Power swap station alarm method and device based on class table plan, electronic device and medium
By obtaining alarm information in the battery swap station and combining the shift plan, automatically matching and sending early warning maintenance strategies, the problem of incomplete alarm process in the existing technology is solved, targeted personnel allocation and fault maintenance are achieved, and the operational efficiency and fault handling capabilities of the battery swap station are improved.
Patent Information
- Application Number
- CN202411905915.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2023-12-29
- Filing Date
- 2024-12-23
- Publication Date
- 2025-07-08
AI Technical Summary
The existing early warning methods of battery swap stations are mostly aimed at early warning of the fault detection process, and lack personnel allocation and fault maintenance processes for early warning content, resulting in incomplete alarm process.
By obtaining the alarm information of the battery swap station, determining the early warning and maintenance strategy, matching the schedule information of the battery swap station with the schedule plan, it will automatically match and send to the corresponding operation and maintenance users, including recommended maintenance time, personnel and operations, to realize the combination of alarm and schedule information, and ensure the pertinence and timeliness of the operation and maintenance users.
Targeted personnel allocation and fault maintenance are realized, user tasks are squeezed, fault handling efficiency and operational efficiency are improved, and rapid response and resource utilization of the battery swap station are ensured.
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Figure CN120278692A_ABST
Abstract
Description
[0001] This application claims priority based on the invention patent application filed with the China National Patent Office on December 29, 2023, with the application number 202311867134.9 and the invention title "A Method, Device and Medium for Warning of Battery Swap Station Based on Shift Schedule Plan", and this application incorporates the full text of the above-mentioned Chinese patent application by reference. Technical Field
[0002] This specification relates to the technical field of battery swap stations, and particularly to a method, device, electronic device and medium for warning of battery swap stations based on shift schedule plans. Background Art
[0003] New energy vehicles use non-traditional fuels, which can significantly reduce environmental pollution and have significant advantages in aspects such as environmental protection and energy conservation. They are an important direction for the future development of the automotive industry. With the popularization of new energy vehicles, battery swap stations, as places for quickly and efficiently replenishing electrical energy for new energy vehicles, have attracted much attention.
[0004] There are a large number of battery devices, charging devices and battery swapping devices in a battery swap station. The devices in the battery swap station are affected by various factors and are prone to problems such as failures and accidents. In this case, for unmanned or less-manned battery swap stations, there is no targeted solution when a failure occurs, which will affect the battery swapping experience of users or cause property losses in the battery swap station. Currently, most of the existing warning methods for battery swap stations are for warnings during the fault detection process, lacking personnel allocation and fault maintenance processes for warning content, resulting in an incomplete warning process for battery swap stations. Summary of the Invention
[0005] One or more embodiments of this specification provide a method, device and medium for warning of battery swap stations based on shift schedule plans to solve the following technical problems: Most of the existing warnings for battery swap stations are for warnings during the fault monitoring process, lacking personnel allocation and fault maintenance processes for warning content, resulting in an incomplete warning process for battery swap stations.
[0006] One or more embodiments of this specification adopt the following technical solutions:
[0007] One or more embodiments of this specification provide a warning method for a battery swapping station based on a shift schedule plan. The method includes: obtaining battery swapping warning information of at least one battery swapping station, where the battery swapping warning information includes warning battery swapping station information and warning content; determining a warning maintenance strategy corresponding to the current warning through the warning content in each battery swapping warning information; matching the battery swapping station shift information corresponding to the current warning according to the warning battery swapping station information in each battery swapping warning information and the pre-obtained shift schedule plan; matching the warning maintenance strategy with the battery swapping station shift information to determine at least one battery swapping station shift user corresponding to the current warning; and sending the battery swapping warning information and / or the warning maintenance strategy to each battery swapping station shift user.
[0008] Through the above technical solution, by means of the battery swapping warning information, the warning maintenance strategy is determined, providing a maintenance strategy for the warning and a maintenance plan for the warning steps; by combining the shift schedule plan and the warning battery swapping station information, the battery swapping station shift information is matched, realizing the combination of the warning and the shift information. By matching the recommended maintenance time information, recommended maintenance personnel information with the battery swapping station shift information, the corresponding battery swapping shift users are obtained, ensuring the pertinence of the warning information to the operation and maintenance users, avoiding the problem of unable to process the warning in time caused by the extrusion of user tasks, avoiding the deviation of the sending users of the warning information, improving the warning sending steps in the battery swapping station warning process, and realizing the personnel allocation for the warning content; each battery swapping shift user maintains the current warning according to the recommended maintenance operation information, providing a fault maintenance process after the warning for the battery swapping station warning.
[0009] Further, determining the warning maintenance strategy corresponding to the current warning through the warning content in each battery swapping warning information specifically includes: positioning the level of the current warning through the warning content in each battery swapping warning information to determine the current warning level of the current warning, where the warning content includes warning equipment and warning type; and determining the warning maintenance strategy corresponding to the current warning in the pre-constructed knowledge base according to the current warning level and the warning content.
[0010] Through the above technical solution, considering the scenario differences of different warnings, corresponding warning maintenance strategies are matched for different warnings, improving the warning maintenance steps in the warning process, providing a maintenance strategy for the equipment maintenance process, ensuring the pertinence of the warning maintenance strategy. In addition, the warning maintenance strategy includes multi-dimensional strategies of time, user and maintenance operation, improving the comprehensiveness of the warning maintenance process.
[0011] Further, based on the alarm content in each of the battery swapping alarm messages, the current alarm level is located for the current alarm to determine the current alarm level of the current alarm, which specifically includes: obtaining the alarm device, alarm type, and alarm metric data in the alarm content, where the alarm type includes operation accidental touch alarms and battery swapping process alarms; locating the alarm device in the pre-constructed battery swapping station operation model through the alarm device to determine the device participation weight of the alarm device in the current battery swapping station, where the battery swapping station operation model includes multiple device operation nodes; determining the index warning quantity of each alarm metric according to the alarm type and the alarm metric data; quantifying the alarm content based on the device participation weight of the alarm device and the index warning quantity to determine the alarm quantization parameter corresponding to the current alarm; and determining the current alarm level corresponding to the current alarm through the alarm quantization parameter and a preset plurality of alarm level thresholds.
[0012] Through the above technical solution, in view of the scene differences of battery swapping station alarms, considering the location factor of the alarm device in the battery swapping station and the index warning quantity of the alarm metric, the alarm content is quantified, which can visually display the alarm situation of the alarm content. By matching the alarm level with the alarm quantization parameter, targeted positioning of the alarm content is achieved.
[0013] Further, according to the alarm battery swapping station information in each of the battery swapping alarm messages and the pre-obtained shift schedule, the battery swapping station shift information corresponding to the current alarm is matched, which specifically includes: obtaining the shift information of multiple shift battery swapping stations in the shift schedule; and matching the alarm battery swapping station information with the multiple shift battery swapping stations to determine the battery swapping station shift information corresponding to the current battery swapping station, where the battery swapping station shift information includes multiple current battery swapping station shift users.
[0014] Through the above technical solution, by matching the alarm battery swapping station information and the shift battery swapping station information, the battery swapping station shift information corresponding to the current battery swapping station can be quickly determined, avoiding manual querying and confirmation, improving work efficiency; through automatic matching and confirmation, errors and omissions in manual operations can be reduced, ensuring the accuracy and integrity of information; and by quickly determining the battery swapping station shift information corresponding to the current battery swapping station, the fault handling efficiency can be improved.
[0015] Further, matching the warning maintenance strategy with the shift scheduling information of the battery swapping station to determine at least one shift scheduling user corresponding to the current alarm specifically includes: obtaining at least one current shift scheduling user in the shift scheduling information of the battery swapping station to determine the operation and maintenance task information of each current shift scheduling user, where the operation and maintenance task information includes at least one operation and maintenance task and the task execution information of each operation and maintenance task, and the task execution information includes the operation and maintenance task execution status and the estimated execution time; screening users among at least one of the current shift scheduling users of the current battery swapping station through the operation and maintenance task information of each current shift scheduling user and the recommended maintenance time information in the warning maintenance strategy to determine the shift scheduling users who can be alarmed at the current battery swapping station; determining at least one shift scheduling user corresponding to the current alarm according to the recommended maintenance personnel information in the warning maintenance strategy and the shift scheduling users who can be alarmed.
[0016] Through the above technical solution, the pertinence of the sending users of the alarm information is ensured, the task accumulation situation of the shift scheduling users is considered, the problem that the alarm cannot be processed in time due to the extrusion of user tasks is avoided, and combined with the shift scheduling information, it is ensured that the users are in the on-duty state, the deviation of the sending users of the alarm information is avoided, and the alarm sending steps in the alarm process of the battery swapping station are improved.
[0017] Further, after determining the shift scheduling users who can be alarmed at the current battery swapping station, the method further includes: when the number of users of the shift scheduling users who can be alarmed is less than the recommended number of operation and maintenance personnel in the recommended maintenance personnel information, determining the number of operation and maintenance personnel to be allocated through the recommended number of operation and maintenance personnel and the number of users of the shift scheduling users who can be alarmed; determining multiple allocated battery swapping stations within a specified designated area based on the location of the current battery swapping station in the alarm battery swapping station information to obtain the shift scheduling information of the multiple allocated battery swapping stations; screening among the multiple shift scheduling users of the multiple allocated battery swapping stations according to the shift scheduling information of the multiple allocated battery swapping stations to determine the users who can be allocated among the multiple shift scheduling users of the multiple allocated battery swapping stations; sorting the multiple users who can be allocated according to the pre-determined length of the allocation trajectory between each user who can be allocated and the current battery swapping station, and determining at least one allocated alarm shift scheduling user through the number of operation and maintenance personnel to be allocated.
[0018] Through the above technical solution, it can meet the operation and maintenance requirements of unmanned or less-manned management. By means of allocation, the operation and maintenance users corresponding to the current alarm are determined, the personnel allocation process of the alarm of the battery swapping station is improved, and the effective operation and maintenance of the current alarm are realized; by screening the allocated users according to the length of the allocation trajectory, the timeliness of the alarm handling process is ensured, and the situation of untimely operation and maintenance caused by the long duration of the allocation journey can be effectively avoided.
[0019] Further, sending the battery swapping warning information and / or the early warning maintenance strategy to each battery swapping station scheduling user specifically includes: obtaining the communication information of each battery swapping station scheduling user; based on the communication information, establishing a communication connection channel with each battery swapping station scheduling user, so as to send the battery swapping warning information and / or the early warning maintenance strategy to each battery swapping station scheduling user through the communication connection channel.
[0020] Through the above technical solution, through direct communication, the battery swapping station scheduling user can immediately receive the warning information, greatly shortening the time difference from the occurrence of the problem to the response. For urgent battery swapping warnings, quick response is the key to reducing the service interruption time and ensuring the battery swapping needs of users; the instant information transmission enables the scheduling user to quickly understand the nature and severity of the problem, so as to take targeted emergency measures and effectively respond to emergencies; based on the received warning information and early warning maintenance strategy, the scheduling user can make more accurate and reasonable decisions; through the instant transmission of information, the scheduling user can more effectively manage the daily operation of the battery swapping station, reduce unnecessary waiting time and resource waste, and improve the overall operation efficiency.
[0021] Further, before determining a plurality of allocated battery swapping stations within a specified designated area based on the current battery swapping station location in the warning battery swapping station information, the method further includes: determining a current allocation time threshold through the recommended maintenance time information, so as to obtain an allocation distance threshold according to the current allocation time threshold and the pre-obtained allocation access mode; taking the current battery swapping station location as the center, determining the specified designated area according to the allocation distance threshold.
[0022] Through the above technical solution, when setting the specified designated area, the allocation distance threshold and the current battery swapping station location are considered, and battery swapping stations that are far away are screened out at the designated area level, further reducing the risk of untimely operation and maintenance caused by the long allocation journey time.
[0023] One or more embodiments of this specification provide a battery swapping station warning device based on a shift schedule plan, and the device includes: an acquisition module, configured to acquire battery swapping warning information of at least one battery swapping station, where the battery swapping warning information includes warning battery swapping station information and warning content; a determination module, configured to determine an early warning maintenance strategy corresponding to the current warning through the warning content in each battery swapping warning information; a configuration module, configured to match the battery swapping station scheduling information corresponding to the current warning according to the warning battery swapping station information in each battery swapping warning information and the pre-obtained shift schedule plan; a matching module, configured to match the early warning maintenance strategy with the battery swapping station scheduling information to determine at least one battery swapping station scheduling user corresponding to the current warning; a sending module, configured to send the battery swapping warning information and / or the early warning maintenance strategy to each battery swapping station scheduling user.
[0024] One or more embodiments of this specification provide an electronic device, including a memory, a processor, and a computer program stored on the memory and executable on the processor. When the processor executes the computer program, the method for warning the power exchange station based on the shift schedule as described above is implemented.
[0025] One or more embodiments of this specification provide a computer-readable storage medium, on which a computer program is stored. When the computer program is executed by a processor, the method for warning the power exchange station based on the shift schedule as described above is implemented.
[0026] At least one of the above technical solutions adopted in the embodiments of this specification can achieve the following beneficial effects: Through the above technical solutions, by the power exchange warning information, the early warning maintenance strategy is determined, which provides a maintenance strategy for the warning and a maintenance plan for the warning steps; by combining the shift schedule and the warning power exchange station information, the shift schedule information of the power exchange station is matched, realizing the combination of the warning and the shift schedule information. By matching the recommended maintenance time information and the recommended maintenance personnel information with the shift schedule information of the power exchange station, the corresponding power exchange shift users are obtained, ensuring the pertinence of the warning information to the operation and maintenance users, avoiding the problem that the warning cannot be processed in time due to the backlog of user tasks, avoiding the deviation of the sending users of the warning information, improving the warning sending steps in the power exchange station warning process, and realizing the personnel allocation for the warning content; each power exchange shift user maintains the current warning according to the recommended maintenance operation information, providing a fault maintenance process after the warning for the power exchange station warning. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] In order to more clearly illustrate the technical solutions in the embodiments of this specification or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments recorded in this specification. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings. In the drawings:
[0028] Figure 1 It is a schematic flowchart of a method for warning a power exchange station based on a shift schedule provided by an embodiment of this specification;
[0029] Figure 2 It is a schematic structural diagram of an electronic device provided by an embodiment of this specification. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0030] To enable those skilled in the art to better understand the technical solutions in this specification, the technical solutions in the embodiments of this specification will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of this specification. Obviously, the described embodiments are only a part of the embodiments of this specification, rather than all the embodiments. Based on the embodiments of this specification, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the scope of protection of this specification.
[0031] New energy vehicles use non - traditional fuels, which can significantly reduce environmental pollution and have significant advantages in aspects such as environmental protection and energy conservation. They are an important direction for the future development of the automotive industry. With the popularization of new energy vehicles, the swapping station, as a place for quickly and efficiently replenishing electric energy for new energy vehicles, has attracted much attention.
[0032] There are a large number of battery devices, charging devices, and swapping devices in the swapping station. The devices in the swapping station are affected by various factors and are prone to problems such as failures and accidents. In this case, for unmanned or less - manned swapping stations, when a failure occurs, it is impossible to solve it specifically, which will affect the swapping experience of users or cause property losses in the swapping station. Currently, most of the existing warning methods for swapping stations are aimed at the warning during the fault detection process, lacking the personnel allocation and fault maintenance process for the warning content, resulting in an incomplete warning process in the swapping station.
[0033] The embodiments of this specification provide a swapping station warning method based on a shift schedule. It should be noted that the execution subject in the embodiments of this specification can be a server or any device with data - processing capabilities. Figure 1 As shown in the flowchart of a swapping station warning method based on a shift schedule provided by the embodiments of this specification, Figure 1 as shown, it mainly includes the following steps:
[0034] Step S101, obtain the swapping warning information of at least one swapping station.
[0035] In an embodiment of this specification, to obtain the swapping warning information of at least one swapping station, the cloud platform can be used to conduct safety monitoring on multiple swapping stations. After detecting abnormalities, swapping warning information is generated. Here, the swapping warning information includes warning swapping station information and warning content. The warning swapping station information is used to represent the information of the swapping station where the warning occurs and can include the location information of the swapping station. The warning content is information such as the specific warning device, warning type, and specific warning index data for this warning. For example, for the device temperature warning of charging device A, its warning index is the temperature index, and the real - time value of the temperature index is T.
[0036] Step S102: Determine the warning maintenance strategy corresponding to the current warning based on the warning content in each battery swapping warning message.
[0037] Determine the warning maintenance strategy corresponding to the current warning based on the warning content in each battery swapping warning message, which specifically includes: Locate the level of the current warning through the warning content in each battery swapping warning message to determine the current warning level of the current warning, where the warning content includes the warning device and the warning type; Based on the current warning level and the warning content, determine the warning maintenance strategy corresponding to the current warning in the pre-constructed knowledge base.
[0038] In an embodiment of the present specification, there are numerous devices in the battery swapping station, and the maintenance strategies corresponding to the warnings generated by different devices or different warnings generated by the same device are different. To ensure the integrity of the warning process, it is necessary to generate corresponding warning maintenance strategies for each warning. First, analyze the warning content in the battery swapping warning message, and determine the level positioning of the current warning level through the warning content. Here, it can be in the form of a warning level. For example, a first-level warning, a second-level warning, etc. The larger the warning level value, the more serious the warning. Second, based on the current warning level and the warning content, determine the warning maintenance strategy corresponding to the current warning in the pre-constructed knowledge base. The warning maintenance strategy here includes recommended maintenance time information, recommended maintenance personnel information, and recommended maintenance operation information.
[0039] Specifically, both the recommended maintenance time information and the recommended maintenance personnel information are related to the current warning level. The higher the current warning level, the more serious the warning. Therefore, the corresponding recommended maintenance time information is earlier, and the number of recommended maintenance personnel is larger. The recommended maintenance operation information is related to the warning content, and for the warning content, match the maintenance measures in the pre-constructed knowledge base. The knowledge base here can also be understood as an expert database, which stores maintenance operation information corresponding to various faults, and can also continuously update the knowledge base through historical maintenance operation information. In addition, in addition to determining the recommended maintenance operation information through the knowledge base, a learning model trained with historical maintenance operation data and historical warning data can also be used to input the current warning level and the warning content into the trained learning model to output the warning maintenance strategy.
[0040] Through the above technical solution, considering the scenario differences of different warnings, matching corresponding warning maintenance strategies for different warnings, improving the warning maintenance steps in the warning process, providing maintenance strategies for the equipment maintenance process, ensuring the pertinence of the warning maintenance strategy, and in addition, including multi-dimensional strategies of time, user, and maintenance operation in the warning maintenance strategy, improving the comprehensiveness of the warning maintenance process.
[0041] Based on the alarm content in each of these battery swapping alarm messages, locate the level of the current alarm to determine the current alarm level of the current alarm, specifically including: obtaining the alarm device, alarm type, and alarm metric data in the alarm content, where the alarm type includes operation accidental touch alarms and battery swapping process alarms; through the alarm device, locate the alarm device in the pre-constructed battery swapping station operation model to determine the device participation weight of the alarm device in the current battery swapping station, where the battery swapping station operation model includes multiple device operation nodes; based on the alarm type and the alarm metric data, determine the metric warning amount for each alarm metric; based on the device participation weight of the alarm device and the metric warning amount, quantify the alarm content to determine the alarm quantization parameter corresponding to the current alarm; through the alarm quantization parameter and a preset plurality of alarm level thresholds, determine the current alarm level corresponding to the current alarm.
[0042] In an embodiment of this specification, determine the alarm device, alarm type, and alarm metric data in the alarm content. The alarm type includes operation accidental touch alarms and battery swapping process alarms. Here, the operation accidental touch alarm is an alarm generated by the user due to accidental touch operations, and the battery swapping process alarm is an alarm during the operation of the battery swapping station, such as the charging temperature warning during charging and the battery swapping device warning during battery swapping. Obtain the pre-constructed battery swapping station operation model. Here, the battery swapping station operation model is a simulation model used to simulate the operation process of each device in the battery swapping station. The battery swapping station operation model includes multiple battery swapping station devices, and there is an operation sequence between each battery swapping station device. Here, the battery swapping station operation model can also be an operation relationship model including multiple battery swapping station device nodes. For example, when there is a one-way connection between multiple battery swapping station device nodes and device A points to device B, it means that after device A operates, device B starts to operate.
[0043] Locate the alarm device in the pre-constructed battery swapping station operation model to determine the device participation weight of the alarm device in the current battery swapping station. The battery swapping station operation model includes multiple device operation nodes. It should be noted that the device participation weight here can be generated through the following method: First step, determine the device node corresponding to the alarm device; Second step, determine the operation process participated by the device node in the battery swapping station operation model, and count the total number of device operation nodes in this operation process; Third step, in this operation process, determine the other device operation nodes located after the device node, and count the number of other device operation nodes; Fourth step, calculate the ratio of the number of other device operation nodes to the total number of device operation nodes in this operation process to obtain the device participation weight of the alarm device in the current battery swapping station.
[0044] According to the alarm type and the alarm metric data, determine the metric warning amount for each alarm metric. The metric warning amount here can be obtained through the following method: calculate the difference between the alarm metric value and the preset alarm threshold, and determine the ratio of this difference to the alarm threshold as the metric warning amount. Based on the device participation weight of the alarm device and the metric warning amount, quantify the alarm content to determine the alarm quantization parameter corresponding to the current alarm. For example, the alarm quantization parameter can be obtained by multiplying the device participation weight and the metric warning amount, or the reference weights can be set for the device participation weight and the metric warning amount respectively according to actual needs, and the alarm quantization parameter can be determined by weighted summation. Determine the current alarm level corresponding to the current alarm through the alarm quantization parameter and multiple preset alarm level thresholds. It should be noted that when setting the alarm level thresholds here, the determination method of each alarm level threshold should be the same as that of the alarm quantization parameter.
[0045] Through the above technical solution, aiming at the scene differences of the warning in the battery swapping station, considering the location factor of the warning device in the battery swapping station and the metric warning amount of the warning metric, quantifying the warning content can visually display the warning situation of the warning content, and matching the warning level through the warning quantization parameter, realizing the targeted positioning of the warning content.
[0046] Step S103: According to the warning battery swapping station information in each battery swapping warning message and the pre-obtained shift schedule, match the shift schedule information of the battery swapping station corresponding to the current warning.
[0047] Among them, the shift schedule information of the battery swapping station includes at least one scheduled person.
[0048] According to the warning battery swapping station information in each battery swapping warning message and the pre-obtained shift schedule, matching the shift schedule information of the battery swapping station corresponding to the current warning specifically includes: obtaining the shift schedule information of multiple scheduled battery swapping stations in the shift schedule; matching the warning battery swapping station information with the multiple scheduled battery swapping stations to determine the shift schedule information of the battery swapping station corresponding to the current battery swapping station, where the shift schedule information of the battery swapping station includes multiple current battery swapping station scheduled users.
[0049] Generally, in order to manage the enterprise, new energy enterprises will set a shift schedule, which includes the shift schedule information of multiple scheduled battery swapping stations. According to the warning battery swapping station information in the battery swapping warning message, determine the shift schedule information of the battery swapping station corresponding to the current battery swapping station in the shift schedule. The shift schedule information of the battery swapping station here includes multiple current battery swapping station scheduled users.
[0050] Through the above technical solutions, by matching the warning swap station information and the scheduled shift swap station information, the scheduled shift information corresponding to the current swap station can be quickly determined, avoiding manual query and confirmation, and improving work efficiency; through automatic matching and confirmation, errors and omissions in manual operations can be reduced, ensuring the accuracy and integrity of information; by quickly determining the scheduled shift information corresponding to the current swap station, the fault handling efficiency can be improved.
[0051] Step S104: Match the warning maintenance strategy with the scheduled shift information of the swap station to determine at least one scheduled shift user corresponding to the current warning.
[0052] Among them, the warning maintenance strategy includes recommended maintenance time information, recommended maintenance personnel information, and recommended maintenance operation information.
[0053] Matching the warning maintenance strategy with the scheduled shift information of the swap station to determine at least one scheduled shift user corresponding to the current warning specifically includes: obtaining at least one current scheduled shift user in the scheduled shift information of the swap station to determine the operation and maintenance task information of each current scheduled shift user, where the operation and maintenance task information includes at least one operation and maintenance task and the task execution information of each operation and maintenance task, and the task execution information includes the operation and maintenance task execution status and the estimated execution time; screening users among at least one current scheduled shift user of the current swap station through the operation and maintenance task information of each current scheduled shift user and the recommended maintenance time information in the warning maintenance strategy to determine the warnable scheduled shift users of the current swap station; determining at least one scheduled shift user corresponding to the current warning according to the recommended maintenance personnel information in the warning maintenance strategy and the warnable scheduled shift users.
[0054] In one embodiment of this specification, at least one current shift user in the shift scheduling information of the battery swapping station is obtained to determine the operation and maintenance task information of each current shift user. It should be noted that the operation and maintenance task information of each shift user includes at least one operation and maintenance task and the task execution information of each operation and maintenance task. The task execution information includes the operation and maintenance task execution status and the estimated execution time. Since each current shift user in the battery swapping station may handle multiple operation and maintenance tasks and the execution times of each operation and maintenance task are different, when determining the shift user corresponding to the current alarm, the task execution situation of the operation and maintenance users in the current battery swapping station is considered. Based on the operation and maintenance task information of each current shift user in the battery swapping station and the recommended maintenance time information, first, according to the operation and maintenance task information of each current shift user in the battery swapping station and the recommended maintenance time information, user screening is performed among at least one current shift user in the current battery swapping station to determine the shift users in the current battery swapping station who can be alarmed. The shift users who can be alarmed here are the users who are in a position to execute the maintenance task corresponding to the current alarm under the recommended maintenance time information. According to the number of recommended maintenance personnel in the recommended maintenance personnel information, screening is performed among multiple shift users who can be alarmed to determine at least one shift user in the battery swapping station with the same number as the number of recommended maintenance personnel.
[0055] When performing shift user screening in the battery swapping station, statistical analysis can be carried out on the historical maintenance task information of each shift user to obtain multiple historical maintenance alarm types of each shift user and the number of maintenance times of each historical maintenance alarm type. Combining the alarm type in the current alarm information, the number of maintenance times of this alarm type corresponding to each shift user is determined. Multiple shift users are sorted in descending order of the number of maintenance times, and screening is performed sequentially during the sorting to determine at least one shift user in the battery swapping station with the same number as the number of recommended maintenance personnel.
[0056] Through the above technical solution, the pertinence of the sent user of the alarm information is ensured, the task accumulation situation of the shift users is considered, the problem of being unable to process the alarm in time caused by user task backlog is avoided, and combined with the shift scheduling information, it is ensured that the user is in the on-duty state, the deviation of the sent user of the alarm information is avoided, and the alarm sending steps in the alarm process of the battery swapping station are improved.
[0057] After determining the users with warning-schedulable shifts in the current battery swapping station, the method further includes: when the number of users with warning-schedulable shifts is less than the recommended number of operation and maintenance personnel in the recommended maintenance personnel information, determining the number of operation and maintenance personnel to be allocated based on the recommended number of operation and maintenance personnel and the number of users with warning-schedulable shifts; determining multiple allocated battery swapping stations within a specified designated area based on the location of the current battery swapping station in the warning battery swapping station information, so as to obtain the shift scheduling information of the multiple allocated battery swapping stations; screening among the shift-scheduled users of the multiple allocated battery swapping stations according to the shift scheduling information of the multiple allocated battery swapping stations, so as to determine the allocable users among the shift-scheduled users of the multiple allocated battery swapping stations; sorting the multiple allocable users according to the pre-determined length of the allocation trajectory between each allocable user and the current battery swapping station, and determining at least one allocated warning-scheduled user based on the number of operation and maintenance personnel to be allocated.
[0058] In the actual application scenario of battery swapping stations, they are usually set up in various regions. And with the development of equipment intelligence, fewer and fewer staff are equipped in battery swapping stations, showing a development trend of unmanned or less-manned management. In this scenario, there may be a situation where the number of users with warning-schedulable shifts is less than the recommended number of operation and maintenance personnel in the recommended maintenance personnel information, that is, there are fewer shift-scheduled users in the current battery swapping station, which cannot meet the fault maintenance process of the current warning.
[0059] In this case, determine the number of operation and maintenance personnel to be allocated based on the difference between the recommended number of operation and maintenance personnel and the number of users with warning-schedulable shifts. The operation and maintenance personnel to be allocated here refer to the users who need to be allocated from other battery swapping stations for fault maintenance. Based on the location of the current battery swapping station in the warning battery swapping station information, locate the current battery swapping station and determine multiple allocated battery swapping stations within a specified designated area. The multiple allocated battery swapping stations and the current battery swapping station belong to the same new energy enterprise. And obtain the shift scheduling information of the multiple allocated battery swapping stations. Screen among the shift-scheduled users of the multiple allocated battery swapping stations according to the shift scheduling information of the multiple allocated battery swapping stations, so as to determine the allocable users among the shift-scheduled users of the multiple allocated battery swapping stations. Similarly, the allocable users here refer to the shift-scheduled users who can perform operation and maintenance tasks under the recommended maintenance time. Calculate the length of the allocation trajectory between each allocable user and the current battery swapping station according to the location of the battery swapping station to which each shift-scheduled user belongs. Sort the multiple allocable users in ascending order of the length of the allocation trajectory, and sequentially determine the allocated warning-scheduled users according to the number of operation and maintenance personnel to be allocated.
[0060] Through the above technical solution, it is possible to meet the operation and maintenance requirements of unmanned or less-attended management. By means of allocation, the operation and maintenance user corresponding to the current alarm is determined, the personnel allocation process for the alarm in the battery swapping station is improved, and the effective operation and maintenance of the current alarm is realized. By screening the allocated users according to the length of the allocation track, the timeliness of the alarm handling process is ensured, and the situation of untimely operation and maintenance caused by the long duration of the allocation journey can be effectively avoided.
[0061] Before determining multiple allocated battery swapping stations within the specified designated area based on the current battery swapping station location in the alarm battery swapping station information, the method further includes: determining the current allocation time threshold through the recommended maintenance time information, so as to obtain the allocation distance threshold according to the current allocation time threshold and the pre-acquired allocation passage mode; centering on the current battery swapping station location, determining the specified designated area according to the allocation distance threshold.
[0062] In an embodiment of the present specification, the current allocation time threshold is determined through the recommended maintenance time information. Here, the current allocation time threshold is the maximum time threshold. For example, if the recommended maintenance time information is within two hours, the current allocation time threshold is set to 2 hours. Since each battery swapping station belongs to the same new energy enterprise, the allocation passage mode can be preset, such as in the form of new energy vehicles equipped by the enterprise. The average running speed of the new energy vehicles equipped by the enterprise is obtained, and the allocation distance threshold is calculated through the average running speed of the new energy vehicles equipped by the enterprise and the current allocation time threshold. Centering on the current battery swapping station location and with the allocation distance threshold as the radius, the specified designated area is determined.
[0063] Through the above technical solution, when setting the specified designated area, the allocation distance threshold and the current battery swapping station location are considered, and the battery swapping stations that are far away are screened out at the level of the designated area, further reducing the risk of untimely operation and maintenance caused by the long duration of the allocation journey.
[0064] Step S105, sending the battery swapping alarm information and / or the early warning maintenance strategy to each battery swapping station scheduling user.
[0065] In an embodiment of the present specification, the recommended maintenance operation information is sent to the terminal device corresponding to each battery swapping station scheduling user, realizing the targeted sending of the recommended maintenance operation information. In addition, the alarm information and the recommended maintenance operation information are sent together, simultaneously realizing the alarm notification and the maintenance recommendation notification.
[0066] Sending the battery swapping alarm information and / or the early warning maintenance strategy to each of the battery swapping station scheduling users specifically includes: obtaining the communication information of each of the battery swapping station scheduling users; based on the communication information, establishing a communication connection channel with each of the battery swapping station scheduling users, so as to send the battery swapping alarm information and / or the early warning maintenance strategy to each of the battery swapping station scheduling users through the communication connection channel.
[0067] In one embodiment of this specification, three new tables, alerm_rel_app (saving the service name and the project to which the service belongs, using the application_id and team_id fields respectively), alerm_rel_dingtalk (saving the team_id, the access token and secret of DingTalk during grouped alarms), and alerm_rel_mobile (saving the team_id, mobile phone number, and the duty day within a week, i.e., dayofweek), are added to the Pinpoint alarm database, and the information is entered in advance. The above tables provide a basis for obtaining communication information. In BatchAlarmMapper.xml, write SQL statements or MyBatis queries to associate the three tables so as to obtain the corresponding DingTalk alarm group information (including access token and secret) and the phone number of the on-duty personnel on the current day according to the application name (applicationId). In the Pinpoint2DingTalkSmsSender class, write a method to execute this query and return a result object containing the DingTalk alarm group information and the phone number of the on-duty personnel.
[0068] When establishing a communication connection channel, it can be a DingTalk alarm channel. Using the API provided by DingTalk, a communication connection channel with DingTalk can be created through the access token and secret. This usually includes sending an HTTP request to the DingTalk server and including the necessary authentication information. It can also be a SMS channel. For sending alarm information via phone, integrate the API of a SMS service provider to send SMS via phone number. At the corresponding code implementation level, in the Pinpoint2DingTalkSmsSender class, write methods to initialize the DingTalk client (using the access token and secret) and / or the SMS client.
[0069] After that, send the alarm information and / or early warning maintenance strategy. According to the content of the battery replacement alarm information and / or early warning maintenance strategy, construct a message suitable for the DingTalk message format (such as Markdown, text, etc.) or SMS format. Use the API call of the DingTalk client to send the constructed message to the corresponding DingTalk alarm group. It is also possible to use the API call of the SMS client to send the message to the phone number of the scheduled user. At the code level, it is implemented by writing a method in the Pinpoint2DingTalkSmsSender class to receive the battery replacement alarm information and / or early warning maintenance strategy, as well as the result object obtained in the first step (containing the DingTalk alarm group information and the phone number of the on-duty personnel). Traverse the DingTalk alarm group information and the phone number of the on-duty personnel, and use the corresponding API call to send the message.
[0070] Through the above technical solution, through direct communication, the battery swapping station scheduling user can immediately receive the alarm information, greatly shortening the time difference from the occurrence of the problem to the response. For urgent battery swapping alarms, quick response is the key to reducing the service interruption time and ensuring the battery swapping needs of users; the instant information transmission enables the scheduling user to quickly understand the nature and severity of the problem, so as to take targeted emergency measures and effectively respond to emergencies; based on the received alarm information and early warning maintenance strategy, the scheduling user can make more accurate and reasonable decisions; through the instant transmission of information, the scheduling user can more effectively manage the daily operation of the battery swapping station, reduce unnecessary waiting time and resource waste, and improve the overall operation efficiency.
[0071] Each battery swapping meter scheduling user maintains the current alarm according to the recommended maintenance operation information, specifically including: splitting the recommended maintenance operation information to obtain multiple maintenance operation sub-nodes; obtaining the actual maintenance operation information of each battery swapping meter scheduling user at each maintenance operation sub-node; performing an operation evaluation on the actual maintenance operation information to determine the actual operation evaluation index of each maintenance operation sub-node; monitoring the early warning maintenance process of the battery swapping meter scheduling user through the multiple maintenance operation sub-nodes and the actual operation evaluation index of each maintenance operation sub-node.
[0072] In an embodiment of the present specification, the recommended maintenance operation information is split to obtain multiple maintenance operation sub-nodes, and each maintenance operation sub-node corresponds to an operation step. The actual maintenance operation information of each battery swapping meter scheduling user at each maintenance operation sub-node is obtained. The actual maintenance operation information can be the text description of the operation process uploaded by the user or the set of operation process images collected by the monitoring device. Through text analysis or image analysis, an operation evaluation is performed on the actual maintenance operation information to determine the actual operation evaluation index of each maintenance operation sub-node. The actual operation evaluation index includes two types: qualified and unqualified, and can be in the form of comparing the actual maintenance operation information with the standard operation information. The early warning maintenance process of the battery swapping meter scheduling user is monitored through the multiple maintenance operation sub-nodes and the actual operation evaluation index of each maintenance operation sub-node.
[0073] Through the above technical solution, when allocating personnel for alarms, on the basis of ensuring that the alarm is sent to the scheduling user who meets the requirements, the alarm operation and maintenance process of the scheduling user is monitored, the recommended maintenance operation information is split, and each maintenance operation sub-node is evaluated, effectively ensuring the accuracy of the maintenance operation process and further improving the integrity of the alarm process.
[0074] Through the embodiments of this specification, by using the battery swapping warning information, a warning maintenance strategy is determined, providing a maintenance strategy for the warning and a maintenance plan for the warning steps; by combining the shift scheduling plan and the warning battery swapping station information, the shift scheduling information of the battery swapping station is matched, realizing the combination of the warning and the shift scheduling information. By matching the recommended maintenance time information, the recommended maintenance personnel information with the shift scheduling information of the battery swapping station, the corresponding battery swapping shift scheduling users are obtained, ensuring the pertinence of the warning information to the operation and maintenance users, avoiding the problem that the warning cannot be processed in time due to the backlog of user tasks, avoiding the deviation of the sending users of the warning information, improving the warning sending steps in the battery swapping station warning process, and realizing the personnel allocation for the warning content; each battery swapping shift scheduling user maintains the current warning according to the recommended maintenance operation information, providing a fault maintenance process after the warning for the battery swapping station warning.
[0075] One or more embodiments of this specification provide a battery swapping station warning device based on a shift schedule plan. Figure 2 As shown in the following figure, it is a schematic structural diagram of an electronic device provided by an embodiment of this specification. Figure 2 As shown, the device includes: an acquisition module, configured to acquire the battery swapping warning information of at least one battery swapping station, where the battery swapping warning information includes warning battery swapping station information and warning content; a determination module, configured to determine the warning maintenance strategy corresponding to the current warning through the warning content in each battery swapping warning information; a configuration module, configured to match the shift scheduling information of the battery swapping station corresponding to the current warning according to the warning battery swapping station information in each battery swapping warning information and the pre-acquired shift schedule plan; a matching module, configured to match the warning maintenance strategy with the shift scheduling information of the battery swapping station to determine at least one battery swapping shift scheduling user corresponding to the current warning; a sending module, configured to send the battery swapping warning information and / or the warning maintenance strategy to each battery swapping shift scheduling user.
[0076] One or more embodiments of this specification provide an electronic device, including a memory, a processor, and a computer program stored on the memory and executable on the processor. When the processor executes the computer program, it implements the battery swapping station warning method based on a shift schedule plan in any of the above embodiments.
[0077] One or more embodiments of this specification provide a computer-readable storage medium, on which a computer program is stored. When the computer program is executed by a processor, it implements the battery swapping station warning method based on a shift schedule plan in any of the above embodiments.
[0078] Each embodiment in this specification is described in a progressive manner. For the same or similar parts among the embodiments, reference can be made to each other, and the differences between each embodiment and other embodiments are emphasized. In particular, for the embodiments of the apparatus, device, and non-volatile computer storage medium, since they are basically similar to the method embodiments, the description is relatively simple, and reference can be made to the corresponding parts of the method embodiments for relevant content.
[0079] The specific embodiments of this specification are described above. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps recited in the claims can be performed in a different order than in the embodiments and still achieve the desired result. Additionally, the processes depicted in the figures do not necessarily require the particular order or sequential order shown to achieve the desired result. In certain embodiments, multitasking and parallel processing are also possible or may be advantageous.
[0080] The devices and media provided in the embodiments of this specification correspond one-to-one with the methods. Therefore, the devices and media also have beneficial technical effects similar to those of their corresponding methods. Since the beneficial technical effects of the methods have been described in detail above, the beneficial technical effects of the devices and media will not be elaborated here.
[0081] Those skilled in the art should understand that the embodiments of this specification can be provided as methods, systems, or computer program products. Therefore, this specification can take the form of a complete hardware embodiment, a complete software embodiment, or an embodiment combining software and hardware aspects. Moreover, this specification can take the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) containing computer-usable program code.
[0082] This specification is described with reference to the flowcharts and / or block diagrams of methods, apparatuses (systems), and computer program products according to the embodiments of this specification. It should be understood that each flow and / or block in the flowchart and / or block diagram, as well as the combination of flows and / or blocks in the flowchart and / or block diagram, can be implemented by computer program instructions. These computer program instructions can be provided to the processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable data processing devices to generate a machine, such that the instructions executed by the processor of the computer or other programmable data processing devices produce a device for implementing the functions specified in Figure 1 one or more flows or multiple flows and / or blocks Figure 1 one or more blocks or multiple blocks.
[0083] 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 particular manner, such that the instructions stored in the computer-readable memory produce a manufacture including an instruction device that implements the functions specified in one process Figure 1 one process or multiple processes and / or boxes Figure 1 specified in one box or multiple boxes.
[0084] These computer program instructions can also be loaded onto a computer or other programmable data processing device, so that a series of operation steps are executed on the computer or other programmable device to generate a computer-implemented process. Thus, the instructions executed on the computer or other programmable device provide steps for implementing the functions specified in one process Figure 1 one process or multiple processes and / or boxes Figure 1 specified in one box or multiple boxes.
[0085] In a typical configuration, a computing device includes one or more processors (CPUs), an input / output interface, a network interface, and memory.
[0086] The memory may include non-permanent memory in the computer-readable medium, in the form of random access memory (RAM) and / or non-volatile memory, such as read-only memory (ROM) or flash memory (flash RAM). Memory is an example of a computer-readable medium.
[0087] Computer-readable media includes permanent and non-permanent, removable and non-removable media that can store information by any method or technology. The information can be computer-readable instructions, data structures, program modules, or other data. Examples of computer storage media include, but are not limited to, phase change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), flash memory or other memory technologies, compact disc read-only memory (CD-ROM), digital versatile disc (DVD) or other optical storage, magnetic cassette tapes, magnetic tape magnetic disk storage or other magnetic storage devices, or any other non-transmission media that can be used to store information accessible by a computing device. As defined herein, computer-readable media does not include transitory computer-readable media, such as modulated data signals and carrier waves.
[0088] It should also be noted that the term "comprise", "include" or any other variant thereof is intended to cover non-exclusive inclusion, such that a process, method, commodity or device comprising a series of elements not only includes those elements but also includes other elements not expressly listed, or further includes elements inherent to such process, method, commodity or device. Without further limitation, an element defined by the statement "comprising an..." does not exclude the presence of additional identical elements in the process, method, commodity or device comprising said element.
[0089] The above description is only one or more embodiments of this specification and is not intended to limit this specification. For those skilled in the art, various changes and modifications can be made to one or more embodiments of this specification. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of one or more embodiments of this specification shall be included within the scope of the claims of this specification.
Claims
1. A warning method for a battery swapping station based on a shift schedule plan, characterized in that, The method includes: Obtaining the battery swapping warning information of at least one battery swapping station, where the battery swapping warning information includes the warning battery swapping station information and the warning content; Determining the warning maintenance strategy corresponding to the current warning through the warning content in each of the battery swapping warning information; Matching the battery swapping station scheduling information corresponding to the current warning according to the warning battery swapping station information in each of the battery swapping warning information and the pre-obtained scheduling plan; Matching the warning maintenance strategy with the battery swapping station scheduling information to determine at least one battery swapping station scheduling user corresponding to the current warning; Sending the battery swapping warning information and / or the warning maintenance strategy to each of the battery swapping station scheduling users.
2. The warning method for a battery swapping station based on a shift schedule plan according to claim 1, wherein Determining the warning maintenance strategy corresponding to the current warning through the warning content in each of the battery swapping warning information specifically includes: Performing level positioning on the current warning through the warning content in each of the battery swapping warning information to determine the current warning level of the current warning, where the warning content includes the warning device and the warning type; Determining the warning maintenance strategy corresponding to the current warning in the pre-constructed knowledge base according to the current warning level and the warning content.
3. The warning method for a battery swapping station based on a shift schedule plan according to claim 2, wherein Performing level positioning on the current warning through the warning content in each of the battery swapping warning information specifically includes: Obtaining the warning device, warning type, and warning index data in the warning content, where the warning type includes operation mis-touch warning and battery swapping process warning; Performing warning device positioning on the pre-constructed battery swapping station operation model through the warning device to determine the device participation weight of the warning device in the current battery swapping station, where the battery swapping station operation model includes multiple device operation nodes; Determining the index warning amount of each warning index according to the warning type and the warning index data; Quantifying the warning content based on the device participation weight of the warning device and the index warning amount to determine the warning quantization parameter corresponding to the current warning; Determining the current warning level corresponding to the current warning through the warning quantization parameter and a plurality of preset warning level thresholds.
4. The warning method for a battery swapping station based on a shift schedule plan according to claim 1, characterized in that, Matching the battery swapping station scheduling information corresponding to the current warning according to the warning battery swapping station information in each of the battery swapping warning information and the pre-obtained scheduling plan specifically includes: Obtaining the scheduling information of multiple scheduled battery swapping stations in the scheduling plan; Matching the warning battery swapping station information with the multiple scheduled battery swapping stations to determine the battery swapping station scheduling information corresponding to the current battery swapping station, where the battery swapping station scheduling information includes multiple current battery swapping station scheduling users.
5. A warning method for a battery swapping station based on a shift schedule plan according to claim 1, characterized in that, Matching the warning maintenance strategy with the battery swapping station scheduling information to determine at least one battery swapping station scheduling user corresponding to the current warning specifically includes: Obtaining at least one current battery swapping station scheduling user in the battery swapping station scheduling information to determine the operation and maintenance task information of each of the current battery swapping station scheduling users, where the operation and maintenance task information includes at least one operation and maintenance task and the task execution information of each operation and maintenance task, and the task execution information includes the operation and maintenance task execution status and the estimated execution time; Screen users among at least one of the currently scheduled users of the current battery swapping station based on the operation and maintenance task information of each currently scheduled user of the current battery swapping station and the recommended maintenance time information in the warning maintenance strategy, so as to determine the users who can be alerted at the current battery swapping station; Based on the recommended maintenance personnel information in the warning maintenance strategy and the users who can be alerted, determine at least one scheduled user of the battery swapping station corresponding to the current alert.
6. The warning method for a battery swapping station based on a shift schedule plan according to claim 5, wherein After determining the users who can be alerted at the current battery swapping station, the method further includes: When the number of users who can be alerted is less than the recommended number of operation and maintenance personnel in the recommended maintenance personnel information, determine the number of operation and maintenance personnel to be allocated based on the recommended number of operation and maintenance personnel and the number of users who can be alerted; Based on the location of the current battery swapping station in the warning battery swapping station information, determine multiple allocated battery swapping stations within a specified designated area to obtain the scheduled information of the allocated battery swapping stations of the multiple allocated battery swapping stations; Screen among the scheduled users of the multiple allocated battery swapping stations according to the scheduled information of the allocated battery swapping stations of the multiple allocated battery swapping stations, so as to determine the users who can be allocated among the scheduled users of the multiple allocated battery swapping stations; Sort the multiple users who can be allocated according to the length of the allocation trajectory between each user who can be allocated and the current battery swapping station determined in advance, and determine at least one allocated and alerted scheduled user through the number of operation and maintenance personnel to be allocated.
7. A warning method for a battery swapping station based on a shift schedule plan according to claim 1, characterized in that, Sending the battery swapping alert information and / or the warning maintenance strategy to each scheduled user of the battery swapping station specifically includes: Obtain the communication information of each scheduled user of the battery swapping station; Based on the communication information, establish a communication connection channel with each scheduled user of the battery swapping station, and send the battery swapping alert information and / or the warning maintenance strategy to each scheduled user of the battery swapping station through the communication connection channel.
8. The warning method for a battery swapping station based on a shift schedule plan according to claim 6, characterized in that, Before determining multiple allocated battery swapping stations within a specified designated area based on the location of the current battery swapping station in the warning battery swapping station information, the method further includes: Determine the current allocation time threshold through the recommended maintenance time information, so as to obtain the allocation distance threshold according to the current allocation time threshold and the previously obtained allocation access mode; Taking the location of the current battery swapping station as the center, determine the specified designated area according to the allocation distance threshold.
9. An alarm device for a battery swapping station based on a shift schedule plan, characterized in that, The device includes: An acquisition module, configured to acquire the battery swapping alert information of at least one battery swapping station, where the battery swapping alert information includes warning battery swapping station information and warning content; A determination module, configured to determine the warning maintenance strategy corresponding to the current alert through the warning content in each battery swapping alert information; A configuration module, configured to match the scheduled information of the battery swapping station corresponding to the current alert according to the warning battery swapping station information in each battery swapping alert information and the previously obtained scheduling plan; A matching module, configured to match the warning maintenance strategy with the scheduled information of the battery swapping station to determine at least one scheduled user of the battery swapping station corresponding to the current alert; A sending module, configured to send the battery swapping alert information and / or the warning maintenance strategy to each scheduled user of the battery swapping station.
10. An electronic device, comprising a memory, a processor, and a computer program stored on the memory and executable on the processor, characterized in that, When the processor executes the computer program, it implements the warning method for the battery swapping station based on the shift schedule as described in any one of claims 1-8.
11. 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 warning method for the battery swapping station based on the shift schedule as described in any one of claims 1-8.