Usage Processing Method, Device, Computer Equipment and Storage Medium of a Mobile Air Conditioner
By obtaining power supply mode and environmental parameters to match the target mobile air conditioner, the problem of high purchase cost and low usage rate of portable air conditioners is solved, and more efficient user needs adaptation and convenience are achieved.
Patent Information
- Application Number
- CN202310160900.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-02-23
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2043-02-23
AI Technical Summary
The existing portable air conditioners have high purchase costs and low usage rates, which reduce the convenience of users' outdoor life.
By obtaining the power supply mode and environmental parameters of the user when using the mobile air conditioner, determining the demand parameters based on the power supply mode and environmental parameters, and matching the target mobile air conditioner to meet the user's usage needs.
It improves the usage rate of mobile air conditioners, reduces the purchase cost of users, and improves the convenience of users' outdoor life.
Smart Images

Figure CN115992986B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of mobile air conditioners, and particularly to a method and device for using and processing a mobile air conditioner, a computer device, a storage medium, and a computer program product. Background Art
[0002] With the progress of society, the quality of people's lives is constantly improving. Outdoor activities have become a popular way for people to relieve stress. When engaging in outdoor activities, the outdoor weather changes rapidly. To enhance the outdoor play experience, air conditioners have become an essential piece of equipment for people's outdoor activities.
[0003] However, currently available portable air conditioners on the market, such as mobile air conditioners, have relatively high purchase costs and low usage rates, reducing the convenience of users' outdoor lives. Summary of the Invention
[0004] Based on this, in order to address the above technical problems, it is necessary to provide a method and device for using and processing a mobile air conditioner, a computer device, a computer-readable storage medium, and a computer program product that can reduce the purchase cost for users and improve the convenience of users' outdoor lives.
[0005] In a first aspect, the present application provides a method for using and processing a mobile air conditioner. The method includes:
[0006] In response to a usage request for the mobile air conditioner, obtain the power supply mode and environmental parameters when using the mobile air conditioner;
[0007] Determine the demand parameters for using the mobile air conditioner based on the power supply mode and the environmental parameters;
[0008] Determine the target mobile air conditioner based on the power supply mode and the demand parameters.
[0009] In a second aspect, the present application further provides a device for using and processing a mobile air conditioner. The device includes:
[0010] A request response module, configured to obtain the power supply mode and environmental parameters when using the mobile air conditioner in response to a usage request for the mobile air conditioner;
[0011] A parameter determination module, configured to determine the demand parameters for using the mobile air conditioner based on the power supply mode and the environmental parameters;
[0012] A mobile air conditioner determination module, configured to determine the target mobile air conditioner based on the power supply mode and the demand parameters.
[0013] In a third aspect, the present application also provides a computer device. The computer device includes a memory and a processor. The memory stores a computer program, and when the processor executes the computer program, the steps of the above method are implemented.
[0014] In a fourth aspect, the present application also provides a computer-readable storage medium. On the computer-readable storage medium, a computer program is stored, and when the computer program is executed by a processor, the steps of the above method are implemented.
[0015] In a fifth aspect, the present application also provides a computer program product. The computer program product includes a computer program, and when the computer program is executed by a processor, the steps of the above method are implemented.
[0016] For the above method, device, computer device, storage medium, and computer program product for using and processing a mobile air conditioner, in response to a user's request to use the mobile air conditioner, the power supply mode and environmental parameters when the user uses the mobile air conditioner are obtained, the demand parameters for using the mobile air conditioner are determined according to the power supply mode and environmental parameters, and the target mobile air conditioner is determined based on the power supply mode and demand parameters. Since the target mobile air conditioner is determined according to the actual available power supply mode of the user and the actual environmental parameters when the user uses the mobile air conditioner, the target mobile air conditioner can better adapt to the user's usage requirements, effectively improving the utilization rate of the mobile air conditioner. And performing usage processing on the mobile air conditioner can ensure that each mobile air conditioner used by the user is a device that matches their actual usage requirements, reducing the user's purchase cost and effectively improving the convenience of the user's outdoor life. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is an application environment diagram of the method for using and processing a mobile air conditioner in an embodiment;
[0018] Figure 2 It is a flowchart of the method for using and processing a mobile air conditioner in an embodiment;
[0019] Figure 3 It is a structural diagram of a mobile air conditioner in an embodiment;
[0020] Figure 4 It is a flowchart of the step of determining the demand parameters for using a mobile air conditioner according to the power supply mode and environmental parameters in an embodiment;
[0021] Figure 5 It is a flowchart of the step of determining the target mobile air conditioner based on the power supply mode and demand parameters in an embodiment;
[0022] Figure 6 It is a flowchart of the step of determining the target mobile air conditioner based on the power supply mode and demand parameters in another embodiment;
[0023] Figure 7 It is a schematic flowchart of the usage processing method of a mobile air conditioner in another embodiment;
[0024] Figure 8 It is a structural block diagram of the usage processing device of a mobile air conditioner in one embodiment;
[0025] Figure 9 It is the internal structure diagram of a computer device in one embodiment. Detailed implementation manners
[0026] In order to make the objectives, technical solutions and advantages of the present application clearer and more understandable, the present application will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and are not used to limit the present application.
[0027] The usage processing method of the mobile air conditioner provided by the embodiments of the present application can be applied to an application environment as Figure 1 shown. Among them, the mobile air conditioner usage terminal 102 communicates with the usage processing system 104 through a network. The data storage system can store the data that the usage processing system 104 needs to process. The data storage system can be integrated on the usage processing system 104, or can be placed in the cloud or other network servers. The user generates a usage request for the mobile air conditioner based on the mobile air conditioner usage terminal 102. In response to the usage request for the mobile air conditioner, the usage processing system 104 obtains the power supply mode and environmental parameters when using the mobile air conditioner, determines the demand parameters for using the mobile air conditioner according to the power supply mode and environmental parameters, and determines the target mobile air conditioner based on the power supply mode and demand parameters. Among them, the mobile air conditioner usage terminal 102 can be any terminal product integrated with a mobile air conditioner usage program, including but not limited to various personal computers, laptop computers, smart phones, tablet computers, Internet of Things devices and portable wearable devices. The Internet of Things devices can be smart speakers, smart TVs, smart air conditioners, smart in-vehicle devices, mobile air conditioner storage bins, etc. The portable wearable devices can be smart watches, smart bracelets, head-mounted devices, etc. The usage processing system 104 can be implemented by an independent server or a server cluster composed of multiple servers.
[0028] In one embodiment, as Figure 2 shown, a usage processing method of a mobile air conditioner is provided. Taking the usage processing system in Figure 1 as an example for description, the method includes the following steps:
[0029] Step 202, in response to the usage request for the mobile air conditioner, obtain the power supply mode and environmental parameters when using the mobile air conditioner.
[0030] Among them, a mobile air conditioner is a temperature adjustment device that can meet the temperature adjustment needs of users within a certain period of time, providing a temperature adjustment function for users to enjoy outdoor activities in an open environment, such as camping and outdoor fishing. It can be understood that the temperature adjustment function can be a cooling or heating function. The mobile air conditioner in this application is a shared mobile air conditioner, which can be pre-stored in a fixed storage location, such as a fixed self-service storage warehouse pre-set in each region, or any storage area that can achieve a safe storage function.
[0031] In one embodiment, as Figure 3 shown, the mobile air conditioner can include two components: an air conditioner main body part and a detachable and replaceable battery pack. Among them, in addition to conventional components, the air conditioner main body part also includes a charging pile interface and a battery pack interface structure. The charging pile interface is externally connected to an adapter, which can not only be used for charging the battery pack but also for directly taking power to supply the operation of the air conditioner. It can be understood that the battery pack of the mobile air conditioner is a detachable structure, and whether the battery pack is installed does not affect the normal placement and direct power supply use of the mobile air conditioner.
[0032] Among them, the power supply mode of the mobile air conditioner is the usage mode of supplying energy to the mobile air conditioner, and the power supply mode of the mobile air conditioner is determined according to the user's usage method.
[0033] Specifically, after the usage processing system receives a usage request triggered by the user for the mobile air conditioner, in response to the usage request, it obtains the power supply mode and environmental parameters when using the mobile air conditioner. Among them, the environmental parameters are the environmental parameters of the usage environment when the user uses the mobile air conditioner.
[0034] Step 204, determine the demand parameters for using the mobile air conditioner according to the power supply mode and environmental parameters.
[0035] Among them, the demand parameters are the decision parameters for determining the target mobile air conditioner. The demand parameters can include the device parameters and operation parameters of the air conditioner. The device parameters are, for example, the power supply device model, energy storage device model, etc. The operation parameters can include the temperature adjustment mode, operation duration, etc. Specifically, according to the demand parameters, the usage parameters of the target mobile air conditioner can be determined, thereby determining the target mobile air conditioner that meets the user's usage needs. It can be understood that according to different power supply modes, the determined demand parameters may also be different.
[0036] Specifically, the usage processing system determines the demand parameters for the user to use the mobile air conditioner according to the determined power supply mode of the mobile air conditioner and the environmental parameters when using the mobile air conditioner.
[0037] Step 206, determine the target mobile air conditioner based on the power supply mode and demand parameters.
[0038] Specifically, a processing system is used to determine a target mobile air conditioner that can meet the user's usage requirements according to the power supply mode and demand parameters.
[0039] In the above method for processing the use of a mobile air conditioner, in response to the user's request to use the mobile air conditioner, the power supply mode and environmental parameters when the user uses the mobile air conditioner are obtained. The demand parameters for using the mobile air conditioner are determined based on the power supply mode and environmental parameters. The target mobile air conditioner is determined based on the power supply mode and demand parameters. Since the target mobile air conditioner is determined according to the actually available power supply mode of the user and the actual environmental parameters when the user uses the mobile air conditioner, the target mobile air conditioner can better adapt to the user's usage requirements, effectively improving the utilization rate of the mobile air conditioner. And processing the use of the mobile air conditioner can ensure that each mobile air conditioner used by the user is a device that matches its actual usage requirements, reducing the user's purchase cost and effectively improving the convenience of the user's outdoor life.
[0040] If the user has a need to use a mobile air conditioner when about to engage in outdoor activities, the user can choose to obtain the target mobile air conditioner at the location of the outdoor activity.
[0041] Based on this, in one embodiment, in response to the request to use the mobile air conditioner, the power supply mode and environmental parameters when using the mobile air conditioner are obtained, including: in response to the request to use the mobile air conditioner generated by the user scanning a two-dimensional code; the two-dimensional code is set on the surface of the mobile air conditioner storage bin, and the environmental parameter is the environmental parameter of the environment where the user is located.
[0042] Among them, the mobile air conditioner storage bin is a pre-set storage area for storing mobile air conditioners. Multiple independent storage spaces are pre-divided in the mobile air conditioner storage bin, which can be used to store mobile air conditioners of the same or different models. When the user determines to use the target mobile air conditioner, the processing system can control the opening of the storage space where the target mobile air conditioner is located, facilitating the user to access the target mobile air conditioner. It can be understood that a two-dimensional code is pre-set on the surface of the mobile air conditioner storage bin, and when the user scans the two-dimensional code, a request to use the mobile air conditioner can be correspondingly generated.
[0043] Specifically, the user scans the two-dimensional code on the surface of the mobile air conditioner storage bin to generate a request to use the mobile air conditioner. The use processing platform responds to this use request, obtains the power supply mode when using the mobile air conditioner, and at the same time obtains the environmental parameters of the environment where the user is currently located. At this time, the environmental parameter can be considered as the usage environment parameter when the user uses the mobile air conditioner.
[0044] In one of the embodiments, the processing system can obtain the environmental parameters of the current environment through the network.
[0045] In one embodiment, a processing system is used to obtain the user's historical usage records in response to a usage request generated by the user scanning a QR code, and determine the power supply mode when the user uses the mobile air conditioner according to the historical usage records.
[0046] In one embodiment, a processing system is used to generate an initial selection interface based on a usage request generated by the user scanning a QR code. The user inputs the power supply mode and environmental parameters when using the mobile air conditioner based on the initial selection interface.
[0047] Determining a target mobile air conditioner based on the power supply mode and demand parameters includes: determining a matching target mobile air conditioner from the mobile air conditioner storage bin based on the power supply mode and demand parameters.
[0048] Specifically, after the processing system obtains the demand parameters according to the power supply mode and the environmental parameters of the user's current location, it determines a target mobile air conditioner that matches the user from the mobile air conditioner storage bin based on the power supply mode and demand parameters.
[0049] In the above embodiments, if the user has a usage requirement for the mobile air conditioner when about to engage in outdoor sports, a usage request for the mobile air conditioner can be instantly generated through the QR code on the surface of the mobile air conditioner storage bin. The processing system responds to this usage request, obtains the power supply mode and environmental parameters when the user uses the mobile air conditioner, and based on the power supply mode and the subsequently determined demand parameters, can quickly determine the device that meets the actual usage requirements of the user from the mobile air conditioner storage bin, reducing the user's purchase cost and effectively improving the convenience of the user's outdoor life.
[0050] Further, in one embodiment, the usage processing method of the mobile air conditioner further includes: if the user determines to use the target mobile air conditioner, the target mobile air conditioner is controlled to unlock the device lock based on the target mobile air conditioner.
[0051] Specifically, after the processing system matches a suitable target mobile air conditioner for the user, the target mobile air conditioner is displayed on the user's selection interface. The user can determine whether to use the target mobile air conditioner based on the selection interface. If the user determines to use the target mobile air conditioner, the processing system will generate an unlocking instruction based on the target mobile air conditioner and control the target mobile air conditioner to unlock the device lock, facilitating the user's access to the target mobile air conditioner.
[0052] If the user is not at the actual usage location of the mobile air conditioner and needs to reserve the mobile air conditioner in advance, in one embodiment, in response to the usage request for the mobile air conditioner, obtaining the power supply mode and environmental parameters when using the mobile air conditioner includes: in response to the usage request for the mobile air conditioner generated by the user logging in to the mobile air conditioner usage program, determining the usage location and power supply mode of the user when using the mobile air conditioner based on the usage request, and obtaining the environmental parameters when using the mobile air conditioner based on the usage location, where the environmental parameters are the environmental parameters of the usage location.
[0053] Specifically, when a user needs to reserve a mobile air conditioner at the destination in a different location or query the status of the mobile air conditioner at the destination, the user can log in to the mobile air conditioner usage program from the terminal and generate a usage request for the mobile air conditioner based on the mobile air conditioner usage program. The usage processing system determines the usage location of the mobile air conditioner for the user based on the usage request, and obtains the power supply mode and environmental parameters of the mobile air conditioner based on the usage location, where the environmental parameters are the environmental parameters of the usage location.
[0054] Determining a target mobile air conditioner based on the power supply mode and demand parameters includes: determining the target mobile air conditioner from the mobile air conditioner storage bin at the usage location based on the power supply mode and demand parameters.
[0055] Specifically, after the usage processing system obtains the demand parameters according to the power supply mode and the environmental parameters of the actual usage location of the mobile air conditioner, it determines the target mobile air conditioner that matches the user from the mobile air conditioner storage bin at the actual usage location of the mobile air conditioner based on the power supply mode and the demand parameters.
[0056] In the above embodiments, if the user needs to determine the mobile air conditioner that needs to be used at the actual usage location of the mobile air conditioner in a different location, the user can generate a usage request for the mobile air conditioner through the mobile air conditioner usage program. The usage processing system responds to the usage request, determines the actual usage location of the mobile air conditioner used by the user and the power supply mode of the mobile air conditioner, and obtains the environmental parameters when using the mobile air conditioner. Based on the power supply mode and the subsequently determined demand parameters, it matches the equipment that meets the actual usage needs of the user from the mobile air conditioner storage bin at the actual usage location of the mobile air conditioner, prepares for the user's subsequent travel, effectively reduces the user's purchase cost, and improves the convenience of the user's outdoor life.
[0057] Further, in one embodiment, the mobile air conditioner usage processing method further includes: modifying the status of the target mobile air conditioner to a reserved status; and controlling the target mobile air conditioner to unlock the device in response to the pick-up request for the mobile air conditioner generated by the user scanning the QR code.
[0058] Specifically, after the usage processing system matches the target mobile air conditioner for the user in a different location at the actual usage location, it displays the target mobile air conditioner on the user's selection interface. The user can determine whether to use the target mobile air conditioner based on the selection interface. If the user determines to use the target mobile air conditioner, the usage processing system modifies the status of the target mobile air conditioner to a reserved status to prevent the target mobile air conditioner from being used by others during the period reserved by the user. When the user arrives at the actual usage location, the user can scan the QR code on the surface of the mobile air conditioner storage bin to generate a pick-up request for the mobile air conditioner. The usage processing system responds to the pick-up request, generates an unlocking instruction based on the target mobile air conditioner, and controls the target mobile air conditioner to unlock the device, facilitating the user's access to the target mobile air conditioner.
[0059] In this embodiment, by modifying the state of the target mobile air conditioner, a matched target mobile air conditioner is reserved for users in different locations, which facilitates the use of the mobile air conditioner by users in different locations, effectively reduces the purchase cost of users, and improves the convenience of users' outdoor life.
[0060] The demand parameters are important parameters for matching the target mobile air conditioner for users. In one embodiment, as Figure 4 shown, the demand parameters for using the mobile air conditioner are determined according to the power supply mode and environmental parameters, including:
[0061] Step 402, generate a corresponding parameter setting interface based on the power supply mode.
[0062] Among them, the parameter setting interface is a display interface generated for users to input parameters. The display form of the parameter setting interface and the parameters to be set are both determined by the power supply mode. Different power supply modes correspond to different parameter setting interfaces. Based on the parameter setting interface, users can input corresponding information at the corresponding positions on the interface according to their own usage requirements. It can be understood that in addition to displaying the parameter information that needs to be input by users, the parameter setting interface can also display the environmental parameters already obtained by the usage processing system, such as weather, temperature difference, etc.
[0063] Specifically, the usage processing system generates a corresponding parameter setting interface based on the power supply mode when the user uses the mobile air conditioner.
[0064] Step 404, obtain the set parameters input by the user based on the parameter setting interface.
[0065] Specifically, the user inputs set parameters that conform to the actual usage situation based on the parameter setting interface, and the usage processing system obtains the set parameters input by the user. Among them, the user's set parameters can be parameters that the usage processing system cannot directly obtain, such as the expected usage time, power supply equipment model, etc., or modified parameters after the user modifies the parameters directly obtained by the usage processing system. For example, if the usage processing system determines the user's usage requirement as a cooling requirement based on the temperature of the usage location collected in real time, the preset parameter displayed on the parameter setting interface is the cooling mode. At this time, the user can change this cooling mode to the heating mode according to their own usage requirements.
[0066] Step 406, determine the demand parameters for using the mobile air conditioner according to the set parameters and environmental parameters, and the demand parameters correspond to the power supply mode.
[0067] Specifically, a processing system is used to determine the required parameters for using a mobile air conditioner based on the parameters set by the user and the environmental parameters at the location where the mobile air conditioner is used. The required parameters may include, but are not limited to, cooling and heating requirements, temperature difference, power supply equipment model, usage duration, battery data, etc. It can be understood that the required parameters correspond to the power supply mode, and different power supply modes correspond to different required parameters.
[0068] In this embodiment, a processing system generates a corresponding parameter setting interface according to the power supply mode when the user uses the mobile air conditioner, obtains the set parameters input by the user based on the parameter setting interface, and determines the required parameters for the user to use the mobile air conditioner by according to the set parameters and environmental parameters, which can make the obtained required parameters meet the actual needs of the user, providing a guarantee for subsequently determining the target mobile air conditioner that meets the actual usage needs of the user.
[0069] When the power supply mode when the user uses the mobile air conditioner is different, the corresponding required parameters are also different. In one embodiment, the power supply mode includes a direct power supply mode, and the required parameters corresponding to the direct power supply mode are the first required parameters including the power supply equipment model.
[0070] Determining the target mobile air conditioner based on the power supply mode and the required parameters includes: matching the equipment model of the mobile air conditioner according to the direct power supply mode and the first required parameters; determining the target mobile air conditioner based on the equipment model of the mobile air conditioner.
[0071] Among them, the direct power supply mode means that the mobile air conditioner itself does not have an energy storage device, but the user externally connects an energy storage device to provide energy for the mobile air conditioner. Specifically, when the user uses the mobile air conditioner, the user can select the energy storage device carried by himself as the external energy supply device of the mobile air conditioner. For example, the user's vehicle-mounted power supply or mobile power supply, etc. At this time, the power supply mode when the user uses the mobile air conditioner is the direct power supply mode, and the external energy supply device provided by the user directly supplies power. The first required parameters are the required parameters corresponding to the direct power supply mode, and the first required parameters may include the cooling or heating mode, air conditioner capacity, air conditioner operating power, air conditioner charging interface model, etc.
[0072] In one of the embodiments, a processing system generates a corresponding first parameter setting interface based on the direct power supply mode. The user selects the cooling or heating requirement based on the first parameter setting interface, sets parameters such as the preset usage temperature and power supply equipment model. The processing system obtains the temperature difference based on the preset usage temperature set by the user and the environmental temperature of the usage location collected by itself through the sensor, determines parameters such as the air conditioner capacity and air conditioner operating power of the target mobile air conditioner based on the temperature difference, and determines the air conditioner charging interface model according to the power supply equipment model set by the user. Then, parameters such as the air conditioner capacity, air conditioner operating power, cooling or heating mode, and air conditioner charging interface model are determined as the required parameters, and the target mobile air conditioner is matched for the user based on the required parameters.
[0073] In one embodiment, the processing system directly determines the user's usage requirement as a cooling or heating requirement according to the temperature difference between the preset temperature set by the user and the ambient temperature at the usage location.
[0074] Specifically, when the power supply mode of the mobile air conditioner used by the user is the direct power supply mode, the processing system matches the equipment model of the mobile air conditioner according to the direct charging mode and the first demand parameter, and the equipment model needs to meet the first demand parameter. For example, if the operation mode in the first demand parameter is the cooling mode, a single-cooling machine with matching air conditioner capacity, air conditioner operating power, and charging interface model is provided; if the operation mode in the first demand parameter is the heating mode, a heating model with matching air conditioner capacity, air conditioner operating power, and charging interface model is provided; if the operation mode in the first demand parameter is the cooling or heating mode, a cooling and heating model with matching air conditioner capacity, air conditioner operating power, and charging interface model is provided.
[0075] After determining the equipment model of the mobile air conditioner, the processing system determines the target mobile air conditioner from the mobile air conditioner storage bin at the usage location. It can be understood that when the power supply mode of the user using the mobile air conditioner is the direct power supply mode, the target mobile air conditioner does not carry an energy storage device.
[0076] In the above embodiment, if the power supply mode of the user using the mobile air conditioner is the direct power supply mode, the equipment model of the mobile air conditioner is determined according to the first demand parameter including the power supply equipment model, and the target mobile air conditioner that meets the user's needs is determined based on the equipment model, which reduces the user's purchase cost and effectively improves the convenience of the user's outdoor life.
[0077] If the user does not have a power supply device for powering the mobile air conditioner, in one embodiment, the power supply mode includes a battery power supply mode, and the demand parameter corresponding to the battery power supply mode is the second demand parameter.
[0078] As Figure 5 shown, determining the target mobile air conditioner based on the power supply mode and the demand parameter includes:
[0079] Step 502, matching the equipment model of the mobile air conditioner according to the battery power supply mode and the second demand parameter.
[0080] Among them, the battery power supply mode refers to the mode in which the mobile air conditioner is powered by its own energy storage device. Specifically, if the power supply mode of the user using the mobile air conditioner is the composite power supply mode, when the processing system matches the target mobile air conditioner for the user, it is necessary to match the target mobile air conditioner with an energy storage device to ensure sufficient energy supply of the mobile air conditioner during use.
[0081] The second demand parameter is the demand parameter corresponding to the battery power supply mode. Understandably, the second demand parameter may include the cooling or heating mode, the air conditioner capacity, the operating power of the air conditioner, the battery power parameter, etc.
[0082] In one embodiment, the processing system is used to generate a corresponding second parameter setting interface based on the battery power supply mode. The user selects the cooling or heating demand based on the second parameter setting interface, sets parameters such as the preset usage temperature and the expected usage duration. The processing system calculates the temperature difference based on the preset usage temperature set by the user and the environmental temperature of the usage location collected by itself through sensors, and determines parameters such as the air conditioner capacity and the operating power of the target mobile air conditioner based on the temperature difference. The battery power parameter of the air conditioner battery is determined according to the expected usage duration set by the user. Then, parameters such as the air conditioner capacity, the operating power of the air conditioner, the cooling or heating mode, and the battery power parameter are determined as the demand parameters, and a target mobile air conditioner is matched for the user based on the demand parameters.
[0083] Specifically, when the power supply mode of the user using the mobile air conditioner is the battery power supply mode, the processing system matches and obtains the device model of the mobile air conditioner according to the battery power supply mode and the second demand parameter, and the device model meets the second demand parameter.
[0084] Step 504, if the user determines that the device model is the target device model, then a energy storage device corresponding to the target device model is matched according to the battery power supply mode and the second demand parameter.
[0085] Specifically, after the processing system matches a device model for the user, a first determination interface is generated according to the device model. The user can determine whether to use the mobile air conditioner of this device model based on the first determination interface. If the user determines that the device model is the target device model, the processing system will continue to match and obtain the energy storage device corresponding to the target device model according to the second demand parameter.
[0086] Step 506, if the user determines that the energy storage device is the target energy storage device, then the target mobile air conditioner is determined based on the target device model and the target energy storage device.
[0087] Specifically, after the processing system matches a corresponding energy storage device for the target device model, a second determination interface is generated according to the energy storage device. The user can determine whether to use this energy storage device to supply energy and charge the target mobile air conditioner based on the second determination interface. If the user determines that the energy storage device is the target energy storage device, the processing system comprehensively determines the target mobile air conditioner based on the determined target device model and target energy storage device.
[0088] In the above embodiment, if the power supply mode when the user uses the mobile air conditioner is the battery power supply mode, the device model of the mobile air conditioner is determined according to the second demand parameter. On the basis that the user determines that the device model is the target device model, the target energy storage device is further determined for the target mobile air conditioner. Finally, based on the target device model and the target energy storage device, a target mobile air conditioner that meets the user's needs is determined, thereby reducing the user's purchase cost and effectively improving the convenience of the user's outdoor life.
[0089] If the user requires a mobile air conditioner with both direct power supply and battery charging functions, in one embodiment, the power supply mode includes a composite power supply mode, and the demand parameter corresponding to the composite power supply mode is a third demand parameter including the power supply device model.
[0090] like Figure 6 As shown, determining the target mobile air conditioner based on the power supply mode and demand parameters includes:
[0091] Step 602: Obtain the device model of the mobile air conditioner according to the composite power supply mode and the third demand parameter.
[0092] The composite power supply mode refers to a mode in which the mobile air conditioner supports both the use of an external energy storage device and the use of its own energy storage device to power the air conditioner. Specifically, if the power supply mode when the user uses the mobile air conditioner is the composite power supply mode, it means that the user may use an external energy storage device to power the mobile air conditioner, or may need to use the mobile air conditioner's own energy storage device to power the mobile air conditioner. Therefore, when matching the target mobile air conditioner for the user, the processing system needs to consider the compatibility of the target mobile air conditioner with the charging interface of the external energy storage device, as well as whether the battery power of the target mobile air conditioner's own energy storage device is sufficient.
[0093] The third demand parameter is the demand parameter corresponding to the composite power supply mode. The third demand parameter may include cooling or heating mode, air conditioner capacity, air conditioner operating power, air conditioner charging interface model, battery power parameters, etc.
[0094] In one embodiment, a processing system is used to generate a corresponding third parameter setting interface based on a composite power supply mode. The user selects cooling or heating requirements based on the third parameter setting interface, sets parameters such as a preset usage temperature, an expected usage duration, and a power supply device model. The processing system calculates the temperature difference between the preset usage temperature set by the user and the ambient temperature of the usage location collected by the sensor itself, determines parameters such as the air conditioner capacity and the air conditioner operating power of the target mobile air conditioner based on the temperature difference, determines the battery power parameter of the air conditioner battery according to the expected usage duration set by the user, and determines the air conditioner charging interface model according to the power supply device model set by the user. Then, parameters such as the air conditioner capacity, the air conditioner operating power, the cooling or heating mode, the battery power parameter, and the air conditioner charging interface model are determined as demand parameters, and a target mobile air conditioner is matched for the user based on the demand parameters.
[0095] Specifically, when the power supply mode of the mobile air conditioner used by the user is a composite power supply mode, the processing system matches the device model of the mobile air conditioner according to the composite power supply mode and the third demand parameters, and the device model meets the third demand parameters.
[0096] Step 604, if the user determines that the device model is the target device model, then a energy storage device corresponding to the target device model is matched according to the third demand parameters.
[0097] Specifically, after the processing system matches the device model for the user, a second determination interface is generated according to the device model. The user can determine whether to use the mobile air conditioner of this device model based on the second determination interface. If the user determines that the device model is the target device model, the processing system will continue to match a energy storage device corresponding to the target device model according to the second demand parameters.
[0098] Step 606, if the user determines that the energy storage device is the target energy storage device, then the target mobile air conditioner is determined according to the target device model and the target energy storage device.
[0099] Specifically, after the processing system matches a corresponding energy storage device for the target device model, a second determination interface is generated according to the energy storage device. The user can determine whether to use this energy storage device to supply energy and charge the target mobile air conditioner based on the second determination interface. If the user determines that the energy storage device is the target energy storage device, the processing system comprehensively determines the target mobile air conditioner based on the determined target device model and the target energy storage device.
[0100] In the above embodiments, if the power supply mode when the user uses the mobile air conditioner is the composite power supply mode, the device model of the mobile air conditioner is determined according to the third demand parameter. On the basis that the user determines that the device model is the target device model, the target energy storage device is further determined for the target mobile air conditioner. Finally, the target mobile air conditioner that meets the user's needs is determined based on the target device model and the target energy storage device, reducing the user's purchase cost and effectively improving the convenience of the user's outdoor life.
[0101] In one embodiment, after the step of determining the demand parameter for using the mobile air conditioner according to the power supply mode and the environmental parameter, the method for processing the use of the mobile air conditioner further includes:
[0102] Match the demand parameter with the preset demand parameter. If the demand parameter does not match the preset demand parameter successfully, a prompt message is generated to prompt the user that the setting is abnormal, and return to the step of determining the demand parameter for using the mobile air conditioner according to the power supply mode and the environmental parameter.
[0103] Among them, the preset demand parameter is the demand parameter generated by the use processing system in advance according to the actual status and performance data of all the mobile air conditioners in the mobile air conditioner storage bin. The preset demand parameter changes according to the usage situation of the mobile air conditioners in the mobile air conditioner storage bin. The preset demand parameter can be regarded as the parameter database of all the available mobile air conditioners in the mobile air conditioner storage bin. It can be understood that if the demand parameter matches the preset demand parameter, it means that there is a mobile air conditioner that meets the user's needs in the mobile air conditioner storage bin at this time. If the demand parameter does not match the preset demand parameter, it means that there is no mobile air conditioner that meets the user's needs in the mobile air conditioner storage bin at this time.
[0104] For example, in the direct power supply mode, if the power supply device model of the demand parameter does not match the preset power supply device model, it means that the charging models of all the available mobile air conditioners in the current mobile air conditioner storage bin do not meet the user's needs. In the battery power supply mode, if the battery power parameter of the demand parameter does not match the preset battery power parameter, it means that the battery pack battery capacity or power of all the available mobile air conditioners in the current mobile air conditioner storage bin does not meet the user's usage requirements. In the composite power supply mode, if the air conditioner horsepower or air conditioner operating power obtained by the use processing system according to the difference between the user-set temperature and the environmental temperature does not match the preset air conditioner horsepower or preset air conditioner operating power, it means that the expected temperature difference required by the current user is too large, and there is no mobile air conditioner that meets the user's needs in the current mobile air conditioner storage bin.
[0105] Specifically, after obtaining the demand parameters using the processing system, the demand parameters are matched with the preset demand parameters. If the demand parameters do not match the preset demand parameters successfully, it indicates that there is no mobile air conditioner in this mobile air conditioner storage bin that meets the user's requirements. The processing system will generate a prompt message to notify the user that the parameter setting has failed and return to the step of determining the demand parameters of the mobile air conditioner according to the power supply mode and environmental parameters, allowing the user to re-set the parameters. If the demand parameters match the preset demand parameters successfully, the target mobile air conditioner is determined based on the power supply mode and the demand parameters.
[0106] In this embodiment, the preset demand parameters that are updated in real time are pre-set in the processing system. After obtaining the user's demand parameters, the processing system matches the demand parameters with the preset demand parameters. If the demand parameters do not match the preset demand parameters successfully, a prompt message is generated to notify the user to re-set the parameters, avoiding the situation where the mobile air conditioner cannot be used due to unreasonable parameter settings.
[0107] In one embodiment, as Figure 7 shown, a method for processing the use of a mobile air conditioner is provided. Taking the example of a user determining the target mobile air conditioner at the actual usage location of the mobile air conditioner, the method specifically includes the following steps:
[0108] After the user arrives at the actual usage location, scan the QR code located on the body of the mobile air conditioner to generate a usage request for the mobile air conditioner. Among them, the QR code is located on the body of the air conditioner, does not hinder the overall machine assembly, and is not located at the air inlet and outlet.
[0109] In response to the usage request for the mobile air conditioner, the processing system enters the activation initial model selection interface, and at the same time, the background cloud computing and matching function is started, and the real-time data synchronization of the battery pack information data is started.
[0110] When the user selects the power supply mode for using the mobile air conditioner based on the initial model selection interface, the processing system generates a corresponding parameter setting interface according to the power supply mode selected by the user, obtains the setting parameters input by the user based on the parameter setting interface, and at the same time obtains the environmental parameters of the usage location where the user is located. The demand parameters of the mobile air conditioner are determined according to the setting parameters and the environmental parameters. After the demand parameters are determined, the cloud computing and matching function performs model analysis according to the demand parameters and provides it to the user for model selection.
[0111] Among them, if the power supply mode selected by the user is the direct power supply mode, after the user completes the model selection and confirms the use, the device can be ejected and the relevant charging can be started.
[0112] If the selected power supply mode is the battery power supply mode, after the user completes the model selection, the usage processing system will further select a battery pack according to the demand parameters. There are differences in the usage costs of batteries with different capacities and power levels, that is, the higher the capacity and power level, the higher the user's usage cost. The usage processing system will combine the selected model and battery pack to obtain the target mobile air conditioner. After the user determines to use the target mobile air conditioner, the device can be ejected and the relevant charging can be started.
[0113] If the selected power supply mode is the composite power supply mode, after the user completes the model selection, the usage processing system also needs to further select a battery pack according to the demand parameters. The usage processing system will combine the selected model and battery pack to obtain the target mobile air conditioner. After the user determines to use the target mobile air conditioner, the device can be ejected and the relevant charging can be started. It can be understood that if the user's device meets the direct power supply mode, the use of the battery pack can be cancelled during this process, or the battery pack option can be selected and a battery pack with a relatively low usage cost can be selected for combined use, so as to simplify the usage process of the mobile air conditioner and facilitate user operation.
[0114] It should be understood that although the steps in the flowcharts involved in the above-described embodiments are shown in sequence according to the arrows, these steps are not necessarily executed in the order indicated by the arrows. Unless there is a clear description in this article, the execution of these steps has no strict order limit, and these steps can be executed in other orders. Moreover, at least a part of the steps in the flowcharts involved in the above-described embodiments may include multiple steps or multiple stages. These steps or stages are not necessarily executed at the same time, but can be executed at different times. The execution order of these steps or stages is not necessarily sequential, but can be executed alternately or alternately with at least a part of other steps or steps or stages in other steps.
[0115] Based on the same inventive concept, an embodiment of the present application also provides a usage processing device for a mobile air conditioner for implementing the usage processing method of the mobile air conditioner involved above. The solution provided by this device to solve the problem is similar to the solution described in the above method. Therefore, the specific limitations in one or more embodiments of the usage processing device for the mobile air conditioner provided below can refer to the limitations on the usage processing method of the mobile air conditioner in the above text, and will not be repeated here.
[0116] In one embodiment, as Figure 8 shown, a usage processing device 800 for a mobile air conditioner is provided, including: a request response module 801, a parameter determination module 802, and a mobile air conditioner determination module 803, where:
[0117] A request response module 801, configured to obtain a power supply mode and environmental parameters when using the mobile air conditioner in response to a use request for the mobile air conditioner.
[0118] A parameter determination module 802, configured to determine required parameters for using the mobile air conditioner according to the power supply mode and environmental parameters.
[0119] A mobile air conditioner determination module 803, configured to determine a target mobile air conditioner based on the power supply mode and required parameters.
[0120] The above-mentioned mobile air conditioner use processing device, in response to a user's use request for the mobile air conditioner, obtains the power supply mode and environmental parameters when the user uses the mobile air conditioner, determines the required parameters for using the mobile air conditioner according to the power supply mode and environmental parameters, and determines the target mobile air conditioner based on the power supply mode and required parameters. Since the target mobile air conditioner is determined according to the power supply mode actually available to the user and the actual environmental parameters when the user uses the mobile air conditioner, the target mobile air conditioner can better adapt to the user's use requirements, effectively improving the utilization rate of the mobile air conditioner. And performing use processing on the mobile air conditioner can ensure that each mobile air conditioner used by the user is a device that adapts to its actual use requirements, reducing the user's purchase cost and effectively improving the convenience of the user's outdoor life.
[0121] In one embodiment, the request response module is further configured to: in response to a use request for the mobile air conditioner generated by the user scanning a two-dimensional code, obtain the power supply mode and environmental parameters when using the mobile air conditioner; the two-dimensional code is set on the surface of the mobile air conditioner storage bin, and the environmental parameters are the environmental parameters of the environment where the user is located.
[0122] The mobile air conditioner determination module is further configured to determine a matching target mobile air conditioner from the mobile air conditioner storage bin based on the power supply mode and required parameters.
[0123] In one embodiment, the mobile air conditioner use processing device further includes: an unlocking module, configured to, if the user determines to use the target mobile air conditioner, control the opening of the device lock of the target mobile air conditioner based on the target mobile air conditioner.
[0124] In one embodiment, the request response module is further configured to: in response to a use request for the mobile air conditioner generated by the user logging in to the mobile air conditioner use program, determine the use location and power supply mode of the user using the mobile air conditioner based on the use request;
[0125] Obtain the environmental parameters when using the mobile air conditioner based on the use location, and the environmental parameters are the environmental parameters of the use location.
[0126] The mobile air conditioner determination module is further configured to determine the target mobile air conditioner from the mobile air conditioner storage bin at the use location based on the power supply mode and required parameters.
[0127] In one embodiment, the usage processing device of the mobile air conditioner further includes: a predetermined unlocking module, configured to modify the state of the target mobile air conditioner to a predetermined state; and in response to a pickup request for the mobile air conditioner generated by the user scanning a QR code, control the target mobile air conditioner to unlock the device.
[0128] In one embodiment, the parameter determination module is further configured to: generate a corresponding parameter setting interface based on the power supply mode; obtain the set parameters input by the user based on the parameter setting interface; and determine the required parameters for using the mobile air conditioner according to the set parameters and the environmental parameters, where the required parameters correspond to the power supply mode.
[0129] In one embodiment, the power supply mode includes a direct power supply mode, and the required parameter is a first required parameter including the power supply device model.
[0130] The mobile air conditioner determination module is further configured to match the mobile air conditioner device model according to the direct power supply mode and the first required parameter; and determine the target mobile air conditioner based on the mobile air conditioner device model.
[0131] In one embodiment, the power supply mode includes a battery power supply mode, and the required parameter is a second required parameter.
[0132] The mobile air conditioner determination module is further configured to match the mobile air conditioner device model according to the battery power supply mode and the second required parameter; if the user determines that the device model is the target device model, then match the energy storage device corresponding to the target device model according to the second required parameter; if the user determines that the energy storage device is the target energy storage device, then determine the target mobile air conditioner based on the target device model and the target energy storage device.
[0133] In one embodiment, the power supply mode includes a composite power supply mode, and the required parameter is a third required parameter including the power supply device model.
[0134] The mobile air conditioner determination module is further configured to match the mobile air conditioner device model according to the composite power supply mode and the third required parameter; if the user determines that the device model is the target device model, then match the energy storage device corresponding to the target device model according to the third required parameter; if the user determines that the energy storage device is the target energy storage device, then determine the target mobile air conditioner according to the target device model and the target energy storage device.
[0135] In one embodiment, the usage processing device of the mobile air conditioner further includes: a required parameter matching module, configured to match the required parameters with the preset required parameters; if the required parameters do not match the preset required parameters successfully, then generate a prompt message to prompt the user that the setting is abnormal, and return to the parameter determination module to execute the step of determining the required parameters for using the mobile air conditioner according to the power supply mode and the environmental parameters.
[0136] Each module in the above-mentioned usage processing device of the mobile air conditioner can be implemented in whole or in part by software, hardware, or a combination thereof. Each of the above modules can be embedded in the processor of the computer device in hardware form or be independent of it, or can be stored in the memory of the computer device in software form, so that the processor can call and execute the operations corresponding to each of the above modules.
[0137] In one embodiment, a computer device is provided. The computer device can be a usage processing system, and its internal structure diagram can be as Figure 9 shown. The computer device includes a processor, a memory, and a network interface connected through a system bus. Among them, the processor of the computer device is used to provide computing and control capabilities. The memory of the computer device includes a non-volatile storage medium and an internal memory. The non-volatile storage medium stores an operating system, a computer program, and a database. The internal memory provides an environment for the operation of the operating system and the computer program in the non-volatile storage medium. The database of the computer device is used to store data such as power supply modes, environmental parameters, demand parameters, and target mobile air conditioners. The network interface of the computer device is used to communicate with external terminals through a network connection. When the computer program is executed by the processor, it implements a usage processing method for a mobile air conditioner.
[0138] Those skilled in the art can understand that Figure 9 the structure shown in
[0139] is only a block diagram of a part of the structure related to the solution of this application, and does not constitute a limitation on the computer device to which the solution of this application is applied. The specific computer device may include more or fewer components than those shown in the figure, or combine some components, or have different component arrangements.
[0139] In one embodiment, a computer device is provided, including a memory and a processor. A computer program is stored in the memory. When the processor executes the computer program, the following steps are implemented:
[0140] In response to a usage request for a mobile air conditioner, obtain the power supply mode and environmental parameters when using the mobile air conditioner;
[0141] Determine the demand parameters for using the mobile air conditioner according to the power supply mode and environmental parameters;
[0142] Determine the target mobile air conditioner based on the power supply mode and demand parameters.
[0143] In one embodiment, when the processor executes the computer program, the following steps are further implemented:
[0144] In response to a usage request for a mobile air conditioner generated by the user scanning a QR code, obtain the power supply mode and environmental parameters when using the mobile air conditioner; the QR code is set on the surface of the mobile air conditioner storage bin, and the environmental parameter is the environmental parameter of the environment where the user is located;
[0145] Determine a matching target mobile air conditioner from the mobile air conditioner storage bin based on the power supply mode and demand parameters.
[0146] In one embodiment, when the processor executes the computer program, the following steps are further implemented:
[0147] If the user determines to use the target mobile air conditioner, control the target mobile air conditioner to unlock the device based on the target mobile air conditioner.
[0148] In one embodiment, when the processor executes the computer program, the following steps are further implemented:
[0149] In response to a usage request for the mobile air conditioner generated by the user logging in to the mobile air conditioner usage program, determine the usage location and power supply mode of the user using the mobile air conditioner based on the usage request;
[0150] Obtain the environmental parameters when using the mobile air conditioner based on the usage location, and the environmental parameters are the environmental parameters of the usage location;
[0151] Based on the power supply mode and demand parameters, determine the target mobile air conditioner from the mobile air conditioner storage bin at the usage location.
[0152] In one embodiment, when the processor executes the computer program, the following steps are further implemented:
[0153] Modify the status of the target mobile air conditioner to a predetermined status;
[0154] In response to a pick-up request for the mobile air conditioner generated by the user scanning the QR code, control the target mobile air conditioner to unlock the device.
[0155] In one embodiment, when the processor executes the computer program, the following steps are further implemented:
[0156] Generate a corresponding parameter setting interface based on the power supply mode;
[0157] Obtain the setting parameters input by the user based on the parameter setting interface;
[0158] Determine the demand parameters for using the mobile air conditioner according to the setting parameters and the environmental parameters, and the demand parameters correspond to the power supply mode.
[0159] In one embodiment, when the processor executes the computer program, the following steps are further implemented:
[0160] Match the direct power supply mode with the first demand parameter to obtain the device model of the mobile air conditioner;
[0161] Determine the target mobile air conditioner based on the device model of the mobile air conditioner.
[0162] In one embodiment, when the processor executes the computer program, the following steps are further implemented:
[0163] Match the device model of the mobile air conditioner according to the battery power supply mode and the second demand parameter;
[0164] If the user determines that the device model is the target device model, then match the energy storage device corresponding to the target device model according to the second demand parameter;
[0165] If the user determines that the energy storage device is the target energy storage device, then determine the target mobile air conditioner based on the target device model and the target energy storage device.
[0166] In one embodiment, when the processor executes the computer program, the following steps are further implemented:
[0167] Match the device model of the mobile air conditioner according to the composite power supply mode and the third demand parameter;
[0168] If the user determines that the device model is the target device model, then match the energy storage device corresponding to the target device model according to the third demand parameter;
[0169] If the user determines that the energy storage device is the target energy storage device, then determine the target mobile air conditioner according to the target device model and the target energy storage device.
[0170] In one embodiment, when the processor executes the computer program, the following steps are further implemented:
[0171] Match the demand parameter with the preset demand parameter;
[0172] If the demand parameter does not match the preset demand parameter successfully, then generate a prompt message to prompt the user that the setting is abnormal, and return to the step of determining the demand parameter for using the mobile air conditioner according to the power supply mode and the environmental parameter.
[0173] In one embodiment, a computer-readable storage medium is provided, on which a computer program is stored. When the computer program is executed by a processor, the following steps are implemented:
[0174] In response to a usage request for the mobile air conditioner, obtain the power supply mode and environmental parameters when using the mobile air conditioner;
[0175] Determine the demand parameter for using the mobile air conditioner according to the power supply mode and the environmental parameter;
[0176] Determine the target mobile air conditioner based on the power supply mode and the demand parameter.
[0177] In one embodiment, when the computer program is executed by the processor, the following steps are further implemented:
[0178] In response to a usage request for a mobile air conditioner generated by a user scanning a QR code, obtain the power supply mode and environmental parameters when using the mobile air conditioner; the QR code is set on the surface of the mobile air conditioner storage bin, and the environmental parameters are the environmental parameters of the environment where the user is located.
[0179] Based on the power supply mode and demand parameters, determine a matching target mobile air conditioner from the mobile air conditioner storage bin.
[0180] In one embodiment, when the computer program is executed by a processor, the following steps are further implemented:
[0181] If the user determines to use the target mobile air conditioner, then control the target mobile air conditioner to unlock the device based on the target mobile air conditioner.
[0182] In one embodiment, when the computer program is executed by a processor, the following steps are further implemented:
[0183] In response to a usage request for a mobile air conditioner generated by a user logging in to the mobile air conditioner usage program, determine the usage location and power supply mode of the user using the mobile air conditioner based on the usage request;
[0184] Obtain the environmental parameters when using the mobile air conditioner based on the usage location, and the environmental parameters are the environmental parameters of the usage location;
[0185] Based on the power supply mode and demand parameters, determine the target mobile air conditioner from the mobile air conditioner storage bin at the usage location.
[0186] In one embodiment, when the computer program is executed by a processor, the following steps are further implemented:
[0187] Modify the status of the target mobile air conditioner to a predetermined status;
[0188] In response to a pick-up request for a mobile air conditioner generated by a user scanning a QR code, control the target mobile air conditioner to unlock the device. In one embodiment, when the computer program is executed by a processor, the following steps are further implemented:
[0189] In one embodiment, when the computer program is executed by a processor, the following steps are further implemented:
[0190] Generate a corresponding parameter setting interface based on the power supply mode;
[0191] Obtain the setting parameters input by the user based on the parameter setting interface;
[0192] Determine the demand parameters for using the mobile air conditioner according to the setting parameters and the environmental parameters, and the demand parameters correspond to the power supply mode.
[0193] In one embodiment, when the computer program is executed by a processor, the following steps are further implemented:
[0194] Match the device model of the mobile air conditioner according to the direct power supply mode and the first demand parameter;
[0195] Determine the target mobile air conditioner based on the device model of the mobile air conditioner.
[0196] In one embodiment, when the computer program is executed by the processor, the following steps are further implemented:
[0197] Match the device model of the mobile air conditioner according to the battery power supply mode and the second demand parameter;
[0198] If the user determines that the device model is the target device model, then match the energy storage device corresponding to the target device model according to the second demand parameter;
[0199] If the user determines that the energy storage device is the target energy storage device, then determine the target mobile air conditioner based on the target device model and the target energy storage device.
[0200] In one embodiment, when the computer program is executed by the processor, the following steps are further implemented:
[0201] Match the device model of the mobile air conditioner according to the composite power supply mode and the third demand parameter;
[0202] If the user determines that the device model is the target device model, then match the energy storage device corresponding to the target device model according to the third demand parameter;
[0203] If the user determines that the energy storage device is the target energy storage device, then determine the target mobile air conditioner according to the target device model and the target energy storage device.
[0204] In one embodiment, when the computer program is executed by the processor, the following steps are further implemented:
[0205] Match the demand parameter with the preset demand parameter;
[0206] If the demand parameter does not match the preset demand parameter successfully, then generate a prompt message to prompt the user that the setting is abnormal, and return to the step of determining the demand parameter for using the mobile air conditioner according to the power supply mode and the environmental parameter.
[0207] In one embodiment, a computer program product is provided, including a computer program, and when the computer program is executed by the processor, the following steps are implemented:
[0208] In response to a usage request for the mobile air conditioner, obtain the power supply mode and environmental parameters when using the mobile air conditioner;
[0209] Determine the demand parameter for using the mobile air conditioner according to the power supply mode and the environmental parameter;
[0210] Determine the target mobile air conditioner based on the power supply mode and the demand parameter.
[0211] In one embodiment, when the computer program is executed by a processor, the following steps are further implemented:
[0212] In response to a usage request for the mobile air conditioner generated by the user scanning a QR code, obtain the power supply mode and environmental parameters when using the mobile air conditioner; the QR code is set on the surface of the mobile air conditioner storage bin, and the environmental parameters are the environmental parameters of the environment where the user is located;
[0213] Based on the power supply mode and demand parameters, determine a matching target mobile air conditioner from the mobile air conditioner storage bin.
[0214] In one embodiment, when the computer program is executed by a processor, the following steps are further implemented:
[0215] If the user determines to use the target mobile air conditioner, then control the target mobile air conditioner to unlock the device lock based on the target mobile air conditioner.
[0216] In one embodiment, when the computer program is executed by a processor, the following steps are further implemented:
[0217] In response to a usage request for the mobile air conditioner generated by the user logging in to the mobile air conditioner usage program, determine the usage location and power supply mode of the user using the mobile air conditioner based on the usage request;
[0218] Obtain the environmental parameters when using the mobile air conditioner based on the usage location, and the environmental parameters are the environmental parameters of the usage location;
[0219] Based on the power supply mode and demand parameters, determine the target mobile air conditioner from the mobile air conditioner storage bin at the usage location.
[0220] In one embodiment, when the computer program is executed by a processor, the following steps are further implemented:
[0221] Modify the status of the target mobile air conditioner to a predetermined status;
[0222] In response to a pick-up request for the mobile air conditioner generated by the user scanning a QR code, control the target mobile air conditioner to unlock the device lock.
[0223] In one embodiment, when the computer program is executed by a processor, the following steps are further implemented:
[0224] Generate a corresponding parameter setting interface based on the power supply mode;
[0225] Obtain the setting parameters input by the user based on the parameter setting interface;
[0226] Determine the demand parameters for using the mobile air conditioner according to the setting parameters and the environmental parameters, and the demand parameters correspond to the power supply mode.
[0227] In one embodiment, when the computer program is executed by a processor, the following steps are further implemented:
[0228] Match the device model of the mobile air conditioner according to the direct power supply mode and the first demand parameter;
[0229] Determine the target mobile air conditioner based on the device model of the mobile air conditioner.
[0230] In one embodiment, when the computer program is executed by the processor, the following steps are further implemented:
[0231] Match the device model of the mobile air conditioner according to the battery power supply mode and the second demand parameter;
[0232] If the user determines that the device model is the target device model, then match the energy storage device corresponding to the target device model according to the second demand parameter;
[0233] If the user determines that the energy storage device is the target energy storage device, then determine the target mobile air conditioner based on the target device model and the target energy storage device.
[0234] In one embodiment, when the computer program is executed by the processor, the following steps are further implemented:
[0235] Match the device model of the mobile air conditioner according to the composite power supply mode and the third demand parameter;
[0236] If the user determines that the device model is the target device model, then match the energy storage device corresponding to the target device model according to the third demand parameter;
[0237] If the user determines that the energy storage device is the target energy storage device, then determine the target mobile air conditioner according to the target device model and the target energy storage device.
[0238] In one embodiment, when the computer program is executed by the processor, the following steps are further implemented:
[0239] Match the demand parameter with the preset demand parameter;
[0240] If the demand parameter does not match the preset demand parameter successfully, then generate a prompt message to prompt the user that the setting is abnormal, and return to the step of determining the demand parameter for using the mobile air conditioner according to the power supply mode and the environmental parameter.
[0241] It should be noted that the user information (including but not limited to user device information, user personal information, etc.) and data (including but not limited to data for analysis, stored data, displayed data, etc.) involved in this application are all information and data authorized by the user or fully authorized by all parties.
[0242] Those of ordinary skill in the art can understand that all or part of the processes in the methods of the above embodiments can be completed by instructing relevant hardware through a computer program. The computer program can be stored in a non-volatile computer-readable storage medium. When the computer program is executed, it can include the processes of the embodiments of the above methods. Among them, any reference to a memory, database, or other medium used in the embodiments provided in the present application can include at least one of non-volatile and volatile memories. Non-volatile memory can include read-only memory (ROM), magnetic tape, floppy disk, flash memory, optical memory, high-density embedded non-volatile memory, resistive random access memory (ReRAM), magnetoresistive random access memory (MRAM), ferroelectric random access memory (FRAM), phase change memory (PCM), graphene memory, etc. Volatile memory can include random access memory (RAM) or external cache memory, etc. By way of illustration and not limitation, RAM can be in various forms, such as static random access memory (SRAM) or dynamic random access memory (DRAM), etc. The databases involved in the embodiments provided in the present application can include at least one of relational databases and non-relational databases. Non-relational databases can include distributed databases based on blockchain, etc., without limitation. The processors involved in the embodiments provided in the present application can be general-purpose processors, central processing units, graphics processing units, digital signal processors, programmable logic devices, data processing logics based on quantum computing, etc., without limitation.
[0243] 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.
[0244] The above-described embodiments merely represent several implementation manners of the present application. The description is relatively specific and detailed, but it should not be construed as a limitation on the patent scope of the present application. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present application, several modifications and improvements can still be made, and these all belong to the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the appended claims.
Claims
1. A method for using and processing a mobile air conditioner, characterized in that, The method includes: In response to a usage request for the mobile air conditioner, obtaining the power supply mode and environmental parameters when using the mobile air conditioner; Generating a corresponding parameter setting interface based on the power supply mode; Obtaining the set parameters input by the user based on the parameter setting interface; Determining the required parameters for using the mobile air conditioner according to the set parameters and the environmental parameters, where the required parameters correspond to the power supply mode; If the power supply mode is the direct power supply mode, the required parameter is the first required parameter including the power supply device model; Matching the device model of the mobile air conditioner according to the direct power supply mode and the first required parameter; Determining the target mobile air conditioner based on the device model of the mobile air conditioner; If the power supply mode is the battery power supply mode, the required parameter is the second required parameter; Matching the device model of the mobile air conditioner according to the battery power supply mode and the second required parameter; If the user determines that the device model is the target device model, then matching the energy storage device corresponding to the target device model according to the second required parameter; If the user determines that the energy storage device is the target energy storage device, then determining the target mobile air conditioner based on the target device model and the target energy storage device; If the power supply mode is the composite power supply mode, the required parameter is the third required parameter including the power supply device model; Matching the device model of the mobile air conditioner according to the composite power supply mode and the third required parameter; If the user determines that the device model is the target device model, then matching the energy storage device corresponding to the target device model according to the third required parameter; If the user determines that the energy storage device is the target energy storage device, then determining the target mobile air conditioner according to the target device model and the target energy storage device.
2. The method according to claim 1, wherein The step of, in response to a usage request for the mobile air conditioner, obtaining the power supply mode and environmental parameters when using the mobile air conditioner includes: In response to a usage request for the mobile air conditioner generated by the user scanning a QR code, obtaining the power supply mode and environmental parameters when using the mobile air conditioner; the QR code is set on the surface of the mobile air conditioner storage bin, and the environmental parameter is the environmental parameter of the environment where the user is located; The step of determining the target mobile air conditioner based on the power supply mode and the required parameters includes: Determining the matching target mobile air conditioner from the mobile air conditioner storage bin based on the power supply mode and the required parameters.
3. The method according to claim 2, wherein The method further includes: If the user determines to use the target mobile air conditioner, then controlling the target mobile air conditioner to unlock the device lock based on the target mobile air conditioner.
4. The method according to claim 1, wherein The step of, in response to a usage request for the mobile air conditioner, obtaining the power supply mode and environmental parameters when using the mobile air conditioner includes: In response to a usage request for the mobile air conditioner generated by the user logging in to the mobile air conditioner usage program, determining the usage location and power supply mode of the user using the mobile air conditioner based on the usage request; Obtaining the environmental parameters when using the mobile air conditioner based on the usage location, where the environmental parameter is the environmental parameter of the usage location; The step of determining the target mobile air conditioner based on the power supply mode and the required parameters includes: Based on the power supply mode and the demand parameters, determine a target mobile air conditioner from the mobile air conditioner storage bin at the usage location.
5. The method according to claim 4, characterized in that, The method further includes: Modify the status of the target mobile air conditioner to a predetermined status; In response to a pick-up request for the mobile air conditioner generated by the user scanning a QR code, control the target mobile air conditioner to unlock the device.
6. The method according to any one of claims 1 to 5, characterized in that After the step of determining the demand parameters for using the mobile air conditioner according to the power supply mode and the environmental parameters, the method further includes: Match the demand parameters with preset demand parameters; If the demand parameters do not match the preset demand parameters successfully, generate a prompt message to prompt the user that the setting is abnormal, and return to the step of determining the demand parameters for using the mobile air conditioner according to the power supply mode and the environmental parameters.
7. An operating processing device for a mobile air conditioner, characterized in that, The device includes: A request response module, configured to obtain the power supply mode and environmental parameters when using the mobile air conditioner in response to a usage request for the mobile air conditioner; A parameter determination module, configured to generate a corresponding parameter setting interface based on the power supply mode; obtain the setting parameters input by the user based on the parameter setting interface; determine the demand parameters for using the mobile air conditioner according to the setting parameters and the environmental parameters, where the demand parameters correspond to the power supply mode; A mobile air conditioner determination module, configured to if the power supply mode is a direct power supply mode, the demand parameters are the first demand parameters including the power supply device model; match the device model of the mobile air conditioner according to the direct power supply mode and the first demand parameters; determine the target mobile air conditioner based on the device model of the mobile air conditioner; if the power supply mode is a battery power supply mode, the demand parameters are the second demand parameters; match the device model of the mobile air conditioner according to the battery power supply mode and the second demand parameters; if the user determines that the device model is the target device model, then match the energy storage device corresponding to the target device model according to the second demand parameters; if the user determines that the energy storage device is the target energy storage device, then determine the target mobile air conditioner based on the target device model and the target energy storage device; if the power supply mode is a composite power supply mode, the demand parameters are the third demand parameters including the power supply device model; match the device model of the mobile air conditioner according to the composite power supply mode and the third demand parameters; if the user determines that the device model is the target device model, then match the energy storage device corresponding to the target device model according to the third demand parameters; if the user determines that the energy storage device is the target energy storage device, then determine the target mobile air conditioner according to the target device model and the target energy storage device.
8. A computer device, comprising a memory and a processor, the memory storing a computer program, characterized in that, When the processor executes the computer program, the steps of the method according to any one of claims 1 to 6 are implemented.
9. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by the processor, the steps of the method according to any one of claims 1 to 6 are implemented.
10. A computer program product, comprising a computer program, characterized in that, When the computer program is executed by the processor, the steps of the method according to any one of claims 1 to 6 are implemented.
Citation Information
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