Fine processing method and device based on rider battery replacement platform

Through refined processing methods and devices based on the rider battery swap platform, the problem of technical islands in the battery leasing and recycling industry has been solved, system authority control, resource optimization and user experience have been achieved, and the platform's sustainable development and market competitiveness have been promoted.

CN120278664APending Publication Date: 2025-07-08WUHAN ZHUOYING CENTURY TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510346190.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2025-07-08

AI Technical Summary

Technical Problem

The lack of effective integration of various technologies in the battery leasing and recycling industry has led to data silos, increasing operating costs, poor user experience, insufficient data security and privacy protection, cumbersome battery processes, making it difficult for enterprises to provide personalized services.

Method used

Provide refined processing methods and devices based on rider battery swap platform, including functional modules such as user management, marketing activity configuration, piece-by-piece rules and commission configuration, battery asset management, user feedback processing and electrical cabinet point visualization, to realize system permission control, resource optimization allocation and data sharing.

Benefits of technology

It improves rider participation and user activity, optimizes resource utilization and operational efficiency, enhances user experience and market competitiveness, and ensures data security and the sustainable development of the platform.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120278664A_ABST
    Figure CN120278664A_ABST
Patent Text Reader

Abstract

The invention discloses a refined processing method and device based on a rider battery replacement platform, and relates to the technical field of data processing, and the method comprises the steps: creating, modifying and disabling a manager account, a channel account and a rider account, and maintaining a menu, a function role and a data role; a plurality of marketing activities are configured for the rider to participate and obtain rewards; setting a piece counting rule and commission configuration for counting orders of the rider and calculating commission; organizational codes and distribution conditions are configured, and a day set meal is distributed to a rider and synchronized to a third-party platform; battery signing and transferring-out rules and report statistics functions are configured, and battery assets are managed; processing feedback problems of users at the channel end and the rider end; third-party electric cabinet data positions and competing electric cabinet information are imported, electric cabinet point location visualization is achieved, and station building position planning is assisted.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present application relates to the technical field of data processing, and particularly to a refined processing method and device based on a rider battery swapping platform. Background Art

[0002] With the rapid development of e-commerce and the sharing economy, the battery rental and recycling industry has gradually emerged. This industry not only concerns environmental protection and sustainable development, but also directly affects user convenience and cost-effectiveness. In the field of battery rental and recycling, technology plays a crucial role. Through technical means, intelligent management of batteries, optimization of resource allocation, improvement of recycling efficiency, and a more convenient service experience for users can be achieved.

[0003] Currently, the battery rental and recycling industry has adopted a series of existing technologies to improve operational efficiency and user experience. These technologies include, but are not limited to: Internet of Things technology, big data and artificial intelligence technology, blockchain technology, mobile payment and electronic invoice technology.

[0004] At present, the various technologies in the battery rental and recycling industry often operate independently and lack effective integration and coordination. This results in enterprises having to invest a large amount of manpower and material resources in system integration and maintenance when applying these technologies, increasing operating costs. Due to the low degree of technology integration, enterprises often form data silos when applying various technologies, and data sharing and intercommunication cannot be achieved. This limits the enterprise's ability to deeply mine and analyze data and cannot fully utilize the value of data. Although the existing technologies have improved the user experience to a certain extent, there are still deficiencies in some aspects. For example, the processes of battery rental and recycling may still be relatively cumbersome, and users need to spend a lot of time and energy to complete related operations. In addition, enterprises still need to strengthen in providing personalized services. During the process of battery rental and recycling, a large amount of user data and battery data are involved. The existing technologies still have deficiencies in ensuring data security and user privacy protection and are vulnerable to security threats such as hacker attacks and data leaks. Summary of the Invention

[0005] The purpose of the present application is to provide a refined processing method and device based on a rider battery swapping platform.

[0006] To achieve the above purpose, the present application provides the following solutions:

[0007] In a first aspect, the present application provides a refined processing method based on a rider battery swapping platform, including:

[0008] Creating, modifying, and disabling manager accounts, channel accounts, and rider accounts, and maintaining menus, functional roles, and data roles;

[0009] Configure multiple marketing activities for riders to participate in and obtain rewards;

[0010] Set piecework rules and commission configurations for counting riders' orders and calculating commissions;

[0011] Configure organizational codes and allocation conditions, allocate day packages for riders, and synchronize them to third-party platforms;

[0012] Configure battery receipt, transfer rules, and report statistics functions to manage battery assets;

[0013] Handle feedback problems from users on the channel side and rider side;

[0014] Import the data locations of third-party electric cabinets and the information of competitor electric cabinets to visualize the electric cabinet points and assist in the planning of the construction site locations.

[0015] Optionally, the steps of creating, modifying, and disabling manager accounts, channel accounts, and rider accounts, and maintaining menu, functional roles, and data roles include:

[0016] The system administrator logs in to the super administrator account for the first time, creates a management background account and the corresponding mini-program account for the channel, and sets information such as the organizational information, attributes, regions, functional roles, data roles, and mobile phone numbers of the channel, and at the same time provides the function of disabling or enabling the account.

[0017] Optionally, the steps of configuring multiple marketing activities for riders to participate in and obtain rewards include:

[0018] Configure activity rules, where the activity rules include at least one of organizational code, package code, participation times, and rider type, set referral rewards, where the referral rewards include at least one of red envelopes, points, duration vouchers, vouchers, and free vouchers, and riders log in through the marketing mini-program and participate in activities to obtain rewards.

[0019] Optionally, the steps of setting piecework rules and commission configurations for counting riders' orders and calculating commissions include:

[0020] Configure piecework rules, where the piecework rules include at least one of whether to count after the old brings in the new, order channel or enterprise judgment, rider order package type, and piecework rider type. The channel directly distributes commissions monthly or in real time according to the configured piecework riders and commission configurations, and the commission calculation is based on the order amount and name.

[0021] Optionally, the steps of configuring battery receipt, transfer rules, and report statistics functions to manage battery assets include:

[0022] Configure the organization code and allocation conditions in the traffic pool module. The allocation conditions include at least one of the following: the rider can be allocated when the channels are inconsistent and the off-net days reach a specific number, judge the battery binding status, organization consistency, and deposit-free conditions. The channel allocates days for the rider according to the configuration, and the system synchronizes to the third-party platform so that the rider can scan the code on the third-party battery cabinet to obtain battery usage.

[0023] Optionally, the steps of configuring the battery receipt, transfer rules, and report statistics functions to manage battery assets include:

[0024] Configure the battery receipt type, whether to unbind the rider, and transfer type functions. Receive the battery in the channel mini-program by scanning the code or entering the battery code. If there is an old receipt record for the battery, the status is changed to transferred. If unbinding the rider is selected, the platform notifies the third-party platform to complete the unbinding during receipt.

[0025] Optionally, the steps of handling feedback problems from users on the channel side and rider side include:

[0026] The channel or the rider respectively enters the title, content, pictures, etc. in the problem feedback function of the channel mini-program or the marketing mini-program, and after submission, it is followed up and processed by the customer service in the management background.

[0027] In a second aspect, the present application provides a refined processing device based on a rider battery replacement platform, including:

[0028] A user management module, used to create, modify, and disable management accounts, channel accounts, and rider accounts, and maintain menus, functional roles, and data roles;

[0029] An activity management module, used to configure various marketing activities for riders to participate in and obtain rewards;

[0030] A channel piecework management module, used to set piecework rules and commission configurations, count rider orders, and calculate commissions;

[0031] A channel traffic pool management module, used to configure organization codes and allocation conditions, allocate day packages for riders, and synchronize to the third-party platform;

[0032] A battery management module, used to configure battery receipt, transfer rules, and report statistics functions to manage battery assets;

[0033] A CRM management module, used to handle feedback problems from users on the channel side and rider side;

[0034] A site construction planning module, used to import third-party battery cabinet data and competitor battery cabinet information, realize visualization of battery cabinet locations, and assist in site construction location planning.

[0035] Optionally, the user management module is further used for:

[0036] The system administrator logs in to the super administrator account for the first time, creates a management background account and the corresponding mini-program account for the channel, and sets information such as the organization information, attributes, regions, functional roles, data roles, and mobile phone numbers of the channel. At the same time, a function for disabling or enabling the account is provided.

[0037] Optionally, the activity management module is further configured to:

[0038] Configure activity rules, where the activity rules include at least one of organization code, package code, number of participation times, and rider type. Set recommended rewards, where the recommended rewards include at least one of red envelopes, points, time vouchers, vouchers, and free vouchers. Riders log in and participate in the activity through the marketing mini-program to obtain rewards.

[0039] Optionally, the channel piecework management module is further configured to:

[0040] Configure piecework rules, where the piecework rules include at least one of whether to piecework after the old brings in the new, order channel or enterprise judgment, rider order package type, and piecework rider type. The channel directly distributes the commission monthly or in real time according to the successfully configured piecework riders and commission configuration. The commission calculation is based on the order amount and name.

[0041] Optionally, the battery management module is further configured to:

[0042] Configure the organization code and distribution conditions in the traffic pool module. The distribution conditions include at least one of the need to be off the network for a specific number of days when the channels are inconsistent for distribution, judging the battery binding status, organization consistency, and deposit-free conditions. The channel allocates days for the rider according to the configuration, and the system synchronizes to the third-party platform, enabling the rider to scan the code at the third-party electric cabinet to obtain battery usage.

[0043] Optionally, the battery management module is further configured to:

[0044] Configure battery receipt types, whether to unbind riders, and transfer-out type functions. Sign for the battery in the channel mini-program by scanning the code or entering the battery code. If there is an old receipt record for the battery, the status is changed to transferred out. If unbinding the rider is selected, the platform notifies the third-party platform to complete the unbinding during receipt.

[0045] Optionally, the CRM management module is further configured to:

[0046] The channel or rider enters the title, content, pictures, etc. in the problem feedback function of the channel mini-program or the marketing mini-program respectively. After submission, the customer service in the management background follows up and processes it.

[0047] In a third aspect, the present application provides a computer device, including: a memory, a processor, and a computer program stored on the memory and executable on the processor, where the processor executes the computer program to implement the steps of the refined processing method based on the rider battery swapping platform described in any one of the above.

[0048] In a fourth aspect, the present application provides 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 steps of the refined processing method based on the rider battery swapping platform described in any one of the above.

[0049] In a fifth aspect, the present application provides a computer program product, including a computer program, and when the computer program is executed by a processor, it implements the steps of the refined processing method based on the rider battery swapping platform described in any one of the above.

[0050] According to the specific embodiments provided by the present application, the following technical effects are disclosed in the present application:

[0051] The present application provides a refined processing method and device based on a rider battery swapping platform. Through the account management function, strict control of system access rights is ensured, while diverse marketing activities attract the active participation of riders, increasing the order volume and user activity. At the same time, the automated processing of piecework rules and commission configurations reduces manual intervention, improves operational efficiency, and effectively controls costs. The optimization of resource allocation and utilization is achieved through reasonable allocation of day packages and synchronization to third-party platforms, while the improvement of battery asset management efficiency relies on precise receipt, transfer rules, and report statistics functions. In addition, the timeliness of handling user feedback problems enhances the user experience and satisfaction, while the visualization of cabinet locations provides strong decision-making support for managers. These technical effects jointly promote the continuous development of the platform, enhance market competitiveness, ensure the effective allocation and utilization of resources, and at the same time improve user satisfaction and platform operational efficiency. Therefore, the above technical implementation has a significant promoting effect on the overall development of the platform and the improvement of market competitiveness. Description of the Drawings

[0052] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required to be used in the embodiments. Obviously, the drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.

[0053] Figure 1 It is a schematic flowchart of a refined processing method based on a rider battery swapping platform provided by an embodiment of the present application;

[0054] Figure 2One of the logic diagrams of a refined processing method based on a rider battery swapping platform provided by an embodiment of the present application;

[0055] Figure 3 Another logic diagram of a refined processing method based on a rider battery swapping platform provided by an embodiment of the present application;

[0056] Figure 4 Another logic diagram of a refined processing method based on a rider battery swapping platform provided by an embodiment of the present application;

[0057] Figure 5 Functional module diagram of a refined processing device based on a rider battery swapping platform provided by an embodiment of the present application;

[0058] Figure 6 Structural diagram of a computer device provided by an embodiment of the present application. Detailed implementation manners

[0059] Next, the technical solutions in the embodiments of the present application will be clearly and completely described with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present application without creative efforts shall fall within the protection scope of the present application.

[0060] As Figure 1 shown, some embodiments of the present application provide a refined processing method based on a rider battery swapping platform. In the embodiments of the present application, the following steps 101 to 107 are included. Among them:

[0061] Step 101: Create, modify, and disable administrator accounts, channel accounts, and rider accounts, and maintain menus, functional roles, and data roles.

[0062] In the implementation of the present application, creating an account means creating a login account for new administrators, channel partners, or riders, and assigning a unique username and password so that they can access the system.

[0063] Modifying an account means updating the information of an existing account according to requirements, such as contact information, permissions, etc.

[0064] Disabling an account means disabling the account of a person when they leave the company or no longer need access rights to ensure system security.

[0065] Maintaining the menu, functional roles, and data roles means designing and managing the menu structure of the system, defining different functional roles (such as administrators, ordinary users, etc.) and data roles (such as data viewers, data editors, etc.), and ensuring that each user can only access the functions and data within their authorized scope.

[0066] Step 102: Configure various marketing activities for riders to participate in and obtain rewards.

[0067] In the implementation of this application, according to business requirements, design and implement various marketing activities, such as rewards for meeting the order volume standard, rewards for inviting new riders, etc. Set the participation conditions, reward rules, and time range of the activities to ensure that the activities can effectively motivate riders.

[0068] Step 103: Set piecework rules and commission configurations for counting riders' orders and calculating commissions.

[0069] In the implementation of this application, define piecework rules, such as the basic commission per order, additional reward conditions, etc. Configure the commission calculation system to automatically calculate and generate commission reports based on riders' order data.

[0070] Step 104: Configure organization codes and allocation conditions, allocate day packages for riders, and synchronize them to the third-party platform.

[0071] In the implementation of this application, assign a unique code to the organization or team for easy management and identification. According to the allocation conditions (such as riders' working areas, levels, etc.), allocate specific day packages (such as the number of working days per month) for them. Synchronize this package information to the third-party platform to ensure the consistency and accuracy of the information.

[0072] Step 105: Configure battery receipt, transfer rules, and report statistics functions to manage battery assets.

[0073] In the implementation of this application, formulate rules for battery receipt and transfer to ensure that the use and transfer of batteries comply with regulations. Develop report statistics functions to track the inventory, usage, and maintenance records of batteries in real time. Through these functions, effectively manage battery assets and improve usage efficiency and safety.

[0074] Step 106: Handle feedback problems from users at the channel end and rider end.

[0075] In the implementation of this application, receive and handle feedback problems from channel partners and riders, such as system usage questions, function suggestions, etc. Respond and solve problems in a timely manner to improve user satisfaction and system usability.

[0076] Step 107: Import the data locations of third-party electric cabinets and the information of competitor electric cabinets to achieve visualization of electric cabinet locations and assist in the planning of station construction locations.

[0077] In the implementation of this application, the data location information of the electric cabinets is imported from a third-party platform, including longitude and latitude, address, etc. The information of the electric cabinets of competitors is imported for market analysis and comparison. Using this information, the visualization display of the electric cabinet points is realized, providing data support for the selection and planning of the site for building stations.

[0078] The channel can import and upload various platform electric cabinet longitude and latitude data in this module. After the import is completed, the electric cabinet data can be macroscopically viewed on the home page map. Among them, the location calculation function can upload reference data and other point data, and the system calculates the electric cabinet score through a model, and reasonably plans the site for building stations according to the score.

[0079] The model is the following formula (1):

[0080] Z = A * 0.4 + B * 0.1 + C * 0.3 + D * 0.05 + E * 0.05 + F * 0.05 + G * 0.05 (1)

[0081] Where A is the number of battery replacement times, B is the number of people replacing batteries, C is the number of orders within 500 meters around the electric cabinet, D is the number of food delivery orders within and outside 1000 meters around the electric cabinet, E is the number of food delivery orders within 1500 meters of the electric cabinet, F is the number of battery replacement times per month / the number of rental times of the site, G is the number of battery replacement times per month / the unit price of electricity, and Z is the electric cabinet score.

[0082] Exemplarily, referring to Figure 2 , the management terminal, as the core of battery management, is responsible for the overall monitoring and life cycle management of batteries, including battery registration, tracking, maintenance, and recycling, etc. It maintains a central database to ensure the security and accuracy of all battery information. The third-party platform is docked with the management terminal to obtain and process the basic information of the batteries, such as technical specifications, usage history, and recycling status, etc. This information provides data support for the third-party platform, enabling it to optimize services and better serve the battery management system. The channel mini-program is the interaction interface between users and partners. Users can sign for battery rules through the mini-program and participate in the recycling and handover operations of the batteries. This step ensures that users can conveniently participate in the battery recycling process and improves the recycling efficiency. The channel represents the specific implementation ways of battery recycling, including recycling points, recycling bins, and door-to-door recycling services, etc. These channels provide users with multiple recycling methods, making battery recycling more flexible and convenient. At the management terminal, the basic information of the batteries is pushed to the third-party platform so that the latter can use this information to provide better services. At the same time, the management terminal is also responsible for creating battery signing rules and communicating them to users through the channel mini-program to ensure the standardization and traceability of the recycling process. In the actual recycling process, the channel obtains the battery code by inputting or scanning the code for signing or transferring operations. This step ensures the uniqueness and traceability of each battery in the recycling process and improves the accuracy of recycling management.

[0083] Refer to Figure 3 , the management terminal first creates channel piecework rules, which provide clear guidance for subsequent piecework operations. At the same time, the management terminal also selects basic battery information, which is the basis for calculating commissions and piecework fees. The channel mini-programs are developed and maintained by each channel. When a rider finishes charging, the channel staff will enter the rider's number in the mini-program to perform piecework operations and obtain information on battery exhaustion. The rider conducts a recharge operation on the third-party platform. Once the recharge is completed, the third-party platform will push relevant information to the management terminal to provide data support for subsequent commission calculation and report generation. The channel is responsible for receiving and processing the rider recharge information pushed from the third-party platform. After the piecework operation is completed, the channel will generate detailed piecework reports and deposit reports, which record the piecework situation and deposit status of the rider. After receiving the reports submitted by the channel, the management terminal will conduct reviews and statistics, and finally generate commission reports and deposit reports. These reports are not only used to record the commission payment situation of the rider but also serve as the basis for settlement between the management terminal and the channel.

[0084] Refer to Figure 4 , create an old customer brings new customer activity through the marketing mini-program and display it on the mini-program platform to attract new and old users to participate. This step aims to increase the registration and activity of new users through the recommendation of old users. Then, the management terminal is responsible for comprehensively setting up and managing these marketing activities, including releasing activity information, setting up reward mechanisms, etc., to ensure the smooth progress of the activities. As an important participant in the activities, the rider recharges on the third-party platform. They can sign for or transfer out by entering or scanning the invitation code to complete the recharge process. This step provides financial support for the rider to participate in subsequent activities. The third-party platform provides convenient recharge services for the rider and synchronizes information with the management terminal to ensure accurate management of the rider's recharge records. After completing the recharge, the rider can view their orders and detailed information on participating in activities in the marketing mini-program. According to the activity rules, the rider can receive corresponding rewards or discounts to further enhance their enthusiasm for participating in the activities.

[0085] The embodiments of this application ensure strict control over system access rights through the account management function. Diversified marketing activities attract the active participation of riders, increasing the order volume and user activity. At the same time, the automated processing of piece-rate rules and commission configurations reduces manual intervention, improves operational efficiency, and effectively controls costs. The optimization of resource allocation and utilization is achieved through reasonable allocation of day packages and synchronization to third-party platforms, while the improvement of battery asset management efficiency relies on precise receipt, transfer rules, and report statistics functions. In addition, the timeliness of handling user feedback problems enhances the user experience and satisfaction, and the visualization of cabinet locations provides strong decision-making support for managers. These technical effects jointly promote the continuous development of the platform, enhance market competitiveness, ensure the effective allocation and utilization of resources, and at the same time improve user satisfaction and platform operation efficiency. Therefore, the above technical implementation plays a significant role in promoting the overall development of the platform and enhancing its market competitiveness.

[0086] Optionally, step 101 includes: The system administrator logs in to the super administrator account for the first time, creates a management background account and a corresponding mini-program account for the channel, and sets information such as the organization information, attributes, regions, functional roles, data roles, and mobile phone numbers of the channel. At the same time, a function to disable or enable the account is provided.

[0087] In the implementation of this application, the system administrator is a senior user responsible for managing the overall operation and configuration of the system. Logging in to the super administrator account for the first time means that the administrator enters the system for the first time and starts the system initialization and configuration work.

[0088] After logging in to the super administrator account, the system administrator creates a dedicated management background account for the channel partner. This account will allow the channel partner to log in to the management background of the system and perform a series of management and configuration operations.

[0089] In addition to the management background account, the system administrator also creates a corresponding mini-program account for the channel partner. The mini-program account is usually used for the interaction between the channel partner and the end user, such as displaying product information and accepting orders.

[0090] The system administrator sets the organization information for the channel partner, such as company name, address, contact information, etc. This information will be used for internal system management and external display to help users identify and understand the channel partner.

[0091] The system administrator sets the attributes for the channel partner, such as channel type, industry classification, etc. These attributes help the system classify and manage the channel partner and provide more precise services and support.

[0092] The system administrator sets the service areas for channel partners, such as cities, districts, and counties. This helps the system allocate orders and resources according to the service areas of channel partners, improving operational efficiency.

[0093] The system administrator assigns functional roles and data roles to the administrators of channel partners. The functional role determines the system functions that the administrator can access and use, while the data role determines the scope of data that the administrator can view and operate on.

[0094] The system administrator sets contact information such as mobile phone numbers for the administrators of channel partners. This information will be used in scenarios such as system notifications and verification code sending to ensure that administrators can receive important information in a timely manner.

[0095] The system administrator can disable or enable the accounts of channel partners at any time. When a channel partner no longer needs to access the system or there are security risks, the administrator can disable its account; when it needs to be re-enabled, the administrator can also easily complete the operation.

[0096] Optionally, step 102 includes: configuring activity rules, where the activity rules include at least one of organization code, package code, number of participation times, and rider type, setting recommended rewards, where the recommended rewards include at least one of red envelopes, points, duration vouchers, vouchers, and free vouchers, and riders log in and participate in the activity through the marketing mini-program to obtain rewards.

[0097] In the implementation of this application, activity rules are an important part of the refined operation of the rider battery replacement platform, which determines how riders participate in the activity and the specific details of the activity. The configuration of activity rules usually includes the following aspects:

[0098] The organization code is used to identify different organizations or channels, ensuring that the activity can accurately target specific rider groups. Through the organization code, the platform can flexibly manage rider activities under different channels or organizations, achieving refined operation.

[0099] The package code is used to distinguish different activity packages, and each package may contain different preferential conditions or reward mechanisms. By configuring the package code, the platform can provide diverse choices for riders to meet the needs and preferences of different riders. The number of participation times limits the frequency of riders participating in the activity, preventing the abuse of activity resources. The platform can flexibly set the number of participation times according to the specific situation and goals of the activity to ensure the fairness and sustainability of the activity.

[0100] The rider type is used to distinguish different types of riders, such as new users, old users, returning users, etc. By setting different activity rules for different types of riders, the platform can more effectively attract and motivate riders to participate in the activity.

[0101] When configuring the activity rules, the platform administrator can select at least one of the above elements according to the actual needs to build activity rules that meet specific scenarios and goals.

[0102] The referral reward is one of the important incentives to attract riders to participate in activities. The platform sets diverse referral rewards to encourage riders to actively promote and use the battery swapping service. The referral rewards usually include the following types:

[0103] Red envelopes are a direct economic incentive. Riders can obtain a certain amount of red envelope rewards by participating in activities, which can be used for consumption or cash withdrawal on the platform.

[0104] Points are a cumulative reward method. Riders obtain points by participating in activities, and the points can be exchanged for goods or services on the platform, increasing rider stickiness and loyalty.

[0105] Duration vouchers are a reward method that provides additional service time. Riders can obtain duration vouchers by participating in activities, which can be used to extend the battery usage time or the validity period of the battery swapping service.

[0106] Vouchers are a reward method for deducting cash. Riders can use vouchers to deduct part of the amount when consuming on the platform, reducing the usage cost.

[0107] Free vouchers are a flexible reward method. Riders can choose to exchange different goods or services according to their own needs, increasing the diversity and attractiveness of the rewards.

[0108] When setting the referral rewards, the platform administrator can select at least one of the above reward types according to the activity goals and budget to build an attractive reward mechanism.

[0109] The marketing mini-program is the entry point and platform for riders to participate in activities. By logging in to the marketing mini-program, riders can browse and select the activities to participate in, complete tasks according to the activity rules, and obtain corresponding rewards.

[0110] Riders first need to download and install the marketing mini-program, and then log in with their own accounts. After logging in, riders can browse various activity information published on the platform.

[0111] Riders choose the activities they want to participate in according to their interests and needs. When choosing an activity, riders can view detailed information such as the activity rules, reward mechanisms, and participation conditions. Once they decide to participate in an activity, riders need to complete tasks according to the activity rules, such as inviting new users and completing a certain number of orders.

[0112] After the rider completes the task, the platform will automatically issue corresponding rewards to the rider according to the activity rules and reward mechanism. The rider can view their reward records and usage in the marketing mini-program and exchange or consume them as needed.

[0113] Optionally, step 103 includes: configuring a piecework rule, which includes at least one of whether to count piecework after an experienced rider brings in a new rider, order channel or enterprise judgment, rider order package type, and piecework rider type. The channel will directly distribute the commission monthly or in real time according to the successfully configured piecework riders and commission configuration. The commission calculation is based on the order amount and name.

[0114] In the implementation of this application, whether to count piecework after an experienced rider brings in a new rider means that when an experienced rider (or called a master) brings in a new rider (or called an apprentice), whether the new rider's orders will be included in the experienced rider's piecework quantity. If the platform sets "count piecework after an experienced rider brings in a new rider", then in addition to completing their own orders, the experienced rider can also obtain additional piecework income by guiding new riders. This rule helps to motivate experienced riders to help new riders grow quickly and improve the overall work efficiency of the rider team.

[0115] Order channel or enterprise judgment requires the platform to judge the source channel of the order or the enterprise that placed the order. Different channels or enterprises may have different piecework standards and commission policies. For example, some large chain restaurants may have a cooperation agreement with the platform, providing higher commissions or additional rewards for riders. By judging the order channel or enterprise, the platform can ensure that riders receive the due income.

[0116] The rider order package type means that the orders received by the rider on the platform may belong to different package types, such as regular packages, special offer packages, etc. Different package types may have different piecework standards and commission ratios. Therefore, the platform needs to configure this rule to accurately calculate the rider's income.

[0117] The piecework rider type means that the riders on the platform may be divided into different types, such as full-time riders, part-time riders, crowdsourcing riders, etc. Different types of riders may have different piecework requirements and commission policies. For example, full-time riders may have higher piecework standards and more stable income guarantees, while part-time riders and crowdsourcing riders may be more flexible and free.

[0118] The commission calculation is usually based on the order amount and name. The platform will determine the commission ratio according to the rider's order amount and order type (such as regular orders, urgent orders, etc.). Then, multiplying the order amount by the commission ratio can obtain the rider's commission income. In addition, some platforms will also fine-tune the commission according to factors such as the rider's evaluation and on-time rate.

[0119] There are usually two ways to pay commissions: direct monthly payment or real-time direct payment. Direct monthly payment means that the platform disburses the rider's commission for the current month to the rider's account on a fixed date each month. This method helps the platform better manage its cash flow and the rider's income. Real-time direct payment means that the platform disburses the commission to the rider's account immediately after the rider completes an order. This method allows riders to receive income faster, improving rider satisfaction and loyalty.

[0120] Optionally, step 105 includes: configuring organization codes and allocation conditions in the traffic pool module. The allocation conditions include at least one of the following: off-net for a specific number of days due to inconsistent channels for allocation, judging the battery binding status, organization consistency, and deposit-free conditions. The channel allocates days for the rider according to the configuration, and the system synchronizes to the third-party platform, enabling the rider to scan the code on the third-party battery cabinet to obtain battery usage.

[0121] In the implementation of this application, the traffic pool module refers to a system module for managing battery resource allocation. In shared battery or battery swapping services, the traffic pool module is responsible for monitoring battery inventory, allocation, and recycling to ensure the effective utilization of batteries and smooth use by riders.

[0122] Organization code configuration is a unique code used to identify different organizations or teams. Configuring organization codes in the traffic pool module means allocating battery resources to specific organizations or teams so that riders within these organizations or teams can use these batteries.

[0123] Allocation conditions refer to a series of rules or conditions that need to be considered when allocating battery usage permissions to riders. These conditions include:

[0124] Off-net for a specific number of days due to inconsistent channels for allocation: If the rider's registration channel is inconsistent with the battery channel currently being attempted to use, then the rider needs to be off-net (i.e., no longer use the battery of the current channel) for a specific number of days before being allocated to the battery of the new channel. This is to prevent resource conflicts and abuse between channels.

[0125] Judging the battery binding status: Before allocating a battery, the system needs to check whether the battery has been bound by another rider. If the battery has been bound, it cannot be reallocated to other riders unless it is unbound first.

[0126] Organization consistency: This requires that the rider's organization code matches the organization code of the battery. Only riders belonging to the same organization can use the battery resources of that organization.

[0127] Deposit-free conditions: This refers to whether the rider needs to pay a deposit when obtaining battery usage permissions. According to the configuration, the system can automatically judge whether the rider meets the deposit-free conditions, thus deciding whether to require the rider to pay a deposit.

[0128] The channel allocating days for riders according to the configuration means that once the allocation conditions are met, the channel will allocate specific usage days for riders according to the configuration. This means that riders can freely use the allocated batteries within a certain period of time without having to repeat applications or pay additional fees.

[0129] The system synchronizing to the third-party platform means that in order to ensure that riders can successfully scan the code at the third-party electric cabinet to obtain battery usage, the traffic pool module needs to synchronize the allocation results and relevant information to the third-party platform. In this way, when the rider scans the code at the third-party electric cabinet, the system can automatically identify the rider's identity and permissions, thus allowing the rider to obtain and use the battery.

[0130] Optionally, step 105 includes: configuring the battery receipt type, whether to unbind the rider and the transfer-out type function, receiving the battery in the channel applet by scanning the code or entering the battery code. If there is an old receipt record for the battery, the status is changed to transfer-out. If the rider unbinding is selected, the platform notifies the third-party platform to complete the unbinding during receipt.

[0131] In the embodiment of the present application,

[0132] The battery receipt type refers to different types or modes provided by the platform for battery receipt. For example, the platform may allow riders to directly receive the battery, receive it through a specific channel, or perform different types of receipts according to the status of the battery (such as new battery, battery after repair, etc.). Configuring the battery receipt type can ensure the standardization and traceability of the battery during the receipt process.

[0133] Whether to unbind the rider means that this function allows the platform to decide whether to unbind the relationship between the current rider and the battery during battery receipt. In some cases, the rider may need to replace the battery or the battery needs to be reallocated to other riders, and then the unbinding operation is required. By configuring this function, the platform can flexibly manage the binding relationship between the battery and the rider.

[0134] The transfer-out type function refers to the transfer-out type function used to handle the situation where the battery changes from the current state to the transfer-out state. When there is an old receipt record for the battery, that is, the battery has been received by other riders before, then the status of the battery may need to be changed from "in use" or "received" to "transfer-out" to indicate that the battery is no longer in the hands of the original rider but has been transferred out. Configuring the transfer-out type function can ensure the accuracy and timeliness of the battery status.

[0135] Receiving the battery by scanning the code means that the rider completes the receipt by scanning the QR code on the battery. This method is fast and convenient, and can automatically record the receipt time and location, improving the receipt efficiency.

[0136] Entering the battery code to sign for delivery means that if there is no QR code on the battery or it is inconvenient to scan the code, the rider can also complete the signing by manually entering the battery code. Although this method is relatively slow, it is still an effective way to sign for delivery in certain circumstances.

[0137] If there is an old receipt record for the battery, the status is changed to "Transferred Out": When the rider signs for the battery in the channel applet, the system will check whether there is an old receipt record for the battery. If so, it means that the battery has been signed for by another rider before and is now transferred to the current rider. At this time, the system will automatically change the battery status from "In Use" or "Signed for" to "Transferred Out" to reflect the actual circulation of the battery.

[0138] If you choose to unbind the rider, the platform will notify the third-party platform to complete the unbinding when signing for the goods. This means that if the platform is configured with the "whether to unbind the rider" function, and the rider chooses to unbind when signing for the goods, the platform will notify the third-party platform to complete the corresponding unbinding work during the signing process. This includes unbinding the relationship between the rider and the battery, updating the battery status, etc. Through this operation, the platform can ensure that the binding relationship between the battery and the rider is updated and maintained in a timely manner.

[0139] Optionally, step 106 includes: the channel or the rider respectively enters the title, content, and picture in the question feedback function of the channel mini program or the marketing mini program, and after submission, the customer service of the management background follows up and processes it.

[0140] In the embodiments of the present application,

[0141] The Channel Mini Program is a mini program designed specifically for channel parties, which provides a series of functions related to channel management. Channel parties can submit problem feedback, view processing progress, etc. through this mini program.

[0142] The marketing app is for riders or other users to use. It focuses more on feedback on user experience, service improvement, and other aspects.

[0143] The question feedback function is an important module in the mini program, allowing users (channels or riders) to input questions or suggestions about platform services, functions, experience, etc.

[0144] After filling in the title, content, pictures and other information, the user can click the Submit button to send the problem feedback to the platform. After submission, the problem feedback will be forwarded to the customer service team in the management backend for processing. The customer service staff will classify and analyze the feedback content and provide a solution or reply as soon as possible. If further verification of the situation or communication with other departments is required, the customer service staff will also follow up and update the processing progress in a timely manner.

[0145] Based on the same inventive concept, an embodiment of the present application further provides a refined processing device for a rider battery replacement platform for implementing the refined processing method for a rider battery replacement platform involved above. The solution provided by this device to solve problems is similar to the solution described in the above method. Therefore, the specific limitations in one or more embodiments of the refined processing device for a rider battery replacement platform provided below can refer to the limitations on the refined processing method for a rider battery replacement platform in the above text, and will not be elaborated here.

[0146] In an exemplary embodiment, as Figure 5 shown, a refined processing device 20 for a rider battery replacement platform is provided, including:

[0147] A user management module 201, configured to create, modify, and disable manager accounts, channel accounts, and rider accounts, and maintain menus, functional roles, and data roles;

[0148] An activity management module 202, configured to configure various marketing activities for riders to participate in and obtain rewards;

[0149] A channel piecework management module 203, configured to set piecework rules and commission configurations, count rider orders, and calculate commissions;

[0150] A channel traffic pool management module 204, configured to configure organization codes and allocation conditions, allocate day packages for riders, and synchronize them to a third-party platform;

[0151] A battery management module 205, configured to configure battery receipt, transfer rules, and report statistics functions, and manage battery assets;

[0152] A CRM management module 206, configured to handle feedback problems from users on the channel side and the rider side;

[0153] A site construction planning module 207, configured to import third-party cabinet data and competitor cabinet information, realize visualization of cabinet points, and assist in site construction location planning.

[0154] Optionally, the user management module 201 is further configured to:

[0155] When the system administrator logs in to the super administrator account for the first time, create a management background account and a corresponding mini-program account for the channel, and set information such as the organization information, attributes, regions, functional roles, data roles, and mobile phone numbers of the channel. At the same time, provide the function of disabling or enabling the account.

[0156] Optionally, the activity management module 202 is further configured to:

[0157] Configure activity rules, where the activity rules include at least one of organization code, package code, number of participation times, and rider type. Set recommended rewards, where the recommended rewards include at least one of red envelopes, points, time vouchers, vouchers, and free vouchers. Riders log in and participate in the activity through the marketing mini-program to obtain rewards.

[0158] Optionally, the channel piecework management module 203 is further configured to:

[0159] Configure piecework rules, where the piecework rules include at least one of whether to piecework after old brings new, order channel or enterprise judgment, rider order package type, and piecework rider type. The channel directly distributes the commission monthly or in real time according to the configured successful piecework riders and commission configuration. The commission calculation is based on the order amount and name.

[0160] Optionally, the battery management module 205 is further configured to:

[0161] Configure the organization code and distribution conditions in the traffic pool module. The distribution conditions include at least one of the need to be off-grid for a specific number of days when the channels are inconsistent for distribution, judgment of the battery binding status, organization consistency, and deposit-free conditions. The channel allocates days for the rider according to the configuration, and the system synchronizes to the third-party platform so that the rider can scan the code at the third-party electric cabinet to obtain battery usage.

[0162] Optionally, the battery management module 205 is further configured to:

[0163] Configure battery receipt types, whether to unbind the rider, and transfer-out type functions. Sign for the battery in the channel mini-program by scanning the code or entering the battery code. If there is an old receipt record for the battery, the status is changed to transferred out. If the rider is selected to be unbound, the platform notifies the third-party platform to complete the unbinding during receipt.

[0164] Optionally, the CRM management module 206 is further configured to:

[0165] The channel or the rider enters the title, content, pictures, etc. in the problem feedback function of the channel mini-program or the marketing mini-program respectively. After submission, it is followed up and processed by the customer service of the management background.

[0166] The embodiments of the present application ensure strict control of system access rights through the account management function, while diverse marketing activities attract the active participation of riders, increasing the order volume and user activity. At the same time, the automated processing of piecework rules and commission configuration reduces manual intervention, improves operational efficiency, and effectively controls costs. The optimization of resource allocation and utilization is achieved through reasonable allocation of day packages and synchronization to third-party platforms, while the improvement of battery asset management efficiency depends on accurate receipt, transfer rules, and reporting functions. In addition, the timeliness of handling user feedback issues enhances the user experience and satisfaction, while the visualization of cabinet locations provides strong decision-making support for managers. These technical effects jointly promote the continuous development of the platform, enhance market competitiveness, ensure the effective allocation and utilization of resources, and at the same time improve user satisfaction and platform operation efficiency. Therefore, the above technical implementation has a significant promoting effect on the overall development of the platform and the improvement of market competitiveness.

[0167] In an exemplary embodiment, a computer device is provided. The computer device can be a server or a terminal, and its internal structural diagram can be as Figure 6 shown. The computer device includes a processor, a memory, an input / output interface (Input / Output, abbreviated as I / O), and a communication interface. Among them, the processor, the memory, and the input / output interface are connected through a system bus, and the communication interface is connected to the system bus through the input / output interface. Among them, the processor of the computer device is used to provide computing and control capabilities. The memory of the computer device includes a non-volatile storage medium and an internal memory. The non-volatile storage medium stores an operating system, a computer program, and a database. The internal memory provides an environment for the operation of the operating system and the computer program in the non-volatile storage medium. The database of the computer device is used to store refined processing data based on the rider battery replacement platform. The input / output interface of the computer device is used to exchange information between the processor and external devices. The communication interface of the computer device is used to communicate with external terminals through a network connection. When the computer program is executed by the processor, it implements a refined processing method based on the rider battery replacement platform.

[0168] Those skilled in the art can understand that Figure 6 the structure shown in

[0169] is only a block diagram of some structures related to the solution of the present application, and does not constitute a limitation on the computer device to which the solution of the present application is applied. The specific computer device may include more or fewer components than those shown in the figure, or combine certain components, or have different component arrangements. In an exemplary embodiment, a computer device is further provided, including a memory and a processor. A computer program is stored in the memory, and when the processor executes the computer program, the steps in the above method embodiments are implemented.

[0170] In an exemplary embodiment, a computer-readable storage medium is provided, storing a computer program which, when executed by a processor, implements the steps in the above method embodiments.

[0171] In an exemplary embodiment, a computer program product is provided, including a computer program which, when executed by a processor, implements the steps in the above method embodiments.

[0172] It should be noted that the user information (including but not limited to user device information, user personal information, etc.) and data (including but not limited to data for analysis, stored data, displayed data, etc.) involved in this application are all information and data authorized by the user or fully authorized by all parties, and the collection, use, and processing of relevant data need to comply with relevant regulations.

[0173] Those of ordinary skill in the art can understand that all or part of the processes in implementing the methods of the above embodiments can be completed by instructing relevant hardware through a computer program. The computer program can be stored in a non-volatile computer-readable storage medium. When the computer program is executed, it can include the processes of the above method embodiments. Among them, any reference to a memory, database, or other medium used in the embodiments provided in this application can include at least one of non-volatile and volatile memories. Non-volatile memory can include read-only memory (ROM), magnetic tape, floppy disk, flash memory, optical memory, high-density embedded non-volatile memory, resistive random access memory (ReRAM), magnetoresistive random access memory (MRAM), ferroelectric random access memory (FRAM), phase change memory (PCM), graphene memory, etc. Volatile memory can include random access memory (RAM) or external cache memory, etc. By way of illustration and not limitation, RAM can be in various forms, such as static random access memory (SRAM) or dynamic random access memory (DRAM), etc.

[0174] In each of the embodiments provided in the present application, the database involved may include at least one of a relational database and a non-relational database. The non-relational database may include a distributed database based on blockchain, etc., and is not limited thereto. In each of the embodiments provided in the present application, the processor may be a general-purpose processor, a central processing unit, a graphics processing unit, a digital signal processor, a programmable logic device, a data processing logic device based on quantum computing, etc., and is not limited thereto.

[0175] The technical features of the above embodiments can be combined arbitrarily. For the sake of concise description, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered as the scope recorded in this specification.

[0176] Specific examples are used in this article to elaborate on the principles and implementation manners of the present application. The description of the above embodiments is only used to help understand the method and its core idea of the present application; at the same time, for those of ordinary skill in the art, according to the idea of the present application, there will be changes in the specific implementation manners and application scopes. In summary, the content of this specification should not be construed as a limitation to the present application.

Claims

1. A refined processing method based on a rider battery replacement platform, characterized in that, The refined processing method based on the rider battery replacement platform includes: Creating, modifying, and disabling administrator accounts, channel accounts, and rider accounts, and maintaining menus, functional roles, and data roles; Configuring various marketing activities for riders to participate in and obtain rewards; Setting piecework rules and commission configurations for counting riders' orders and calculating commissions; Configuring organizational codes and allocation conditions, allocating day packages for riders, and synchronizing them to a third-party platform; Configuring battery receipt, transfer rules, and report statistics functions to manage battery assets; Handling feedback problems from users on the channel side and the rider side; Importing the data locations of third-party battery cabinets and the information of competing battery cabinets to achieve visualization of battery cabinet locations and assist in the planning of station construction locations.

2. The refined processing method based on the rider battery swapping platform according to claim 1, wherein The steps of creating, modifying, and disabling administrator accounts, channel accounts, and rider accounts, and maintaining menus, functional roles, and data roles include: The system administrator logs in to the super administrator account for the first time, creates a management background account and the corresponding mini-program account for the channel, and sets information such as the organization information, attributes, regions, functional roles, data roles, and mobile phone numbers of the channel. At the same time, a function to disable or enable the account is provided.

3. The refined processing method based on the rider battery swapping platform according to claim 1, wherein The steps of configuring various marketing activities for riders to participate in and obtain rewards include: Configuring activity rules, which include at least one of organizational code, package code, participation times, and rider type. Setting recommended rewards, which include at least one of red envelopes, points, time vouchers, vouchers, and free vouchers. Riders log in and participate in the activities through the marketing mini-program to obtain rewards.

4. The refined processing method based on the rider battery swapping platform according to claim 1, wherein The steps of setting piecework rules and commission configurations for counting riders' orders and calculating commissions include: Configuring piecework rules, which include at least one of whether to count after bringing in new riders, order channel or enterprise judgment, rider order package type, and piecework rider type. The channel directly distributes commissions monthly or in real time according to the successfully configured piecework riders and commission configurations. Commission calculation is based on the order amount and name.

5. The refined processing method based on the rider battery replacement platform according to claim 1, wherein The steps of configuring battery receipt, transfer rules, and report statistics functions to manage battery assets include: Configuring organizational codes and allocation conditions in the traffic pool module. The allocation conditions include at least one of the need to be off-grid for a specific number of days when the channels are inconsistent, judging the battery binding status, organizational consistency, and deposit-free conditions. The channel allocates days for riders according to the configuration, and the system synchronizes to the third-party platform, enabling riders to scan the code at the third-party battery cabinet to obtain battery usage.

6. The refined processing method based on the rider battery swapping platform according to claim 1, wherein, The steps of configuring battery receipt, transfer rules, and report statistics functions to manage battery assets include: Configuring battery receipt types, whether to unbind riders, and transfer types functions. Sign for the battery in the channel mini-program by scanning the code or entering the battery code. If there is an old receipt record for the battery, the status is changed to transferred out. If unbinding the rider is selected, the platform notifies the third-party platform to complete the unbinding during receipt.

7. The refined processing method based on the rider battery swapping platform according to claim 1, wherein The steps of handling feedback problems from users on the channel side and the rider side include: The channel or rider respectively enters the title, content, pictures, etc. in the problem feedback function of the channel mini-program or the marketing mini-program. After submission, the customer service in the management background follows up and handles it.

8. A refined processing device based on a rider battery replacement platform, characterized in that, The refined processing device based on the rider battery replacement platform includes: The user management module is used to create, modify, and disable administrator accounts, channel accounts, and rider accounts, and maintain menus, functional roles, and data roles; The activity management module is used to configure various marketing activities for riders to participate in and obtain rewards; The channel piecework management module is used to set piecework rules and commission configurations, count rider orders, and calculate commissions; The channel traffic pool management module is used to configure organizational codes and allocation conditions, allocate day packages for riders, and synchronize them to third-party platforms; The battery management module is used to configure battery receipt, transfer rules, and report statistics functions, and manage battery assets; The CRM management module is used to handle feedback problems from users on the channel side and rider side; The station construction planning module is used to import third-party cabinet data and competitor cabinet information, visualize cabinet locations, and assist in station construction location planning.

9. A computer device, comprising: A memory, a processor, and a computer program stored on the memory and executable on the processor, wherein the processor executes the computer program to implement the steps of the refined processing method based on the rider battery swapping platform according to any one of claims 1-7.

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