Battery replacement data management method and equipment based on battery replacement service scene, and medium

By setting up access rules and business function ownership areas in battery swap data management, the problem of disconnection between battery swap data and business scenarios is solved, the standardized management and security of data are realized, and the availability of data in multiple scenarios and the scalability of the system is improved.

CN120278370APending Publication Date: 2025-07-08AULTON NEW ENERGY AUTOMOBILE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202411042191.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Priority Date
2023-12-29
Filing Date
2024-07-31
Publication Date
2025-07-08

AI Technical Summary

Technical Problem

In the traditional battery swap data management method, battery swap data is not associated with the business scenario, resulting in a single business function that can be realized by the data, lack of standardized management, and it is easy to have data islands, increasing the difficulty of user operation.

Method used

Receive battery swap data through pre-set access rules, perform data analysis and match the business function home area, perform data management according to the business function analysis rules, generate business scenario display information, and ensure data security and availability.

Benefits of technology

It realizes the close integration of battery swap data with business scenarios, improves the availability and standardized management of data in multiple business scenarios, eliminates data silos, and enhances data security and system scalability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the invention discloses a power conversion data management method and device based on a power conversion service scene and a medium, and relates to the technical field of power conversion data management, and the method comprises the steps: receiving power conversion data sent by a plurality of admission data parties through a preset access rule; performing data analysis on the plurality of pieces of power conversion data to match at least one business function attribution area corresponding to each piece of power conversion data; and according to the at least one service function attribution area corresponding to each piece of power conversion data, performing service function analysis on the power conversion data according to a preset service function analysis rule of the service function attribution area, and generating at least one piece of service scene display information so as to realize management of the power conversion data. According to the invention, the security of the platform can be guaranteed, the potential data security risk caused by access of unauthorized equipment is avoided, the availability of the power conversion data in a plurality of service scenes is improved, the realization of subsequent service scene requirements is facilitated, the standardized management of the power conversion data is improved, and the island of the power conversion data is eliminated.
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Description

[0001] This application claims priority based on the invention patent application filed with the China National Intellectual Property Administration on December 29, 2023, with the application number 202311867145.7 and the invention title "A Method and Device for Managing Battery Swapping Data Based on Battery Swapping Business Scenarios". The entire text of the above-mentioned Chinese patent application is incorporated herein by reference. Technical Field

[0002] This specification relates to the technical field of battery swapping data management, and particularly to a method, device, and medium for managing battery swapping data based on battery swapping business scenarios. Background Art

[0003] With the development of the new energy vehicle industry, more and more battery swapping data is collected during battery swapping through Internet of Things devices. By managing the battery swapping data during the battery swapping process, it can ensure the safe operation of battery swapping vehicles and battery swapping station equipment, and can also provide a reference data source for the improvement and optimization of the enterprise's battery swapping business.

[0004] Currently, there are many types and large amounts of battery swapping data, and it comes from various devices. In order to manage the battery swapping data, various types of battery swapping data are usually stored in different databases or data platforms. If there are business scenario requirements, users need to perform comprehensive analysis across multiple databases or platforms to achieve the required functions, which is prone to the situation of data islands. The data in each database or platform is relatively fragmented, and it increases the operation difficulty of users, resulting in the inability to fully utilize the battery swapping data. Therefore, in the traditional battery swapping data management method, the battery swapping data is not associated with the business scenario, resulting in a single business function that can be achieved by the battery swapping data and a lack of standardized management of the battery swapping data. Summary of the Invention

[0005] One or more embodiments of this specification provide a method, device, and medium for managing battery swapping data based on battery swapping business scenarios to solve the following technical problems: In the traditional battery swapping data management method, the battery swapping data is not associated with the business scenario, resulting in a single business function that can be achieved by the battery swapping data and a lack of standardized management of the battery swapping data.

[0006] One or more embodiments of this specification adopt the following technical solutions:

[0007] One or more embodiments of this specification provide a method for managing swapping data based on a swapping service scenario. The method includes: receiving swapping data sent by multiple eligible data parties through pre-set access rules; parsing the multiple pieces of swapping data to match at least one business function attribution area corresponding to each piece of swapping data; and according to at least one business function attribution area corresponding to each piece of swapping data, analyzing the swapping data according to the pre-set business function analysis rules of the business function attribution area to generate at least one business scenario display message, so as to manage the swapping data.

[0008] Through the above technical solution, by setting access rules to receive swapping data, vehicles and terminals such as swapping stations must pass the access rules to access the data, which can ensure the security of the platform and avoid potential data security risks caused by unauthorized device access; the scenario requirements are implemented as business function attribution areas, and the received swapping data is matched with the business function attribution areas, closely integrating the management process of the swapping data with the swapping service scenario, improving the usability of the swapping data in multiple business scenarios, and facilitating the implementation of subsequent business scenario requirements; according to the pre-set business function analysis rules of the function attribution area, analyzing the swapping data, and managing the swapping data in the form of business scenario display messages, which can meet the usage requirements of the swapping data in multiple business scenarios, improve the standardized management of the swapping data, provide a unified data middle platform, and eliminate the swapping data islands.

[0009] Further, before receiving the swapping data sent by multiple eligible data parties through the pre-set access rules, the method further includes: receiving access requests from multiple data parties, where the access requests include data transmission methods, data party business requirement information, and data party identity information; judging the authentication and authorization of each data party according to the access request of each data party to determine multiple eligible data parties among the multiple data parties, so as to set the access rules of the eligible data parties, where the eligible data parties include self-owned station terminals, cooperative station terminals, self-owned vehicle terminals, and OEM terminals.

[0010] Through the above technical solution, by judging the authentication and authorization through the access requests of the data parties, setting access condition restrictions on the data parties, ensuring the authenticity of the swapping data, meeting the application scenarios where cooperative parties outside the enterprise's jurisdiction can access, and ensuring the data reliability of multiple parties and the security of enterprise data on the basis of receiving data transmission from multiple parties.

[0011] Further, according to the access requests of each of the data parties, authentication and authorization judgment is performed on the data parties to determine multiple eligible data parties among the multiple data parties, and access rules for the eligible data parties are set. Specifically, it includes: performing access identity authentication on the data parties according to the data party identity information of the data parties to screen multiple designated data parties with the identity access permission; determining the current authentication permission of the designated data parties through a pre-set permission policy to match at least one current service function requirement corresponding to the current authentication permission; performing access permission authentication on the designated data parties based on the data party service requirement information in the access request and the at least one current service function requirement to screen multiple eligible data parties with requirement access permission; setting the access rules for each of the eligible data parties through the data transmission method corresponding to each of the eligible data parties.

[0012] Through the above technical solution, access identity authentication and access permission authentication are set, and access rules are set respectively in terms of identity and permission. While ensuring that the identity of the data parties meets the requirements, permission authentication is performed on the service requirements of the data parties, avoiding problems such as important data leakage caused by the data parties performing service function analysis outside the data party permissions after identity access, and further ensuring the data security of the battery swapping data.

[0013] Further, data parsing is performed on multiple pieces of the battery swapping data to match at least one service function attribution area corresponding to each piece of the battery swapping data. Specifically, it includes: the service function attribution area includes any one or more of a terminal management attribution area, a device management attribution area, a real-time device monitoring attribution area, a historical query attribution area, an alarm attribution area, and a traffic monitoring attribution area; determining the battery swapping data, where the battery swapping data includes any one or more of real-time battery swapping data, battery swapping device data, and vehicle-end traffic data; when the battery swapping data is the real-time battery swapping data, the real-time battery swapping data includes real-time battery swapping station data and / or real-time vehicle-end data, and determining that the service function attribution area corresponding to the real-time battery swapping data is the real-time device monitoring attribution area and / or the alarm attribution area; when the battery swapping data is the battery swapping device data, the battery swapping device data includes station-end data and / or vehicle-end data, and determining that the service function attribution area corresponding to the real-time battery swapping data is the terminal management attribution area and / or the device management attribution area; when the battery swapping data is the vehicle-end traffic data, determining that the service function attribution area corresponding to the real-time battery swapping data is the traffic monitoring attribution area.

[0014] Through the above technical solutions, by clearly corresponding the battery swapping data (real-time battery swapping data, battery swapping device data, vehicle-side traffic data) to different business function attribution areas (such as real-time device monitoring attribution area, alarm attribution area, terminal management attribution area, etc.), the data processing process becomes clearer and more efficient. The system can quickly identify the type of data and dispatch it to the corresponding processing module, reducing the intermediate links and waiting time of data processing; it allows the system to flexibly adjust the attribution area of business functions according to different types of battery swapping data, can adapt to different business scenarios and demand changes, and improves the scalability and maintainability of the system; by clarifying the business function attribution area, computing resources, storage resources, and network resources can be more reasonably allocated. For example, for real-time battery swapping data with high real-time requirements, more computing resources can be preferentially allocated to ensure real-time data processing; while for historical query data, it can be stored on storage devices with lower costs to save resources; through real-time monitoring and alarm, the system can timely detect and handle abnormal situations during the battery swapping process, such as equipment failures, insufficient power, etc., thus ensuring the continuity and stability of the battery swapping service. Users can also query the real-time status and historical data of the battery swapping devices through the system, enhancing the trust and satisfaction with the battery swapping service; when the system fails or is abnormal, by viewing the processing results and log information of different business function attribution areas, the problem can be located more quickly and corresponding solutions can be taken. The high efficiency of fault troubleshooting and location helps reduce the system downtime and maintenance costs; through the collection, analysis, and mining of battery swapping data, information on various aspects such as the operation status of the battery swapping service, user behavior, and equipment performance can be obtained, which has important reference value for formulating the development strategy of the battery swapping service, optimizing resource allocation, and improving service quality.

[0015] Furthermore, according to at least one service function attribution area corresponding to each piece of battery swapping data, and in accordance with the service function analysis rules preset for the service function attribution area, perform service function analysis on the battery swapping data to generate at least one service scenario display information, specifically including: in the real-time device monitoring attribution area, perform data normalization processing and data quality monitoring on the real-time battery swapping station data and / or the real-time vehicle end data according to the data attribution subject, and determine the battery swapping station data display information and / or the vehicle end data display information; generate the access party battery swapping station data display information and / or the access party vehicle end data display information corresponding to each data access party according to the data access party corresponding to the real-time battery swapping station data and / or the real-time vehicle end data; in the alarm attribution area, through preset policy configuration, perform abnormal state warning and abnormal data analysis according to the real-time battery swapping station data and / or the real-time vehicle end data, and determine the corresponding alarm management display information, wherein the alarm management display information includes alarm trend information and alarm detail information; in the terminal management attribution area, perform data aggregation analysis on the station end data and / or the vehicle end data in at least one dimension, and determine the terminal management display information corresponding to the station end and / or the vehicle end, wherein the terminal management display information includes the total number information, connection number information, offline number information, and distribution map information of the station end and / or the vehicle end; in the device management attribution area, manage the battery swapping station and / or the vehicle through data normalization processing of the station end data and / or the vehicle end data, and generate the battery swapping station management display information and / or the vehicle management display information; in the traffic monitoring attribution area, perform traffic service statistical analysis on the vehicle end traffic data, and determine the traffic display information, wherein the traffic display information includes any one or more of traffic statistical information, traffic remaining information, activation time information, expiration time information, signal strength information, and Internet of Things card renewal information.

[0016] Through the above technical solutions, by means of data normalization processing and data quality monitoring, the accuracy, integrity, and consistency of real-time battery swapping station data and real-time vehicle data can be ensured, which helps to reduce incorrect decisions and unnecessary troubles caused by data quality problems and improve the usability of data in subsequent analysis and applications. In the real-time device monitoring attribution area and the alarm attribution area, through preset policy configuration and abnormal status early warning, the system can promptly detect and respond to abnormal situations of battery swapping stations and vehicle terminals, which helps to quickly locate problems, reduce fault time, and improve the reliability of battery swapping services and user satisfaction. In the terminal management attribution area and the device management attribution area, through the summary analysis and normalization processing of station-side data and vehicle-side data, detailed terminal management display information and device management display information can be generated, which helps managers comprehensively understand the operating status, distribution, and performance of battery swapping stations and vehicles, so as to make more scientific and reasonable decisions. In the traffic monitoring attribution area, through the statistical analysis of vehicle-side traffic data, traffic display information including traffic statistics, remaining, activation time, expiration time, signal strength, and Internet of Things card renewal information can be generated, which helps users promptly understand their traffic usage, avoid exceeding the package limit or incurring additional fees, and also provides convenience for the renewal and management of Internet of Things cards. The data display information provided by each business function attribution area covers multiple dimensions such as battery swapping stations, vehicles, and traffic, providing a rich data source for data analysis and decision support. By deeply mining and analyzing these data, the operation rules of battery swapping services, user behavior characteristics, and potential market opportunities can be revealed, providing strong support for the optimization and expansion of battery swapping services. Through the collaborative work of the above-mentioned business function attribution areas, the system can provide users with more comprehensive, accurate, and timely battery swapping service information, which helps to enhance users' trust and satisfaction with battery swapping services, and thus promotes the popularization and development of battery swapping services.

[0017] Further, perform data parsing on the multiple pieces of battery swapping data, and match at least one business function attribution area corresponding to each piece of battery swapping data, specifically including: performing data parsing on each piece of battery swapping data to determine the data attributes of the battery swapping data, where the data attributes include data source attributes and data attribution attributes; determining the data source attributes and the data attribution attributes, where the data sources include direct transmission from battery swapping stations, forwarding by cooperative battery swapping stations, direct transmission from vehicles, and forwarding by vehicle manufacturers, and the data attribution attributes include battery swapping equipment data, vehicle data, station-side data, and vehicle-side data; preset the functional requirement data attributes of each business function attribution area, and match the data source attributes and the data attribution attributes with the functional requirement data attributes of each business function attribution area respectively to determine multiple business function attribution areas corresponding to each piece of battery swapping data; screen in the multiple business function attribution areas according to the business requirement function information of the admitted data party to obtain at least one business function attribution area corresponding to each piece of battery swapping data.

[0018] Through the above technical solution, the matching of the business function attribution area is carried out in the form of the data attributes of the battery swapping data. Each piece of battery swapping data corresponds to at least one business function attribution area, ensuring the accurate identification of the battery swapping data and realizing targeted data management and precision data management in the data management process. By matching the data sources and attribution attributes, the battery swapping data can be quickly allocated to the corresponding business function attribution areas, avoiding the cumbersome manual processing and allocation processes, improving the data processing efficiency, and enabling better discovery and understanding of the business meaning and business value of the battery swapping data.

[0019] Further, according to at least one business function attribution area corresponding to each piece of battery swapping data, perform business function analysis on the battery swapping data according to the business function analysis rules preset in the business function attribution area, and generate at least one business scenario display information, specifically including: preset the function implementation rules for each business function attribution area to determine the business function analysis rules of each business function attribution area, where the business function analysis rules include any one or more of data normalization processing, data quality monitoring, abnormal data analysis, abnormal status warning, and data summary analysis; perform business function analysis on each piece of battery swapping data through the business function analysis rules of each business function attribution area to generate the business scenario display information of each piece of battery swapping data in the business function attribution area.

[0020] Through the above technical solution, setting function implementation rules for the business function attribution area, analyzing the battery swapping data, and generating business scenario display information can meet the analysis requirements of various battery swapping data, effectively improve the data utilization rate of the battery swapping data, provide data services for function analysis for multiple parties, and achieve the business scenario coverage degree in the process of battery swapping data management.

[0021] Further, to implement the management of the battery swapping data, it specifically includes: obtaining the real-time management requirement information of the user for the battery swapping data, where the management requirement information includes the management requirement type and the management object information, and the management requirement type includes the business problem location requirement, the data quality monitoring requirement, and the data query requirement; matching the business function attribution area corresponding to the management requirement type according to the management requirement type in the real-time management requirement information; and obtaining the current business scenario display information of the battery swapping data in the business function attribution area based on the management object information in the real-time management requirement information.

[0022] Through the above technical solution, obtaining the real-time management requirement information of the user, displaying the current business scenario display information of the battery swapping data according to the user's requirements, and making a targeted display of the data analysis results for the user's requirements, which ensures the direct availability of the data, avoids the additional data analysis waiting time of the user, and can meet the business requirements in various business scenarios.

[0023] Further, obtaining the current business scenario display information of the battery swapping data in the business function attribution area based on the management object information in the real-time management requirement information specifically includes: screening the historical battery swapping data in the business function attribution area based on the management object information in the real-time management requirement information to determine multiple specified battery swapping data corresponding to the management object; and determining the specified business scenario display information corresponding to the multiple specified battery swapping data in the business function attribution area according to the management requirement type, where the specified business scenario display information includes any one or more of the monitoring display information corresponding to the multiple specified battery swapping data, the abnormal warning information of the multiple specified battery swapping data, the abnormal location information of the multiple specified battery swapping data, and the direct data display information of the multiple specified battery swapping data.

[0024] Through the above technical solution, various business scenarios are satisfied, and various types of business scenario display information are provided, which can meet the personalized management requirements for the battery swapping data in the business scenario.

[0025] Further, after generating at least one business scenario display information, the method further includes: visually displaying the generated at least one business scenario display information in the corresponding business function attribution area.

[0026] Through the above technical solutions, visual display of business scenario display information is provided, facilitating monitoring of battery swapping data by various users and presenting the business scenario display information more intuitively and clearly.

[0027] One or more embodiments of this specification provide a battery swapping data management device based on a battery swapping business scenario. The device includes: a receiving module, configured to receive battery swapping data sent by multiple admitted data parties through a pre-set access rule; an analysis module, configured to perform data analysis on the multiple battery swapping data to match at least one business function attribution area corresponding to each battery swapping data; a generating module, configured to perform business function analysis on the battery swapping data according to at least one business function attribution area corresponding to each battery swapping data and in accordance with a business function analysis rule pre-set for the business function attribution area, and generate at least one business scenario display information.

[0028] One or more embodiments of this specification provide an electronic device, including:

[0029] At least one processor; and,

[0030] A memory communicatively connected to the at least one processor; wherein,

[0031] The memory stores instructions executable by the at least one processor, and when the instructions are executed by the at least one processor, the at least one processor is enabled to implement the above-mentioned battery swapping data management method based on a battery swapping business scenario.

[0032] One or more embodiments of this specification provide a computer-readable storage medium, on which a computer program is stored, and characterized in that when the computer program is executed by a processor, the above-mentioned battery swapping data management method based on a battery swapping business scenario is implemented.

[0033] The above at least one technical solution adopted in the embodiments of this specification can achieve the following beneficial effects: Through the above technical solutions, by setting an access rule to receive battery swapping data, vehicles, battery swapping stations and other terminals must pass the access rule to access the data, which can ensure the security of the platform and avoid potential data security risks caused by unauthorized device access; the scenario requirements are implemented as business function attribution areas, and the received battery swapping data is matched with the business function attribution areas, so that the management process of battery swapping data is closely combined with the battery swapping business scenario, improving the availability of battery swapping data in multiple business scenarios and facilitating the implementation of subsequent business scenario requirements; according to the business function analysis rule pre-set for the function attribution area, business function analysis is performed on the battery swapping data, and the battery swapping data is managed in the form of business scenario display information, which can meet the usage requirements of battery swapping data in multiple business scenarios, improve the standardized management of battery swapping data, provide a unified data middle platform, and eliminate battery swapping data islands. Description of the Drawings

[0034] In order to more clearly illustrate the technical solutions in the embodiments of this specification or the prior art, the following will briefly introduce the accompanying drawings required for use in the description of the embodiments or the prior art. Obviously, the accompanying drawings in the following description are only some embodiments recorded in this specification. For those of ordinary skill in the art, without creative efforts, other accompanying drawings can be obtained based on these drawings. In the accompanying drawings:

[0035] Figure 1 It is a schematic flowchart of a method for managing battery swapping data based on a battery swapping service scenario provided by an embodiment of this specification;

[0036] Figure 2 It is a schematic structural diagram of an electronic device provided by an embodiment of this specification. Detailed Embodiments

[0037] In order to enable the personnel in the technical field to better understand the technical solutions in this specification, the following will clearly and completely describe the technical solutions in the embodiments of this specification in conjunction with the accompanying drawings in the embodiments of this specification. Obviously, the described embodiments are only some embodiments of this specification, rather than all embodiments. Based on the embodiments of this specification, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of this specification.

[0038] With the development of the new energy vehicle industry, more and more battery swapping data is collected during the battery swapping process through Internet of Things devices. By managing the battery swapping data during the battery swapping process, it can escort the safe operation of battery swapping vehicles and battery swapping station equipment, and can also provide a reference data source for the improvement and optimization of the enterprise's battery swapping business.

[0039] Currently, the types of battery swapping data are numerous, the data volume is large, and it comes from multiple devices. In order to manage the battery swapping data, various types of battery swapping data are usually stored in different databases or data platforms. If there are business scenario requirements, users need to perform comprehensive analysis across multiple databases or platforms to achieve the required functions, which is likely to result in the situation of data islands. The data in each database or platform is relatively fragmented, and it increases the operation difficulty of users, resulting in the inability to fully utilize the battery swapping data. Therefore, in the traditional battery swapping data management method, the battery swapping data is not associated with the business scenario, resulting in a single business function that can be realized by the battery swapping data and a lack of standardized management of the battery swapping data.

[0040] An embodiment of this specification provides a method for managing swapping data based on a swapping service scenario. It should be noted that the execution entity in the embodiment of this specification can be a server or any device with data processing capabilities. Figure 1 It is a schematic flowchart of a method for managing swapping data based on a swapping service scenario provided by an embodiment of this specification, as Figure 1 shown, mainly including the following steps:

[0041] Step S101, receive swapping data sent by multiple eligible data parties through pre-set access rules.

[0042] Among them, the eligible data parties include self-owned station terminals, cooperative station terminals, self-owned vehicle terminals, and OEM terminals;

[0043] Before receiving the swapping data sent by multiple eligible data parties through pre-set access rules, the method further includes: receiving access requests from multiple data parties, where the access request includes a data transmission method, data party service requirement information, and data party identity information; according to the access request of each data party, perform an authentication and authorization judgment on the data party to determine multiple eligible data parties among the multiple data parties, so as to set the access rules for the eligible data parties.

[0044] For new energy enterprises, they need to monitor the swapping process, and a large amount of swapping data will be generated during the swapping process. On the one hand, enterprises need to manage the data of the vehicle terminal and the swapping station terminal. On the other hand, restricted by the storage platforms of various terminal data, when users have business requirements, it is necessary to retrieve data in real time from each storage party for business scenario analysis, which consumes a lot of time. When there are business requirements with high real-time requirements, the business processing efficiency cannot be guaranteed. During this process, enterprise swapping stations include self-owned enterprise swapping stations and third-party cooperative swapping stations. When managing swapping data, in order to ensure the security of swapping data, it is necessary to set access rules to perform eligibility judgments on data parties.

[0045] In an embodiment of this specification, receive access requests from multiple data parties through the interfaces reserved by the swapping data management platform. Here, the access request includes a data transmission method, data party service requirement information, and data party identity information. That is to say, if swapping station terminal A wants to access, it needs to send an access request to the swapping data management platform. The access request encapsulates the data transmission method of swapping station terminal A, the business requirements of swapping station terminal A, and the identity information of swapping station terminal A.

[0046] Based on the access requests of each such data party, authenticate and authorize the data party to determine multiple eligible data parties among the multiple data parties, and set the access rules for the eligible data parties, specifically including: authenticate the access identity of the data party according to the data party identity information of the data party to screen out multiple specified data parties with the identity access permission; determine the current authentication permission of the specified data party through a pre-set permission policy to match at least one current business function requirement corresponding to the current authentication permission; based on the data party business requirement information in the access request and the at least one current business function requirement, authenticate the access permission of the specified data party to screen out multiple eligible data parties with the requirement access permission; set the access rules for each eligible data party through the data transmission method corresponding to each eligible data party.

[0047] In an embodiment of this specification, authenticate the access identity of the data party according to the data party identity information of the data party to screen out multiple specified data parties with the identity access permission. The identity information here can be in the form of a username and password. The data party provides the username and password, and verify according to the username and password provided by the data party. If the username and password are correct, grant the corresponding permission to the data party. In addition, the data party identity information here can also be a digital certificate issued by an authoritative institution. Authenticate the access identity of the data party by verifying the correctness of the digital certificate provided by the data party. Screen among multiple data parties to screen out multiple specified data parties with the identity access permission.

[0048] It should be noted that the data display permissions of different data parties of the same enterprise are different. To ensure the data privacy of key battery swapping data, a corresponding permission policy is pre-set. In the permission policy, it includes the current authentication permissions corresponding to multiple data parties respectively. Different authentication permissions result in different business function permissions for the data party. Among the authentication permissions of the same data party, one or more business function permissions are corresponding. When the data party has a certain business function permission, it means that the business function can be provided to the data party. Through the permission policy, determine the current authentication permission of the specified data party to match at least one current business function requirement corresponding to the current authentication permission. Match the data party business requirement information in the data party access request with the at least one current business function requirement corresponding to the data party obtained in the above process. When the business requirement in the data party business requirement information belongs to the current business function requirement, determine that the data party has the requirement access permission to screen out multiple eligible data parties with the requirement access permission. Set the access rules for each eligible data party through the data transmission method corresponding to each eligible data party.

[0049] Through the access request of the data provider, authentication and authorization judgment are carried out, and access condition restrictions are set for the data provider, ensuring the authenticity of the battery swapping data. It can meet the application scenarios where partners outside the enterprise's jurisdiction are allowed to access. On the basis of receiving multi-party data transmission, it ensures the data reliability of multi-party data and the security of enterprise data; access identity authentication and access permission authentication are set, and admission rules are set respectively for identity and permission. When ensuring that the identity of the data provider meets the requirements, the permission authentication of the business requirements of the data provider is carried out to avoid problems such as important data leakage caused by the data provider's business function analysis outside the data provider's permissions, further ensuring the data security of the battery swapping data.

[0050] In an embodiment of the present specification, through pre-set access rules, battery swapping data sent by multiple admitted data providers is received, where the admitted data providers include self-owned station terminals, cooperative station terminals, self-owned vehicle terminals, and OEM terminals. By setting access rules to receive battery swapping data, vehicles and terminals such as battery swapping stations must pass the access rules to access the data, which can ensure the security of the platform and avoid potential data security risks caused by unauthorized device access.

[0051] In an embodiment of the present specification, the access of the data provider is realized through the access center. In order to ensure the multi-party adaptation of the platform, multiple access configurations are provided in the access center. For example, platform access, network proximity access, terminal access, cloud gateway, etc. In addition, access can also be achieved through the configuration matching of communication methods and communication protocols. When authorizing and authenticating the data provider, the authorization and authentication method is configured through the platform authentication, device authentication, or permission policy of the authorization and authentication center, providing multiple authorization and authentication methods. In addition, in order to ensure the processes of data sending, receiving, parsing, etc., multiple configuration information such as data reception, data parsing, data distribution between clouds, parsing rule management, index management, and real-time calculation are set in the data center, and the data sending, receiving, and parsing processes can be configured to meet the different data processing requirements of various battery swapping data. The log center includes the management of various log types, including log archiving, advanced query, data full-link log, terminal operation log, cloud operation log, and message track, etc., which can meet the management requirements of various types of logs.

[0052] In one embodiment of this specification, a rule engine, a security center, a communication instruction center, a device management center, and a monitoring center are also configured. The rule engine includes rule configuration, data processing, and data flow, and is used to provide configuration information for the processing and flow of battery swapping service data. In the communication instruction center, information such as data communication protocols is set, including communication protocol versions, message formats, scenario linkage, RRPC, unicast, broadcast, etc. The security center includes a trusted execution environment, a blockchain credibility system, an identity authentication strategy, firmware security detection, network security protection, communication protocol detection, etc. The device management center is used to upgrade and manage devices, etc., including device lifecycle, device shadow, device configuration, digital twin, device grouping, device topology, OTA upgrade, NTP time calibration. The monitoring center includes real-time monitoring, device simulation, operation and maintenance dashboard, remote configuration, online debugging, and risk warning. By setting the business center layer, configuration and maintenance logic are provided for the business function layer, ensuring the implementation of the business function layer and guaranteeing the security of the platform and devices.

[0053] Through the above technical solutions, various access configurations (such as platform access, network proximity access, terminal access, cloud gateway, etc.) and communication methods and protocol configurations are provided, enabling the system to flexibly adapt to the needs of different data parties and scenarios, and enhancing the scalability of the system; through the diverse authentication methods (platform authentication, device authentication, permission strategy) of the authorization and authentication center, the identity legality of the accessed data parties and the security of the data are ensured; the security center integrates multiple security policies and technologies (trusted execution environment, blockchain credibility system, identity authentication strategy, firmware security detection, network security protection, etc.), providing comprehensive security protection for the system; the data center is configured with multiple functions such as data reception, parsing, distribution, and real-time calculation, capable of efficiently processing various battery swapping data, meeting different data processing requirements, and improving the efficiency and accuracy of data processing; the log center supports the management of multiple log types, including log archiving, advanced query, data full-link logs, etc., helping to quickly locate and solve problems and improving operation and maintenance efficiency; the rule engine provides functions of rule configuration, data processing, and data flow, providing strong support for the intelligent processing of battery swapping service data, making business processing more automated and intelligent; the device management center supports functions such as device upgrade, management, grouping, topology, OTA upgrade, etc., greatly simplifying the device management process and improving the convenience and efficiency of device management; the monitoring center provides functions such as real-time monitoring, device simulation, operation and maintenance dashboard, remote configuration, online debugging, and risk warning, enabling operation and maintenance personnel to grasp the system operation status in real time and quickly respond to and solve problems; by providing configuration and maintenance logic for the business function layer through the business center layer, the coordinated work and overall performance of each part of the system are guaranteed, and the reliability and stability of the system are improved.

[0054] Step S102: Parse multiple battery swapping data to match at least one business function attribution area corresponding to each battery swapping data.

[0055] Among them, the business function attribution area includes any one or more of a terminal management attribution area, a device management attribution area, a real-time device monitoring attribution area, a historical query attribution area, an alarm attribution area, and a traffic monitoring attribution area.

[0056] Parsing multiple pieces of such battery swapping data to match at least one business function attribution area corresponding to each piece of such battery swapping data specifically includes: The business function attribution area includes any one or more of a terminal management attribution area, a device management attribution area, a real-time device monitoring attribution area, a historical query attribution area, an alarm attribution area, and a traffic monitoring attribution area; determining the battery swapping data, where the battery swapping data includes any one or more of real-time battery swapping data, battery swapping device data, and vehicle-end traffic data; when the battery swapping data is the real-time battery swapping data, the real-time battery swapping data includes real-time battery swapping station data and / or real-time vehicle-end data, and determining that the business function attribution area corresponding to the real-time battery swapping data is the real-time device monitoring attribution area and / or the alarm attribution area; when the battery swapping data is the battery swapping device data, the battery swapping device data includes station-end data and / or vehicle-end data, and determining that the business function attribution area corresponding to the real-time battery swapping data is the terminal management attribution area and / or the device management attribution area; when the battery swapping data is the vehicle-end traffic data, determining that the business function attribution area corresponding to the real-time battery swapping data is the traffic monitoring attribution area.

[0057] In an embodiment of the present specification, functions such as real-time monitoring, device management, historical query, alarm management, and traffic monitoring of battery swapping services are realized by classifying and dividing the attribution areas of battery swapping data. The battery swapping data is divided into three categories: real-time battery swapping data, battery swapping device data, and vehicle-end traffic data, and each category of data is allocated to different business function attribution areas for processing according to its characteristics and requirements. The real-time battery swapping data includes real-time battery swapping station data and real-time vehicle-end data. The real-time battery swapping station data involves the operation status, device status, battery status, etc. of the battery swapping station; the real-time vehicle-end data involves the location, power, battery swapping request, etc. of the vehicle. The battery swapping device data includes station-end data and vehicle-end data. The station-end data refers to the operation data and maintenance information of all devices in the battery swapping station; the vehicle-end data refers to information related to electric vehicles, such as vehicle models, battery specifications, historical battery swapping records, etc. The vehicle-end traffic data includes network traffic data generated by electric vehicles during battery swapping services, including traffic usage, signal strength, Internet of Things card status, etc.

[0058] The real-time device monitoring attribution area is used to process real-time data of battery swapping stations and real-time vehicle data, perform data normalization processing and data quality monitoring, and display the operation status of battery swapping stations and vehicles in real time, such as power, location, equipment failures, etc., providing data sources for the alarm system to promptly detect and handle abnormal situations. The alarm attribution area is used to receive real-time data from the real-time device monitoring attribution area, perform early warning of abnormal states and analysis of abnormal data through preset policy configurations, and generate alarm management display information, including alarm trend information and alarm detail information. It provides an alarm notification function to ensure that relevant personnel can respond in a timely manner. The terminal management attribution area is used to process station-side data and vehicle data, perform data summary and analysis in at least one dimension (such as time, geographical location, equipment type, etc.), and generate terminal management display information, including total number information, connection number information, offline number information, and distribution map information, etc. It supports remote management and control of battery swapping stations and vehicles. The equipment management attribution area is similar to the terminal management attribution area, but focuses more on the detailed management of individual devices. It performs equipment management on battery swapping stations and vehicles through data normalization processing, generates battery swapping station management display information and vehicle management display information, and supports functions such as equipment maintenance, fault diagnosis, and performance optimization. The historical query attribution area is used to store and manage historical data of battery swapping services, provide data query and analysis functions, support users to retrieve according to conditions such as time, equipment, vehicles, etc., and generate historical data reports and statistical charts to provide data support for decision-making. The traffic monitoring attribution area is used to process vehicle-side traffic data, perform statistical analysis of traffic services, including traffic usage, signal strength, IoT card status, etc. It generates traffic display information, including traffic statistics information, remaining traffic information, activation time information, expiration time information, signal strength information, and IoT card renewal information, etc. It supports monitoring and early warning of traffic usage to ensure the rationality and security of traffic usage.

[0059] By clearly mapping the battery swapping data (real-time battery swapping data, battery swapping equipment data, vehicle-side traffic data) to different business function attribution areas (such as real-time equipment monitoring attribution area, alarm attribution area, terminal management attribution area, etc.), the data processing flow becomes clearer and more efficient. The system can quickly identify the type of data and dispatch it to the corresponding processing module, reducing the intermediate links and waiting time for data processing; it allows the system to flexibly adjust the business function attribution area according to different types of battery swapping data, being able to adapt to different business scenarios and demand changes, improving the scalability and maintainability of the system; by clarifying the business function attribution area, computing resources, storage resources, and network resources can be more reasonably allocated. For example, for real-time battery swapping data with high real-time requirements, more computing resources can be preferentially allocated to ensure real-time data processing; while for historical query data, it can be stored on storage devices with lower costs to save resources; through real-time monitoring and alarming, the system can promptly detect and handle abnormal situations during the battery swapping process, such as equipment failures, insufficient power, etc., thus ensuring the continuity and stability of the battery swapping service. Users can also query the real-time status and historical data of the battery swapping equipment through the system, enhancing the trust and satisfaction with the battery swapping service; when the system fails or malfunctions, by checking the processing results and log information of different business function attribution areas, the problem can be located more quickly and corresponding solutions can be taken. The efficiency of fault troubleshooting and location helps reduce the system downtime and maintenance costs; through the collection, analysis, and mining of battery swapping data, information on various aspects such as the operation status of the battery swapping service, user behavior, and equipment performance can be obtained, which has important reference value for formulating the development strategy of the battery swapping service, optimizing resource allocation, and improving service quality.

[0060] Perform data parsing on multiple pieces of such battery swapping data, and match at least one business function attribution area corresponding to each piece of such battery swapping data, specifically including: perform data parsing on each piece of such battery swapping data to determine the data attributes of the battery swapping data, where the data attributes include data source attributes and data attribution attributes; determine at least one business function attribution area corresponding to each piece of such battery swapping data according to the data attributes of the battery swapping data and the business requirement function information of the pre-obtained access data party.

[0061] In one embodiment of this specification, data parsing is performed on each battery swapping data to determine the data attributes of the battery swapping data. Among them, the data attributes include data source attributes and data ownership attributes. When parsing the battery swapping data, the data source attributes can be determined through the source of the battery swapping data. For example, there are various data source attributes such as direct transmission from the battery swapping station, forwarding by cooperative battery swapping stations, direct transmission from vehicles, and forwarding by the vehicle manufacturer. The data ownership attributes of the battery swapping data are determined through the data type of the battery swapping data. For example, such battery swapping data is battery swapping station data, vehicle data, station-side data, vehicle-side data, etc. Here, the ownership is used to represent the ownership entity of the battery swapping data.

[0062] According to the data attributes of the battery swapping data, at least one business function attribution area corresponding to each battery swapping data is determined. Matching the business function attribution areas in the form of the data attributes of the battery swapping data, each battery swapping data corresponds to at least one business function attribution area, ensuring the accurate identification of the battery swapping data and realizing targeted data management and precision data management in the data management process.

[0063] According to the data attributes of the battery swapping data and the business requirement function information of the pre-obtained data access party, at least one business function attribution area corresponding to each battery swapping data is determined, specifically including: determining the data source attributes and the data ownership attributes, where the data source includes direct transmission from the battery swapping station, forwarding by cooperative battery swapping stations, direct transmission from vehicles, and forwarding by the vehicle manufacturer, and the data ownership attributes include battery swapping equipment data, vehicle data, station-side data, and vehicle-side data; pre-setting the function requirement data attributes of each business function attribution area, and respectively matching the data source attributes and the data ownership attributes with the function requirement data attributes of each business function attribution area to determine multiple business function attribution areas corresponding to each battery swapping data; screening among the multiple business function attribution areas according to the business requirement function information of the data access party to obtain at least one business function attribution area corresponding to each battery swapping data.

[0064] In an embodiment of this specification, function requirement data attributes required for each business function attribution area are set. The data attributes of the terminal management attribution area include station-side data directly transmitted from the battery swapping station side and vehicle-side data directly transmitted from the vehicle side. Here, the terminal management attribution area can also be secondarily functionally divided according to the battery swapping station side and the vehicle side to obtain a station-side management attribution area and a vehicle-side management attribution area, which are respectively used for station-side management of the battery swapping station side and vehicle-side management of the vehicle side. The equipment management attribution area is used to manage the battery swapping equipment and vehicle equipment in the battery swapping station. Therefore, the data attributes required for the equipment management attribution area here include battery swapping station data directly transmitted from the battery swapping station side and vehicle data directly transmitted from the vehicle side. The real-time equipment monitoring attribution area is used to monitor equipment through real-time operation data of the equipment. Under this business function attribution area, it includes battery swapping station data from various sources and vehicle data from various sources. The historical query attribution area is used to query historical battery swapping data and historical business problems. Therefore, the historical query attribution area includes various types of non-real-time data, covering battery swapping data with all data source attributes and all data attribution attributes. The function requirement data attributes corresponding to the alarm attribution area are the early warning reference index items among all data source attributes and all data attribution attributes. The function requirement data attributes corresponding to the traffic monitoring attribution area include that the data source attribute is vehicle direct transmission and the data attribution attribute is vehicle-side data, and it is used for the management of the Internet of Things card situation of the vehicle side application, including functions such as traffic statistics, remaining traffic, activation time, expiration time, signal strength, and Internet of Things card renewal.

[0065] According to the data source attribute and data attribution attribute of each battery swapping data, they are respectively matched with the function requirement data attributes of each business function attribution area to determine multiple business function attribution areas corresponding to each battery swapping data. Then, in combination with the business requirement function information of the access data party, screening is performed among the multiple business function attribution areas to match at least one business function attribution area corresponding to each such battery swapping data. It should be noted that the business requirement function information of the access data party here is not limited to one function requirement. At the stage of battery swapping data access, in order to ensure the use of battery swapping data in different application scenarios, each battery swapping data corresponds to at least one business function attribution area. Matching the business function attribution area in the form of the data attributes of the battery swapping data, each battery swapping data corresponds to at least one business function attribution area, which ensures the accurate identification of the battery swapping data and realizes targeted data management and precision data management in the data management process. In addition, through the matching of the data source and attribution attributes, the battery swapping data can be quickly allocated to the corresponding business function attribution area, avoiding the cumbersome manual processing and allocation process, improving the data processing efficiency, and enabling better discovery and understanding of the business meaning and business value of the battery swapping data.

[0066] Step S103: According to at least one business function attribution area corresponding to each battery swapping data, perform business function analysis on the battery swapping data according to the business function analysis rules preset for the business function attribution area, and generate at least one business scenario display information.

[0067] According to at least one business function attribution area corresponding to each such battery swapping data, perform business function analysis on the battery swapping data according to the business function analysis rules preset for the business function attribution area, and generate at least one business scenario display information, which specifically includes: pre-setting function implementation rules for each such business function attribution area to determine the business function analysis rules for each such business function attribution area, where the business function analysis rules include any one or more of data normalization processing, data quality monitoring, abnormal data analysis, abnormal status warning, and data summary analysis; performing business function analysis on each battery swapping data through the business function analysis rules of each such business function attribution area to generate the business scenario display information of each battery swapping data in the business function attribution area.

[0068] In an embodiment of the present specification, in order to associate the battery swapping data with the battery swapping business scenario during the management stage, function implementation rules are set for each business function attribution area to determine the business function analysis rules for each such business function attribution area, where the business function analysis rules include any one or more of data normalization processing, data quality monitoring, abnormal data analysis, abnormal status warning, and data summary analysis. For example, the business function analysis rules corresponding to the alarm attribution area are abnormal data analysis and abnormal status warning, and the business function analysis rules corresponding to the terminal management attribution area are data normalization processing and data summary analysis, so as to generate information such as the total number of station terminals, the current number of connected station terminals, the number of offline station terminals, the station terminal distribution map, the total number of vehicle terminals, the number of connected vehicle terminals, the number of offline vehicle terminals, and the vehicle terminal distribution map in the terminal management attribution area.

[0069] Performing business function analysis on each battery swapping data through the business function analysis rules of each such business function attribution area to generate the business scenario display information of each battery swapping data in the business function attribution area. Setting function implementation rules for the business function attribution area and performing function analysis on the battery swapping data to generate business scenario display information can meet the analysis requirements of various battery swapping data, effectively improve the data utilization rate of the battery swapping data, can provide data services for function analysis for multiple parties, and realize the business scenario coverage degree in the process of battery swapping data management.

[0070] According to at least one business function attribution area corresponding to each piece of battery swapping data, and in accordance with the business function analysis rules preset for this business function attribution area, conduct business function analysis on this battery swapping data to generate at least one business scenario display information, specifically including: in this real-time device monitoring attribution area, according to the data attribution subject, perform data normalization processing and data quality monitoring on this real-time battery swapping station data and / or this real-time vehicle end data to determine the battery swapping station data display information and / or vehicle end data display information; generate the access party battery swapping station data display information and / or access party vehicle end data display information corresponding to each access party according to the data access party corresponding to this real-time battery swapping station data and / or this real-time vehicle end data; in this alarm attribution area, through preset policy configuration, based on this real-time battery swapping station data and / or this real-time vehicle end data, conduct abnormal status early warning and abnormal data analysis to determine the corresponding alarm management display information, where this alarm management display information includes alarm trend information and alarm detail information; in this terminal management attribution area, conduct data aggregation analysis on this station end data and / or this vehicle end data in at least one dimension to determine the terminal management display information corresponding to the station end and / or vehicle end, where this terminal management display information includes the total number information, connection number information, offline number information, and distribution map information of the station end and / or vehicle end; in this device management attribution area, manage the battery swapping station and / or vehicle through data normalization processing of this station end data and / or this vehicle end data to generate the battery swapping station management display information and / or vehicle management display information; in this traffic monitoring attribution area, conduct traffic service statistical analysis on this vehicle end traffic data to determine the traffic display information, where this traffic display information includes any one or more of traffic statistical information, traffic remaining information, activation time information, expiration time information, signal strength information, and Internet of Things card renewal information.

[0071] In one embodiment of this specification, in the real-time device monitoring attribution area, it mainly includes the processing and display of real-time swap station data and real-time vehicle-end data. First, according to unified data formats and standards, clean, transform, and format the real-time swap station data and real-time vehicle-end data to ensure the accuracy and consistency of the data. Secondly, conduct data quality monitoring to monitor the quality of the data in real time, including data integrity, accuracy, and timeliness, promptly discover and handle data anomalies or errors, and generate display information such as the operation status, equipment status, and battery status of the swap station based on the real-time swap station data for real-time viewing by monitoring and management personnel. View the real-time device data according to the data stream classification. Among them, the swap station data includes the directly transmitted data of the swap station and the forwarded data of the cooperative swap station, and the vehicle-end data includes the directly transmitted data of the vehicle and the vehicle data forwarded by the vehicle manufacturer. In addition, it supports the quick viewing of vehicle data in business scenarios. Generate vehicle-end data display information such as the location, power, and battery swapping request of the vehicle based on the real-time vehicle-end data to support the real-time monitoring and management of the vehicle. For the data access parties corresponding to the real-time swap station data and real-time vehicle-end data (such as different users or enterprises), generate the corresponding access party swap station data display information and access party vehicle-end data display information to achieve fine-grained management of the data and display of access party data. Through data normalization processing and data quality monitoring, the accuracy, integrity, and consistency of the real-time swap station data and real-time vehicle-end data can be ensured, which helps to reduce incorrect decisions and unnecessary troubles caused by data quality problems and improve the usability of the data in subsequent analysis and applications.

[0072] In the alarm attribution area, perform abnormal status early warning and abnormal data analysis on the real-time data through preset policy configurations. First, set the determination conditions and early warning rules for abnormal status according to business requirements. Then, based on the real-time swap station data and real-time vehicle-end data, combined with the preset policy configurations, conduct real-time monitoring and early warning of abnormal status. In addition, it also provides an abnormal data analysis function to deeply analyze the abnormal data that triggers the early warning to find out the reasons for the anomalies and the scope of influence. Finally, generate alarm management display information, including alarm trend information (such as the change trend of the number of alarms) and alarm details information (such as specific alarm content, occurrence time, scope of influence, etc.) for relevant personnel to respond and handle in a timely manner. Alarm management is used for the monitoring and alarm management of key data, provides configuration strategies and alarm trend services, and supports viewing alarm details. Video monitoring is the viewing screen of the station-side monitoring cloud.

[0073] In the real-time device monitoring attribution area and the alarm attribution area, through preset policy configurations and abnormal status early warnings, the system can promptly discover and respond to abnormal situations of swap stations and vehicle-ends, which helps to quickly locate problems, reduce fault time, and improve the reliability of the battery swapping service and user satisfaction.

[0074] In the terminal management attribution area, the station - end data and vehicle - end data are summarized and analyzed to generate terminal management display information. The specific steps include: Summarizing and analyzing the station - end data and vehicle - end data under at least one dimension (such as time, geographical location, device type, etc.) to facilitate the generation of total number information, connection number information, offline number information, distribution map information, etc. of the station - end and / or vehicle - end, supporting the comprehensive management and monitoring of terminal devices. In the device management attribution area, the swap stations and vehicles are managed through data normalization processing. Users can configure the required platform statistical information through the terminal management dashboard, including the total number of station - ends, current connection number, offline number, distribution map, the total number of vehicle - ends, connection number, offline number, distribution map, and at the same time provide alarm trend charts, specified station - end monitoring, and specified vehicle monitoring functions; Device management includes station - end device management and vehicle - end device management, mainly for the device management in the swap station. Users can understand the operating conditions of the current application devices at the station - end here. Further normalization processing is performed on the station - end data and vehicle - end data to ensure the accuracy and integrity of the data required for device management; Generate swap - station management display information such as device configuration, operating status, and maintenance records of the swap station, supporting the refined management of the swap station; Generate vehicle management display information such as battery status, historical battery - swapping records, and fault information of the vehicle, supporting the comprehensive monitoring and management of the vehicle. In the terminal management attribution area and the device management attribution area, through the summary analysis and normalization processing of the station - end data and vehicle - end data, detailed terminal management display information and device management display information can be generated, helping managers to comprehensively understand the operating status, distribution, and performance of swap stations and vehicles, thus making more scientific and reasonable decisions.

[0075] In the traffic monitoring attribution area, the vehicle - end traffic data is statistically analyzed to generate traffic display information. The statistical analysis of the vehicle - end traffic data includes traffic usage, signal strength, IoT card status, etc.; Generate display information such as traffic statistics information, remaining traffic information, activation time information, expiration time information, signal strength information, and IoT card renewal information, supporting the real - time monitoring and management of vehicle - end traffic. For the management of the IoT card usage situation of the vehicle - end, it includes functions such as traffic statistics, remaining traffic, activation time, expiration time, signal strength, and IoT card renewal. In the traffic monitoring attribution area, through the statistical analysis of the vehicle - end traffic data, traffic display information including traffic statistics, remaining, activation time, expiration time, signal strength, and IoT card renewal information can be generated, helping users to timely understand their traffic usage, avoid exceeding the package limit or incurring additional fees, and at the same time providing convenience for the renewal and management of IoT cards. In the historical query attribution area, users can query the historical data of specified objects here, and also support querying problems in common business scenarios, facilitating the quick traceability of historical data.

[0076] The data display information provided by each business function attribution area covers multiple dimensions such as battery swapping stations, vehicles, and traffic, providing a rich data source for data analysis and decision-making support. By deeply mining and analyzing these data, the operation rules of battery swapping services, user behavior characteristics, and potential market opportunities can be revealed, providing strong support for the optimization and expansion of battery swapping services; through the collaborative work of the above-mentioned business function attribution areas, the system can provide users with more comprehensive, accurate, and timely battery swapping service information, helping to improve users' trust and satisfaction with battery swapping services, and further promoting the popularization and development of battery swapping services. After generating at least one business scenario display information, the method further includes: visualizing the generated at least one business scenario display information in the corresponding business function attribution area. For example, it can be displayed on the enterprise visualization large screen or on the user terminal, providing a visual display of the business scenario display information, facilitating the monitoring of battery swapping data by various users, and presenting the business scenario display information more intuitively and clearly.

[0077] To implement the management of the battery swapping data, it specifically includes: obtaining the real-time management requirement information of users for the battery swapping data, where the management requirement information includes the management requirement type and the management object information, and the management requirement type includes the business problem positioning requirement, the data quality monitoring requirement, and the data query requirement; according to the management requirement type in the real-time management requirement information, matching the business function attribution area corresponding to the management requirement type; based on the management object information in the real-time management requirement information, obtaining the current business scenario display information of the battery swapping data in the business function attribution area.

[0078] In an embodiment of this specification, during the management process of battery swapping data, the real-time management requirements of various users also need to be considered. Here, the real-time management requirement information includes the management requirement type and the management object information, and the management requirement type includes the business problem positioning requirement, the data quality monitoring requirement, and the data query requirement. The management objects include multiple management objects such as the battery swapping station side, the vehicle side, the battery swapping equipment, and the vehicle equipment. According to the management requirement type in the real-time management requirement information, match the business function attribution area corresponding to the management requirement type. For example, the business function attribution area corresponding to the business problem positioning requirement includes the historical query attribution area. The mapping relationship between each management requirement type and at least one business function attribution area can be established in the form of a preset mapping relationship table. According to the management object information in the real-time management requirement information, obtain the current business scenario display information of multiple battery swapping data corresponding to the management object information in the business function attribution area.

[0079] Obtain the real-time management requirement information of the user, display the current business scenario display information of the battery swapping data according to the user's requirements, and conduct targeted display of the data analysis results for the user's requirements, ensuring the direct usability of the data, avoiding the additional waiting time for the user's data analysis, and meeting the business requirements in multiple business scenarios.

[0080] Based on the management object information in the real-time management requirement information, obtain the current business scenario display information of the battery swapping data in the business function attribution area, specifically including: based on the management object information in the real-time management requirement information, in the business function attribution area, perform historical battery swapping data screening to determine multiple specified battery swapping data corresponding to the management object; according to the management requirement type, determine the specified business scenario display information corresponding to the multiple specified battery swapping data in the business function attribution area, where the specified business scenario display information includes any one or more of the monitoring display information corresponding to the multiple specified battery swapping data, the abnormal warning information of the multiple specified battery swapping data, the abnormal positioning information of the multiple specified battery swapping data, and the direct data display information of the multiple specified battery swapping data.

[0081] In an embodiment of the present specification, according to the management object information in the real-time management requirement information, perform historical battery swapping data screening in the business function attribution area to screen out multiple specified battery swapping data corresponding to the management object, so as to ensure the security of other battery swapping data and avoid the risk of battery swapping data leakage. When performing screening here, obtain the management object information from the real-time management requirement information, determine the range and conditions of the historical battery swapping data to be screened, and query the data that meets the conditions in the historical battery swapping data according to the obtained management object information, which can be implemented through database query language (such as SQL). Among the queried historical battery swapping data, screen out the data related to the battery swapping data.

[0082] Combined with the management requirement type, determine the specified business scenario display information corresponding to the multiple specified battery swapping data in the corresponding business function attribution area. Here, the specified business scenario display information includes any one or more of the monitoring display information corresponding to the multiple specified battery swapping data, the abnormal warning information of the multiple specified battery swapping data, the abnormal positioning information of the multiple specified battery swapping data, and the direct data display information of the multiple specified battery swapping data. It meets multiple business scenarios and provides various types of business scenario display information, which can meet the personalized management requirements for battery swapping data in business scenarios.

[0083] Through the above technical solutions, by setting access rules to receive battery swapping data, vehicles and terminals such as battery swapping stations can only access data through the access rules, which can ensure the security of the platform and avoid potential data security risks caused by unauthorized device access; the scenario requirements are implemented as business function attribution areas, and the received battery swapping data is matched with the business function attribution areas, closely integrating the management process of the battery swapping data with the battery swapping business scenario, improving the availability of the battery swapping data in multiple business scenarios, and facilitating the implementation of subsequent business scenario requirements; according to the business function analysis rules preset in the function attribution area, the battery swapping data is analyzed for business functions, and the battery swapping data is managed in the form of business scenario display information, which can meet the usage requirements of the battery swapping data in multiple business scenarios, improve the standardized management of the battery swapping data, provide a unified data middle platform, and eliminate the battery swapping data islands.

[0084] The embodiments of this specification also provide a battery swapping data management device based on a battery swapping business scenario. The device includes: a receiving module, configured to receive battery swapping data sent by multiple admitted data parties through pre-set access rules; an analysis module, configured to analyze the data of multiple pieces of the battery swapping data to match at least one business function attribution area corresponding to each piece of the battery swapping data; a generation module, configured to perform business function analysis on the battery swapping data according to at least one business function attribution area corresponding to each piece of the battery swapping data, and generate at least one business scenario display information according to the business function analysis rules preset in the business function attribution area.

[0085] The embodiments of this specification also provide an electronic device, as Figure 2 shown. The device includes: at least one processor; and a memory communicatively connected to the at least one processor; wherein, the memory stores instructions executable by the at least one processor, and the instructions are executed by the at least one processor to enable the at least one processor to execute the battery swapping data management method based on a battery swapping business scenario in any of the above embodiments.

[0086] The embodiments of this specification also provide a computer-readable storage medium, on which a computer program is stored, and when the computer program is executed by a processor, it implements the battery swapping data management method based on a battery swapping business scenario in any of the above embodiments.

[0087] The embodiments in this specification are all described in a progressive manner. The same or similar parts among the embodiments can be referred to each other, and the key points of each embodiment are the differences from other embodiments. In particular, for the embodiments of the device, equipment, and non-volatile computer storage medium, since they are basically similar to the method embodiments, the description is relatively simple, and the relevant parts can refer to the partial description of the method embodiments.

[0088] The above describes specific embodiments of this specification. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps recited in the claims may be performed in a different order than in the embodiments and still achieve the desired results. Additionally, the processes depicted in the figures do not necessarily require the particular order or sequential order shown to achieve the desired results. In certain embodiments, multitasking and parallel processing are also possible or may be advantageous.

[0089] The devices and media provided by the embodiments of this specification correspond one-to-one with the methods. Therefore, the devices and media also have beneficial technical effects similar to those of their corresponding methods. Since the beneficial technical effects of the methods have been described in detail above, the beneficial technical effects of the devices and media will not be elaborated here.

[0090] Those skilled in the art should understand that the embodiments of this specification can be provided as methods, systems, or computer program products. Therefore, this specification can take the form of a complete hardware embodiment, a complete software embodiment, or an embodiment combining software and hardware aspects. Moreover, this specification can take the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to disk memories, CD-ROMs, optical memories, etc.) containing computer-usable program code.

[0091] This specification is described with reference to the flowcharts and / or block diagrams of methods, devices (systems), and computer program products according to the embodiments of this specification. It should be understood that each flow and / or block in the flowchart and / or block diagram, and the combination of flows and / or blocks in the flowchart and / or block diagram, can be implemented by computer program instructions. These computer program instructions can be provided to the processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable data processing devices to generate a machine, such that the instructions executed by the processor of the computer or other programmable data processing devices generate means for implementing the functions specified in Figure 1 one flow or multiple flows and / or blocks Figure 1 one block or multiple blocks.

[0092] These computer program instructions can also be stored in a computer-readable memory that can direct a computer or other programmable data processing device to work in a specific manner, such that the instructions stored in the computer-readable memory generate a manufactured article including instruction means that implement the functions specified in Figure 1 one flow or multiple flows and / or blocks Figure 1 one block or multiple blocks.

[0093] These computer program instructions can also be loaded onto a computer or other programmable data processing device, so that a series of operation steps are executed on the computer or other programmable device to generate a computer-implemented process, and thus the instructions executed on the computer or other programmable device provide steps for implementing the functions specified in one process Figure 1 one process or multiple processes and / or blocks Figure 1 steps of the functions specified in one block or multiple blocks.

[0094] In a typical configuration, a computing device includes one or more processors (CPUs), an input / output interface, a network interface, and memory.

[0095] The memory may include non-permanent memory in the form of computer-readable media, random access memory (RAM) and / or non-volatile memory such as read-only memory (ROM) or flash memory (flash RAM). The memory is an example of computer-readable media.

[0096] Computer-readable media includes permanent and non-permanent, removable and non-removable media and can store information by any method or technology. The information can be computer-readable instructions, data structures, program modules, or other data. Examples of computer storage media include, but are not limited to, phase change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), flash memory or other memory technologies, compact disc read-only memory (CD-ROM), digital versatile disc (DVD) or other optical storage, magnetic cassette tapes, magnetic tape magnetic disk storage or other magnetic storage devices, or any other non-transmission media that can be used to store information accessible by a computing device. As defined herein, computer-readable media does not include transitory media such as modulated data signals and carrier waves.

[0097] It should also be noted that the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, commodity or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, commodity or device. Without further limitation, an element defined by the statement "comprising an..." does not exclude the presence of additional identical elements in the process, method, commodity or device comprising the element.

[0098] The above description is only for one or more embodiments of this specification and is not intended to limit this specification. For those skilled in the art, various changes and modifications can be made to one or more embodiments of this specification. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of one or more embodiments of this specification shall be included within the scope of the claims of this specification.

Claims

1. A method for managing battery swapping data based on the battery swapping service scenario, characterized in that, The method includes: Receiving swapping data sent by multiple eligible data parties through pre-set access rules; Performing data parsing on the multiple swapping data to match at least one service function attribution area corresponding to each swapping data; According to at least one service function attribution area corresponding to each swapping data, performing service function analysis on the swapping data according to the service function analysis rules pre-set in the service function attribution area, and generating at least one service scenario display information.

2. The method for managing battery swapping data based on the battery swapping service scenario according to claim 1, wherein, Before receiving the swapping data sent by multiple eligible data parties through pre-set access rules, the method further includes: Receiving access requests from multiple data parties, where the access request includes a data transmission method, data party service requirement information, and data party identity information; According to the access request of each data party, performing authentication and authorization judgment on the data party to determine multiple eligible data parties among the multiple data parties, so as to set the access rules of the eligible data parties, where the eligible data parties include self-owned station terminals, cooperative station terminals, self-owned vehicle terminals, and host factory terminals.

3. The method for managing battery replacement data based on the battery replacement service scenario according to claim 2, wherein According to the access request of each data party, performing authentication and authorization judgment on the data party to determine multiple eligible data parties among the multiple data parties, so as to set the access rules of the eligible data parties, specifically including: Performing access identity authentication on the data party according to the data party identity information of the data party to screen multiple designated data parties with identity access permissions; Determining the current authentication permissions of the designated data parties through pre-set permission policies to match at least one current service function requirement corresponding to the current authentication permissions; Based on the data party service requirement information in the access request and the at least one current service function requirement, performing access permission authentication on the designated data parties to screen multiple eligible data parties with requirement access permissions; Setting the access rules of each eligible data party through the data transmission method corresponding to each eligible data party.

4. A method for managing replacement power data based on a replacement power service scenario according to claim 1, characterized in that, Performing data parsing on the multiple swapping data to match at least one service function attribution area corresponding to each swapping data, specifically including: The service function attribution area includes any one or more of a terminal management attribution area, a device management attribution area, a real-time device monitoring attribution area, a historical query attribution area, an alarm attribution area, and a traffic monitoring attribution area; Determining the swapping data, where the swapping data includes any one or more of real-time swapping data, swapping device data, and vehicle terminal traffic data; When the swapping data is the real-time swapping data, the real-time swapping data includes real-time swapping station data and / or real-time vehicle terminal data, and determining that the service function attribution area corresponding to the real-time swapping data is the real-time device monitoring attribution area and / or the alarm attribution area; When the swapping data is the swapping device data, the swapping device data includes station terminal data and / or vehicle terminal data, and determining that the service function attribution area corresponding to the real-time swapping data is the terminal management attribution area and / or the device management attribution area; When the battery swapping data is the vehicle - end traffic data, determine that the business function attribution area corresponding to the real - time battery swapping data is the traffic monitoring attribution area.

5. A method for managing replacement power data based on a replacement power service scenario according to claim 4, wherein According to at least one business function attribution area corresponding to each piece of the battery swapping data, and in accordance with the business function analysis rules preset for the business function attribution area, perform business function analysis on the battery swapping data to generate at least one business scenario display information, specifically including: In the real - time device monitoring attribution area, according to the data attribution subject, perform data normalization processing and data quality monitoring on the real - time battery swapping station data and / or the real - time vehicle - end data, and determine the battery swapping station data display information and / or the vehicle - end data display information; Generate the access - party battery swapping station data display information and / or the access - party vehicle - end data display information corresponding to each data access party according to the data access party corresponding to the real - time battery swapping station data and / or the real - time vehicle - end data; In the alarm attribution area, through preset policy configuration, perform abnormal state warning and abnormal data analysis according to the real - time battery swapping station data and / or the real - time vehicle - end data, and determine the corresponding alarm management display information, where the alarm management display information includes alarm trend information and alarm details information; In the terminal management attribution area, perform data summary analysis on the station - end data and / or the vehicle - end data in at least one dimension, and determine the terminal management display information corresponding to the station - end and / or the vehicle - end, where the terminal management display information includes the total number information, connection number information, offline number information, and distribution map information of the station - end and / or the vehicle - end; In the device management attribution area, manage the battery swapping station and / or the vehicle through data normalization processing of the station - end data and / or the vehicle - end data, and generate the battery swapping station management display information and / or the vehicle management display information; In the traffic monitoring attribution area, perform traffic service statistical analysis on the vehicle - end traffic data, and determine the traffic display information, where the traffic display information includes any one or more of traffic statistical information, traffic remaining information, activation time information, expiration time information, signal strength information, and Internet of Things card renewal information.

6. The method for managing battery swapping data based on a battery swapping service scenario according to claim 1, wherein Perform data parsing on multiple pieces of the battery swapping data, and match at least one business function attribution area corresponding to each piece of the battery swapping data, specifically including: Perform data parsing on each piece of the battery swapping data to determine the data attributes of the battery swapping data, where the data attributes include data source attributes and data attribution attributes; Determine the data source attributes and the data attribution attributes, where the data source includes direct transmission from the battery swapping station, forwarding by a cooperative battery swapping station, direct transmission from the vehicle, and forwarding by the host factory, and the data attribution attributes include battery swapping device data, vehicle data, station - end data, and vehicle - end data; Pre - set the functional requirement data attributes of each business function attribution area, and match the data source attributes and the data attribution attributes with the functional requirement data attributes of each business function attribution area respectively to determine multiple business function attribution areas corresponding to each piece of the battery swapping data; Filter in the multiple business function attribution areas according to the business requirement function information of the access data party, so as to obtain at least one business function attribution area corresponding to each piece of the battery swapping data.

7. A method for managing replacement power data based on a replacement power service scenario according to claim 1, wherein According to at least one business function attribution area corresponding to each piece of the battery swapping data, perform business function analysis on the battery swapping data according to the business function analysis rules preset in the business function attribution area, and generate at least one business scenario display information, specifically including: Pre-set function implementation rules for each of the business function attribution areas to determine the business function analysis rules for each of the business function attribution areas, wherein the business function analysis rules include any one or more of data normalization processing, data quality monitoring, abnormal data analysis, abnormal status warning, and data summary analysis; Perform business function analysis on each piece of the battery swapping data through the business function analysis rules of each of the business function attribution areas, and generate business scenario display information of each piece of the battery swapping data in the business function attribution area.

8. The method for managing replacement power data based on the replacement power service scenario according to claim 1, wherein, The method further includes: Obtain the real-time management requirement information of the user for the battery swapping data, wherein the management requirement information includes a management requirement type and management object information, and the management requirement type includes a business problem location requirement, a data quality monitoring requirement, and a data query requirement; Match the business function attribution area corresponding to the management requirement type according to the management requirement type in the real-time management requirement information; Based on the management object information in the real-time management requirement information, obtain the current business scenario display information of the battery swapping data in the business function attribution area.

9. The method for managing swapping data based on the swapping service scenario according to claim 8, wherein Based on the management object information in the real-time management requirement information, obtain the current business scenario display information of the battery swapping data in the business function attribution area, specifically including: Based on the management object information in the real-time management requirement information, perform historical battery swapping data screening in the business function attribution area to determine multiple specified battery swapping data corresponding to the management object; According to the management requirement type, determine the specified business scenario display information corresponding to the multiple specified battery swapping data in the business function attribution area, wherein the specified business scenario display information includes any one or more of the monitoring display information corresponding to the multiple specified battery swapping data, the abnormal warning information of the multiple specified battery swapping data, the abnormal location information of the multiple specified battery swapping data, and the direct data display information of the multiple specified battery swapping data.

10. A battery swapping data management device based on the battery swapping service scenario, characterized in that, The device includes: A receiving module, configured to receive battery swapping data sent by multiple access data parties through pre-set access rules; A parsing module, configured to perform data parsing on the multiple pieces of battery swapping data to match at least one business function attribution area corresponding to each piece of the battery swapping data; A generating module, configured to perform business function analysis on the battery swapping data according to at least one business function attribution area corresponding to each piece of the battery swapping data, and generate at least one business scenario display information according to the business function analysis rules preset in the business function attribution area.

11. An electronic device, comprising a memory, a processor, and a computer program stored on the memory and executable on the processor, characterized in that, When the processor executes the computer program, it implements the battery swapping data management method based on the battery swapping service scenario described in any one of claims 1-9.

12. 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 battery swapping data management method based on the battery swapping service scenario described in any one of claims 1-9.