain the codes of charging equipment from multiple power supply operators;

[0100] Step S202: Parse the code according to the encoding rule parsing method to obtain the feature information of charging equipment of multiple power supply operators;

[0101] Step S203: Based on the feature information, determine the matching charging equipment among multiple power supply operators, wherein the matching charging equipment includes preset charging equipment.

[0102] Step S204: Obtain the identifier of the matching charging device and the global device identifier of the matching charging device.

[0103] Step S205: Establish and store the association between the identifier of the matched charging device and the global device identifier of the matched charging device;

[0104] Step S206: Determine the preset global device identifier corresponding to the preset charging device based on the identifier of the preset charging device in the preset power supply operator;

[0105] Step S207: Determine the identifier of the preset charging device among multiple power supply operators based on the preset global device identifier of the preset charging device.

[0106] Step S208: Determine the multiple power supply operators associated with the preset charging device based on the identifier of the preset charging device among multiple power supply operators.

[0107] The coding methods of charging equipment from different power supply operators are heterogeneous. Therefore, server 1 can deeply connect to the power supply operator's system on the first terminal 2 to obtain the codes of charging equipment from multiple power supply operators for analysis.

[0108] By analyzing the coding rules of various power supply operators, a coding rule parsing method was obtained. Then, based on this parsing method, the codes were analyzed to obtain the characteristic information of the power supply operators' charging equipment. This characteristic information includes the charging equipment's geographical location, type, serial number segment, rated power, and voltage range. The geographical location of the charging equipment can be represented by latitude and longitude. The type of charging equipment includes fast and slow charging types, which can be represented by the fast / slow charging ratio. Table 2-4 below lists the characteristic information of the charging equipment of power supply operators A, B, and C.

[0109] Table 2. Characteristic information of charging equipment of power supply operator A

[0110]

[0111] Table 3. Characteristic information of charging equipment of power supply operator B

[0112]

[0113] Table 4. Characteristic information of charging equipment of power supply operator C

[0114]

[0115] In some embodiments, after parsing the encoding according to the encoding rule parsing method to obtain the feature information of charging equipment from multiple power supply operators, the process includes:

[0116] Detect whether there have been changes to the coding rules of multiple power supply operators; and

[0117] In response to the determination that the coding rules of a power supply operator have changed, the changed coding rules are parsed to obtain an updated coding rule parsing method, and the process is returned to parse the code according to the coding rule parsing method to obtain the feature information of the charging equipment of multiple power supply operators.

[0118] Whether a charging device is a match can be determined by judging whether the feature information of a certain charging device matches among multiple power supply operators. In response to determining that the feature information of the charging device matches, the charging device is determined to be a matched charging device among multiple power supply operators.

[0119] In some embodiments, charging devices with the same geographical location can be screened from multiple power supply operators. Since charging devices within the same charging station are densely distributed and may even share latitude and longitude coordinates, geographical location alone is insufficient to determine whether charging devices belong to the same entity. Therefore, other characteristic information can be combined to determine whether charging devices with the same geographical location are compatible.

[0120] Furthermore, when data updates to charging equipment are detected in the power supply operator's system, such as the addition or removal of charging equipment, the mapping relationship of the matching charging equipment can also be updated.

[0121] Based on Table 2-4 and the steps described above for determining the matching charging devices, the charging devices operatorA_charger1 of power operator A, operatorB_charger1 of power operator B, and operatorC_charger2 of power operator C are matching charging devices, and their global identifier can be set to operator_charger1. The charging devices operatorA_charger2 of power operator A, operatorB_charger3 of power operator B, and operatorC_charger3 of power operator C are also matching charging devices, and their global identifier can be set to operator_charger2. The charging devices operatorA_charger3 of power operator A, operatorB_charger2 of power operator B, and operatorC_charger1 of power operator C are also matching charging devices, and their global identifier can be set to operator_charger3.

[0122] Obtain the identifier of the matching charging device and the global device identifier of the matching charging device. Based on the relationship between them, a mapping table as shown in Table 1 can be obtained.

[0123] The system filters out target identifiers from the identifiers of matching charging devices across multiple power operators that match the identifiers of preset charging devices across preset power operators. Then, it searches for global device identifiers associated with the target identifiers and uses these associated global device identifiers as preset global device identifiers.

[0124] Assuming the default power provider is A, and the identifier of the default charging device within power provider A is operatorA_charger3, then according to Table 1, the global device identifier of the default charging device can be found to be operator_charger2. Furthermore, the identifiers associated with operator_charger2 within each power provider are operatorA_charger3, operatorB_charger2, and operatorC_charger1. Since these identifiers contain the power provider's identification information and the default charging device's identification information within the power provider, parsing these identifiers reveals that the default charging device is associated with power providers A, B, and C.

[0125] In the above charging method, after the charging code of the preset power supply operator is triggered and identified, the preset charging device corresponding to the charging code is first determined, then the multiple power supply operators associated with the preset charging device are determined, and then the power supply service information of the multiple power supply operators is analyzed. Based on the analysis results, the target power supply operator is determined from the multiple power supply operators so that the target power supply operator can start the preset charging device to charge the device to be charged, thereby improving the charging efficiency of the device to be charged.

[0126] It should be understood that, although Figure 3-4 The steps in the flowchart are shown sequentially as indicated by the arrows, but these steps are not necessarily executed in the order indicated by the arrows. Unless otherwise specified herein, there is no strict order in which these steps are executed, and they can be performed in other orders. Figure 3-4 At least some of the steps in the process may include multiple sub-steps or multiple stages. These sub-steps or stages are not necessarily completed at the same time, but can be executed at different times. The execution order of these sub-steps or stages is not necessarily sequential, but can be executed in turn or alternately with other steps or at least some of the sub-steps or stages of other steps.

[0127] In one embodiment, such as Figure 5As shown, a charging device 30 is provided, including: a charging device determination module 301, an operator determination module 302, an analysis module 303, and a target operator determination module 304, wherein:

[0128] The charging device determination module 301 is used to determine the preset charging device corresponding to the charging code after the charging code of the preset power supply operator is triggered for recognition, wherein the preset charging device is used to charge the device to be charged; the operator determination module 302 is used to determine multiple power supply operators associated with the preset charging device; the analysis module 303 is used to analyze the power supply service information of multiple power supply operators and obtain the analysis results; the target operator determination module 304 is used to determine the target power supply operator from multiple power supply operators based on the analysis results, so that the target power supply operator starts the preset charging device to charge the device to be charged.

[0129] In some embodiments, the operator determination module 302 includes: a global device identifier determination submodule, an identifier determination submodule, and an associated operator determination submodule. The global device identifier determination submodule is used to determine a preset global device identifier corresponding to the preset charging device based on the identifier of the preset charging device in a preset power supply operator; the identifier determination submodule is used to determine the identifier of the preset charging device in multiple power supply operators based on the preset global device identifier of the preset charging device; and the associated operator determination submodule is used to determine multiple power supply operators associated with the preset charging device based on the identifier of the preset charging device in multiple power supply operators.

[0130] In some embodiments, the global device identifier determination submodule is used to: determine a matching charging device among multiple power supply operators, wherein the matching charging device includes a preset charging device; obtain the identifier of the matching charging device, and obtain the global device identifier of the matching charging device; and establish an association relationship between the identifier of the matching charging device and the global device identifier of the matching charging device and store them.

[0131] In some embodiments, the global device identifier determination submodule is further configured to: obtain the codes of charging devices from multiple power supply operators; parse the codes according to the coding rule parsing method to obtain the feature information of the charging devices from multiple power supply operators; and determine the matching charging device from the multiple power supply operators based on the feature information.

[0132] In some embodiments, the charging device further includes a rule detection module and a rule parsing module. The rule detection module is used to detect whether any of the multiple power supply operators have changed their coding rules; and the rule parsing module, in response to determining that a power supply operator's coding rule has changed, parses the changed coding rule to obtain an updated coding rule parsing method, and returns a step of parsing the code according to the coding rule parsing method to obtain the feature information of the charging equipment from the multiple power supply operators.

[0133] In some embodiments, the charging device further includes a charging determination module and a startup module. The charging determination module is used to determine whether a preset charging device has successfully charged the device to be charged; and the startup module is used to, in response to determining that the preset charging device has failed to successfully charge the device to be charged, start the preset charging device to charge the device to be charged via a preset power supply operator.

[0134] In some embodiments, the target operator determination module 304 includes a sorting submodule and a display submodule. The sorting submodule is used to sort multiple power supply operators based on analysis results; the display submodule is used to display the sorted power supply operators and their corresponding service information, allowing users to select a target power supply operator from the sorted list.

[0135] Specific limitations regarding the charging device can be found in the limitations regarding the charging method described above, and will not be repeated here. Each module in the aforementioned charging device can be implemented entirely or partially through software, hardware, or a combination thereof. These modules can be embedded in hardware or independently of the processor in the computer device, or stored in software in the memory of the computer device, so that the processor can call and execute the operations corresponding to each module.

[0136] In one embodiment, a computer device is provided, which may be a server, and its internal structure diagram may be as follows: Figure 6 As shown. The computer device includes a processor, memory, network interface, and database connected via a system bus. The processor provides computing and control capabilities. The memory includes non-volatile storage media and internal memory. The non-volatile storage media stores the operating system, computer programs, and database. The internal memory provides an environment for the operation of the operating system and computer programs in the non-volatile storage media. The database stores identifier data. The network interface communicates with external terminals via a network connection. When executed by the processor, the computer program implements a charging method.

[0137] Those skilled in the art will understand that Figure 6The structure shown is merely a block diagram of a portion of the structure related to the present application and does not constitute a limitation on the computer device to which the present application is applied. Specific computer devices may include more or fewer components than those shown in the figure, or combine certain components, or have different component arrangements.

[0138] In one embodiment, a computer device is provided, including a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor executes the computer program to implement the above method steps.

[0139] In one embodiment, a computer-readable storage medium is provided having a computer program stored thereon, which, when executed by a processor, implements the above method steps.

[0140] Those skilled in the art will understand that all or part of the processes in the methods of the above embodiments can be implemented by a computer program instructing related hardware. The computer program can be stored in a non-volatile computer-readable storage medium. When executed, the computer program can include the processes of the embodiments of the above methods. Any references to memory, storage, databases, or other media used in the embodiments provided in this application can include non-volatile and / or volatile memory. Non-volatile memory may include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM), or flash memory. Volatile memory may include random access memory (RAM) or external cache memory. By way of illustration and not limitation, RAM is available in a variety of forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), dual data rate SDRAM (DDRSDRAM), enhanced SDRAM (ESDRAM), synchronous link DRAM (SLDRAM), RAMbus direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and memory bus dynamic RAM (RDRAM), etc.

[0141] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0142] The embodiments described above are merely illustrative of several implementation methods of this application, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the invention patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this patent application should be determined by the appended claims.

Claims

1. A charging method, characterized in that, The method includes: In response to the activation of a charging code from a preset power provider, a preset charging device corresponding to the charging code is determined, wherein the preset charging device is used to charge the device to be charged. Identify the multiple power supply operators associated with the preset charging device; The power supply service information of the multiple power supply operators was analyzed to obtain the analysis results; and Based on the analysis results, a target power supply operator is determined from the plurality of power supply operators, so that the target power supply operator can activate the preset charging equipment to charge the device to be charged.

2. The charging method according to claim 1, characterized in that, The step of determining the multiple power supply operators associated with the preset charging device includes: Based on the identifier of the preset charging device in the preset power supply operator, determine the preset global device identifier corresponding to the preset charging device; Based on the preset global device identifier of the preset charging device, the identifier of the preset charging device among the multiple power supply operators is determined; and Based on the identifier of the preset charging device among the multiple power supply operators, the multiple power supply operators associated with the preset charging device are determined.

3. The charging method according to claim 2, characterized in that, Before the step of determining the preset global device identifier corresponding to the preset charging device based on the identifier of the preset charging device in the preset power supply operator, the method further includes: Determine the matching charging equipment among the plurality of power supply operators, wherein the matching charging equipment includes the preset charging equipment; Obtain the identifier of the matched charging device among the multiple power supply operators, and obtain the global device identifier of the matched charging device; and The identifiers of the matched charging devices in the multiple power supply operators and the global device identifiers of the matched charging devices are associated and stored.

4. The charging method according to claim 3, characterized in that, The step of determining the matching charging equipment among the multiple power supply operators includes: Obtain the codes of the charging equipment from the multiple power supply operators; The encoding is parsed according to the encoding rule parsing method to obtain the feature information of the charging equipment of the multiple power supply operators; and Based on the aforementioned feature information, the matching charging equipment among the multiple power supply operators is determined.

5. The charging method according to claim 4, characterized in that, After the step of parsing the code according to the encoding rule parsing method to obtain the feature information of the charging equipment of the multiple power supply operators, the following steps are included: Detect whether any of the multiple power supply operators have changed their coding rules; and In response to the determination that the coding rules of a power supply operator have changed, the changed coding rules are parsed to obtain an updated coding rule parsing method, and the process is returned to parse the code according to the coding rule parsing method to obtain the feature information of the charging equipment of the multiple power supply operators.

6. The charging method according to claim 1, characterized in that, After determining the target power operator from the plurality of power operators based on the analysis results, and enabling the target power operator to activate the preset charging equipment to charge the device to be charged, the method further includes: Determine whether the preset charging device successfully charges the device to be charged; and In response to determining that the preset charging device has failed to charge the device to be charged, the preset power supply operator activates the preset charging device to charge the device to be charged.

7. The charging method according to claim 1, characterized in that, The step of determining a target power supply operator from among the multiple power supply operators based on the analysis results, so that the target power supply operator can activate the preset charging equipment to charge the device to be charged, includes: Based on the analysis results, the multiple power supply operators are ranked. The system displays the sorted power supply operators and their corresponding service information, allowing users to select the target power supply operator from the sorted list.

8. A charging device, characterized in that, The device includes: The charging device determination module is used to determine the preset charging device corresponding to the charging code after the charging code of the preset power operator is triggered for recognition, wherein the preset charging device is used to charge the device to be charged. The operator determination module is used to determine multiple power supply operators associated with the preset charging device; The analysis module is used to analyze the power supply service information of the multiple power supply operators and obtain analysis results; and The target operator determination module is used to determine a target power supply operator from the plurality of power supply operators based on the analysis results, so that the target power supply operator can start the preset charging equipment to charge the device to be charged.

9. A computer device, comprising: A memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that the processor, when executing the computer program, implements the steps of the method according to any one of claims 1 to 7.

10. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by a processor, it implements the steps of the method according to any one of claims 1 to 7.

Citation Information

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