Charging pile control method, electronic equipment and computer storage medium

By obtaining the geographical location and time information of the charging pile and automatically selecting the charging mode, the problem of complex and low intelligence in the existing technology of user manual selection mode is solved, and a more efficient and user-friendly charging process is achieved.

CN120156375APending Publication Date: 2025-06-17HANGZHOU FLASH CHARGING NEW ENERGY CO LTD
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Patent Information

Application Number
CN202510434966.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-08
Publication Date
2025-06-17

AI Technical Summary

Technical Problem

The existing charging pile control technology relies on users to manually select the charging mode. The operation is complicated and environmental factors such as geographical location and time are not considered, resulting in the mode selection that does not match the actual needs and is low in intelligence.

Method used

By obtaining the geographical location information and current time information of the charging pile, the charging mode is automatically selected based on the preset strategy, including the silent mode, the performance mode and the equalization mode, and the corresponding charging command is generated for charging.

Benefits of technology

The matching degree between charging pile mode selection and actual needs is optimized, the complexity of users' operations is reduced, and the charging efficiency and user experience is improved.

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Abstract

The invention discloses a charging pile control method, electronic equipment and a computer storage medium. The charging pile control method comprises the following steps: acquiring geographical location information and current time information of a charging pile; selecting a corresponding charging mode based on a preset strategy according to the geographical location information and the current time information of the charging pile; and generating a corresponding charging instruction according to the selected charging mode so as to execute the charging mode for charging. According to the technical scheme, the charging mode corresponding to the charging pile is selected based on the preset strategy according to the geographic position information and the current time information of the charging pile, and then the corresponding charging instruction is generated according to the selected charging mode so as to execute the corresponding charging mode to charge the vehicle. The matching degree between the mode selection of the charging pile and the actual demand is optimized, the user operation complexity is reduced, and the charging efficiency and the user experience are improved.
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Description

Technical Field

[0001] This application relates to the technical field of charging pile control, and particularly to a charging pile control method, an electronic device, and a computer storage medium. Background Art

[0002] The application of new energy vehicles is conducive to alleviating energy and environmental pressures, promoting the optimization of the automotive industrial structure and consumption upgrading. In this general environment, as an important part of the charging infrastructure that interfaces with users, charging piles will inevitably be produced and applied in large quantities. In the prior art, DC charging piles usually adopt a fixed charging mode or a simple user selection mode. However, the prior art has the following problems: relying on user input: users need to manually select the charging mode, increasing the operation complexity; insufficient environmental adaptability: environmental factors such as the geographical location and time of the charging pile are not considered, resulting in a mismatch between the mode selection and the actual demand; low intelligence level: automatic mode switching is not achieved, and diverse scenario requirements cannot be met. Summary of the Invention

[0003] The purpose of this application is to provide a charging pile control method, an electronic device, and a computer storage medium, which optimize the matching degree between the mode selection of the charging pile and the actual demand, reduce the user operation complexity, and improve the charging efficiency and user experience.

[0004] To achieve the above object, the technical solution of this application is implemented as follows:

[0005] In a first aspect, this application provides a charging pile control method, including the following steps:

[0006] Obtain the geographical location information and current time information of the charging pile;

[0007] Based on the geographical location information and current time information of the charging pile, select a corresponding charging mode based on a preset policy;

[0008] Generate a corresponding charging instruction according to the selected charging mode to perform charging in the charging mode.

[0009] As one implementation, the charging modes include a silent mode, a performance mode, and a balanced mode.

[0010] As one implementation, the current time information includes a daytime period and a nighttime period.

[0011] As one implementation, based on the geographical location information and current time information of the charging pile, selecting a corresponding charging mode based on a preset policy includes at least one of the following:

[0012] If the geographical location information of the charging pile meets the first preset condition, then select the silent mode;

[0013] If the geographical location information and the current time information of the charging pile satisfy the second preset condition, then the silent mode is selected;

[0014] If the geographical location information and the current time information of the charging pile satisfy the third preset condition, then the performance mode or the balanced mode is selected;

[0015] If the geographical location information of the charging pile satisfies the fourth preset condition, then the performance mode or the balanced mode is selected;

[0016] If the geographical location information of the charging pile satisfies the fifth preset condition, then the performance mode is selected;

[0017] If the geographical location information of the charging pile satisfies the sixth preset condition, then the balanced mode is selected.

[0018] As one of the implementation manners, after selecting the corresponding charging mode based on the preset strategy according to the geographical location information and the current time information of the charging pile, it further includes:

[0019] Obtain the charging mode selected by the user;

[0020] Generate a corresponding charging instruction according to the charging mode selected by the user, so as to charge in the charging mode selected by the user.

[0021] As one of the implementation manners, the charging power of the silent mode is 50%-70% of the rated power, and the fan speed is the preset minimum heat dissipation threshold.

[0022] As one of the implementation manners, the charging power of the performance mode is 90%-110% of the rated power, and the fan speed is the preset maximum heat dissipation threshold.

[0023] As one of the implementation manners, the charging power and the fan speed of the balanced mode are dynamically adjusted according to the real-time environmental parameters.

[0024] In a second aspect, the present application provides an electronic device, including a memory, a processor, and a computer program stored in the memory and executable on the processor. When the processor executes the computer program, the steps of the charging pile control method in the first aspect are implemented.

[0025] In a third aspect, the present application provides a computer storage medium, in which a computer program is stored. When the computer program is executed by a processor, the steps of the charging pile control method in the first aspect are implemented.

[0026] A charging pile control method, an electronic device and a computer storage medium provided by the present application include the following steps: obtaining the geographical location information and the current time information of the charging pile; selecting a corresponding charging mode based on a preset policy according to the geographical location information and the current time information of the charging pile; generating a corresponding charging instruction according to the selected charging mode to perform charging in the charging mode. The technical solution of the present application selects the corresponding charging mode of the charging pile based on the geographical location information and the current time information of the charging pile according to a preset policy, and then generates a corresponding charging instruction according to the selected charging mode to charge the vehicle in the corresponding charging mode, optimizing the matching degree between the mode selection of the charging pile and the actual demand, reducing the user operation complexity, and improving the charging efficiency and the user experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required for use in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of the present application, and thus should not be regarded as limiting the scope. For those of ordinary skill in the art, other related drawings can also be obtained based on these drawings without creative efforts.

[0028] Figure 1 It is a schematic flowchart of a charging pile control method provided by an embodiment of the present application;

[0029] Figure 2 It is a schematic structural diagram of an electronic device provided by an embodiment of the present application.

[0030] Description of the reference numerals: processor 110, memory 111, network interface 112, bus system 113. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0031] The specific embodiments of the present application will be described in detail below with reference to the drawings. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the description of the present application without creative efforts belong to the scope of protection of the present application.

[0032] It should be noted that in this text, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, such that a process, method, article or device comprising a series of elements not only includes those elements but also other elements not expressly listed, or elements inherent to such process, method, article or device. Without further limitation, an element defined by the phrase "comprising a..." does not exclude the presence of additional identical elements in the process, method, article or device comprising such element. In addition, components, features, and elements with the same name in different embodiments of the present application may have the same meaning or different meanings, and their specific meanings need to be determined based on their explanations in the specific embodiments or further in combination with the context in the specific embodiments.

[0033] It should be understood that although the terms first, second, third, etc. may be used herein to describe various information, such information should not be limited to these terms. These terms are only used to distinguish information of the same type from each other. For example, without departing from the scope of this text, the first information may also be referred to as the second information, and similarly, the second information may also be referred to as the first information. Depending on the context, the word "if" as used herein may be interpreted as "when" or "while" or "in response to determining". Furthermore, as used herein, the singular forms "a", "an" and "the" are also intended to include the plural forms unless the context indicates otherwise. It should be further understood that the terms "comprise", "include" indicate the presence of features, steps, operations, elements, components, items, kinds, and / or groups, but do not exclude the presence, occurrence or addition of one or more other features, steps, operations, elements, components, items, kinds, and / or groups. The terms "or" and "and / or" as used herein are interpreted inclusively, or mean any one or any combination. Thus, "A, B or C" or "A, B and / or C" means "any one of the following: A; B; C; A and B; A and C; B and C; A, B and C". An exception to this definition occurs only when the combination of elements, functions, steps or operations is inherently mutually exclusive in some way.

[0034] It should be understood that although the steps in the flowcharts in the embodiments of the present application are shown sequentially according to the indication of the arrows, these steps are not necessarily executed sequentially in the order indicated by the arrows. Unless there is a clear indication in this text, the execution of these steps has no strict order restriction and may be executed in other orders. Moreover, at least a part of the steps in the figure may include multiple sub-steps or multiple stages, and these sub-steps or stages are not necessarily executed at the same time, but may be executed at different times, and their execution order is not necessarily sequential, but may be executed alternately or in turn with at least a part of other steps or sub-steps or stages of other steps.

[0035] It should be noted that in this text, step codes such as S101 and S102 are adopted. The purpose is to more clearly and briefly express the corresponding content, and it does not constitute a substantial limitation in terms of sequence. Those skilled in the art may execute S102 first and then S101 during specific implementation, etc., but these should all be within the protection scope of this application.

[0036] It should be understood that the specific embodiments described herein are only used to explain this application and are not used to limit this application.

[0037] See Figure 1 , which is a schematic flowchart of a charging pile control method provided by an embodiment of this application.

[0038] As Figure 1 shown, the charging pile control method of this application includes the following steps:

[0039] Step S101: Obtain the geographical location information and current time information of the charging pile;

[0040] Specifically, a Beidou / GPS dual-mode positioning module can be used to obtain the accurate geographical location of the charging pile, and the surrounding area types (such as residential areas, highway service areas) can be obtained by accessing the map application API through the Internet of Things platform. Or edge computing nodes can be deployed to collect the GPS coordinates of the charging pile through the LoRaWAN gateway, and the position range can be judged by combining the electronic fence data (such as the polygon coordinates of residential areas) stored locally.

[0041] Step S102: Based on the geographical location information and current time information of the charging pile, select a corresponding charging mode based on a preset strategy;

[0042] Specifically, based on the geographical location information of the charging pile obtained in step S101 and the current time information obtained by the system clock, a corresponding charging mode is selected based on a preset strategy. In one embodiment, the charging modes include a silent mode, a performance mode, and a balanced mode, and the current time information includes a daytime period (such as 6:00 - 22:00) and a nighttime period (such as 22:00 - 6:00).

[0043] Step S103: Generate a corresponding charging instruction according to the selected charging mode to perform charging in accordance with the charging mode.

[0044] Specifically, generating a corresponding charging instruction according to the selected charging mode includes charging power, fan speed, etc., so that the charging pile charges the vehicle according to this charging instruction.

[0045] The technical solution of this application selects the charging mode corresponding to the charging pile based on the geographical location information and current time information of the charging pile, and then generates a corresponding charging instruction according to the selected charging mode to charge the vehicle in the corresponding charging mode, optimizing the matching degree between the mode selection of the charging pile and the actual demand, reducing the user operation complexity, and improving the charging efficiency and user experience.

[0046] In one embodiment, selecting the corresponding charging mode based on the geographical location information and current time information of the charging pile includes at least one of the following:

[0047] If the geographical location information of the charging pile meets the first preset condition, select the silent mode;

[0048] If the geographical location information and current time information of the charging pile meet the second preset condition, select the silent mode;

[0049] If the geographical location information and current time information of the charging pile meet the third preset condition, select the performance mode or the balanced mode;

[0050] If the geographical location information of the charging pile meets the fourth preset condition, select the performance mode or the balanced mode;

[0051] If the geographical location information of the charging pile meets the fifth preset condition, select the performance mode;

[0052] If the geographical location information of the charging pile meets the sixth preset condition, select the balanced mode.

[0053] Here, the preset conditions can be set according to the actual application requirements. For example:

[0054] Set the first preset condition as the charging pile is located in a residential area or within the first range threshold from the residential area. Here, the first range threshold is a dynamic range defined based on the geographical boundary of the residential area or a preset distance value, and can be dynamically expanded according to the population density of the residential area (for example, the threshold is 500 meters when the density is low, and the threshold is reduced to 300 meters when the density is high). If the charging pile is located in a residential area or within the first range threshold from the residential area, select the silent mode to reduce the noise decibel in the residential area.

[0055] Set the second preset condition as the charging pile is located between the first range threshold and the second range threshold from the residential area and the current time information is the night time period. Here, the second range threshold is a dynamic range defined based on the geographical boundary of the residential area or a preset distance value, and it can be dynamically expanded according to the population density of the residential area (for example, the threshold is 1000 meters when the density is low, and it shrinks to 600 meters when the density is high). The night time period can be automatically adjusted in combination with seasonal changes (for example, from 22:00 to 6:00 in winter and from 23:00 to 5:00 in summer). If the charging pile is located between the first range threshold and the second range threshold from the residential area and the current time information is the night time period, then select the silent mode to reduce the noise decibel during the night time period.

[0056] Set the third preset condition as the charging pile is located between the first range threshold and the second range threshold from the residential area and the current time information is the day time period. When this condition is met, then select the performance mode or the balanced mode.

[0057] Set the fourth preset condition as the charging pile is located outside the second range threshold from the residential area. When this condition is met, then select the performance mode or the balanced mode.

[0058] Set the fifth preset condition as the charging pile is located in a preset noise-insensitive area. Here, the preset noise-insensitive area can include highway service areas, logistics parks, industrial areas, etc. If the charging pile is located in the preset noise-insensitive area, then select the performance mode to improve the charging efficiency.

[0059] Set the sixth preset condition as other situations that do not meet the above five preset conditions. When this condition is met, then select the balanced mode to achieve the optimal balance of noise, power consumption, and charging efficiency.

[0060] In this way, by automatically judging the charging environment, the matching degree between the mode selection and the actual demand is optimized. It automatically switches to the silent mode in noise-sensitive scenarios and automatically switches to the performance mode in performance-demand scenarios, which not only improves the user experience but also improves the charging efficiency.

[0061] In one embodiment, after selecting the corresponding charging mode based on the preset strategy according to the geographical location information and the current time information of the charging pile, it further includes:

[0062] Obtain the charging mode selected by the user;

[0063] Generate a corresponding charging instruction according to the charging mode selected by the user to perform charging in accordance with the charging mode selected by the user.

[0064] Here, after automatically determining the charging environment and selecting a charging mode, if the user does not want to charge using this charging mode, the user can select the charging mode of the charging pile through the charging pile control terminal or the mobile interaction module. The charging pile control terminal or the mobile interaction module uploads the collected user information and charging mode to the charging management control module. The charging management control module determines the charging strategy of the charging pile according to the user information and the selected charging mode, generates a corresponding charging instruction according to the charging strategy, and issues it to the charging pile control terminal for charging. In this way, giving priority to user autonomy further improves the user experience.

[0065] In one embodiment, the charging power in the silent mode is 50%-70% of the rated power, and the fan speed is the preset minimum heat dissipation threshold.

[0066] Here, the control objective of the silent mode is to strictly limit the noise (<55 dB) and allow the temperature to rise moderately. For example, when the temperature of the power module reaches 85 °C (the original threshold of 80 °C + 5 °C relaxation), if the noise is close to 55 dB, the rotation speed of the high-weight fan (such as the charging gun area) is preferentially limited instead of continuing to increase the speed for heat dissipation.

[0067] In one embodiment, the charging power in the performance mode is 90%-110% of the rated power, and the fan speed is the preset maximum heat dissipation threshold.

[0068] Here, the control objective of the performance mode is to dissipate heat to the maximum extent and allow the noise and power consumption to exceed the standard temporarily.

[0069] In one embodiment, the charging power and fan speed in the balanced mode are dynamically adjusted according to real-time environmental parameters.

[0070] Here, the control objective of the balanced mode is to dynamically balance the temperature, noise, and power consumption.

[0071] Based on the same inventive concept as the foregoing embodiments, an embodiment of the present application provides an electronic device, as Figure 2 shown. The electronic device includes: a processor 110 and a memory 111 for storing a computer program that can run on the processor 110; wherein, Figure 2 The processor 110 shown in does not refer to the number of processors 110 being one, but only refers to the positional relationship of the processor 110 relative to other devices. In actual applications, the number of processors 110 can be one or more; similarly, Figure 2 The memory 111 shown in has the same meaning, that is, it only refers to the positional relationship of the memory 111 relative to other devices. In actual applications, the number of memories 111 can be one or more. When the processor 110 is used to run the computer program, the above-mentioned charging pile control method is implemented.

[0072] The electronic device may further include: at least one network interface 112. Each component in the electronic device is coupled together through a bus system 113. It can be understood that the bus system 113 is used to realize the connection and communication between these components. In addition to including a data bus, the bus system 113 also includes a power bus, a control bus, and a status signal bus. However, for the sake of clear illustration, in Figure 2 all kinds of buses are labeled as the bus system 113.

[0073] Among them, the memory 111 can be a volatile memory or a non-volatile memory, or can include both volatile and non-volatile memories. Among them, the non-volatile memory can be a read-only memory (ROM, Read Only Memory), a programmable read-only memory (PROM, Programmable Read-Only Memory), an erasable programmable read-only memory (EPROM, Erasable Programmable Read-Only Memory), an electrically erasable programmable read-only memory (EEPROM, Electrically Erasable Programmable Read-Only Memory), a ferromagnetic random access memory (FRAM, ferromagnetic random access memory), a flash memory (Flash Memory), a magnetic surface memory, an optical disc, or a compact disc read-only memory (CD-ROM, Compact Disc Read-Only Memory); the magnetic surface memory can be a disk memory or a tape memory. The volatile memory can be a random access memory (RAM, Random Access Memory), which is used as an external cache. By way of example but not limitation, many forms of RAM are available, such as a static random access memory (SRAM, Static Random Access Memory), a synchronous static random access memory (SSRAM, Synchronous Static Random Access Memory), a dynamic random access memory (DRAM, Dynamic Random Access Memory), a synchronous dynamic random access memory (SDRAM, Synchronous Dynamic Random Access Memory), a double data rate synchronous dynamic random access memory (DDR SDRAM, Double Data Rate Synchronous Dynamic Random Access Memory), an enhanced synchronous dynamic random access memory (ESDRAM, Enhanced Synchronous Dynamic Random Access Memory), a sync link dynamic random access memory (SLDRAM, SyncLink Dynamic Random Access Memory), a direct rambus random access memory (DRRAM, Direct Rambus Random Access Memory).The memory 111 described in the embodiments of the present application is intended to include but not limited to these and any other suitable types of memories.

[0074] The memory 111 in the embodiments of the present application is used to store various types of data to support the operation of the electronic device. Examples of such data include: any computer programs for operating on the electronic device, such as operating systems and application programs; contact data; phone book data; messages; pictures; videos, etc. Among them, the operating system contains various system programs, such as the framework layer, the core library layer, the driver layer, etc., for implementing various basic services and processing hardware-based tasks. The application programs can include various application programs, such as a Media Player, a Browser, etc., for implementing various application services. Here, the program for implementing the method of the embodiments of the present application can be included in the application programs.

[0075] Based on the same inventive concept as the foregoing embodiments, this embodiment also provides a computer storage medium. The computer storage medium stores a computer program. The computer storage medium can be a ferromagnetic random access memory (FRAM), a read-only memory (ROM), a programmable read-only memory (PROM), an erasable programmable read-only memory (EPROM), an electrically erasable programmable read-only memory (EEPROM), a flash memory, a magnetic surface memory, an optical disc, or a compact disc read-only memory (CD-ROM), etc.; it can also be various devices including one or any combination of the above memories, such as a mobile phone, a computer, a tablet device, a personal digital assistant, etc. When the computer program stored in the computer storage medium is run by a processor, the above charging pile control method is implemented. For the specific step flow implemented when the computer program is executed by the processor, please refer to Figure 1 the description of the shown embodiments, which will not be elaborated here.

[0076] The technical features of the above embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered as the scope described in this specification.

[0077] In this document, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, in addition to the listed elements, and may also include other elements not explicitly listed.

[0078] The above is only a specific implementation manner of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present application can easily think of changes or substitutions, which should all be covered within the protection scope of the present application. Therefore, the protection scope of the present application shall be subject to the appended claims.

Claims

1. A charging pile control method, characterized in that: The following steps are involved: Get the geographical location information and current time information of the charging pile; According to the geographical location information of the charging pile and the current time information, selecting a corresponding charging mode based on a preset strategy; A corresponding charging instruction is generated according to the selected charging mode to execute the charging mode for charging.

2. The charging pile control method according to claim 1, characterized in that: The charging modes include a silent mode, a performance mode and a balanced mode.

3. The charging pile control method according to claim 1, characterized in that: The current time information includes a daytime period and a nighttime period.

4. The charging pile control method according to claim 1 or 2, characterized in that: The selecting a corresponding charging mode based on a preset strategy according to the geographical location information of the charging pile and the current time information includes at least one of the following: If the geographical location information of the charging pile meets the first preset condition, selecting the silent mode; If the geographical location information of the charging pile and the current time information meet the second preset condition, selecting the silent mode; If the geographical location information of the charging pile and the current time information meet a third preset condition, selecting a performance mode or a balanced mode; If the geographical location information of the charging pile meets the fourth preset condition, selecting the performance mode or the balanced mode; If the geographical location information of the charging pile meets the fifth preset condition, selecting the performance mode; If the geographical location information of the charging pile meets the sixth preset condition, the balancing mode is selected.

5. The charging pile control method according to claim 1, characterized in that: After selecting a corresponding charging mode based on a preset strategy according to the geographical location information of the charging pile and the current time information, the method further includes: Get the charging mode selected by the user; Generate a corresponding charging instruction according to the charging mode selected by the user to execute the charging mode selected by the user for charging.

6. The charging pile control method according to claim 4, characterized in that: The charging power in the silent mode is 50%-70% of the rated power, and the fan speed is a preset minimum heat dissipation threshold.

7. The charging pile control method according to claim 4, characterized in that: The charging power of the performance mode is 90%-110% of the rated power, and the fan speed is a preset maximum heat dissipation threshold.

8. The charging pile control method according to claim 4, characterized in that: The charging power and fan speed of the balanced mode are dynamically adjusted according to real-time environmental parameters.

9. An electronic device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that: When the processor executes the computer program, the steps of the charging pile control method according to any one of claims 1 to 8 are implemented.

10. A computer storage medium storing a computer program, characterized in that: When the computer program is executed by a processor, the steps of the charging pile control method according to any one of claims 1 to 8 are implemented.