Charging method of mobile charging equipment, electronic equipment and storage medium
By real-time communication scheduling between the client and the server, matching the remaining power of the charging station and the power of the vehicle to be charged, generating a charging appointment request to schedule the mobile charging device, solving the problem of unreasonable resource scheduling of the mobile charging device and improving resource utilization and user experience.
Patent Information
- Application Number
- CN202311632175.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-30
- Publication Date
- 2025-06-06
AI Technical Summary
In the prior art, the resource scheduling of mobile charging devices is unreasonable, resulting in low utilization of charging resources, affecting users' time schedule and charging experience.
By real-time communication scheduling between the client and the server, the charging information of the vehicle to be charged is obtained, and the remaining power of the charging station during the charging period is matched with the charging amount to be charged, and a charging reservation request is generated to schedule the mobile charging device.
It improves the resource utilization rate of mobile charging devices, ensures reasonable scheduling of charging resources, and optimizes user schedule and charging experience.
Smart Images

Figure CN120096380A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of new energy vehicles, and in particular to a charging method for a mobile charging device, an electronic device and a storage medium. Background Art
[0002] Mobile charging equipment, such as a car charging robot, can realize the "power finds car" function. When charging a vehicle, the mobile charging equipment can move to the location of the vehicle and charge the vehicle.
[0003] However, in the related art, in the process of scheduling mobile charging equipment to power the vehicle, only whether there is an idle and available mobile charging equipment near the vehicle is considered. This method makes the scheduling of charging resources unreasonable and reduces the resource utilization of the mobile charging equipment. Summary of the invention
[0004] The present application provides a charging method for a mobile charging device, an electronic device and a storage medium, which can solve the problem of low resource utilization of the mobile charging device due to unreasonable charging resource scheduling in the related art.
[0005] In a first aspect, the present application provides a charging method for a mobile charging device, which can be applied to a client, the method comprising: in response to a user's input operation, obtaining charging information of a vehicle to be charged, wherein the charging information at least includes a charging time period of the vehicle to be charged and a charging amount of the vehicle to be charged; matching the reservable charging information with the charging information to obtain a matching result; when the matching result indicates that the reservable charging information matches the charging information, generating a charging reservation request based on the charging information, and sending the charging reservation request to a server, wherein the charging reservation request is used to instruct the server to schedule at least one mobile charging device to charge the vehicle to be charged within the charging time period according to the charging reservation request.
[0006] In the technical solution of the embodiment of the present application, before charging the vehicle to be charged, it is determined whether the charging load of the charging station is overloaded during the waiting period based on the remaining power of the charging station during the waiting period and the waiting power of the vehicle to be charged. That is, only when the waiting power matches the remaining power corresponding to the waiting period, is it allowed to charge the vehicle to be charged during the waiting period, thereby avoiding the problem of excess or insufficient charging resources in a certain period due to unreasonable allocation of charging resources, making the scheduling of charging resources more reasonable and improving the resource utilization of mobile charging equipment.
[0007] In some embodiments, the reservable charging information includes at least one reservable charging time period. In response to a user's input operation, the charging information of the vehicle to be charged is obtained, including: displaying at least one reservable charging time period; in response to a user's selection operation of selecting a charging time period from at least one reservable charging time period, obtaining the time period to be charged; in response to a user's operation of inputting a charging power, obtaining the charging power corresponding to the time period to be charged.
[0008] Through the interaction between the user and the client, the user can reasonably arrange the charging time according to his actual needs, ensuring the rationality of the user's time arrangement and improving the user's charging experience; the client can determine whether to allow the user to charge based on the remaining power of the charging station during the charging period and the power to be charged, avoiding the overload of the charging station, making the charging resource allocation of the charging station more reasonable, and improving the utilization rate of charging resources.
[0009] In some embodiments, the reservable charging information also includes the remaining power corresponding to each reservable charging time period, wherein the reservable charging information is matched with the information to be charged to obtain a matching result, including: determining a target remaining power that matches the time period to be charged from the reservable charging information; when the power to be charged is less than or equal to the target remaining power and the acquisition time of the information to be charged is earlier than the start time of the time period to be charged, obtaining a first matching result, wherein the first matching result is used to characterize that the reservable charging information matches the information to be charged.
[0010] By matching the target remaining power corresponding to the charging period in the reservable charging information with the power to be charged, and when the target remaining power meets the charging needs of the vehicle to be charged, the reservable charging information is determined to match the information to be charged, allowing the user to make a charging reservation, thereby avoiding overload of the charging station and achieving reasonable scheduling of charging resources.
[0011] In some embodiments, the charging method of a mobile charging device also includes: when the amount of power to be charged is less than or equal to the target remaining power, and the acquisition time of the information to be charged is within the charging period, detecting whether the acquisition time of the information to be charged is within the first sub-period of the charging period, wherein the charging period includes the first sub-period and the second sub-period, and the end time of the first sub-period is the start time of the second sub-period; when the acquisition time of the information to be charged is within the first sub-period, generating a first matching result; when the amount of power to be charged is greater than the target remaining power, or the acquisition time of the information to be charged is within the second sub-period, or the acquisition time of the information to be charged is later than the end time of the charging period, obtaining a second matching result, wherein the second matching result is used to characterize that the reservable charging information does not match the information to be charged.
[0012] By matching the charging information with the reservable charging information, users are allowed to make charging reservations only when both the charging period and the amount of charging power meet the conditions, thus avoiding overload of charging stations and ensuring the rationality of charging resource scheduling.
[0013] In some embodiments, the charging method of a mobile charging device also includes: after sending a charging reservation request to a server, obtaining updated reservable charging information sent by the server, wherein the updated reservable charging information is the charging information obtained after the server updates the remaining power of the charging period in the reservable charging information according to the charging information to be charged; and displaying the updated reservable charging information.
[0014] By updating the reservable charging information in real time, the client and the server can achieve efficient collaborative communication through the reservable charging information, ensuring the rationality of charging resource allocation; in addition, based on the updated reservable charging information, users can adjust the charging information in a timely manner, further ensuring the rationality of the user's time arrangement.
[0015] In a second aspect, the present application also provides a charging method for a mobile charging device, which is applied to a server, and the method includes: receiving a charging reservation request generated by a client based on reservable charging information, wherein the charging reservation request includes at least a charging time period of a vehicle to be charged and a charging amount of the vehicle to be charged, and the reservable charging information includes at least one reservable charging time period and a remaining power corresponding to each reservable charging time period; determining at least one target mobile charging device from a plurality of mobile charging devices based on the charging amount; and controlling at least one target mobile charging device to charge the vehicle to be charged during the charging time period.
[0016] In an embodiment of the present application, before charging the vehicle to be charged, it is determined whether the charging load of the charging station is overloaded during the waiting period based on the remaining power of the charging station during the waiting period and the remaining power of the vehicle to be charged. That is, only when the remaining power corresponding to the waiting period matches the remaining power, is it allowed to charge the vehicle to be charged during the waiting period, thereby avoiding the problem of excess or insufficient charging resources in a certain period due to unreasonable allocation of charging resources, making the scheduling of charging resources more reasonable and improving the resource utilization rate of mobile charging equipment.
[0017] In some embodiments, the charging method of a mobile charging device also includes: before receiving a charging reservation request generated by a client based on reservable charging information, obtaining a service start time and a service end time of the charging service provided by the charging station, wherein the charging station is deployed with multiple mobile charging devices; determining a total service time of the charging station based on the service start time and the service end time; dividing the total service time into multiple charging time periods, and determining the power supply corresponding to each charging time period; determining the reserved power corresponding to each charging time period based on the charging reservation request received in each charging time period; determining the remaining power corresponding to each charging time period based on the reserved power corresponding to each charging time period and the power supply corresponding to each charging time period; associating each charging time period with the corresponding remaining power to obtain reservable charging information.
[0018] By generating reservable charging information, the client, server and user can communicate collaboratively based on the reservable charging information, which not only makes the user's time arrangement more reasonable, but also ensures the reasonable allocation of charging resources.
[0019] In some embodiments, the total service time is divided into multiple charging periods, including: determining the charging time corresponding to each charging period; determining the start time and end time corresponding to each charging period based on the service start time and the charging time corresponding to each charging period; dividing the total service time into multiple charging periods based on the start time and end time of each charging period.
[0020] By dividing the total service time of the charging station into multiple charging periods, users can choose the charging period according to their actual needs, ensuring the rationality of the user's time arrangement; the server controls the mobile charging equipment to charge the vehicle according to the charging reservation request in each charging period, ensuring the rational allocation of charging resources.
[0021] In some embodiments, when the charging period includes multiple target reservable time periods, controlling at least one target mobile charging device to charge the vehicle to be charged during the charging period includes: determining whether the times of the multiple target reservable time periods are continuous according to the start time and end time corresponding to each target reservable time period; when the times of the multiple target reservable time periods are continuous, controlling at least one first mobile charging device to charge the vehicle to be charged during the first target reservable time period, and controlling at least one second mobile charging device to charge the vehicle to be charged during the second target reservable time period, wherein the end time of the first target reservable time period is the end time of the second target reservable time period. at least one first mobile charging device is a charging device scheduled by the server for the vehicle to be charged within the first target reservable time period, and at least one second mobile charging device is a charging device scheduled by the server for the vehicle to be charged within the second target reservable time period; when at least some of the multiple target reservable time periods are discontinuous, the mobile charging device corresponding to each target reservable time period is controlled to charge the vehicle to be charged at the charging start time corresponding to each target reservable time period, wherein the charging start time includes one of the following: the start time corresponding to each target reservable time period, and the time when the vehicle to be charged enters the preset area of the charging power station.
[0022] By judging the continuity of multiple target reservable time periods contained in the charging period, different scheduling methods are used to schedule mobile charging equipment, thus avoiding the problem of unreasonable charging resource scheduling and improving the resource utilization of mobile charging equipment.
[0023] In some embodiments, the charging method of the mobile charging device also includes: after receiving a charging reservation request generated by the client based on the reservable charging information, subtracting the amount of power to be charged from the remaining power corresponding to the charging period in the reservable charging information to update the reservable charging information to obtain updated reservable charging information; and sending the updated reservable charging information to the client.
[0024] By updating the reservable charging information in real time, the client and the server can achieve efficient collaborative communication through the reservable charging information, ensuring the rationality of charging resource allocation; in addition, based on the updated reservable charging information, users can adjust the charging information in a timely manner, further ensuring the rationality of the user's time arrangement.
[0025] In some embodiments, the charging method of the mobile charging device also includes: after receiving a charging reservation request generated by the client based on the reservable charging information, when a reservation cancellation request sent by the client is received, the amount of power to be charged is added to the remaining power corresponding to the charging period in the reservable charging information to update the reservable charging information to obtain updated reservable charging information; and the updated reservable charging information is sent to the client.
[0026] By updating the reservable charging information in real time, the client and the server can achieve efficient collaborative communication through the reservable charging information, ensuring the rationality of charging resource allocation; in addition, based on the updated reservable charging information, users can adjust the charging information in a timely manner, further ensuring the rationality of the user's time arrangement.
[0027] In a third aspect, the present application provides an electronic device, comprising: a processor and a memory storing computer program instructions; when the processor executes the computer program instructions, the charging method of the mobile charging device as described in the first aspect and / or the second aspect is implemented.
[0028] In a fourth aspect, the present application provides a readable storage medium having computer program instructions stored thereon. When the computer program instructions are executed by a processor, the charging method for a mobile charging device as described in the first aspect and / or the second aspect is implemented.
[0029] The above description is only an overview of the technical solution of the present application. In order to more clearly understand the technical means of the present application, it can be implemented in accordance with the contents of the specification. In order to make the above and other purposes, features and advantages of the present application more obvious and easy to understand, the specific implementation methods of the present application are listed below. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] The features, advantages and technical effects of exemplary embodiments of the present application will be described below with reference to the accompanying drawings.
[0031] Figure 1 This is a schematic diagram of the structure of a charging system according to an embodiment of the present application;
[0032] Figure 2 A schematic diagram of a charging method for a mobile charging device according to an embodiment of the present application;
[0033] Figure 3 A schematic diagram of a charging method for a mobile charging device according to an embodiment of the present application;
[0034] Figure 4 A schematic diagram of a charging method for a mobile charging device according to an embodiment of the present application;
[0035] Figure 5 A schematic diagram of the structure of an electronic device according to an embodiment of the present application.
[0036] In the drawings, the drawings are not necessarily drawn to scale. DETAILED DESCRIPTION
[0037] In order to make the purpose, technical solution and advantages of the embodiments of the present application clearer, the technical solution in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.
[0038] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by technicians in the technical field to which this application belongs; the terms used herein are only for the purpose of describing specific embodiments and are not intended to limit this application; the terms "including" and "having" in the specification and claims of this application and the above-mentioned figure descriptions and any variations thereof are intended to cover non-exclusive inclusions.
[0039] In the description of the embodiments of the present application, the technical terms "first", "second", etc. are only used to distinguish different objects, and cannot be understood as indicating or implying relative importance or implicitly indicating the number, specific order or primary and secondary relationship of the indicated technical features. In the description of the embodiments of the present application, the meaning of "multiple" is more than two, unless otherwise clearly and specifically defined.
[0040] Mentioning "embodiment" in the embodiments of the present application means that the specific features, structures or characteristics described in conjunction with the embodiment may be included in at least one embodiment of the present application. The appearance of the phrase in various places in the specification does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment that is mutually exclusive with other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiment described in the embodiments of the present application can be combined with other embodiments.
[0041] In the description of the embodiments of the present application, the term "and / or" is only a description of the association relationship of the associated objects, indicating that there may be three relationships. For example, A and / or B can represent: A exists alone, A and B exist at the same time, and B exists alone. In addition, the character " / " in this article generally indicates that the associated objects before and after are in an "or" relationship.
[0042] In the description of the embodiments of the present application, the term "multiple" refers to more than two (including two). Similarly, "multiple groups" refers to more than two groups (including two groups), and "multiple pieces" refers to more than two pieces (including two pieces).
[0043] In the description of the embodiments of the present application, the technical terms "center", "longitudinal" and "lateral" are used to represent the center of the
[0044] "Length", "Width", "Thickness", "Top", "Bottom", "Front", "Back", "Left", "Right"
[0045] "Vertical", "Horizontal", "Top", "Bottom", "Inside", "Outside", "Clockwise", "Counterclockwise"
[0046] The orientations or positional relationships indicated by “axial”, “radial”, “circumferential”, etc. are based on the orientations or positional relationships shown in the accompanying drawings and are only for the convenience of describing the embodiments of the present application and simplifying the description. They do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, they should not be understood as limitations on the embodiments of the present application.
[0047] In the description of the embodiments of the present application, unless otherwise clearly specified and limited, technical terms such as "installed", "connected", "connected", "fixed" and the like should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, and it can be the internal connection of two elements or the interaction relationship between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the embodiments of the present application can be understood according to the specific circumstances.
[0048] In the related art, when a vehicle needs to be charged, it is usually matched with an idle mobile charging device from a nearby charging power station according to the remaining power of the vehicle by waiting in a queue, and a message for charging reservation is sent to the matched mobile charging device to realize the reservation of the mobile charging device.
[0049] However, this method only considers whether there are idle mobile charging devices near the vehicle. When the charging load of the charging station is overloaded, continuing to charge the vehicle will reduce the service life of the charging equipment or even cause serious damage to the charging equipment. In addition, when the remaining power of the charging station cannot meet the charging needs of the vehicle during a certain period of time, if the vehicle needs to be charged during this period, the user needs to wait extra time, which disrupts the user's schedule.
[0050] It can be seen that in the related technology, when scheduling resources for mobile charging devices, there is a lack of real-time communication scheduling between the charging power station and the user, which results in unreasonable scheduling of charging resources for mobile charging devices, reduces the resource utilization of mobile charging devices, disrupts the user's schedule, and reduces the user's charging experience.
[0051] To solve the above problems, the present application adopts the B2C (Business-to-Consumer) e-commerce model to set the service time periods for charging services provided by the charging power station and the charging power corresponding to each service time period. These settings can be displayed on the display interface of the client, so that the user can select the time period for reserving charging through the display interface, and then the client can determine whether to accept the user's reservation based on the charging time period selected by the user and the remaining charging power of the time period reserved by the user.
[0052] It can be seen that in the embodiment of the present application, the client can determine whether to accept the user's reservation based on the charging time period and charging power reserved by the user, as well as the remaining charging power that can be provided in the charging time period, so as to ensure that the charging load of the charging station will not be overloaded, thereby avoiding the problem of unreasonable charging resource scheduling due to excess or insufficient charging resources in a certain time period of the charging station. Moreover, in the above scheme, the user can also select a charging time period from the time period that can be reserved for charging according to his actual needs, so that the user's time arrangement is more reasonable and the user's charging experience is improved.
[0053] It should be noted that the charging method of the mobile charging device provided in the embodiment of the present application can be applied to a charging system, such as Figure 1 As shown, the charging system 100 may include a server 101 and a client 102, and a plurality of mobile charging devices 103 ( Figure 1 Only one is shown in the figure). The service end 101 may be deployed in a charging power station.
[0054] In some embodiments of the present application, a charging station is a station for charging vehicles, and the charging station has multiple mobile charging devices, so that after the vehicle enters the charging station, the mobile charging device can move to the location of the vehicle to charge the vehicle. The above-mentioned vehicle is a vehicle with charging requirements, which may include but is not limited to pure electric vehicles, hybrid electric vehicles and other new energy vehicles with charging requirements, and may also be non-motor vehicles with charging requirements (for example, electric bicycles, electric motorcycles, etc.).
[0055] In one example, the user can reserve a charging time slot for the vehicle through the client 102. For example, the client 102 can display the charging time slots that the user can reserve, and the user can select the charging time slot that needs to be reserved from the reservable charging time slots through the client 102. After the reservation is successful, before the reserved charging time slot arrives, the user drives the vehicle into the charging station, and the mobile charging device 103 can charge the vehicle during the reserved charging time slot.
[0056] After the vehicle to be charged enters the pre-reserved parking space of the charging station, the server 101 can identify that the vehicle to be charged is parked in the pre-reserved parking space, and can determine whether the vehicle parked in the parking space is a vehicle that needs to be charged by identifying the vehicle identification (for example, the license plate). When it is determined that the vehicle parked in the parking space is a pre-reserved charging vehicle, and the current time is within the charging time period reserved by the user, the server 101 sends a command to the mobile charging device 103 in the charging station, so that the mobile charging device 103 can move to the parking space and charge the vehicle.
[0057] In one embodiment, Figure 2 A flow chart showing a charging method for a mobile charging device, which can be applied to Figure 1 In the client 102, as Figure 2 As shown, the method may include the following steps:
[0058] Step S201, in response to a user's input operation, obtaining charging information of a vehicle to be charged.
[0059] In step S201, the vehicle to be charged is a vehicle with charging requirements, including but not limited to pure electric vehicles, hybrid electric vehicles and other new energy vehicles with charging requirements. The charging information of the vehicle to be charged includes at least the charging time period of the vehicle to be charged and the charging amount of the vehicle to be charged.
[0060] As an example, the client can display multiple reservable time periods of the charging station, and the user can select the time period to be charged from the multiple reservable time periods displayed on the client according to his or her needs, that is, the waiting charging time period. At the same time, the user also needs to input the amount of electricity to be charged to the client, so that the client determines whether to generate a charging reservation request based on the waiting charging time period and the amount of electricity to be charged input by the user, so as to determine whether to allow the user to charge.
[0061] Step S202, matching the reservable charging information with the to-be-charged information to obtain a matching result.
[0062] In step S202, the reservable charging information is generated by the server and displayed on the client. The reservable charging information can be stored in the server in the form of a list and displayed on the client in a list or other manner. The reservable charging information includes at least one reservable charging time period and the remaining power corresponding to each reservable charging time period, wherein the reservable charging time period is a time period that allows the user to make a reservation for charging, that is, after the user successfully makes a reservation, the mobile charging device can charge the vehicle within the time period.
[0063] In addition, in the embodiment of the present application, each reservable charging period is allocated a certain amount of charging power, and the charging power corresponding to each reservable charging period is used to characterize the charging load corresponding to the charging station in the reservable charging period. The remaining power corresponding to each reservable charging period is used to characterize the remaining charging load of the charging station in the reservable charging period.
[0064] In addition, in step S202, when the remaining power of the waiting charging period of the reservable charging information is not less than the power to be charged, it can be determined that the scheduled charging information matches the waiting charging information. The matching result between the reservable charging information and the waiting charging information is used to indicate whether the waiting charging vehicle is allowed to charge in the waiting charging period. When the waiting charging information matches the reservable charging information, the waiting charging vehicle is allowed to charge in the waiting charging period. Otherwise, the waiting charging vehicle is not allowed to charge in the waiting charging period.
[0065] Step S203, when the matching result indicates that the reservable charging information matches the to-be-charged information, a charging reservation request is generated according to the to-be-charged information, and the charging reservation request is sent to the server, wherein the charging reservation request is used to instruct the server to schedule at least one mobile charging device to charge the to-be-charged vehicle within the to-be-charged period according to the charging reservation request.
[0066] In step S203, after determining that the reservable charging information matches the to-be-charged information, the client can determine that the mobile charging device is allowed to charge the to-be-charged vehicle during the to-be-charged period. At this time, the client generates a charging reservation request, which at least includes the vehicle identification (e.g., license plate number) of the to-be-charged vehicle, the to-be-charged period, and the amount of electricity to be charged. After receiving the charging reservation request sent by the client, the server records the vehicle identification, the to-be-charged period, and the amount of electricity to be charged of the to-be-charged vehicle, and schedules the mobile charging device to charge the to-be-charged vehicle during the to-be-charged period.
[0067] It should be noted that in actual applications, each mobile charging device has a certain power capacity. When the remaining power of the mobile charging device is insufficient to charge the vehicle to be charged, the server can dispatch multiple mobile charging devices to charge the vehicle to be charged. As an example, when the remaining power of a single mobile charging device is insufficient to charge the vehicle to be charged, the server can give priority to selecting the mobile charging device with the largest remaining power to charge the vehicle to be charged.
[0068] Based on the scheme defined in the above steps S201 to S203, it can be learned that before charging the vehicle to be charged, whether the charging load of the charging station is overloaded during the charging period is determined according to the remaining power of the charging station during the charging period and the remaining power of the vehicle to be charged, that is, only when the remaining power corresponding to the charging period matches the remaining power, is it allowed to charge the vehicle to be charged during the charging period, thereby avoiding the problem of excess or insufficient charging resources in a certain period due to unreasonable allocation of charging resources, making the scheduling of charging resources more reasonable and improving the resource utilization rate of mobile charging equipment.
[0069] In some embodiments of the present application, optionally, in response to an input operation of a user, obtaining the charging information of the vehicle to be charged includes:
[0070] At least one reservable charging time period is displayed; in response to a user selecting a charging time period from at least one reservable charging time period, a waiting charging time period is obtained; in response to a user inputting a charging power, a waiting charging power corresponding to the waiting charging time period is obtained.
[0071] For example, after the user opens the client, at least one reservable charging time period that the charging station allows for reserving charging is displayed on the display interface of the client. The user can select a desired charging time period, i.e., a charging time period, from the at least one reservable charging time period through the display interface of the client. At the same time, the user also needs to input the amount of charging power required for the vehicle to be charged through the client, so that the client can obtain the charging information of the vehicle to be charged.
[0072] As an example, the amount of power to be charged can be determined by the user based on the vehicle information of the vehicle to be charged (for example, the total charging capacity and the remaining power of the vehicle), or the client can connect to the vehicle to be charged to obtain the vehicle status information of the vehicle to be charged, and then determine the charging information corresponding to the vehicle to be charged by analyzing the vehicle status information.
[0073] It should be noted that by interacting with the client, users can intuitively see the reservable charging time periods at the charging station, so that users can reasonably arrange charging time according to their actual needs, ensuring the rationality of user time arrangements and improving users' charging experience.
[0074] In addition, the interaction data between the user and the client includes not only the charging period but also the amount of electricity to be charged. Therefore, the client can determine whether to allow the user to charge based on the remaining electricity and the amount of electricity to be charged of the charging station during the charging period, thereby avoiding overload of the charging station, making the charging resource allocation of the charging station more reasonable, and improving the utilization rate of charging resources.
[0075] In some embodiments of the present application, optionally, the reservable charging information is matched with the to-be-charged information to obtain a matching result, including:
[0076] Determine a target remaining power that matches the charging period from the reservable charging information; obtain a first matching result when the charging power to be charged is less than or equal to the target remaining power and the acquisition time of the charging information is earlier than the start time of the charging period, wherein the first matching result is used to characterize that the reservable charging information matches the charging information to be charged.
[0077] For example, the charging time period is 9:00-10:00, the amount of electricity to be charged is a, and the client finds from the reservable charging information that the target remaining electricity corresponding to the reservable charging time period of 9:00-10:00 is A. If a≤A, the remaining electricity of the charging station in the reservable charging time period of 9:00-10:00 can meet the charging demand of the vehicle to be charged, that is, the first matching result is obtained.
[0078] It should be noted that by matching the target remaining power corresponding to the charging period in the reservable charging information with the power to be charged, and when the target remaining power meets the charging needs of the vehicle to be charged, the reservable charging information is determined to match the information to be charged, that is, the user is allowed to make a reservation for charging, thereby avoiding overload of the charging station and achieving reasonable scheduling of charging resources.
[0079] In some embodiments of the present application, optionally, the charging method of the mobile charging device provided in the embodiments of the present application further includes:
[0080] When the amount of electricity to be charged is less than or equal to the target remaining electricity, and the time of acquiring the information to be charged is within the period of time to be charged, detecting whether the time of acquiring the information to be charged is within the first sub-period of the period of time to be charged, and generating a first matching result when the time of acquiring the information to be charged is within the first sub-period;
[0081] When the amount of electricity to be charged is greater than the target remaining electricity, or the acquisition time of the information to be charged is within the second sub-period, or the acquisition time of the information to be charged is later than the end time of the period to be charged, a second matching result is obtained.
[0082] The second matching result is used to indicate that the reservable charging information does not match the to-be-charged information. If the reservable charging information does not match the to-be-charged information, the user is not allowed to reserve charging.
[0083] In addition, the above-mentioned charging period includes a first sub-period and a second sub-period, and the end time of the first sub-period is the start time of the second sub-period, that is, the time of the first sub-period is continuous with that of the second sub-period. The duration of the first sub-period can be the same as that of the second sub-period, for example, if the charging period is from 9:00 to 10:00, the first sub-period is from 9:00 to 9:30, and the second sub-period is from 9:30 to 10:00; the duration of the first sub-period can also be different from that of the second sub-period, for example, if the charging period is from 9:00 to 10:00, the first sub-period is from 9:00 to 9:20, and the second sub-period is from 9:20 to 10:00.
[0084] As an example, when the current time (i.e., the time when the charging information is obtained) is within the charging period, the client needs to determine whether the current time is within the first sub-period or the second sub-period; if the current time is within the first sub-period, the user can still make an appointment to charge the vehicle within the charging period; otherwise, the customer is not allowed to make an appointment to charge. For example, if the charging period is 9:00-10:00, and the current time is 9:05, which is within the first sub-period, the user is allowed to make an appointment to charge. At this time, the client further determines whether the remaining power corresponding to the charging period meets the charging needs of the vehicle to be charged; if the remaining power corresponding to the charging period can also meet the charging needs of the vehicle to be charged, the user is allowed to make an appointment to charge.
[0085] It can be seen from the above content that in the embodiment of the present application, the user is allowed to make a reservation for charging only when the charging time period and the amount of electricity to be charged match the reservable charging information, that is, when the charging time period and the amount of electricity to be charged meet the conditions, thereby avoiding overload of the charging station and ensuring the rationality of charging resource scheduling.
[0086] In some embodiments of the present application, optionally, the charging method of the mobile charging device provided in the embodiments of the present application further includes:
[0087] After sending the charging reservation request to the server, the updated reservable charging information sent by the server is obtained, and the updated reservable charging information is displayed.
[0088] In this embodiment, the updated reservable charging information is the charging information obtained after the server updates the remaining power of the waiting charging period in the reservable charging information according to the waiting charging information.
[0089] In an example, the charging period is from 9:00 to 10:00, the amount of electricity to be charged is a, and the remaining electricity corresponding to the charging period in the reservable charging information is A. After the server receives the charging reservation request, the server updates the remaining vector of the charging period from 9:00 to 10:00 to Aa, thereby obtaining the updated reservable charging information, and sends the updated reservable charging information to the client, so that the client can determine whether to allow other users to make reservations for charging during the charging period.
[0090] It should be noted that by updating the reservable charging information in real time, the client and the server can achieve efficient collaborative communication through the reservable charging information, thereby ensuring the rationality of the allocation of charging resources; in addition, based on the updated reservable charging information, the user can adjust the charging information in a timely manner, further ensuring the rationality of the user's time arrangement.
[0091] In another embodiment, Figure 3 A flow chart showing a charging method for a mobile charging device, which can be applied to Figure 1 In the server 101, such as Figure 3 As shown, the method may include the following steps:
[0092] Step S301, receiving a charging reservation request generated by a client according to the reservable charging information;
[0093] Step S302, determining at least one target mobile charging device from a plurality of mobile charging devices according to the amount of electricity to be charged;
[0094] Step S303: Control at least one target mobile charging device to charge the vehicle to be charged during the charging period.
[0095] In the above steps S301 to S303, the charging reservation request includes at least the charging time period of the vehicle to be charged and the charging amount of the vehicle to be charged, wherein the charging time period can be a charging time period selected by the user from a plurality of reservable charging time periods displayed on the display interface of the client, or a charging time period input by the user according to actual needs; similarly, the charging amount can be a charging amount determined by the user based on the vehicle information of the vehicle to be charged, or it can be a charging amount determined by the client interconnecting with the vehicle to be charged and evaluating the operating status of the vehicle to be charged.
[0096] It should be noted that the client will only generate a charging reservation request when the charging time period and the amount of electricity to be charged meet certain conditions at the same time. The client can determine whether to generate a charging reservation request by matching the charging time period and the amount of electricity to be charged in the reservable charging information. The reservable charging information includes at least one reservable charging time period and the remaining electricity corresponding to each reservable charging time period.
[0097] As an example, when the service receives a charging reservation request, it can be determined that the charging time period and the amount of electricity to be charged match the reservable charging information. When it is detected that the vehicle to be charged enters the charging station, the service can determine the target mobile charging device that can meet the charging needs of the vehicle to be charged from multiple mobile charging devices according to the amount of electricity to be charged. For example, the service selects a mobile charging device with a remaining power greater than the amount of electricity to be charged from multiple mobile charging devices as the target mobile charging device; for another example, when the remaining power of a single mobile charging device is not enough to complete the charging of the vehicle to be charged, the service can select multiple mobile charging devices to charge the vehicle to be charged, wherein the sum of the remaining power of the multiple mobile charging devices selected by the service must be greater than or equal to the amount of electricity to be charged. After determining the target mobile charging device to charge the vehicle to be charged, when the current time reaches the charging time period, or when it is detected that the vehicle to be charged enters the charging station, the service can control the target mobile charging device to move to the vehicle to be charged to charge the vehicle to be charged.
[0098] It should be noted that in the embodiment of the present application, before charging the vehicle to be charged, whether the charging load of the charging station is overloaded during the charging period is determined based on the remaining power of the charging station during the charging period and the remaining power of the vehicle to be charged. That is, only when the remaining power corresponding to the charging period matches the remaining power, is it allowed to charge the vehicle to be charged during the charging period, thereby avoiding the problem of excess or insufficient charging resources in a certain period due to unreasonable allocation of charging resources, making the scheduling of charging resources more reasonable and improving the resource utilization of mobile charging equipment.
[0099] In some embodiments of the present application, optionally, the charging method of the mobile charging device also includes: before receiving a charging reservation request generated by a client based on reservable charging information, obtaining a service start time and a service end time of the charging service provided by the charging station; determining the total service time of the charging station based on the service start time and the service end time; dividing the total service time into multiple charging time periods, and determining the power supply corresponding to each charging time period; determining the reserved power corresponding to each charging time period based on the charging reservation request received in each charging time period; determining the remaining power corresponding to each charging time period based on the reserved power corresponding to each charging time period and the power supply corresponding to each charging time period; associating each charging time period with the corresponding remaining power to obtain reservable charging information.
[0100] In the above embodiment, the charging station is deployed with multiple mobile charging devices. The above service start time and service end time are the start time and end time of the charging service provided by the charging station. For example, if the business hours of the charging station are 7:00-22:00, the service start time of the charging station is 7:00 and the service end time is 22:00. Correspondingly, the total service time of the charging station is 15 hours. In addition, in order to facilitate users to arrange time reasonably and to reasonably allocate charging resources of the charging station, in the embodiment of the present application, the service end divides the total service time of the charging station into multiple charging periods and sets the power supply corresponding to each charging period. For example, the total service time of the charging station is 15 hours, and the service end divides the total service time into 15 charging periods, each charging period is one hour, and sets the power supply corresponding to each charging period. Among them, the power supply of each charging period can be different. For example, the service end can allocate different power supply to each charging period according to the number of charging reservation requests received in each charging period, and the charging period with a large number of charging reservation requests is allocated with a large power supply.
[0101] Furthermore, the server associates the charging time period and the remaining power of each charging time period to obtain the reservable charging information. In the initial state, that is, when no charging reservation request is received, the remaining power corresponding to each charging time period is the power supply corresponding to the charging time period. When the server receives a charging reservation request, the remaining power of the charging time period corresponding to the charging reservation request is adjusted. For example, the charging time period to be charged in the charging reservation request is charging time period 1, the power to be charged (that is, the reserved power) is b, and the remaining power corresponding to charging time period 1 is a. After receiving the charging reservation request, the server adjusts the remaining power corresponding to charging time period 1 to ab.
[0102] As an example, the reservable charging information can be displayed in the form of a list, and its format can be: [{"beginTime1~endTime1":restDegree1},{"beginTime2~endTime2":restDegree2}…{"beginTimeN~endTimeN":restDegreeN}], where beginTime is the start time of the charging period, endTime is the end time of the charging period, and restDegree is the remaining power information of the charging period. The remaining power information can be the remaining power or the ratio of the remaining power to the power supply corresponding to the charging period.
[0103] It should be noted that for the convenience of management, in the embodiments of the present application, the server uses a conversion method to convert the total service duration of the charging station from hours and minutes to seconds. After generating the reservable charging information, each charging period is converted from seconds to hours and minutes so that users can intuitively determine the time range corresponding to each charging period.
[0104] By generating the reservable charging information, the client, the server, and the user can conduct collaborative communication based on the reservable charging information, which not only makes the user's time arrangement more reasonable but also ensures the reasonable allocation of charging resources.
[0105] In some embodiments of the present application, optionally, the total service duration is divided into multiple charging periods, including:
[0106] Determine the charging duration corresponding to each charging period; determine the start time and end time corresponding to each charging period according to the service start time and the charging duration corresponding to each charging period; divide the total service duration into multiple charging periods according to the start time and end time of each charging period.
[0107] In the above embodiments, the charging duration corresponding to each charging period can be the same or different. In practical applications, the charging duration corresponding to each charging period can be adaptively adjusted according to the charging requirements of each charging period. Taking the case where each charging period has the same charging duration as an example, the server defines an auxiliary variable k for counting the charging periods; the difference between the ratio of the total service duration of the charging station to the charging duration of each charging period and the current number of charging periods represents the remaining number of allocable charging periods, that is, the remaining number of allocable charging periods m can be expressed by the following formula:
[0108]
[0109] In the above formula, T 0 is the total service duration of the charging station; T 1 is the charging duration of each charging period.
[0110] When 0 < m ≤ 1, it indicates that the remaining allocable service duration is not greater than the charging duration of one charging period. For example, if the total service duration of the charging station is 15 hours and the charging duration corresponding to each charging period is 2 hours, then the charging duration of the last charging period is 1 hour, less than 2 hours. At this time, the information corresponding to the last charging period is used as the end and added to the reservable charging information.
[0111] When m>1, it indicates that the remaining service time that can be allocated is greater than the charging time of a charging period. At this time, the server uses a recursive method to represent each charging period as the starting time of the charging period ~ starting time + charging time of the charging period, and takes the time determined by the starting time and the charging time of the charging period as the target end time, and the target end time as the starting time of the next charging period. At the same time, k is added by one, and the calculation process of the next charging period is entered. The recursive calculation is performed until all charging periods are traversed.
[0112] By dividing the total service time of the charging station into multiple charging periods, users can choose the charging period according to their actual needs, ensuring the rationality of the user's time arrangement; the server controls the mobile charging equipment to charge the vehicle according to the charging reservation request in each charging period, ensuring the rational allocation of charging resources.
[0113] In some embodiments of the present application, optionally, in the case where the waiting charging period includes multiple target reservable time periods, controlling at least one target mobile charging device to charge the waiting charging vehicle in the waiting charging period includes:
[0114] Determine whether the times of multiple target reservable time periods are continuous based on the start time and end time corresponding to each target reservable time period; if the times of multiple target reservable time periods are continuous, control at least one first mobile charging device to charge the vehicle to be charged within the first target reservable time period, and control at least one second mobile charging device to charge the vehicle to be charged within the second target reservable time period; if at least some of the multiple target reservable time periods are discontinuous, control the mobile charging device corresponding to each target reservable time period to charge the vehicle to be charged at the charging start time corresponding to each target reservable time period.
[0115] In the above embodiment, the end time of the first target reservable time period is the start time of the second target reservable time period, that is, the first target reservable time period and the second target reservable time period are continuous, and the start time of the first target reservable time period is earlier than the start time of the second target reservable time period. At least one first mobile charging device is a charging device scheduled by the service end for the vehicle to be charged within the first target reservable time period, and at least one second mobile charging device is a charging device scheduled by the service end for the vehicle to be charged within the second target reservable time period.
[0116] It should be noted that when the power of the mobile charging equipment dispatched by the server is not enough to meet the charging needs of the vehicle to be charged in all target reservable time periods, the server dispatches different mobile charging equipment to charge the vehicle to be charged in different target reservable time periods, that is, the mobile charging equipment dispatched by the server is different in different reservable time periods. For example, the power of mobile charging equipment 1 cannot meet the charging needs of the vehicle to be charged in reservable time period 2, then in reservable time period 1, the server dispatches mobile charging equipment 1 to charge the vehicle to be charged; in reservable time period 2, the server dispatches mobile charging equipment 2 to charge the vehicle to be charged.
[0117] When the power of the mobile charging device dispatched by the service end can meet the charging needs of the vehicle to be charged in all target reservable time periods selected by the user, the service end can only dispatch one mobile charging device to charge the vehicle to be charged in different target reservable time periods. For example, in the above example, when the power of mobile charging device 1 can meet the charging needs of the vehicle to be charged in reservable time period 1 and reservable time period 2, the same mobile charging device can be used to charge the vehicle to be charged in reservable time period 1 and reservable time period 2, that is, in the above example, mobile charging device 1 and mobile charging device 2 are the same mobile charging device.
[0118] As an example, a user can select multiple reservable time periods through the client to charge the vehicle to be charged. If multiple reservable time periods are consecutive, after the vehicle to be charged is charged in the previous reservable time period, it will be postponed to the next reservable time period. In this scenario, if the power of the mobile charging device can meet the charging needs of the vehicle to be charged, the server can only schedule the mobile charging device once. The scheduling time of the mobile charging device can be the start time of the charging time period or the time when the vehicle to be charged enters the charging station.
[0119] If multiple reservable time periods are not continuous, the server can set a scheduling time for a mobile charging device for each reservable time period, that is, the charging start time, which includes one of the following: the start time corresponding to each target reservable time period, and the time when the vehicle to be charged enters the preset area of the charging station. For example, the target reservable time period 1 is not continuous with the target reservable time period 2, and the vehicle to be charged does not leave the charging station after completing charging in the target reservable time period 1. In this scenario, the server uses the start time of the target reservable time period 2 as the charging start time of the target reservable time period 2, that is, when the start time of the target reservable time period 2 arrives, the server controls the mobile charging device to charge the vehicle to be charged; for another example, the target reservable time period 1 is not continuous with the target reservable time period 2, and the vehicle to be charged leaves the charging station after completing charging in the target reservable time period 1, and enters the charging station again in the target reservable time period 2. In this scenario, the server uses the time when the vehicle to be charged enters the charging station again as the charging start time, that is, when the vehicle to be charged enters the charging station again, the server controls the mobile charging device to charge the vehicle to be charged again.
[0120] By judging the continuity of multiple target reservable time periods contained in the charging period, different scheduling methods are used to schedule mobile charging equipment, thus avoiding the problem of unreasonable charging resource scheduling and improving the resource utilization of mobile charging equipment.
[0121] In some embodiments of the present application, optionally, the charging method of the mobile charging device also includes: after receiving a charging reservation request generated by the client based on the reservable charging information, removing the amount of power to be charged from the remaining power corresponding to the charging period in the reservable charging information to update the reservable charging information to obtain updated reservable charging information; and sending the updated reservable charging information to the client.
[0122] Exemplarily, the charging period is from 9:00 to 10:00, the amount of electricity to be charged is a, and the remaining electricity corresponding to the charging period in the reservable charging information is A. After the server receives the charging reservation request, the server updates the remaining vector of the charging period from 9:00 to 10:00 to Aa, thereby obtaining the updated reservable charging information, and sends the updated reservable charging information to the client, so that the client can determine whether to allow other users to make reservations for charging during the charging period.
[0123] It should be noted that by updating the reservable charging information in real time, the client and the server can achieve efficient collaborative communication through the reservable charging information, thereby ensuring the rationality of the allocation of charging resources; in addition, based on the updated reservable charging information, the user can adjust the charging information in a timely manner, further ensuring the rationality of the user's time arrangement.
[0124] In some embodiments of the present application, optionally, the charging method of the mobile charging device also includes: after receiving a charging reservation request generated by the client based on the reservable charging information, when a reservation cancellation request sent by the client is received, the amount of power to be charged is added to the remaining power corresponding to the charging period in the reservable charging information to update the reservable charging information to obtain updated reservable charging information; and the updated reservable charging information is sent to the client.
[0125] Exemplarily, after the user initiates a charging reservation to the server through the client, the server updates the reservable charging information. For example, the charging period is from 9:00 to 10:00, the amount of electricity to be charged is a, and the remaining amount of electricity corresponding to the charging period in the reservable charging information is A. After the server receives the charging reservation request, the remaining amount of electricity corresponding to the charging period in the reservable charging information is updated to Aa. Before 9 o'clock, the user cancels the charging reservation. At this time, the client initiates a reservation cancellation request to the server. After receiving the reservation cancellation request, the server updates the remaining amount of electricity corresponding to the charging period in the reservable charging information to A.
[0126] It should be noted that by updating the reservable charging information in real time, the client and the server can achieve efficient collaborative communication through the reservable charging information, thereby ensuring the rationality of the allocation of charging resources; in addition, based on the updated reservable charging information, the user can adjust the charging information in a timely manner, further ensuring the rationality of the user's time arrangement.
[0127] In order to facilitate understanding of the technical solutions provided in the embodiments of the present application, Figure 4 As shown, the solution provided by the embodiment of the present application is briefly described with a complete charging process of a mobile charging device:
[0128] Step S401, the staff opens the charging station management interface on the server;
[0129] Step S402, the staff inputs parameters for generating the reservable charging information, including but not limited to the service start time of the charging station, the total service time, the charging time of each charging period, and the power supply corresponding to each charging period;
[0130] Step S403, the server divides the total service time into multiple charging periods, traverses each charging period in turn, and determines whether the traversal of multiple charging periods is completed; if not, execute step S404, otherwise execute step S405;
[0131] Step S404, the server uses the service start time as the start time of the first charging period, divides the charging duration backward, obtains the first charging period, puts the charging period into the result set, and updates the service start time to the end time corresponding to the first charging period, and traverses all charging periods in sequence;
[0132] Step S405, the server adds the charging period of the charging duration into the result set as the last charging period of the reservable charging information, and associates the charging period and the remaining power corresponding to each charging period to obtain the reservable charging information;
[0133] Step S406, the server sends the available charging information to the client and displays it on the display interface of the client;
[0134] Step S407, the user inputs the amount of power to be charged through the client;
[0135] Step S408, the user determines a waiting charging time period from a plurality of reservable charging time periods according to the reservable charging information displayed on the client;
[0136] Step S409, the client determines whether the current time does not exceed the start time of the charging period; if so, execute step S411, otherwise, execute step S410;
[0137] Step S410, the client determines whether the current time is within the first half of the charging period; if yes, execute step S411, otherwise execute step S408;
[0138] Step S411, the client determines whether the remaining power corresponding to the waiting charging time period in the reservable charging information is not less than the waiting charging power; if so, execute step S412, otherwise, execute step S408;
[0139] Step S412, the client generates a charging reservation request and sends the charging reservation request to the cloud, so that the cloud sends the charging reservation request to the server;
[0140] Step S413, the server dispatches the mobile charging device according to the amount of power to be charged in the charging reservation request;
[0141] Step S414, the server determines whether the charging time period includes multiple reservable time periods; if yes, execute step S415, otherwise execute step S417;
[0142] Step S415, the server determines whether the various reservable time periods are continuous; if so, execute step S417, otherwise execute step S416;
[0143] Step S416, the server sets a scheduling time (i.e., charging start time) for the mobile charging device for each reservable time period;
[0144] Step S417, the server sets the scheduling time (i.e., charging start time) of the mobile charging device;
[0145] Step S418: the server controls the mobile charging device to charge the vehicle to be charged at the scheduled time.
[0146] Based on the above content, it can be seen that the solution provided in the embodiment of the present application can closely link the service of the server, the reservation of the client, and the real-time service status of the mobile charging device. The server can orderly schedule and manage the mobile charging equipment, and provide real-time feedback to the user on the remaining power of the charging station in each charging period. The user can independently choose to make an appointment for charging through the client. While realizing the reasonable scheduling of charging resources, it also ensures that the user can arrange his time reasonably, thereby improving the user's charging experience.
[0147] It should be understood that, although the various steps in the flowcharts involved in the above-mentioned embodiments are displayed in sequence according to the indication of the arrows, these steps are not necessarily executed in sequence according to the order indicated by the arrows. Unless there is a clear explanation in this article, the execution of these steps does not have a strict order restriction, and these steps can be executed in other orders. Moreover, at least a part of the steps in the flowcharts involved in the above-mentioned embodiments can include multiple steps or multiple stages, and these steps or stages are not necessarily executed at the same time, but can be executed at different times, and the execution order of these steps or stages is not necessarily to be carried out in sequence, but can be executed in turn or alternately with other steps or at least a part of the steps or stages in other steps.
[0148] In one embodiment, the present application further provides an electronic device, which includes: a processor and a memory storing computer program instructions; when the processor executes the computer program instructions, the charging method of the mobile charging device described above is implemented.
[0149] Figure 5 A schematic diagram of the hardware structure of an electronic device provided in an embodiment of the present application is shown.
[0150] The electronic device may include a processor 501 and a memory 502 storing computer program instructions.
[0151] Specifically, the processor 501 may include a central processing unit (CPU), or an application specific integrated circuit (ASIC), or may be configured to implement one or more integrated circuits of the embodiments of the present application.
[0152] The memory 502 may include a large capacity memory for data or instructions. By way of example and not limitation, the memory 502 may include a hard disk drive (HDD), a floppy disk drive, a flash memory, an optical disk, a magneto-optical disk, a magnetic tape, or a universal serial bus (USB) drive or a combination of two or more of these. In appropriate cases, the memory 502 may include a removable or non-removable (or fixed) medium. In appropriate cases, the memory 502 may be inside or outside the integrated gateway disaster recovery device. In a specific embodiment, the memory 502 is a non-volatile solid-state memory.
[0153] The memory may include read-only memory (ROM), random access memory (RAM), magnetic disk storage media devices, optical storage media devices, flash memory devices, electrical, optical or other physical / tangible memory storage devices. Thus, typically, the memory includes one or more tangible (non-transitory) computer-readable storage media (e.g., memory devices) encoded with software including computer-executable instructions, and when the software is executed (e.g., by one or more processors), it is operable to perform the operations described with reference to the method according to an aspect of the present disclosure.
[0154] The processor 501 implements any one of the charging methods for the mobile charging device in the above embodiments by reading and executing the computer program instructions stored in the memory 502 .
[0155] In one example, the electronic device may further include a communication interface 503 and a bus 510. Figure 5 As shown, the processor 501, the memory 502, and the communication interface 503 are connected via a bus 510 and communicate with each other.
[0156] The communication interface 503 is mainly used to implement communication between various modules, devices, units and / or equipment in the embodiments of the present application.
[0157] Bus 510 includes hardware, software or both, and the parts of electronic equipment are coupled to each other. For example, but not limitation, bus may include accelerated graphics port (AGP) or other graphics bus, enhanced industrial standard architecture (EISA) bus, front side bus (FSB), hypertransport (HT) interconnection, industrial standard architecture (ISA) bus, infinite bandwidth interconnection, low pin count (LPC) bus, memory bus, micro channel architecture (MCA) bus, peripheral component interconnection (PCI) bus, PCI-Express (PCI-X) bus, serial advanced technology attachment (SATA) bus, video electronics standard association local (VLB) bus or other suitable bus or two or more of these combinations. In appropriate cases, bus 510 may include one or more buses. Although the present application embodiment describes and shows a specific bus, the application considers any suitable bus or interconnection.
[0158] In one embodiment, the present application further provides a readable storage medium having computer program instructions stored thereon. When the computer program instructions are executed by a processor, the charging method for the mobile charging device described above is implemented.
[0159] It should be clear that the present application is not limited to the specific configuration and processing described above and shown in the figures. For the sake of simplicity, a detailed description of the known method is omitted here. In the above embodiments, several specific steps are described and shown as examples. However, the method process of the present application is not limited to the specific steps described and shown, and those skilled in the art can make various changes, modifications and additions, or change the order between the steps after understanding the spirit of the present application.
[0160] The functional blocks shown in the above block diagram can be implemented as hardware, software, firmware or a combination thereof. When implemented in hardware, it can be, for example, an electronic circuit, an application-specific integrated circuit (Application Specific Integrated Circuit, ASIC), appropriate firmware, plug-in, function card, etc. When implemented in software, the elements of the present application are programs or code segments used to perform the required tasks. The program or code segment can be stored in a machine-readable medium, or transmitted on a transmission medium or communication link by a data signal carried in a carrier. "Machine-readable medium" can include any medium capable of storing or transmitting information. Examples of machine-readable media include electronic circuits, semiconductor memory devices, ROM, flash memory, erasable ROM (EROM), floppy disks, CD-ROMs, optical disks, hard disks, optical fiber media, radio frequency (Radio Frequency, RF) links, etc. The code segment can be downloaded via a computer network such as the Internet, an intranet, etc.
[0161] It should also be noted that the exemplary embodiments mentioned in this application describe some methods or systems based on a series of steps or devices. However, this application is not limited to the order of the above steps, that is, the steps can be performed in the order mentioned in the embodiment, or in a different order from the embodiment, or several steps can be performed simultaneously.
[0162] The above reference is according to the method, device, equipment and the flowchart and / or block diagram of the computer program product of the embodiment of the present application to describe various aspects of the present application.It should be understood that each square block in the flowchart and / or block diagram and the combination of each square block 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 or other programmable data processing device to produce a machine so that these instructions executed by the processor of the computer or other programmable data processing device enable the realization of the function / action specified in one or more square blocks of the flowchart and / or block diagram.Such a processor can be, but is not limited to, a general-purpose processor, a special-purpose processor, a special application processor or a field programmable logic circuit.It can also be understood that each square block in the block diagram and / or flowchart and the combination of square blocks in the block diagram and / or flowchart can also be realized by the dedicated hardware that performs the specified function or action, or can be realized by the combination of dedicated hardware and computer instructions.
[0163] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them; although the present application has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or replace some or all of the technical features therein by equivalents; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application, and they should all be included in the scope of the claims and specification of the present application. In particular, as long as there is no structural conflict, the various technical features mentioned in the various embodiments can be combined in any way. The present application is not limited to the specific embodiments disclosed herein, but includes all technical solutions that fall within the scope of the claims.
Claims
1. A charging method for a mobile charging device, applied to a client, It is characterized in that include: In response to the user's input operation, the charging information of the vehicle to be charged is obtained, wherein the charging information at least includes the charging time period of the vehicle to be charged and the charging amount of the vehicle to be charged; Matching the reservable charging information with the to-be-charged information to obtain a matching result; When the matching result indicates that the reservable charging information matches the information to be charged, a charging reservation request is generated based on the information to be charged, and the charging reservation request is sent to the server, wherein the charging reservation request is used to instruct the server to schedule at least one mobile charging device to charge the vehicle to be charged within the charging period.
2. The method according to claim 1, It is characterized in that The reservable charging information includes at least one reservable charging time period, and the obtaining, in response to the user's input operation, the to-be-charged information of the to-be-charged vehicle includes: displaying the at least one reservable charging time period; In response to a user selecting a charging time period from the at least one reservable charging time period, acquiring the waiting charging time period; In response to a user inputting a charging power quantity, the charging power quantity corresponding to the charging time period is acquired.
3. The method according to claim 2, It is characterized in that The reservable charging information also includes the remaining power corresponding to each reservable charging period, wherein the reservable charging information is matched with the to-be-charged information to obtain a matching result, including: Determining a target remaining power matching the charging time period from the reservable charging information; When the amount of power to be charged is less than or equal to the target remaining power and the acquisition time of the information to be charged is earlier than the start time of the charging period, a first matching result is obtained, wherein the first matching result is used to characterize that the reservable charging information matches the information to be charged.
4. The method according to claim 3, It is characterized in that The method further comprises: In the case where the amount of electricity to be charged is less than or equal to the target remaining electricity, and the acquisition time of the information to be charged is within the period to be charged, detecting whether the acquisition time of the information to be charged is within the first sub-period of the period to be charged, wherein the period to be charged includes the first sub-period and the second sub-period, and the end time of the first sub-period is the start time of the second sub-period; In a case where the acquisition time of the information to be charged is within the first sub-period, generating the first matching result; When the amount of power to be charged is greater than the target remaining power, or the acquisition time of the information to be charged is within the second sub-period, or the acquisition time of the information to be charged is later than the end time of the period to be charged, a second matching result is obtained, wherein the second matching result is used to characterize that the reservable charging information does not match the information to be charged.
5. The method according to any one of claims 1 to 4, It is characterized in that After sending the charging reservation request to the service end, the method further includes: Obtaining updated reservable charging information sent by the server, wherein the updated reservable charging information is charging information obtained after the server updates the remaining power of the to-be-charged time period in the reservable charging information according to the to-be-charged information; The updated reservable charging information is displayed.
6. A charging method for a mobile charging device, applied to a server, It is characterized in that include: Receiving a charging reservation request generated by a client according to the reservable charging information, wherein the charging reservation request at least includes a charging time period of a vehicle to be charged and a charging amount of the vehicle to be charged, and the reservable charging information includes at least one reservable charging time period and a remaining amount of power corresponding to each reservable charging time period; Determine at least one target mobile charging device from a plurality of mobile charging devices according to the amount of electricity to be charged; The at least one target mobile charging device is controlled to charge the vehicle to be charged during the charging period.
7. The method according to claim 6, It is characterized in that Before receiving the charging reservation request generated by the client according to the reservable charging information, the method further includes: Obtaining a service start time and a service end time of a charging service provided by a charging station, wherein the charging station is deployed with a plurality of mobile charging devices; Determine the total service duration of the charging station based on the service start time and the service end time; Dividing the total service time into a plurality of charging periods, and determining the power supply amount corresponding to each charging period; Determining the reserved power corresponding to each charging period according to the charging reservation request received in each charging period; Determine the remaining power corresponding to each charging period according to the reserved power corresponding to each charging period and the power supply corresponding to each charging period; Each charging time period is associated with the corresponding remaining power to obtain the reservable charging information.
8. The method according to claim 7, It is characterized in that Dividing the total service time into the plurality of charging time periods comprises: Determine the charging duration corresponding to each charging period; Determine the start time and end time of each charging period according to the service start time and the charging duration of each charging period; The total service time is divided into the multiple charging time periods according to the start time and the end time of each charging time period.
9. The method according to any one of claims 6 to 8, It is characterized in that In a case where the charging time period includes a plurality of target reservable time periods, controlling the at least one target mobile charging device to charge the vehicle to be charged during the charging time period includes: Determining whether the times of the multiple target reservable time periods are continuous according to the start time and end time corresponding to each target reservable time period; In the case where the times of the multiple target reservable time periods are continuous, after controlling at least one first mobile charging device to charge the vehicle to be charged within the first target reservable time period, controlling at least one second mobile charging device to charge the vehicle to be charged within the second target reservable time period, wherein the end time of the first target reservable time period is the start time of the second target reservable time period, the at least one first mobile charging device is a charging device scheduled by the service end for the vehicle to be charged within the first target reservable time period, and the at least one second mobile charging device is a charging device scheduled by the service end for the vehicle to be charged within the second target reservable time period; In the case where at least some of the multiple target reservable time periods are discontinuous, the mobile charging device corresponding to each target reservable time period is controlled to charge the vehicle to be charged at the charging start time corresponding to each target reservable time period, wherein the charging start time includes one of the following: the start time corresponding to each target reservable time period, and the time when the vehicle to be charged enters the preset area of the charging power station.
10. The method according to any one of claims 6 to 9, It is characterized in that After receiving the charging reservation request generated by the client according to the reservable charging information, the method further includes: Subtracting the to-be-charged amount of electricity from the remaining amount of electricity corresponding to the to-be-charged time period in the reservable charging information, so as to update the reservable charging information and obtain updated reservable charging information; The updated reservable charging information is sent to the client.
11. The method according to any one of claims 6 to 10, It is characterized in that After receiving the charging reservation request generated by the client according to the reservable charging information, the method further includes: In the case of receiving a reservation cancellation request sent by the client, adding the to-be-charged power to the remaining power corresponding to the to-be-charged time period in the reservable charging information, so as to update the reservable charging information and obtain updated reservable charging information; The updated reservable charging information is sent to the client.
12. An electronic device, It is characterized in that The electronic device comprises: a processor and a memory storing computer program instructions; When the processor executes the computer program instructions, the charging method for the mobile charging device according to any one of claims 1 to 11 is implemented.
13. A readable storage medium, It is characterized in that Computer program instructions are stored on the readable storage medium, and when the computer program instructions are executed by the processor, the charging method for the mobile charging device according to any one of claims 1 to 11 is implemented.