Method for managing an exchangeable hydrogen storage module and computer device

By adopting a server-side management method for exchangeable hydrogen storage modules, suitable exchange stations are recommended based on information from both the exchange station and the vehicle. This solves the problem of inaccurate management of exchangeable hydrogen storage modules and improves refueling efficiency and management accuracy.

CN122120284APending Publication Date: 2026-05-29TOYOTA JIDOSHA KK
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Patent Information

Application Number
CN202411718261.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-11-27
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

In existing technologies, the management server of exchangeable hydrogen storage modules cannot accurately recommend suitable exchange stations, resulting in excessively long refueling times for commercial vehicles and affecting commercial efficiency.

Method used

Based on the first and second exchange judgment information, the server determines the recommended exchange station information and sends it to the terminal, including detailed information such as the target exchange station and driving route, so as to achieve precise management of the hydrogen storage module.

Benefits of technology

This improved the exchange efficiency of the hydrogen storage module, reduced the exchange cost, and enabled effective management of the hydrogen storage module, thus meeting the vehicle's refueling needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a management method and a computer device of a switching hydrogen storage module. The method comprises the following steps: in response to switching request information sent by a first terminal, determining first switching judgment information associated with a switching station and second switching judgment information associated with a vehicle, determining switching station recommendation information based on the first switching judgment information and the second switching judgment information, and sending the switching station recommendation information to the first terminal and / or the second terminal. The method realizes effective and accurate management of the hydrogen storage module.
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Description

Technical Field

[0001] This application relates to the field of hydrogen storage module management for fuel cell vehicles, and particularly to a management method and computer device for an exchange-type hydrogen storage module. Background Technology

[0002] In recent years, awareness of curbing the global greenhouse effect has increased, particularly in order to reduce carbon dioxide emissions from vehicles. This has led to a surge in the development of hydrogen fuel cell vehicles and hydrogen engine vehicles, which use hydrogen as fuel. These vehicles are generally equipped with hydrogen storage modules filled with hydrogen as a hydrogen supply source. Currently, refillable hydrogen storage modules are commonly used; when hydrogen is insufficient, the vehicle is driven to a hydrogen refueling station for refueling. However, if large commercial vehicles with high hydrogen consumption (such as heavy-duty trucks) use refillable hydrogen storage modules, there is a problem of excessively long refueling times, which affects commercial efficiency. Therefore, the use of exchangeable hydrogen storage modules is being considered to shorten refueling time.

[0003] However, when selecting a swap station for a vehicle, the server managing the swappable hydrogen storage module often cannot accurately recommend a suitable swap station and its related information due to the complex information such as the actual situation of the swap station and the environmental conditions of the vehicle itself. As a result, the scientific and effective management of the swappable hydrogen storage module cannot be achieved. Summary of the Invention

[0004] The purpose of this application is to provide a management method for an exchangeable hydrogen storage module, which enables effective and precise management of the hydrogen storage module.

[0005] To achieve the above objectives, this application provides a management method for an exchangeable hydrogen storage module, comprising:

[0006] In response to the exchange request information sent by the first terminal, first exchange judgment information associated with the exchange station and second exchange judgment information associated with the vehicle are determined.

[0007] Based on the first exchange judgment information and the second exchange judgment information, the recommended exchange station information is determined;

[0008] Send the exchange station recommendation information to the first terminal and / or the second terminal.

[0009] Optionally, the first exchange determination information includes at least one of the following: quantity information of the exchangeable hydrogen storage modules at the exchange station, price information of the exchangeable hydrogen storage modules at the exchange station, status information of the exchangeable hydrogen storage modules at the exchange station, and information on vehicles to be exchanged at the exchange station.

[0010] Optionally, the second exchange judgment information includes at least one of the following: the vehicle's location information, the vehicle's destination information, the vehicle's navigation route information, and the vehicle's remaining fuel information.

[0011] Optionally, before determining the first exchange determination information associated with the exchange station and the second exchange determination information associated with the vehicle in response to the exchange request information sent by the first terminal, the method further includes:

[0012] Based on priority information, the first terminal is determined from multiple terminals.

[0013] Optionally, based on the first exchange judgment information and the second exchange judgment information, the recommended exchange station information is determined, including:

[0014] Based on the first exchange judgment information, at least one candidate exchange station that is compatible with the vehicle is determined;

[0015] Based on the second exchange judgment information, the exchange station recommendation information corresponding to at least one target exchange station selected from the at least one candidate exchange station is determined.

[0016] Optionally, the recommended exchange station information includes the configuration information of the target exchange station for the hydrogen storage module.

[0017] Sending the exchange station recommendation information to the first terminal and / or the second terminal, including:

[0018] The recommended configuration information of the hydrogen storage module is sent to the first terminal and / or the second terminal and displayed.

[0019] Optionally, the configuration information includes the status information of the hydrogen fuel in the hydrogen storage module and / or the transmission requirements information.

[0020] Optionally, after sending the exchange station recommendation information to the first terminal and / or the second terminal, the method further includes:

[0021] A preparation request is sent to the exchange station so that the exchange station responds to the preparation request and prepares to exchange the hydrogen storage module.

[0022] Alternatively, the method may further include:

[0023] Obtain feedback information sent by the first terminal and / or the second terminal, wherein the feedback information is feedback information on the operation of the exchange station recommendation information;

[0024] Based on the feedback information, explanatory information associated with the exchange station recommendation information is determined;

[0025] The explanation information is sent to the first terminal and / or the second terminal.

[0026] Alternatively, the method may further include:

[0027] Upon receiving an instruction to respond to the displayed exchange station recommendation information, the alternative exchange station recommendation information determined based on the first exchange judgment information and the second exchange judgment information is sent to the first terminal and / or the second terminal.

[0028] This application also provides a computer device, including a memory, a processor, and a computer program stored in the memory, wherein the processor executes the computer program to implement the steps of the method described above.

[0029] This application also provides a computer-readable storage medium storing a computer program / instructions thereon, which, when executed by a processor, implements the steps of the method described above.

[0030] This application also provides a computer program product, including a computer program / instructions that, when executed by a processor, implement the steps of the method described above.

[0031] The management method for the exchangeable hydrogen storage module in this application determines the recommended exchange station information based on the first exchange judgment information and the second exchange judgment information. This realizes the recommendation of relevant information of the exchange station that is compatible with the vehicle, which improves the exchange efficiency of the hydrogen storage module and further realizes the effective and accurate management of the hydrogen storage module. Attached Figure Description

[0032] Figure 1 This is a schematic diagram illustrating the connection relationships between the server and the first terminal, the second terminal, the switching station, and the vehicle in an embodiment of this application.

[0033] Figure 2 This is a schematic diagram illustrating the connection relationship between the first terminal, the second terminal, the switching station, and the vehicle in a server scenario according to an embodiment of this application.

[0034] Figure 3 This is a schematic diagram illustrating the connection relationship between the first terminal, the second terminal, the switching station, and the vehicle in a cloud service scenario according to an embodiment of this application.

[0035] Figure 4 This is a schematic diagram illustrating the connection relationship between the first terminal, the second terminal, the switching station, and the vehicle in a management center scenario according to an embodiment of this application.

[0036] Figure 5 A flowchart illustrating the management method of the exchangeable hydrogen storage module according to an embodiment of this application;

[0037] Figure 6 Examples of embodiments of this application Figure 5 A flowchart of one embodiment of step S200;

[0038] Figure 7 This is a flowchart of a specific embodiment of the management method described in this application.

[0039] Explanation of reference numerals in the attached figures

[0040] 1-Server; 2-First terminal; 3-Exchange station; 4-Vehicle; 5-Second terminal; 11-Server; 12-Cloud; 13-Control center. Detailed Implementation

[0041] Various embodiments and features of this application are described herein with reference to the accompanying drawings.

[0042] It should be understood that various modifications can be made to the embodiments described herein. Therefore, the above description should not be considered as limiting, but merely as an example of embodiments. Other modifications within the scope and spirit of this application will be apparent to those skilled in the art.

[0043] The accompanying drawings, which are included in and form part of this specification, illustrate embodiments of the present application and, together with the general description of the present application given above and the detailed description of the embodiments given below, serve to explain the principles of the present application.

[0044] These and other features of this application will become apparent from the following description of preferred forms of embodiments given as non-limiting examples, with reference to the accompanying drawings.

[0045] It should also be understood that although this application has been described with reference to some specific examples, those skilled in the art can certainly implement many other equivalent forms of this application.

[0046] The above and other aspects, features and advantages of this application will become more apparent when taken in conjunction with the accompanying drawings and in view of the following detailed description.

[0047] Specific embodiments of this application are described thereafter with reference to the accompanying drawings; however, it should be understood that the claimed embodiments are merely examples of this application, which can be implemented in various ways. Well-known and / or repeated functions and structures are not described in detail to avoid unnecessary or redundant details that could obscure the application. Therefore, the specific structural and functional details claimed herein are not intended to be limiting, but merely serve as the basis and representative basis for the claims to teach those skilled in the art to use this application in a variety of substantially any suitable detailed structures.

[0048] This specification may use the phrases “in one embodiment,” “in another embodiment,” “in yet another embodiment,” or “in other embodiments,” all of which may refer to one or more of the same or different embodiments according to this application.

[0049] This application provides a management method for an exchangeable hydrogen storage module. This management method can be applied to server 1, which is a device or system with service functions, such as... Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, the server 1 can be a server 11, a cloud 12, or a control center 13. This management method can scientifically and effectively manage the exchangeable hydrogen storage modules used in various types of vehicles 4, such as hydrogen fuel cell vehicles.

[0050] The hydrogen storage module can store hydrogen fuel and can be installed on vehicle 4 to power vehicle 4. After the hydrogen fuel is depleted, the depleted hydrogen storage module can be removed from vehicle 4 at the exchange station 3 using appropriate disassembly and reinstalled on vehicle 4 with a hydrogen storage module containing sufficient hydrogen fuel.

[0051] Server 1 (such as server 11, cloud 12, and control center 13 with corresponding management functions) can effectively manage hydrogen storage modules, including managing hydrogen storage modules in exchange stations 3 and on vehicles 4. The corresponding management method includes: a first terminal 2 sending an exchange request to server 1, which may be a request from vehicle 4 to exchange its hydrogen storage modules at exchange station 3. Upon receiving the exchange request, server 1 responds by obtaining first exchange judgment information from multiple exchange stations 3 capable of exchanging hydrogen storage modules, and second exchange judgment information from vehicle 4. The first exchange judgment information contains information about the hydrogen storage modules managed by exchange station 3, and the second exchange judgment information contains information about vehicle 4 during the use of the hydrogen storage modules. Server 1 generates exchange station recommendation information based on the first and second exchange judgment information. This recommendation information includes recommended exchange stations 3 and their related information, such as target exchange stations compatible with vehicle 4, driving routes to the target exchange stations, recommended hydrogen storage modules, and information about the hydrogen fuel they store. Server 1 sends the exchange station recommendation information to the first terminal 2 and / or the second terminal 5, and the first terminal 2 and / or the second terminal 5 display the exchange station recommendation information to the user. The user can control vehicle 4 based on the displayed exchange station recommendation information, such as going to the recommended target exchange station to replace the hydrogen storage module carried by vehicle 4. Thus, server 1 also realizes effective and precise management of the hydrogen storage modules in each exchange station 3 and the hydrogen storage module carried by vehicle 4.

[0052] The management method of the exchange-type hydrogen storage module of this application will be described in detail below with reference to the accompanying drawings. Figure 5 This is a flowchart of a management method for an exchangeable hydrogen storage module according to an embodiment of this application, such as... Figure 5 As shown and combined Figures 1 to 4 The method includes the following steps:

[0053] S100, in response to the exchange request information sent by the first terminal 2, determines the first exchange judgment information associated with the exchange station 3 and the second exchange judgment information associated with the vehicle 4.

[0054] For example, server 1 is communicatively connected to exchange station 3, first terminal 2, and vehicle 4, respectively, and can interact with exchange station 3, first terminal 2, and vehicle 4 to effectively and accurately manage the hydrogen storage module of vehicle 4. In this embodiment, exchange station 3 is used to exchange the hydrogen storage module of vehicle 4. Vehicle 4 can be a hydrogen fuel cell vehicle, such as a hydrogen fuel cell vehicle or a hydrogen engine vehicle, etc. The hydrogen storage module is detachably installed on vehicle 4 and can be exchanged at exchange station 3.

[0055] When vehicle 4 requests to exchange its hydrogen storage module, it can send the exchange request information to server 1 via a communication network through a first terminal 2. The first terminal 2 can be a mobile terminal owned by the user of vehicle 4, a terminal installed on vehicle 4, or a terminal used by the manager of vehicle 4 (e.g., a dispatcher of a logistics vehicle). Upon receiving the exchange request information, server 1 sends the request information to one or more exchange stations 3 and vehicle 4. After receiving the request information, all exchange stations 3 can send first exchange judgment information to server 1, and vehicle 4 can also send second exchange judgment information to server 1. The first exchange judgment information contains information about the backup hydrogen storage modules managed by the exchange station 3, such as the location and status information of the recommended target exchange station, and the status information of the hydrogen storage modules stored at the target exchange station. The backup hydrogen storage modules can be used to replace the hydrogen storage modules in vehicle 4, thus becoming the hydrogen storage modules in vehicle 4. The second exchange judgment information contains information about vehicle 4 during the use of the hydrogen storage modules, such as the current scenario information of vehicle 4 and the status information of the current hydrogen storage modules used by vehicle 4.

[0056] S200, based on the first exchange judgment information and the second exchange judgment information, determine the exchange station recommendation information.

[0057] For example, the first exchange judgment information includes different types of information during the process of the backup hydrogen storage module managed by the exchange station 3, and the second exchange judgment information includes different types of information during the process of the vehicle 4 using the hydrogen storage module. The server 1 can progressively adapt different types of the first exchange judgment information and different types of the second exchange judgment information to the current vehicle 4, thereby determining the most suitable exchange station recommendation information for the vehicle 4. In one embodiment, based on the first and second exchange judgment information, the corresponding exchange station recommendation information is determined with the conditions of optimal hydrogen storage module exchange efficiency, optimal time efficiency, and / or optimal price.

[0058] The recommended exchange station information consists of information on recommended exchange stations compatible with vehicle 4 and related information. For example, the recommended exchange station information may include at least one of the following: a target exchange station compatible with vehicle 4, the driving route to the target exchange station, recommended hydrogen storage modules, and information on the hydrogen fuel they store. The target exchange station can exchange hydrogen storage modules for vehicle 4, allowing vehicle 4 to exchange for a hydrogen storage module with sufficient hydrogen fuel after depleting its hydrogen fuel, which will then be installed on vehicle 4.

[0059] S300, send exchange station recommendation information to the first terminal 2 and / or the second terminal 5.

[0060] For example, server 1 is communicatively connected to first terminal 2 and / or second terminal 5. Server 1 can send exchange station recommendation information to first terminal 2. First terminal 2 and / or second terminal 5 can display the received exchange station recommendation information to the user. The user can control vehicle 4 according to the displayed exchange station recommendation information, such as going to the recommended target exchange station to replace the hydrogen storage module installed in vehicle 4, which improves the exchange efficiency of hydrogen storage module in vehicle 4 and reduces the cost of exchanging hydrogen storage module. At the same time, server 1 also realizes effective and accurate management of the relevant hydrogen storage module. In some embodiments, vehicle 4 with autonomous driving function can also automatically drive to the exchange station to complete the exchange according to the exchange station recommendation information.

[0061] In one embodiment, the first terminal 2 can be a vehicle-associated terminal, such as a mobile terminal owned by the user of vehicle 4, a terminal installed on vehicle 4, or a terminal used by the manager of vehicle 4. The second terminal 5 can be a different terminal device from the first terminal 2, but it can also interact with the server 1. For example, if the first terminal 2 is a mobile terminal owned by the user of vehicle 4 and the second terminal 5 is a terminal installed on vehicle 4, the user of vehicle 4 can send an exchange request message through the mobile terminal based on the usage of vehicle 4, and the exchange station recommendation information is sent to the terminal installed on vehicle 4 (e.g., a vehicle multimedia device). As another example, if the first terminal 2 is a terminal used by the manager of vehicle 4 and the second terminal 5 is a mobile terminal owned by the user of vehicle 4, the manager of vehicle 4 can send an exchange request message through the terminal based on the work schedule of vehicle 4, and the exchange station recommendation information is sent to the mobile terminal owned by the user of vehicle 4. The exchange station recommendation information can be associated with the navigation function of the mobile terminal owned by the user of vehicle 4 or the terminal installed on vehicle 4.

[0062] In one embodiment, the displayed exchange station recommendation information is interactive, allowing users to further interact with server 1 based on their needs. For example, users might want more detailed information about the target exchange station, including details about the hydrogen storage modules stored there, and the hydrogen fuel usage requirements within those modules. This provides users with more advanced services.

[0063] The management method for the exchangeable hydrogen storage module in this application embodiment involves the server 1 determining recommended exchange station information based on the first exchange judgment information and the second exchange judgment information, and sending it to the first terminal 2 and / or the second terminal 5. This method recommends service information related to the exchange station 3 that is compatible with the vehicle 4, thereby improving the exchange efficiency of the hydrogen storage module and further realizing effective and accurate management of the hydrogen storage module.

[0064] In one embodiment of this application, the first exchange determination information includes at least one of the following: quantity information of the exchangeable hydrogen storage modules of the exchange station 3, price information of the exchangeable hydrogen storage modules of the exchange station 3, status information of the exchangeable hydrogen storage modules of the exchange station, and information on vehicles to be exchanged at the exchange station 3.

[0065] Specifically, exchange station 3 contains spare hydrogen storage modules, used to exchange the existing hydrogen storage modules on vehicle 4 to become the current hydrogen storage modules. Each hydrogen storage module includes multiple hydrogen tanks for storing hydrogen fuel (hydrogen gas). The number of exchangeable hydrogen storage modules indicates the number of spare modules available for exchange at the exchange station, representing the number of vehicles 4 that can have their hydrogen storage modules exchanged. The price information for the exchangeable hydrogen storage modules at exchange station 3 represents the price corresponding to exchanging hydrogen storage modules for vehicles 4. The status information for the exchangeable hydrogen storage modules at the exchange station includes the hydrogen fuel filling status, usage status, and maintenance status of the modules. Based on this status information, it can be determined whether the corresponding exchange station is suitable for the current vehicles. The information on vehicles waiting to be exchanged at exchange station 3 includes the queue length of vehicles at each exchange station 3 during hydrogen storage module exchange, vehicle congestion, road conditions, and the estimated time for receiving hydrogen storage modules from exchange station 3.

[0066] In one embodiment of this application, the second exchange judgment information includes at least one of the following: the location information of the vehicle 4, the destination information of the vehicle 4, the navigation route information of the vehicle 4, and the remaining fuel information of the vehicle 4.

[0067] Specifically, the location information of vehicle 4 can be its current geographical location, including distance and route information to each exchange station 3; the destination information of vehicle 4 includes information about the destination it is going to, including the destination's location, the route to the destination, and the number of exchange stations along the way; the navigation route information of vehicle 4 includes navigation information for vehicle 4 to reach its destination and navigation information for vehicle 4 to reach exchange station 3; and the remaining fuel information of vehicle 4 includes the current remaining fuel amount in the hydrogen storage module carried by vehicle 4 and the corresponding driving distance for the remaining fuel amount.

[0068] In one embodiment of this application, before determining the first exchange determination information associated with the exchange station and the second exchange determination information associated with the vehicle in response to the exchange request information sent by the first terminal 2, the method further includes:

[0069] Based on priority information, the first terminal 2 is determined from multiple terminals.

[0070] For example, server 1 communicates with multiple first terminals 2. For instance, multiple users can interact with server 1 using their respective first terminals 2. The current status of the vehicle 4 operated by each user on each first terminal 2 is also different. Each first terminal 2 can send exchange request information to server 1, and the content of each exchange request information may be different.

[0071] In one embodiment, server 1 obtains exchange request information sent by one or more first terminals 2, and analyzes and processes the exchange request information respectively.

[0072] Based on the vehicle class information and / or the urgency of the hydrogen fuel demand in the hydrogen storage module of vehicle 4 contained in the exchange request information, a corresponding response process priority is generated. The response process priority represents the priority of handling the hydrogen fuel demand in the hydrogen storage module of vehicle 4.

[0073] Based on the response process priority, priority information for each terminal is determined. This priority information represents the priority level at which server 1 provides services to the terminals, and it also corresponds to the priority level at which vehicle 4 is served by exchange station 3.

[0074] Based on priority information, the first terminal 2 is determined from multiple terminals, and then the exchange request information sent by the first terminal 2 is responded to.

[0075] In one embodiment, the hydrogen fuel in the hydrogen storage module may require emergency disposal. For example, if the remaining hydrogen fuel in the hydrogen storage module is too low, it may cause some precision equipment in vehicle 4 to stop working, resulting in property damage, thus requiring emergency disposal. If the calorific value of the hydrogen fuel in the hydrogen storage module decreases due to prolonged storage, the hydrogen storage module and its stored hydrogen fuel need to be replaced. If a problem occurs with the hydrogen storage module, the stored hydrogen fuel needs to be released for emergency maintenance. Furthermore, for the exchange station, different users or vehicles 4 may have different service levels, and users or vehicles 4 with higher service levels can be prioritized by the exchange station. Based on this, in this embodiment, the exchange request information may include user or vehicle level information and the urgency of the need to dispose of the hydrogen fuel in the hydrogen storage module of vehicle 4.

[0076] On one hand, the vehicle level information can be information related to the service priority of vehicle 4 pre-recorded in the server. For example, the higher the vehicle level information, the higher the service priority for vehicle 4, and consequently, the higher the priority of the corresponding response process. Based on the vehicle level information, a corresponding response process priority can be generated. Of course, this vehicle level information can also be adjusted according to changes in the usage scenario of vehicle 4.

[0077] On the other hand, the level of urgency varies depending on the actual situation of vehicle 4. In this embodiment, after obtaining the exchange request information, server 1 can determine the urgency of the hydrogen fuel demand in the hydrogen storage module. Then, based on the urgency of the hydrogen fuel demand in the hydrogen storage module, a corresponding response process priority is generated. In one embodiment, the higher the urgency, the higher the corresponding response process priority, and vice versa.

[0078] Server 1 determines the first terminal 2 from multiple terminals based on priority information. In one embodiment, the terminal with the higher priority value in the priority information can be determined as the first terminal 2; in another embodiment, multiple terminals with higher priority values ​​can be selected as the first terminal 2 based on the priority information.

[0079] Server 1 responds to the exchange requests sent by each first terminal 2 based on priority information. For example, for a first terminal 2 with a higher priority value, server 1 first obtains the first exchange judgment information from the exchange station 3 and the second exchange judgment information from the vehicle 4. For a first terminal 2 with a lower priority value, server 1 determines the first and second exchange judgment information for the first terminal 2 later. In this way, the needs of vehicles 4 with higher service priority and / or vehicles 4 that need to urgently dispose of hydrogen fuel in the hydrogen storage module can be prioritized, improving the user experience.

[0080] In one embodiment of this application, the step of determining exchange station recommendation information based on first exchange judgment information from multiple exchange stations 3 and second exchange judgment information from the vehicle 4 is as follows: Figure 6 As shown, it includes:

[0081] S210, based on the first exchange judgment information, determine at least one candidate exchange station that is compatible with the vehicle 4.

[0082] For example, the first exchange determination information is related to the backup hydrogen storage modules managed by exchange station 3, including at least one of the following: the quantity information of exchangeable hydrogen storage modules at exchange station 3, the price information of exchangeable hydrogen storage modules at exchange station 3, the status information of exchangeable hydrogen storage modules at exchange station 3, and the information of vehicles to be exchanged at exchange station 3. Based on the specific content of the first exchange determination information, server 1 determines at least one candidate exchange station from all exchange stations 3 that is compatible with vehicle 4. In one embodiment, although all candidate exchange stations are compatible with vehicle 4, further selection from multiple candidate exchange stations is needed to improve the convenience of vehicle 4 using exchange station 3.

[0083] S220, based on the second exchange judgment information, determine the exchange station recommendation information corresponding to at least one target exchange station selected from the at least one candidate exchange station.

[0084] For example, the second exchange determination information is relevant information of the vehicle 4 during the use of the hydrogen storage module. This includes: the vehicle 4's location information, the vehicle 4's destination information, the vehicle 4's navigation route information, and the vehicle 4's remaining hydrogen supply information. Based on the aforementioned second exchange determination information, the server 1 further determines at least one target exchange station from at least one candidate exchange station. For example, the determined target exchange station may be located closest to the vehicle 4's current location, or a candidate exchange station that the vehicle 4 can reach using its remaining hydrogen supply may be determined as the target exchange station. This ensures that the determined at least one target exchange station is further adapted to the vehicle 4's current state and usage scenario.

[0085] The scenario information associated with the target exchange station includes its location, station description, driving route, recommended hydrogen storage modules, and placement instructions for the hydrogen storage modules. Based on one or more of the above scenario information, corresponding exchange station recommendations can be determined. This makes the exchange station recommendations more compatible with vehicle 4.

[0086] In one embodiment, if it is determined that the hydrogen fuel processing effect of the target exchange station meets the first condition, then based on the scenario information associated with the target exchange station, recommended exchange station information is determined. Specifically, each target exchange station has a different hydrogen fuel processing capacity, which includes at least one of the following: hydrogen fuel processing capacity, hydrogen fuel processing efficiency, hydrogen fuel quality, and hydrogen fuel processing safety level. For example, if the hydrogen fuel processing safety level meets the requirements of vehicle 4 itself, or if the efficiency of loading hydrogen fuel into the hydrogen storage module for exchange meets user needs, then it is determined that the hydrogen fuel processing effect of the target exchange station meets the first condition. Then, based on the scenario information associated with the target exchange station, recommended exchange station information is determined and sent to the first terminal 2 and / or the second terminal 5.

[0087] In one embodiment, the first condition can be determined based on historical data, user preferences, or pre-set parameters. It can also be adjusted according to actual needs.

[0088] In one embodiment of this application, the exchange station recommendation information includes the configuration information of the target exchange station for the hydrogen storage module, and sending the exchange station recommendation information to the first terminal and / or the second terminal 5 includes:

[0089] The recommended configuration information of the hydrogen storage module is sent to the first terminal 2 and / or the second terminal 5 and displayed.

[0090] For example, the configuration information includes the status information of the hydrogen fuel in the hydrogen storage module and / or transmission requirement information, specifically including various configuration parameters for configuring the hydrogen storage module. Upon receiving a first instruction regarding the displayed configuration information, the first terminal 2 and / or the second terminal 5 send the configuration information to the vehicle 4, so that the vehicle 4 adjusts the operating state of its installed detachable components to adapt to the recommended hydrogen storage module.

[0091] In one embodiment, the state information of the hydrogen fuel includes various physical and chemical parameters of the hydrogen storage module. The transmission requirement information includes transmission requirements (such as pressure, flow rate, temperature, etc.) for filling or releasing hydrogen fuel (hydrogen) into the hydrogen storage module, as well as the receiving parameter requirements of the disassembly and assembly components of vehicle 4 when receiving hydrogen fuel from the hydrogen storage module.

[0092] Server 1 sends the recommended configuration information of the hydrogen storage module to the first terminal 2 for display. Users can view various configuration types of the hydrogen storage module through the first terminal 2. This provides a detailed understanding of the currently used hydrogen storage module, enabling appropriate handling during use.

[0093] In one embodiment, upon receiving a first instruction regarding the displayed configuration information, the first terminal 2 and / or the second terminal 5 send the configuration information to the vehicle 4. A disassembly / removal assembly is installed on the vehicle 4, and the hydrogen storage module can be installed on the assembly to enable the vehicle 4 to use it. The disassembly / removal assembly needs to be compatible with the recommended hydrogen storage module, including compatibility with the hydrogen fuel (hydrogen) in the module. For example, the pressure and temperature settings of the pipelines in the disassembly / removal assembly need to conform to the requirements of the recommended configuration information of the hydrogen storage module. The vehicle 4 adjusts the operating state of the disassembly / removal assembly installed on it to be compatible with the recommended hydrogen storage module.

[0094] In one embodiment of this application, after sending the exchange station recommendation information to the first terminal 2 and / or the second terminal 5, the method further includes the following steps:

[0095] A preparation request is sent to the target exchange station, so that the exchange station responds to the preparation request and prepares to exchange the hydrogen storage module.

[0096] For example, after obtaining the recommended exchange station information, the user of the first terminal 2 and / or the second terminal 5 can manipulate the vehicle 4 to act in accordance with the content of the recommended exchange station information. For instance, it can travel to the recommended target exchange station to exchange its installed hydrogen storage module. Simultaneously, the first terminal 2 can send an exchange request to the server 1. Upon receiving the exchange request, the server 1 sends a corresponding preparation request to the target exchange station, requesting the target exchange station to make pre-exchange preparations for the vehicle 4 associated with the current first terminal 2 and / or second terminal 5. This aims to shorten the exchange time and further improve exchange efficiency.

[0097] In one embodiment, the preparation request includes a request to exchange the hydrogen storage module of vehicle 4. The target exchange station can prepare a corresponding spare hydrogen storage module in advance based on the model and hardware / software parameters of the hydrogen storage module on vehicle 4, so that the spare hydrogen storage module can be used to exchange the hydrogen storage module of vehicle 4 after vehicle 4 arrives at the target exchange station, thereby improving the exchange efficiency.

[0098] In one embodiment of this application, such as Figure 7 As shown, the method further includes the following steps:

[0099] S400, obtain feedback information sent by the first terminal 2 and / or the second terminal 5, wherein the feedback information is feedback information for operating on the exchange station recommendation information.

[0100] For example, the feedback information is the feedback from the first terminal 2 to the server regarding the exchange station's recommended information. The exchange station's recommended information can be interactive. After the exchange station's recommended information is displayed, the user may need to further interact with it through the first terminal 2. For example, the user may want to learn more about a specific piece of content in the exchange station's recommended information, or the user may request other related information from the server 1 based on their actual needs, performing interactive operations such as clicking, voice commands, or writing. In this case, the first terminal 2 sends feedback information regarding the exchange station's recommended information to the server 1.

[0101] S500, based on the feedback information, determine the explanatory information associated with the exchange station recommendation information.

[0102] For example, after receiving the feedback information, server 1 determines and retrieves explanatory information associated with the exchange station's recommendation information based on the user's needs expressed in the feedback information. This explanatory information can further explain the user's needs. For example, if the user needs to further understand the target exchange station's operating hours, number of staff, and types of supporting services, etc.

[0103] S600, the explanation information is sent to the first terminal 2 and / or the second terminal 5.

[0104] For example, server 1 sends explanatory information to first terminal 2 via a communication network, such as the target exchange's operating hours, number of staff, and types of supporting services, as explanatory information to first terminal 2 and / or second terminal 5. After receiving the explanatory information, first terminal 2 displays it, and users can read the displayed explanatory information to meet their needs.

[0105] In one embodiment of this application, the method further includes: upon receiving an instruction to respond to the displayed exchange station recommendation information, sending alternative exchange station recommendation information determined based on the first exchange judgment information and the second exchange judgment information to a first terminal and / or a second terminal.

[0106] For example, alternative exchange station recommendation information is determined based on first exchange judgment information from multiple exchange stations 3 and second exchange judgment information from the vehicle 4. This alternative exchange station recommendation information may differ from the exchange station recommendation information sent to the first terminal 2 and / or the second terminal 5. The alternative exchange station recommendation information is then stored.

[0107] Upon receiving an instruction to respond to the displayed exchange station recommendations, if the user desires additional recommendations besides the displayed exchange station recommendations, server 1 can send the alternative exchange station recommendations to the first terminal 2 and / or the second terminal 5 based on the instruction. This allows the first terminal 2 and / or the second terminal 5 to display the alternative exchange station recommendations, providing the user with more recommendations beyond the displayed exchange station recommendations and further satisfying their needs.

[0108] This application also provides a computer device, including a memory, a processor, and a computer program stored in the memory, wherein the processor executes the computer program to implement the steps of the method described above.

[0109] This application also provides a computer-readable storage medium storing a computer program thereon, which, when executed by a processor, implements the steps of the method described above.

[0110] This application also provides a computer program product, including a computer program / instructions that, when executed by a processor, implement the steps of the method described above.

[0111] Those skilled in the art will understand that embodiments of this application can be provided as methods, electronic devices, computer-readable storage media, or computer program products. Therefore, this application can take the form of a completely hardware embodiment, a completely software embodiment, or an embodiment combining software and hardware. Furthermore, this application can take the form of a computer program product implemented on one or more computer-readable storage media containing computer-readable program code. When implemented in software, these functions can be stored in a computer-readable medium or transmitted as one or more instructions or code on a computer-readable medium.

[0112] The aforementioned processor can be a general-purpose processor, a digital signal processor, an application-specific integrated circuit (ASIC), a programmable logic device (PLD), or a combination thereof. The aforementioned PLD can be a complex programmable logic device (CPLD), a field-programmable gate array (FPGA), a generic array logic (GAL), or any combination thereof. The general-purpose processor can be a microprocessor or any conventional processor, etc.

[0113] The aforementioned memory may include non-persistent memory in computer-readable media, such as random access memory (RAM) and / or non-volatile memory, like read-only memory (ROM) or flash RAM. Memory is an example of computer-readable media.

[0114] The aforementioned readable storage medium may be a magnetic disk, optical disk, DVD, USB, read-only memory (ROM) or random access memory (RAM), etc. This application does not limit the specific form of storage medium.

[0115] The above embodiments are merely exemplary embodiments of this application and are not intended to limit this application. The scope of protection of this application is defined by the claims. Those skilled in the art can make various modifications or equivalent substitutions to this application within its substance and scope of protection, and such modifications or equivalent substitutions should also be considered to fall within the scope of protection of this application.

Claims

1. A management method for an exchangeable hydrogen storage module, characterized in that, include: In response to the exchange request information sent by the first terminal, first exchange judgment information associated with the exchange station and second exchange judgment information associated with the vehicle are determined. Based on the first exchange judgment information and the second exchange judgment information, the recommended exchange station information is determined; Send the exchange station recommendation information to the first terminal and / or the second terminal.

2. The management method for the exchangeable hydrogen storage module according to claim 1, characterized in that, The first exchange determination information includes at least one of the following: quantity information of the exchangeable hydrogen storage modules at the exchange station, price information of the exchangeable hydrogen storage modules at the exchange station, status information of the exchangeable hydrogen storage modules at the exchange station, and information on vehicles to be exchanged at the exchange station.

3. The management method for the exchangeable hydrogen storage module according to claim 1, characterized in that, The second exchange judgment information includes at least one of the following: the vehicle's location information, the vehicle's destination information, the vehicle's navigation route information, and the vehicle's remaining fuel information.

4. The management method for the exchangeable hydrogen storage module according to claim 1, characterized in that, Before determining the first exchange decision information associated with the exchange station and the second exchange decision information associated with the vehicle in response to the exchange request information sent by the first terminal, the method further includes: Based on priority information, the first terminal is determined from multiple terminals.

5. The management method for the exchangeable hydrogen storage module according to claim 1, characterized in that, Based on the first exchange judgment information and the second exchange judgment information, exchange station recommendation information is determined, including: Based on the first exchange judgment information, at least one candidate exchange station that is compatible with the vehicle is determined; Based on the second exchange judgment information, the exchange station recommendation information corresponding to at least one target exchange station selected from the at least one candidate exchange station is determined.

6. The management method for the exchangeable hydrogen storage module according to claim 1, characterized in that, The recommended exchange station information includes the configuration information of the target exchange station for the hydrogen storage module. Sending the exchange station recommendation information to the first terminal and / or the second terminal, including: The recommended configuration information of the hydrogen storage module is sent to the first terminal and / or the second terminal and displayed.

7. The management method for the exchangeable hydrogen storage module according to claim 6, characterized in that, The configuration information includes the status information of the hydrogen fuel in the hydrogen storage module and / or the transmission requirements information.

8. The management method for the exchangeable hydrogen storage module according to claim 1, characterized in that, After sending the exchange station recommendation information to the first terminal and / or the second terminal, the method further includes: A preparation request is sent to the exchange station so that the exchange station responds to the preparation request and prepares to exchange the hydrogen storage module.

9. The management method for the exchangeable hydrogen storage module according to claim 1, characterized in that, The method further includes: Obtain feedback information sent by the first terminal and / or the second terminal, wherein the feedback information is feedback information on the operation of the exchange station recommendation information; Based on the feedback information, explanatory information associated with the exchange station recommendation information is determined; The explanation information is sent to the first terminal and / or the second terminal.

10. The management method for the exchangeable hydrogen storage module according to claim 1, characterized in that, The method further includes: Upon receiving an instruction to respond to the displayed exchange station recommendation information, the alternative exchange station recommendation information determined based on the first exchange judgment information and the second exchange judgment information is sent to the first terminal and / or the second terminal.

11. A computer device comprising a memory, a processor, and a computer program stored in the memory, characterized in that, The processor executes the computer program to implement the steps of the method of claim 1.

12. A computer-readable storage medium having a computer program / instructions stored thereon, characterized in that, When the computer program / instructions are executed by the processor, they implement the steps of the method of claim 1.

13. A computer program product, characterized in that, Includes a computer program / instructions that, when executed by a processor, implement the steps of the method of claim 1.