Battery replacement management method and device based on selectable time period assembly and medium
By dividing optional charging periods and displaying electricity price information in the battery swap management system, a personalized battery swap strategy is generated, which solves the problem that the existing battery swap management methods cannot meet user needs, and realizes battery swap optimization and cost reduction in low electricity price periods.
Patent Information
- Application Number
- CN202411675092.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2023-12-29
- Filing Date
- 2024-11-21
- Publication Date
- 2025-07-08
AI Technical Summary
The existing battery swap management methods cannot meet users' personalized needs, cannot flexibly respond to electricity price fluctuations, and it is difficult to achieve new and active development of the platform.
By determining the preset power consumption evaluation period, collecting user charging data, dividing optional charging periods, obtaining electricity price information, generating battery swap strategies, and highlighting them based on the optional time period components, responding to user operations, and determining the target battery swap strategy.
Provide personalized battery swap services to help users swap batteries during low electricity prices, reduce charging costs, and improve user experience and platform resource allocation efficiency.
Smart Images

Figure CN120270090A_ABST
Abstract
Description
[0001] This application claims priority based on the invention patent application titled "A Battery Swapping Management Method, Device, and Medium Based on Optional Time Period Components" with the application number 202311872319.9 filed with the China National Intellectual Property Administration on December 29, 2023. This application incorporates the entire text of the above-mentioned Chinese patent application by reference. Technical Field
[0002] This application relates to the field of battery swapping operation technologies, and specifically to a method, device, and medium. Background Art
[0003] Battery swapping technology is a way of charging electric vehicles. It realizes the vehicle's endurance by replacing the battery pack of the electric vehicle. Compared with traditional charging methods, battery swapping technology can complete the charging process more quickly and does not require long waiting for the battery to charge, making the use of electric vehicles more convenient and efficient. With the popularization of electric vehicles, battery swapping technology has gradually become a mainstream charging solution.
[0004] However, there are some problems with the battery swapping management methods used in current battery swapping operation platforms. Traditional battery swapping management methods often only allow users to select preset time periods for battery swapping. This method cannot meet the personalized needs of users, nor can it flexibly respond to electricity price fluctuations at different times to allow users to choose more preferential battery swapping methods, making it difficult to acquire new users and boost user activity on the platform. Summary of the Invention
[0005] To solve the above problems, this application proposes a battery swapping management method based on optional time period components, including:
[0006] Determine a preset power consumption assessment time period, and collect the corresponding charging data of the user during the power consumption assessment time period; wherein, the charging data includes the charging amount, charging time, and charging location.
[0007] According to the charging data, divide the charging time corresponding to the user to obtain several optional charging time periods corresponding to the user.
[0008] Obtain the electricity price information corresponding to the optional charging time periods, and generate a battery swapping strategy for the user according to the optional charging time periods and the electricity price information.
[0009] Based on a preset optional time period component, highlight the optional charging time periods and battery swapping times corresponding to the battery swapping strategy, and determine the target battery swapping strategy of the user in response to the user's selection operation and confirmation operation for different battery swapping strategies.
[0010] In the embodiments of the present application, by obtaining the electricity price information corresponding to the optional charging time periods, and based on the optional charging time periods and the electricity price information that the user prefers to use, a battery swapping strategy for the user is generated to help the user swap batteries during low electricity price periods, thereby reducing the charging cost. Based on a preset optional time period component, the optional charging time periods and battery swapping times corresponding to the battery swapping strategy are highlighted, enabling the user to intuitively see the optional charging time periods, thus simplifying the user's operation and selection process. According to the user's historical charging data and charging preferences, corresponding battery swapping strategies are recommended to the user to provide decision-making support for the user and help the user make a more informed battery swapping decision. This not only allows the user to make a choice according to their daily arrangements and charging needs, but also helps the user select the most suitable time period for battery swapping, providing a more personalized battery swapping service.
[0011] To solve the above problems, the present application proposes a battery swapping management method based on an optional time period component, including:
[0012] Obtain the electricity price information corresponding to a number of optional charging time periods, and generate optional battery swapping package information according to the optional charging time periods and the electricity price information;
[0013] Display the optional battery swapping package information, where the optional battery swapping package information includes the correspondence between the battery swapping packages and the optional charging time periods;
[0014] In response to the user's selection operation and confirmation operation on the optional battery swapping package information, determine the target battery swapping package and the target charging time period selected by the user.
[0015] In the embodiments of the present application, by obtaining the electricity price information corresponding to the optional charging time periods, and based on the optional charging time periods and the electricity price information that the user prefers to use, optional battery swapping package information for the user is generated, enabling the user to select the most suitable battery swapping time period and battery swapping package according to their actual needs and preferences, meeting the user's personalized needs. Moreover, the user can select the corresponding battery swapping package for battery swapping according to the charging cost, thereby reducing the battery swapping cost. Displaying the optional battery swapping package information enables the user to intuitively see the optional charging time periods and battery swapping packages, thus simplifying the user's operation and selection process.
[0016] In one implementation manner of the present application, displaying the optional battery swapping package information specifically includes:
[0017] Based on the optional battery swapping package information, determine the first battery swapping package corresponding to each optional charging time period;
[0018] Display the first battery swapping package corresponding to each optional charging time period on the user interface corresponding to the user;
[0019] Or,
[0020] Based on the optional battery swapping package information, determine at least one second battery swapping package and the corresponding optional charging time periods for each second battery swapping package;
[0021] Display the at least one second battery swapping package and the corresponding optional charging time periods for each second battery swapping package on the user interface corresponding to the user.
[0022] The embodiments of the present application display the optional battery swapping package information to the user in two ways, which not only improves the clarity of information display, but also provides the user with more autonomous selection space, meeting the personalized services with different needs. At the same time, it also optimizes the resource allocation and service efficiency of the battery swapping platform, making the battery swapping service more in line with the actual needs of users.
[0023] In one implementation manner of the present application, according to the charging data, divide the charging time corresponding to the user to obtain the optional charging time periods corresponding to the user, specifically including:
[0024] According to the charging amount in the charging data, screen out the charging days with the charging amount greater than the preset value from the charging evaluation time periods;
[0025] Cluster the charging times of the user on different charging days to obtain several groups of optional charging time periods;
[0026] Arrange the optional charging time periods in descending order according to the number of the optional charging time periods to obtain the optional charging time period sequence corresponding to the user.
[0027] The embodiments of the present application screen according to the charging amount in the charging data, and only select the charging days with the charging amount greater than the preset value for clustering, in order to screen out some situations that do not meet the user's regular charging needs, ensuring that the charging data is more referenceable and universal. By screening and clustering the charging data, the optional charging time periods of the user on different charging days can be obtained. By arranging the optional charging time periods in descending order according to the number, the time periods with a larger number of optional charging time periods will be recommended to the user first, which better meets the actual charging needs of the user, and can optimize the charging efficiency while meeting the user's charging habits.
[0028] In one implementation manner of the present application, before obtaining the electricity price information corresponding to several optional charging time periods, the method further includes:
[0029] Collect the charging data of the user corresponding to the preset power consumption evaluation time period; wherein, the charging data includes but is not limited to: charging time;
[0030] Divide the charging time corresponding to the user according to the charging data to obtain a plurality of optional charging time periods corresponding to the user;
[0031] Preferably, the charging data further includes: the amount of charge; dividing the charging time corresponding to the user according to the charging data to obtain the optional charging time periods corresponding to the user specifically includes:
[0032] Screen out the charging days with the amount of charge greater than the preset value from the charging evaluation period according to the amount of charge in the charging data;
[0033] Cluster the charging times of the user on different charging days to obtain several groups of optional charging time periods;
[0034] Arrange the optional charging time periods in descending order according to the number of the optional charging time periods to obtain the optional charging time period sequence corresponding to the user.
[0035] Based on the actual charging behavior of the user, the embodiment of the present application identifies the charging habits of the user, thereby dividing the optional charging time periods that meet the user's needs. Secondly, through cluster analysis and sorting according to the usage frequency of the charging time periods, the user can make a charging choice according to the most frequently used charging time periods, improving the user satisfaction.
[0036] In an implementation manner of the present application, a power swapping strategy for the user is generated according to the optional charging time periods and the electricity price information, which specifically includes:
[0037] Determine the total charging price corresponding to each optional charging time period in the optional charging time period sequence in turn according to the electricity price information;
[0038] Determine the weights corresponding to the total charging price and the optional charging time periods respectively, and assign corresponding time period values to the optional charging time periods; wherein, the sequence value of the optional charging time period in the optional charging time period sequence is proportional to its corresponding time period value;
[0039] Perform weighted summation on the total charging price and the time period value respectively according to the weights to obtain the corresponding summation results;
[0040] For several optional charging time periods, determine the charging end time corresponding to the optional charging time period, and generate the power swapping strategy corresponding to the user according to the charging end time and the summation result corresponding to the optional charging time period.
[0041] In the embodiment of the present application, the total charging price corresponding to the optional charging period is determined according to the electricity price information, which can help users optimize economically and select a more cost-effective charging period, thereby reducing the charging cost of users and improving the electricity consumption efficiency. Secondly, by determining the weights of the total charging price and the optional charging period, and giving corresponding period values to the optional charging periods, the preferences of users for different periods can be better reflected, the economic interests and time preferences of users can be comprehensively considered, a more comprehensive and reasonable power exchange strategy can be generated, making the charging decision of users more sensible, and at the same time, the needs of users can be met and the user experience can be improved.
[0042] In an implementation manner of the present application, optional power exchange package information is generated according to the optional charging period and the electricity price information, which specifically includes:
[0043] According to the electricity price information, the total charging price corresponding to each optional charging period in the optional charging period sequence is determined in turn;
[0044] Determine the weights corresponding to at least one parameter of the total charging price and the optional charging period to obtain weight data, where the weight data includes a first weight corresponding to the total charging price and / or a second weight corresponding to the optional charging period;
[0045] Based on the weight data and the total charging price corresponding to each optional charging period, charging price information is determined;
[0046] Based on the charging price information, the optional power exchange package information is determined, and the charging price information includes the corresponding relationship between the optional charging period and the charging price;
[0047] Preferably, the determining the optional power exchange package information based on the charging price information includes:
[0048] Based on the comprehensive total charging price corresponding to each optional charging period in the charging price information, the optional power exchange package information is determined;
[0049] Or,
[0050] Based on the comprehensive charging unit price corresponding to each optional charging period in the charging price information, the optional power exchange package information is determined;
[0051] Or,
[0052] Based on at least one package charging price in the charging price information and the optional charging period applicable to each package charging price, the optional power exchange package information is determined.
[0053] In the embodiments of the present application, the total charging price for each optional charging period is calculated based on electricity price information, and the final charging price information is determined in combination with weight data, which helps users identify and utilize the periods with lower electricity prices for charging, reducing the users' charging costs. By providing multiple ways to determine the optional battery replacement package information, including based on the comprehensive charging total price, comprehensive charging unit price, or package charging price, etc., users can select the most suitable battery replacement package according to their actual needs and budgets, improving the diversity of services.
[0054] In one implementation manner of the present application, based on a preset optional time period component, the optional charging periods and battery replacement times corresponding to the battery replacement strategy are highlighted, specifically including:
[0055] Adding the charging end time corresponding to each optional charging period to the preset waiting duration to obtain the battery replacement time corresponding to the optional charging period;
[0056] Based on the preset optional time period component in the user terminal, in the order from smallest to largest of the summation results corresponding to different battery replacement strategies, the charging end time and battery replacement time corresponding to the optional charging periods corresponding to the battery replacement strategy are sequentially highlighted; among them, the highlighted colors corresponding to different battery replacement strategies are different.
[0057] In the embodiments of the present application, adding the charging end time corresponding to the optional charging period to the preset waiting duration to obtain the battery replacement time helps users understand the specific battery replacement time, and also requires users to perform battery replacement within a certain time after charging ends, avoiding the behavior of maliciously using low-price charging periods to reduce the battery replacement cost. By highlighting the optional charging periods and battery replacement times, and using different highlighted colors to distinguish different battery replacement strategies, intuitive information display can be provided to help users better understand and compare different battery replacement strategies, improve decision-making efficiency, and provide a better user experience.
[0058] In one implementation manner of the present application, after determining the target battery replacement package and target charging period selected by the user, the method further includes:
[0059] Determining the charging end time corresponding to the target charging period, adding the charging end time to the preset waiting duration to obtain the battery replacement time corresponding to the target charging period, and highlighting the battery replacement time.
[0060] In the embodiments of the present application, adding the charging end time corresponding to the target charging period to the preset waiting duration to obtain the battery replacement time helps users understand the specific battery replacement time, and also requires users to perform battery replacement within a certain time after charging ends, avoiding the behavior of maliciously using low-price charging periods to reduce the battery replacement cost.
[0061] In an implementation manner of the present application, in response to the user's selection operation and confirmation operation for different battery replacement strategies, determining the user's target battery replacement strategy specifically includes:
[0062] In response to the user's selection operation for different battery replacement strategies, determining the total charging price corresponding to the selected optional charging period of the selection operation, and displaying the total charging price below the optional time period component;
[0063] In response to the user's confirmation operation for the optional charging period and the battery replacement time, determining the user's target battery replacement strategy.
[0064] In the embodiment of the present application, by displaying the total charging price corresponding to the selected optional charging period of the selection operation below the optional time period component, the user can clearly understand the total charging price of each optional period, which is convenient for comparing the costs of different battery replacement strategies and saving decision-making time. By displaying the total charging price and the optional charging period, the user can select the most suitable battery replacement strategy according to personal needs, thereby meeting personalized charging needs and improving user satisfaction.
[0065] In an implementation manner of the present application, in response to the user's selection operation and confirmation operation for the optional battery replacement package information, determining the target battery replacement package and the target charging period selected by the user specifically includes:
[0066] In response to the user's selection operation and confirmation operation for the first battery replacement package, determining the target battery replacement package selected by the user and the target charging period corresponding to the target battery replacement package;
[0067] Or,
[0068] In response to the user's selection operation for different charging price information, screening out the designated second battery replacement package in the second battery replacement package that matches the corresponding charging price and the charging price information;
[0069] In response to the selection operation and confirmation operation for the optional charging period corresponding to the designated second battery replacement package, determining the target battery replacement package selected by the user and the target charging period corresponding to the target battery replacement package.
[0070] The embodiment of the present application provides two ways to select the target battery replacement package, that is, directly select the predefined battery replacement package or customize and screen the battery replacement package according to the charging price information, which can meet the demand preferences of different users and improve the flexibility and personalization of the user experience.
[0071] In an implementation manner of the present application, before successively determining the total charging price corresponding to each optional charging period in the optional charging period sequence according to the electricity price information, the method further includes:
[0072] Obtain the charging location corresponding to the user, and determine the location type where the charging location is located; wherein, the location type includes urban location and non-urban location;
[0073] According to the charging data, determine the charging frequency corresponding to each location type, and determine the driving demand corresponding to the user according to the location type with the highest charging frequency.
[0074] According to the charging frequency corresponding to each location type in the embodiments of the present application, the frequency of the user's charging demand for different location types can be understood, and then the driving demand corresponding to the user can be determined. In this way, determining the charging strategy according to the driving demand can more accurately meet the user's charging demand.
[0075] In an implementation manner of the present application, determining the driving demand corresponding to the user according to the location type with the highest charging frequency specifically includes:
[0076] If the charging frequency corresponding to the urban location is the highest, determine that the driving demand corresponding to the user is a short-distance driving demand;
[0077] If the charging frequency corresponding to the non-urban location is the highest, determine that the driving demand corresponding to the user is a long-distance driving demand.
[0078] In an implementation manner of the present application, before determining the charging total price corresponding to each optional charging period in the optional charging period sequence according to the electricity price information, the method further includes:
[0079] The charging data further includes the charging location;
[0080] Obtain the charging location corresponding to the user, and determine the location type where the charging location is located; wherein, the location type includes urban location and non-urban location;
[0081] According to the charging data, determine the charging frequency corresponding to each location type, and determine the driving demand corresponding to the user according to the location type with the highest charging frequency;
[0082] Preferably, if the charging frequency corresponding to the urban location is the highest, determine that the driving demand corresponding to the user is a short-distance driving demand;
[0083] If the charging frequency corresponding to the non-urban location is the highest, determine that the driving demand corresponding to the user is a long-distance driving demand.
[0084] According to the charging frequency corresponding to each location type in the embodiments of the present application, the frequent degree of the user's charging demand for different location types can be understood, and then the corresponding driving demand of the user can be determined. In this way, by determining the charging strategy according to the driving demand, the charging demand of the user can be more accurately met.
[0085] In an implementation manner of the present application, according to the electricity price information, the charging total price corresponding to each optional charging period in the optional charging period sequence is determined in sequence, which specifically includes:
[0086] For the user with the long-distance driving demand, determine the specified charging frequency corresponding to the user at the non-urban location;
[0087] Obtain the mapping relationship between the preset charging frequency and the battery swapping preferential information, and according to the mapping relationship, determine the battery swapping preferential information corresponding to the specified charging frequency;
[0088] Discount the charging total price corresponding to the user according to the battery swapping preferential information.
[0089] In an implementation manner of the present application, according to the electricity price information, the charging total price corresponding to each optional charging period in the optional charging period sequence is determined in sequence, which specifically includes:
[0090] For the user with the long-distance driving demand, determine the specified charging frequency corresponding to the user at the non-urban location;
[0091] Obtain the mapping relationship between the preset charging frequency and the battery swapping preferential information, and according to the mapping relationship, determine the battery swapping preferential information corresponding to the specified charging frequency;
[0092] Discount the charging total price corresponding to the user according to the battery swapping preferential information.
[0093] For the user with the long-distance driving demand in the embodiments of the present application, since the charging frequency is higher than that of the general short-distance driving users, the charging total price corresponding to this type of user is discounted according to the battery swapping preferential information. In this way, the charging cost of the user can be reduced, a more economical and affordable charging service can be provided, and at the same time, customers can be better attracted, effectively improving the customer stickiness of the operation platform.
[0094] The embodiments of the present application provide a battery swapping management device based on an optional time period component, and the device includes:
[0095] At least one processor; and,
[0096] A memory communicatively connected to the at least one processor; wherein,
[0097] 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:
[0098] Determine a preset power consumption evaluation period, and collect the charging data corresponding to the user during the power consumption evaluation period; wherein, the charging data includes the charging amount, charging time, and charging location;
[0099] Divide the charging time corresponding to the user according to the charging data to obtain a plurality of optional charging periods corresponding to the user;
[0100] Obtain the electricity price information corresponding to the optional charging periods, and generate a power swapping strategy for the user according to the optional charging periods and the electricity price information;
[0101] Based on a preset optional time period component, highlight the optional charging periods and power swapping times corresponding to the power swapping strategy, and determine the target power swapping strategy of the user in response to the user's selection operation and confirmation operation for different power swapping strategies.
[0102] An embodiment of the present application provides a power swapping management device based on an optional time period component, and the device includes:
[0103] At least one processor; and,
[0104] A memory communicatively connected to the at least one processor; wherein,
[0105] 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:
[0106] Obtain the electricity price information corresponding to a plurality of optional charging periods, and generate optional power swapping package information according to the optional charging periods and the electricity price information;
[0107] Display the optional power swapping package information, and the optional power swapping package information includes the corresponding relationship between the power swapping package and the optional charging periods;
[0108] In response to the user's selection operation and confirmation operation for the optional power swapping package information, determine the target power swapping package and target charging period selected by the user.
[0109] An embodiment of the present application provides a non-volatile computer storage medium storing computer-executable instructions, and the computer-executable instructions are set as:
[0110] Determine a preset power consumption evaluation period, and collect the charging data corresponding to the user during the power consumption evaluation period; wherein, the charging data includes the charging amount, charging time, and charging location.
[0111] According to the charging data, divide the charging time corresponding to the user to obtain several optional charging periods corresponding to the user.
[0112] Obtain the electricity price information corresponding to the optional charging period, and generate a battery swapping strategy for the user according to the optional charging period and the electricity price information.
[0113] Based on a preset optional time period component, highlight the optional charging period and battery swapping time corresponding to the battery swapping strategy, and determine the target battery swapping strategy of the user in response to the user's selection operation and confirmation operation for different battery swapping strategies.
[0114] An embodiment of the present application provides a non-volatile computer storage medium storing computer-executable instructions, and the computer-executable instructions are set as:
[0115] Obtain the electricity price information corresponding to several optional charging periods, and generate optional battery swapping package information according to the optional charging period and the electricity price information.
[0116] Display the optional battery swapping package information, and the optional battery swapping package information includes the corresponding relationship between the battery swapping package and the optional charging period.
[0117] In response to the user's selection operation and confirmation operation for the optional battery swapping package information, determine the target battery swapping package and target charging period selected by the user. Description of the Drawings
[0118] The drawings described herein are used to provide a further understanding of the present application, and constitute a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application and do not constitute an improper limitation of the present application. In the drawings:
[0119] Figure 1 It is a schematic flowchart of a battery swapping management method based on an optional time period component provided by an embodiment of the present application;
[0120] Figure 2 It is a specific flowchart of a battery swapping management method based on an optional time period component provided by an embodiment of the present application;
[0121] Figure 3 It is a schematic diagram of an optional time period component provided by an embodiment of the present application;
[0122] Figure 4Structural schematic diagram of a battery swapping management device based on an optional time period component provided by an embodiment of the present application. Detailed implementation manners
[0123] To make the objectives, technical solutions and advantages of the present application clearer, the technical solutions of the present application will be clearly and completely described below in conjunction with specific embodiments of the present application and the corresponding drawings. 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 in the present application without creative efforts shall fall within the protection scope of the present application.
[0124] The following will, with reference to the drawings, detail the technical solutions provided by each embodiment of the present application.
[0125] As Figure 1 shown, the battery swapping management method based on an optional time period component provided by an embodiment of the present application includes:
[0126] S101: Determine a preset power consumption evaluation time period, and collect the corresponding charging data of the user during the power consumption evaluation time period; wherein, the charging data includes the charging amount, charging time, and charging location.
[0127] Battery swapping is a way of charging electric vehicles. It realizes the process of rapid charging by replacing the battery. When the battery power of an electric vehicle is low, the user can go to a battery swapping station to replace the battery so as to continue driving. Compared with traditional slow charging and fast charging, this charging method has a faster charging speed and higher convenience. At present, most battery swapping operation platforms will launch some preferential battery swapping packages to attract customers in order to attract new users and promote user enthusiasm. However, the battery power is greatly affected by temperature and electricity price policies. For the battery swapping strategies proposed by the platform, the above-mentioned battery discharge factors and electricity price fluctuation factors need to be considered. Therefore, a corresponding power consumption evaluation time period needs to be set. The power consumption evaluation time period can be divided according to seasons or can be divided according to the current market policy. Since the power consumption situation within each power consumption evaluation time period is relatively stable, for the charging situation of users within each power consumption evaluation time period, the operation platform can collect the corresponding charging data of the user during the power consumption evaluation time period by means of the user's mobile application, charging pile system or other relevant data sources, and use this as data support to analyze the actual charging needs of the user, so as to provide a battery swapping strategy that better meets the charging preferences of different users according to their needs. Wherein, the charging data includes the charging amount, charging time, and charging location.
[0128] S201: Obtain the electricity price information corresponding to several optional charging time periods, and generate optional battery swapping package information according to the optional charging time periods and the electricity price information.
[0129] Battery swapping is a way of charging electric vehicles, which realizes the process of rapid charging by replacing the battery. When the battery of an electric vehicle has a low power level, the user can go to a battery swapping station to replace the battery in order to continue driving. Compared with traditional slow charging and fast charging, this charging method has a faster charging speed and higher convenience.
[0130] Currently, most battery swapping operation platforms will launch some preferential battery swapping packages to attract customers in order to acquire new users and boost user enthusiasm. However, the battery power is greatly affected by temperature and electricity price policies. For the battery swapping packages proposed by the platform, it is necessary to consider the above-mentioned battery discharge factors and electricity price fluctuation factors. Therefore, it is necessary to obtain the electricity price information corresponding to several optional charging periods, and then generate optional battery swapping package information based on the optional charging periods and electricity price information.
[0131] It should be noted that the optional charging periods are screened according to the charging situation of users. First, it is necessary to set corresponding electricity consumption evaluation periods. The electricity consumption evaluation periods can be divided according to seasons or comprehensively according to the current market policies. Then, the battery swapping platform collects the charging data corresponding to the users during the electricity consumption evaluation periods through the users' mobile applications, charging pile systems or other relevant data sources. The charging data includes but is not limited to the charging time. Based on the charging data as the data support, the actual charging needs of users are analyzed, so as to provide optional battery swapping package information that better meets their charging preferences according to the needs of different users.
[0132] Specifically, according to the charging data, the charging time of a day can be divided into several time periods to adapt to the charging habits and demand patterns of users, and the charging preferences of users can be clarified according to the number of each time period. Thus, when generating the optional battery swapping package information for this user subsequently, the main electricity consumption needs of the user can be met.
[0133] During the actual charging process of users, there will be some situations where the charging amount is small. This may be because the user charges in advance for a long-distance trip. In order to distinguish it from regular trips and improve the accuracy of the user charging data analysis results, it is necessary to screen out the charging days with a charging amount greater than a preset value from the collected charging data. The preset value can be determined according to factors such as the charging needs of users and the battery capacity. For each charging day, the charging time of the user is clustered. This process can use clustering algorithms, such as the K-means algorithm, etc., to divide the charging time into several groups, and each group represents an optional charging period. According to the clustering results, the number of each optional charging period is counted. The optional charging periods are arranged in descending order according to the number of optional charging periods. The arranged optional charging periods are successively formed into a sequence as the optional charging period sequence corresponding to the user.
[0134] When the battery swapping operation platform pushes battery swapping packages to users, in addition to the actual charging habits of users, the factor of electricity price fluctuation needs to be considered. While meeting the actual needs of users, the battery swapping cost of users should be minimized as much as possible. Only in this way can the platform's ability to attract new users be promoted.
[0135] In one embodiment, according to the electricity price information, the total charging price corresponding to each optional charging period in the optional charging period sequence is determined in turn. The total charging price can be obtained by calculating the product of the total duration corresponding to each optional charging period and the electricity price. After determining the total charging price corresponding to each optional charging period, considering the actual needs of users for the charging period and charging price, therefore, at least one parameter corresponding weight of the total charging price and the optional charging period needs to be determined to obtain weight data, where the weight data includes the first weight corresponding to the total charging price and / or the second weight corresponding to the optional charging period. By assigning a higher weight to the total charging price, users can be encouraged to choose the period with a lower total charging price for charging, thereby reducing the charging cost. By assigning a higher weight to the optional charging period, more charging options can be provided, enabling users to charge flexibly according to their personal needs and itinerary arrangements, and increasing the convenience of charging.
[0136] After assigning the corresponding weight data to the total charging price and the optional charging period, the charging price information is determined according to the weight data and the total charging price corresponding to each optional charging period. The charging price information here refers to the charging price corresponding to each optional charging period obtained by weighting the total charging price according to the weight data. According to the corresponding relationship between each optional charging period and its corresponding charging price, the corresponding optional battery swapping package information can be determined.
[0137] Among them, the battery swapping package can be composed of one optional charging period, or can be composed of some periods among multiple optional charging periods. And when users select the battery swapping package, there are two selection methods. One is to screen the battery swapping package according to the package price, and the other is to form the corresponding battery swapping package by selecting continuous or discontinuous optional charging periods. Therefore, when determining the optional battery swapping package information, based on the above two selection methods and the composition method of the battery swapping package, the present application provides multiple ways to generate the optional battery swapping package information.
[0138] Specifically, each optional charging period corresponds to a comprehensive total charging price. Based on the comprehensive total charging price corresponding to each optional charging period in the charging price information, the optional battery swapping package information is determined. Or, discontinuous charging times are selected from multiple optional charging periods to form a battery swapping package. In this way, based on the comprehensive unit charging price corresponding to each optional charging period in the charging price information, the optional battery swapping package information can be determined. Or, based on at least one package charging price in the charging price information and the optional charging periods applicable to each package charging price, the optional battery swapping package information is determined.
[0139] In one embodiment, users with long-distance driving needs may have relatively high charging costs during the charging process, while users with short-distance driving needs may require fewer charging times, so their costs are relatively low. By distinguishing between long-distance and short-distance driving needs and providing some battery swapping discounts for users with long-distance driving needs, the total charging price is discounted, thereby reducing the costs of users. At the same time, more competitive charging services are provided, increasing user satisfaction and attracting more users with long-distance driving needs to use the battery swapping operation platform.
[0140] The charging data also includes the charging location. The server divides it into different location types according to the location coordinates of the charging location by obtaining the charging location of the user; the location types include urban locations and non-urban locations. Among them, the location types can determine urban and non-urban areas according to geographical location information or a set regional range. For each location type, the charging frequency of the corresponding user is determined. The charging frequency can be calculated by the number of times the user charges at this location, with a certain time period (such as weekly or monthly) as the unit. According to the calculated charging frequency, the driving needs of the user are determined. By comparing the charging frequencies of urban locations and non-urban locations, the location type with the highest charging frequency is determined as the driving need type of the user. If the charging frequency corresponding to the urban location is the highest, it is determined that the driving need of the user is a short-distance driving need. If the charging frequency corresponding to the non-urban location is the highest, it is determined that the driving need of the user is a long-distance driving need.
[0141] In one embodiment, for users with long-distance driving needs, the specified charging frequency corresponding to the non-urban location of the user can be determined. Different charging frequencies correspond to different preferential intensities. For users who charge more frequently, they can be positioned as important customers and given a larger discount to attract them to use the battery swapping operation platform for battery swapping. Therefore, after determining the specified charging frequency corresponding to the non-urban location of the user, the mapping relationship between the preset charging frequency and the battery swapping preferential information is obtained, and then the battery swapping preferential information corresponding to the specified charging frequency is determined according to this mapping relationship. The battery swapping preferential information can include the geographical location of the battery swapping station, service fees, preferential discounts, and other contents. By virtue of the mapping relationship between the charging frequency and the battery swapping preferential information, users can learn about the battery swapping preferential information that can be obtained by using the specified charging frequency. In this way, according to the battery swapping preferential information, the total charging price corresponding to the user can be discounted. The discount can be achieved through preferential discounts, service fee exemptions, and other means. Through the above methods, the charging costs of users can be reduced, and more economical and affordable charging services can be provided.
[0142] S102: Divide the charging time corresponding to the user according to the charging data to obtain several optional charging periods corresponding to the user.
[0143] According to the charging data, it is possible to adapt to the user's charging habits and demand patterns, divide the charging time of a day into several time periods, clarify the user's charging preferences according to the number of each time period, so that when generating a battery swapping strategy for the user subsequently, the main electricity consumption needs of the user can be met.
[0144] In one embodiment, during the actual charging process of the user, there will be some cases where the charging amount is relatively small. This may be because the user charges in advance for a long-distance trip. In order to distinguish it from regular trips and improve the accuracy of the user charging data analysis results, it is necessary to screen out the charging days with a charging amount greater than a preset value from the collected charging data. The preset value can be determined according to factors such as the user's charging needs and battery capacity. For each charging day, cluster the user's charging time. This process can use clustering algorithms, such as the K-means algorithm, etc., to divide the charging time into several groups, and each group represents an optional charging time period. According to the clustering results, count the number of each optional charging time period. Arrange the optional charging time periods in descending order according to the number of optional charging time periods. Form a sequence by arranging the arranged optional charging time periods in turn as the optional charging time period sequence corresponding to the user.
[0145] S103: Obtain the electricity price information corresponding to the optional charging time period, and generate a battery swapping strategy for the user according to the optional charging time period and the electricity price information.
[0146] When the battery swapping operation platform pushes a battery swapping strategy to the user, in addition to the user's actual charging habits, it is also necessary to consider the factor of electricity price fluctuations. While meeting the actual needs of the user, it should also try to reduce the user's battery swapping cost. Only in this way can the platform's ability to attract new users be promoted.
[0147] In one embodiment, according to the electricity price information, the charging total price corresponding to each optional charging period in the optional charging period sequence is determined in turn. The charging total price can be obtained by calculating the product of the total duration corresponding to each optional charging period and the electricity price. After determining the charging total price corresponding to each optional charging period, considering the actual needs of the user for the charging period and the charging price, therefore, it is also necessary to determine the weights corresponding to the charging total price and the optional charging period respectively, and assign corresponding period values to the optional charging periods. The sequence value of the optional charging period in the optional charging period sequence is directly proportional to its corresponding period value. It should be noted that the weights can be determined by the usage preferences obtained by preset data mining algorithms for analyzing the user's historical charging data. Among them, by assigning a higher weight to the charging total price, users can be encouraged to choose the period with a lower charging total price for charging, thereby reducing the charging cost. By assigning a higher weight to the optional charging period, more charging options can be provided, enabling users to charge flexibly according to their personal needs and itinerary arrangements, and increasing the convenience of charging. After determining the weights, the charging total price and the period value are weighted and summed respectively to obtain the corresponding summation results. Then, for several optional charging periods, the charging end time corresponding to the optional charging period is determined, and according to the charging end time and the summation result corresponding to the optional charging period, the battery swapping strategy corresponding to the user is generated. The smaller the summation result corresponding to the battery swapping strategy, the lower the electricity price while the optional charging period can meet the user's common charging period as much as possible.
[0148] S104: Based on the preset optional time period component, highlight the optional charging period and the battery swapping time corresponding to the battery swapping strategy, and in response to the user's selection operation and confirmation operation for different battery swapping strategies, determine the user's target battery swapping strategy.
[0149] S202: Display the optional battery swapping package information, where the optional battery swapping package information includes the corresponding relationship between the battery swapping package and the optional charging period.
[0150] The optional battery swapping package information includes the corresponding relationship between the battery swapping package and the optional battery swapping charging period. Through the preset optional time period component, the specific optional battery swapping package information can be displayed. Users can, through this more intuitive display method, understand the optional charging period and the charging price information corresponding to each battery swapping package, and then screen out the target battery swapping package that meets their own needs.
[0151] Specifically, when displaying optional battery swapping package information, there are also different display methods for the optional battery swapping package information based on different selection methods of the battery swapping package. For the method of first selecting the charging time period and then determining the charging price, when displaying the optional battery swapping package information, first, based on the optional battery swapping package information, determine the first battery swapping package corresponding to each optional charging time period, and then display the first battery swapping package corresponding to each optional charging time period on the user interface corresponding to the user. It should be noted that the first battery swapping package corresponding to each optional charging time period can be a package composed of the total comprehensive charging price corresponding to that time period, or a package composed of the comprehensive charging unit prices corresponding to some time periods under multiple optional charging time periods. For the method of first determining the charging price and then selecting the charging time period, it is necessary to determine at least one second battery swapping package and the optional charging time periods corresponding to each second battery swapping package based on the optional battery swapping package information, and then display at least one second battery swapping package and the optional charging time periods corresponding to each second battery swapping package on the user interface corresponding to the user.
[0152] S203: In response to the user's selection operation and confirmation operation for the optional battery swapping package information, determine the target battery swapping package and the target charging time period selected by the user.
[0153] After the user selects and confirms a piece of optional battery swapping package information, the server can, in response to the above selection operation and confirmation operation, determine the user's target battery swapping package, automatically lock the target charging time period corresponding to the target battery swapping package, and provide an automatic reservation service for the user. At the same time, the target time period on the optional time period component will also be in an unavailable state, and the next reservation user can only make a reservation during other time periods outside this charging pile.
[0154] Among them, for the first battery swapping package, the server can, in response to the user's selection operation and confirmation operation for the first battery swapping package, determine the target battery swapping package selected by the user and the target charging time period corresponding to the target battery swapping package. Here, the selection operation can be to select a complete optional charging time period, or to select some time periods among multiple optional charging time periods. For the second battery swapping package, the user first needs to determine a suitable package price, and then select the corresponding target charging time period based on the optional charging time periods applicable to the package price. That is, the server, in response to the user's selection operation for different charging price information, filters out the specified second battery swapping package that matches the corresponding charging price and charging price information from the second battery swapping package, and then, in response to the selection operation and confirmation operation for the optional charging time period corresponding to the specified second battery swapping package, determines the user's target battery swapping package and the target charging time period corresponding to the target battery swapping package.
[0155] Figure 2A schematic diagram of an optional time period component provided by an embodiment of the present application. The optional charging time period includes different time periods of a whole day, and each time period is divided in hours. When the user selects an optional charging time period, a corresponding confirmation prompt box will pop up above the optional charging time period. After the user confirms, the color corresponding to this optional charging time period will be updated from white to other colors. The optional time period component also supports selecting multiple optional charging time periods at the same time, and the user needs to perform multiple selection operations.
[0156] After the user selects the target battery swapping package, the battery swapping operation platform pushes the target battery swapping package to the corresponding battery swapping station. The battery swapping station can then charge the battery based on the selected battery swapping package, and after the battery charging is completed, prompt the user to perform battery swapping in a timely manner through the optional time period component provided by the battery swapping operation platform, which not only ensures the resource allocation of the battery swapping station but also effectively improves the user experience.
[0157] Specifically, the server determines the charging end time corresponding to the target charging time period, and adds the charging end time and the preset waiting duration to obtain the battery swapping time corresponding to the target charging time period. Based on the preset optional time period component, the battery swapping time corresponding to the target battery swapping package selected by the user can be highlighted, which requires the user to perform battery swapping within a certain time after the charging is completed to avoid maliciously using low-price charging time periods to reduce the battery swapping cost. In addition, in addition to the mobile terminal, the optional battery swapping time can also be displayed to the user through a display screen set on the charging pile. Through this operation method, the user can intuitively understand when to go to the battery swapping station to exchange the battery.
[0158] After generating the battery swapping strategy, to improve the user experience, it is necessary to display the available optional charging time periods and battery swapping times to the user in a more intuitive way.
[0159] In one embodiment, after determining the optional charging time periods corresponding to the user, the server adds the charging end time corresponding to each optional charging time period and the preset waiting duration to obtain the battery swapping time corresponding to the optional charging time period. This requires the user to perform battery swapping within a certain time after the charging is completed to avoid maliciously using low-price charging time periods to reduce the battery swapping cost. Based on the preset optional time period component, in the order from small to large of the summation results corresponding to different battery swapping strategies, the optional charging time periods and battery swapping times corresponding to the battery swapping strategies are highlighted in sequence. In this way, the user can select a suitable optional charging time period according to their own needs. In addition, in addition to the mobile terminal, the optional charging time periods and battery swapping times can also be displayed to the user through a display screen set on the charging pile. Through this operation method, the user can not only intuitively understand the optional charging time periods available to them but also understand the cost information corresponding to different time periods. Figure 2Schematic diagram of an optional time period component provided by an embodiment of the present application. The optional charging time period includes different time periods of a whole day, and each time period is divided in hours. When the user selects an optional charging time period, a corresponding confirmation prompt box will pop up above the optional charging time period. After the user confirms, the color corresponding to this optional charging time period will be updated from white to other colors. The optional time period component also supports selecting multiple optional charging time periods at the same time, and the user needs to perform multiple selection operations.
[0160] After the user selects and confirms the optional charging time period corresponding to a certain battery swapping strategy, the server can, in response to the above selection operation and confirmation operation, determine the user's target battery swapping strategy, automatically lock the optional charging time period, and provide an automatic reservation service for the user. At the same time, this time period on the optional time period component will also be in an unavailable state, and the next reservation user can only make a reservation at other time periods outside this charging pile.
[0161] Among them, when the user selects an optional charging time period, the server can, in response to the user's selection operation for different battery swapping strategies, determine the total charging price corresponding to the selected optional charging time period, and display the total charging price below the optional time period component, so that the user can clearly understand the charging cost of this charging time period. After the user completes the selection of the optional time period, a confirmation operation button is provided. After the user clicks the confirmation, the server will, in response to the user's confirmation operation for this optional charging time period and the battery swapping time, save the battery swapping time and the optional charging time period selected by the user, and determine the user's target battery swapping strategy. Through the above implementation method, the user can select a battery swapping strategy suitable for himself according to the total charging price and the optional charging time period, and confirm the final battery swapping time and charging time period, so as to achieve the goals of personalized needs and cost optimization.
[0162] In one embodiment, users with long-distance driving needs may have relatively high charging costs during the charging process, while users with short-distance driving needs may require fewer charging times, so their costs are relatively low. By distinguishing between long-distance and short-distance driving needs, and providing some battery swapping discounts for users with long-distance driving needs, discounting the total charging price, thereby reducing the user's cost, while providing a more competitive charging service, increasing the user's satisfaction, and also attracting more users with long-distance driving needs to use the battery swapping operation platform.
[0163] Therefore, the server obtains the user's charging location and divides it into different location types according to the location coordinates of the charging location; the location types include urban locations and non-urban locations. Among them, the urban and non-urban areas can be determined according to geographical location information or a set regional range. For each location type, determine the corresponding charging frequency of the user. The charging frequency can be calculated by the number of times the user charges at this location, with a certain time period (such as weekly or monthly) as the unit. According to the calculated charging frequency, determine the corresponding driving needs of the user. By comparing the charging frequencies of urban locations and non-urban locations, determine the location type with the highest charging frequency as the driving need type of the user. If the charging frequency corresponding to the urban location is the highest, determine that the driving need corresponding to the user is a short-distance driving need. If the charging frequency corresponding to the non-urban location is the highest, determine that the driving need corresponding to the user is a long-distance driving need.
[0164] In one embodiment, for users with long-distance driving needs, the specified charging frequency corresponding to the user in the non-urban location can be determined. Different charging frequencies correspond to different preferential intensities. For users who charge more frequently, they can be positioned as important customers and given a larger discount to attract them to use the battery swapping operation platform for battery swapping. Therefore, after determining the specified charging frequency corresponding to the user in the non-urban location, obtain the mapping relationship between the preset charging frequency and the battery swapping preferential information, and then determine the battery swapping preferential information corresponding to the specified charging frequency according to this mapping relationship. The battery swapping preferential information can include the geographical location of the battery swapping station, service fees, preferential discounts, etc. By virtue of the mapping relationship between the charging frequency and the battery swapping preferential information, users can understand the battery swapping preferential information that can be obtained by using the specified charging frequency. In this way, according to the battery swapping preferential information, the total charging price corresponding to the user can be discounted. The discount can be achieved through preferential discounts, service fee exemptions, etc. Through the above methods, the charging cost of users can be reduced and more affordable charging services can be provided.
[0165] The above is the method embodiment proposed in this application. Based on the same idea, some embodiments of this application also provide the devices and non-volatile computer storage media corresponding to the above methods.
[0166] Figure 3 It is a schematic structural diagram of a battery swapping management device based on an optional time period component provided in an embodiment of this application. As Figure 3 shown, it includes:
[0167] At least one processor; and,
[0168] A memory communicatively connected to at least one processor; wherein,
[0169] The memory stores instructions executable by at least one processor, and the instructions are executed by at least one processor to enable the at least one processor to:
[0170] Determine a preset power consumption evaluation period, and collect the corresponding charging data of the user during the charging power consumption evaluation period; wherein, the charging data includes the charging amount, charging time, and charging location;
[0171] Divide the charging time corresponding to the charging user according to the charging data to obtain several optional charging periods corresponding to the charging user;
[0172] Obtain the electricity price information corresponding to the optional charging periods, and generate a power swapping strategy for the charging user according to the optional charging periods and the charging electricity price information;
[0173] Based on a preset optional time period component, highlight the optional charging periods and power swapping times corresponding to the power swapping strategy, and determine the target power swapping strategy of the charging user in response to the selection operation and confirmation operation of the charging user for different power swapping strategies.
[0174] Figure 3 This is a schematic structural diagram of a power swapping management device based on an optional time period component provided by an embodiment of the present application. As Figure 3 shown, it includes:
[0175] At least one processor; and,
[0176] A memory communicatively connected to at least one processor; wherein,
[0177] The memory stores instructions executable by at least one processor, and the instructions are executed by at least one processor to enable the at least one processor to:
[0178] Obtain the electricity price information corresponding to several optional charging periods, and generate optional power swapping package information according to the optional charging periods and the electricity price information;
[0179] Display the optional power swapping package information, where the optional power swapping package information includes the corresponding relationship between the power swapping package and the optional charging periods;
[0180] In response to the selection operation and confirmation operation of the user for the optional power swapping package information, determine the target power swapping package and target charging period selected by the user.
[0181] An embodiment of the present application provides a non-volatile computer storage medium storing computer-executable instructions, and the computer-executable instructions are set as:
[0182] Determine a preset power consumption evaluation period, and collect the corresponding charging data of the user during the charging power consumption evaluation period; wherein, the charging data includes the charging amount, charging time, and charging location.
[0183] According to the charging data, divide the charging time corresponding to the charging user to obtain several optional charging periods corresponding to the charging user.
[0184] Obtain the electricity price information corresponding to the optional charging periods, and generate a power swapping strategy for the charging user according to the optional charging periods and the charging electricity price information.
[0185] Based on a preset optional time period component, highlight the optional charging periods and power swapping times corresponding to the charging power swapping strategy, and determine the target power swapping strategy of the charging user in response to the selection operation and confirmation operation of the charging user for different power swapping strategies.
[0186] The embodiment of the present application provides a non-volatile computer storage medium storing computer-executable instructions, and the computer-executable instructions are set as follows:
[0187] Obtain the electricity price information corresponding to several optional charging periods, and generate optional power swapping package information according to the optional charging periods and the electricity price information.
[0188] Display the optional power swapping package information, and the optional power swapping package information includes the corresponding relationship between the power swapping package and the optional charging periods.
[0189] In response to the selection operation and confirmation operation of the user for the optional power swapping package information, determine the target power swapping package and target charging period selected by the user.
[0190] Each embodiment in the present application is 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 device and medium embodiments, 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.
[0191] The device and medium provided by the embodiment of the present application correspond one-to-one with the method. Therefore, the device and medium also have beneficial technical effects similar to the corresponding method. Since the beneficial technical effects of the method have been described in detail above, the beneficial technical effects of the device and medium will not be repeated here.
[0192] Those skilled in the art should understand that the embodiments of the present application can be provided as a method, a system, or a computer program product. Therefore, the present application can take the form of a complete hardware embodiment, a complete software embodiment, or an embodiment combining software and hardware aspects. Moreover, the present application can take the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) that contain computer-usable program code.
[0193] The present application is described with reference to the flowcharts and / or block diagrams of methods, apparatuses (systems), and computer program products according to the embodiments of the present application. It should be understood that each flow and / or block in the flowchart and / or block diagram, as well as the combination of flows and / or blocks in the flowchart and / or block diagram, can be realized 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 realizing the functions specified in Figure 1 one or more of the processes Figure 1 or multiple processes and / or blocks
[0194] 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 realizes the functions specified in Figure 1 one or more of the processes Figure 1 or multiple processes and / or blocks
[0195] These computer program instructions can also be loaded onto a computer or other programmable data processing device, such that a series of operation steps are executed on the computer or other programmable device to generate a computer-implemented process, so that the instructions executed on the computer or other programmable device provide steps for realizing the functions specified in Figure 1 one or more of the processes Figure 1 or multiple processes and / or blocks
[0196] In a typical configuration, a computing device includes one or more processors (CPUs), an input / output interface, a network interface, and a memory.
[0197] 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.
[0198] A computer-readable medium includes both permanent and non-permanent, removable and non-removable media and can implement information storage 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 cassettes, magnetic tape magnetic disk storage or other magnetic storage devices, or any other non-transitory medium that can be used to store information that can be accessed by a computing device. As defined herein, a computer-readable medium does not include transitory computer-readable media such as modulated data signals and carrier waves.
[0199] It should also be noted that the term "comprising", "including" or any other variation thereof is intended to cover non-exclusive inclusion, such that a process, method, article or apparatus comprising a series of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article or apparatus. Without further limitation, an element defined by the statement "comprising an..." does not exclude the presence of additional identical elements in the process, method, article or apparatus comprising the element.
[0200] The above description is only for the embodiments of the present application and is not intended to limit the present application. For those skilled in the art, various changes and modifications can be made to the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included within the scope of the claims of the present application.
Claims
1. A battery swapping management method based on an optional time period component, characterized in that, The method includes: Obtaining electricity price information corresponding to a plurality of optional charging periods, and generating optional battery swapping package information according to the optional charging periods and the electricity price information; Displaying the optional battery swapping package information, where the optional battery swapping package information includes the correspondence between the battery swapping package and the optional charging periods; In response to the user's selection operation and confirmation operation on the optional battery swapping package information, determining the target battery swapping package and the target charging period selected by the user.
2. The battery swapping management method based on an optional time period component according to claim 1, wherein Displaying the optional battery swapping package information specifically includes: Based on the optional battery swapping package information, determining a first battery swapping package corresponding to each optional charging period; Displaying the first battery swapping package corresponding to each optional charging period on the user interface corresponding to the user; Or, Based on the optional battery swapping package information, determining at least one second battery swapping package and the optional charging periods corresponding to each second battery swapping package; Displaying the at least one second battery swapping package and the optional charging periods corresponding to each second battery swapping package on the user interface corresponding to the user.
3. The battery swapping management method based on an optional time period component according to claim 1, wherein Before obtaining the electricity price information corresponding to a plurality of optional charging periods, the method further includes: Collecting the charging data of the user corresponding to a preset power consumption evaluation period; where the charging data includes but is not limited to: charging time; Dividing the charging time corresponding to the user according to the charging data to obtain a plurality of optional charging periods corresponding to the user; Preferably, the charging data further includes: charging amount; dividing the charging time corresponding to the user according to the charging data to obtain the optional charging periods corresponding to the user specifically includes: According to the charging amount in the charging data, screening out the charging days with the charging amount greater than a preset value from the charging evaluation period; Clustering the charging times of the user on different charging days to obtain several groups of optional charging periods; Arranging the optional charging periods in descending order according to the number of the optional charging periods to obtain the optional charging period sequence corresponding to the user.
4. The battery swapping management method based on an optional time period component according to claim 3, wherein, Generating the optional battery swapping package information according to the optional charging periods and the electricity price information specifically includes: According to the electricity price information, sequentially determining the total charging price corresponding to each optional charging period in the optional charging period sequence; Determining the weights corresponding to at least one parameter in the total charging price and the optional charging periods to obtain weight data, where the weight data includes a first weight corresponding to the total charging price and / or a second weight corresponding to the optional charging periods; Based on the weight data and the total charging price corresponding to each optional charging period, determining the charging price information; Based on the charging price information, determining the optional battery swapping package information, where the charging price information includes the correspondence between the optional charging periods and the charging prices; Preferably, the determining the optional battery swapping package information based on the charging price information includes: Based on the comprehensive total charging price corresponding to each optional charging period in the charging price information, determining the optional battery swapping package information; Or, Determine the optional battery swapping package information based on the comprehensive charging unit price corresponding to each optional charging period in the charging price information; Or, Determine the optional battery swapping package information based on at least one package charging price in the charging price information and the optional charging periods applicable to each package charging price.
5. A battery swapping management method based on an optional time period component according to claim 3, characterized in that, After determining the target battery swapping package and the target charging period selected by the user, the method further includes: Determine the charging end time corresponding to the target charging period, add the charging end time and the preset waiting duration to obtain the battery swapping time corresponding to the target charging period, and highlight the battery swapping time.
6. The battery swapping management method based on an optional time period component according to claim 2, wherein In response to the user's selection operation and confirmation operation for the optional battery swapping package information, determining the target battery swapping package and the target charging period selected by the user specifically includes: In response to the user's selection operation and confirmation operation for the first battery swapping package, determine the target battery swapping package selected by the user and the target charging period corresponding to the target battery swapping package; Or, In response to the user's selection operation for different charging price information, screen out the specified second battery swapping package from the second battery swapping package that matches the corresponding charging price and the charging price information; In response to the selection operation and confirmation operation for the optional charging period corresponding to the specified second battery swapping package, determine the user's target battery swapping package and the target charging period corresponding to the target battery swapping package.
7. A battery swapping management method based on an optional time period component according to claim 3, wherein Before sequentially determining the charging total price corresponding to each optional charging period in the optional charging period sequence according to the electricity price information, the method further includes: The charging data further includes the charging location; Obtain the charging location corresponding to the user and determine the location type where the charging location is located; wherein, the location type includes urban location and non-urban location; According to the charging data, determine the charging frequency corresponding to each location type, and determine the driving demand corresponding to the user according to the location type with the highest charging frequency; Preferably, if the charging frequency corresponding to the urban location is the highest, determine that the driving demand corresponding to the user is a short-distance driving demand; If the charging frequency corresponding to the non-urban location is the highest, determine that the driving demand corresponding to the user is a long-distance driving demand.
8. A battery swapping management method based on an optional time period component according to claim 7, characterized in that, According to the electricity price information, sequentially determining the charging total price corresponding to each optional charging period in the optional charging period sequence specifically includes: For a user with the long-distance driving demand, determine the specified charging frequency corresponding to the user in the non-urban location; Obtain the mapping relationship between the preset charging frequency and the battery swapping preferential information, and determine the battery swapping preferential information corresponding to the specified charging frequency according to the mapping relationship; Discount the charging total price corresponding to the user according to the battery swapping preferential information.
9. A battery swapping management device based on an optional time period component, characterized in that 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 a power swapping management method based on an optional time period component as described in any one of claims 1-8.
10. A non-volatile computer storage medium stores computer-executable instructions, characterized in that, The computer-executable instructions are set to: A power swapping management method based on an optional time period component as described in any one of claims 1-8.