Air conditioner operating parameter setting method, electronic device, and readable storage medium
Patent Information
- Application Number
- CN202510316057.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-17
- Publication Date
- 2026-09-18
AI Technical Summary
[0003]目前,大多数用户都是通过开启节能模式来节省空调器的耗电量,但是,相关技术中大多数空调器自带的节能模式都是使用固定的逻辑,根据空调器自带的环境传感器数据自动调节设置参数,但是固定的调节逻辑是基于实验室数据推导而来,无法覆盖复杂的用户场景,使得空调器的环境传感器感知能力是有限的,难以感知所有影响空调耗电量的因素,因此难以实现对所有用户都能达到最佳的节能效果;部分厂家会基于云端收集到空调器的运行数据,通过大数据和人工智能技术分析出空调在不同情况下最省电的运行参数,然后将这些参数作为节能模式向用户推荐,但缺乏考虑空调器所在空间大小、房屋保温情况这些因素的影响,使得推荐出来的节能模式的最省电的运行参数的适用性低且参考价值低,同时也无法保证不同用户以推荐的最省电的运行参数运行的节能效果
[0009] The method for setting air conditioner operating parameters according to embodiments of the present invention has at least one of the following advantages or beneficial effects: In response to a touch operation on the power saving comparison control in the air conditioner control application interface, an air conditioner selection interface is entered, and at least one air conditioner selection item is displayed in the air conditioner selection interface. The user can select the target air conditioner for power saving comparison by clicking or touching any one or more air conditioner selection items. In response to selecting the target air conditioner through at least one air conditioner selection item, the air conditioner power saving comparison interface is displayed. The user can intuitively understand the power saving comparison results of different users' air conditioners through the power saving ranking displayed on the air conditioner power saving comparison interface, and clearly know the target operating parameters of the air conditioner ranked first in the power saving ranking, thus improving the visualization of the target operating parameters of the air conditioner ranked first in the power saving ranking. In addition, the user can select and set the target operating parameters of the air conditioner that ranks first according to the actual situation to optimize the air conditioner's operating parameters, thereby improving the energy saving effect of the target air conditioner.
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Figure CN122774701A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of air conditioner technology, and in particular to a method for setting air conditioner operating parameters, an electronic device, and a readable storage medium. Background Technology
[0002] The power consumption performance of an air conditioner is one of the factors that users use to evaluate its quality. The power consumption of an air conditioner is affected by a variety of factors, including equipment performance, parameter settings, local environment, size of the space where the air conditioner is located, and the insulation of the house.
[0003] Currently, most users save on air conditioner power consumption by activating energy-saving modes. However, most air conditioners' built-in energy-saving modes use fixed logic, automatically adjusting settings based on data from the air conditioner's built-in environmental sensors. This fixed logic, derived from laboratory data, cannot cover complex user scenarios, limiting the sensing capabilities of the air conditioner's environmental sensors and making it difficult to detect all factors affecting power consumption. Therefore, it's difficult to achieve optimal energy-saving results for all users. Some manufacturers collect air conditioner operating data from the cloud and use big data and artificial intelligence to analyze the most energy-efficient operating parameters under different conditions, then recommend these parameters as energy-saving modes to users. However, this approach lacks consideration of factors such as the size of the space where the air conditioner is located and the insulation of the house, resulting in low applicability and reference value for the recommended energy-saving parameters. Furthermore, it cannot guarantee the energy-saving effect for different users operating at the recommended parameters. Summary of the Invention
[0004] The purpose of this invention is to at least solve one of the technical problems existing in the prior art, and to provide a method for setting air conditioner operating parameters, an electronic device and a readable storage medium, which is beneficial to optimizing the operating parameters of the air conditioner and improving the energy-saving effect of the air conditioner.
[0005] In a first aspect, embodiments of the present invention provide a method for setting operating parameters of an air conditioner, the method comprising:
[0006] In response to a touch operation on the power saving comparison control in the air conditioning control application interface, an air conditioner selection interface is displayed, which displays at least one air conditioner selection item for selecting the air conditioner to be compared for power saving.
[0007] In response to the selection of a target air conditioner through the at least one air conditioner selection option, an air conditioner power saving comparison interface is displayed. The air conditioner power saving comparison interface displays a power saving ranking list and the target operating parameters of the air conditioner ranked first in the power saving ranking list. The power saving ranking list is a ranking list with the target air conditioner as the comparison benchmark.
[0008] In response to the selection of the target operating parameters, the operating parameters of the target air conditioner are set to the target operating parameters.
[0009] The method for setting air conditioner operating parameters according to embodiments of the present invention has at least one of the following advantages or beneficial effects: In response to a touch operation on the power saving comparison control in the air conditioner control application interface, an air conditioner selection interface is entered, and at least one air conditioner selection item is displayed in the air conditioner selection interface. The user can select the target air conditioner for power saving comparison by clicking or touching any one or more air conditioner selection items. In response to selecting the target air conditioner through at least one air conditioner selection item, the air conditioner power saving comparison interface is displayed. The user can intuitively understand the power saving comparison results of different users' air conditioners through the power saving ranking displayed on the air conditioner power saving comparison interface, and clearly know the target operating parameters of the air conditioner ranked first in the power saving ranking, thus improving the visualization of the target operating parameters of the air conditioner ranked first in the power saving ranking. In addition, the user can select and set the target operating parameters of the air conditioner that ranks first according to the actual situation to optimize the air conditioner's operating parameters, thereby improving the energy saving effect of the target air conditioner.
[0010] In some embodiments of the present invention, the air conditioning control application interface also displays calendar information;
[0011] Before displaying the air conditioner selection interface in response to a touch operation on the power saving comparison control in the air conditioner control application interface, the method further includes:
[0012] In response to the selection of a target date in the calendar information, the power saving comparison control is displayed in the air conditioning control application interface;
[0013] Alternatively, in response to the selection of a target date in the calendar information, the power saving comparison control displayed in the air conditioning control application interface is set to a touch-sensitive state.
[0014] In some embodiments of the present invention, the air conditioner selection option includes at least one space selection sub-option, which is used to characterize the installation location of the air conditioner;
[0015] The response to selecting and determining a target air conditioner through the at least one air conditioner selection option, displaying an air conditioner energy saving comparison interface, includes:
[0016] In response to a selection operation of a target selection item in the at least one air conditioner selection item, the target selection item is selected and highlighted, and the at least one space selection sub-item in the target selection item is set to a touch-sensitive state;
[0017] In response to the selection and determination operation of the target selection sub-item in the at least one space selection sub-item, the air conditioner corresponding to the installation location represented by the target selection sub-item is determined as the target air conditioner, and the air conditioner power saving comparison interface is displayed.
[0018] In some embodiments of the present invention, the step of determining the air conditioner corresponding to the installation location represented by the target selection sub-item in the at least one space selection sub-item, and displaying the air conditioner power saving comparison interface, in response to the selection and determination operation of the target selection sub-item, includes:
[0019] In response to the selection operation of the target selection sub-item in the at least one space selection sub-item, the air conditioner corresponding to the installation location represented by the target selection sub-item is determined as the target air conditioner, and a confirmation selection control is displayed in the air conditioner selection interface;
[0020] In response to a touch operation on the confirmation selection control, an air conditioner energy saving comparison interface is displayed.
[0021] In some embodiments of the present invention, the step of determining the air conditioner corresponding to the installation location represented by the target selection sub-item in the at least one space selection sub-item, and displaying the air conditioner power saving comparison interface, in response to the selection and determination operation of the target selection sub-item, includes:
[0022] In response to the selection operation of the target selection sub-item in the at least one space selection sub-item, the air conditioner corresponding to the installation location represented by the target selection sub-item is determined as the target air conditioner, and the confirmation selection control displayed in the air conditioner selection interface is set to a touch-sensitive state.
[0023] In response to a touch operation on the confirmation selection control, an air conditioner energy saving comparison interface is displayed.
[0024] In some embodiments of the present invention, the air conditioner selection option further includes a floor plan display area, which displays a floor plan corresponding to the installation location represented by the space selection sub-item;
[0025] After determining the air conditioner corresponding to the installation location represented by the target selection sub-item as the target air conditioner, the method further includes:
[0026] The installation location represented by the target selection sub-item is highlighted in the floor plan.
[0027] In some embodiments of the present invention, displaying the air conditioner selection interface in response to a touch operation on a power-saving comparison control in an air conditioner control application interface includes:
[0028] In response to a touch operation on the power saving comparison control in the air conditioning control application interface, an air conditioner selection interface with a cell selection control is displayed.
[0029] In response to selecting a target cell via the cell selection control, at least one air conditioner selection item is displayed in the air conditioner selection interface.
[0030] In some embodiments of the present invention, the air conditioner selection options also include a floor plan display area;
[0031] The step of displaying at least one air conditioner selection item in the air conditioner selection interface in response to selecting a target cell via the cell selection control includes:
[0032] In response to selecting a target community through the community selection control, at least one air conditioner selection item is displayed in the air conditioner selection interface, and the target floor plan corresponding to the target community is displayed in the floor plan display area of each air conditioner selection item, wherein the target floor plan displayed in different air conditioner selection items is different.
[0033] In some embodiments of the present invention, the step of setting the operating parameters of the target air conditioner to the target operating parameters in response to the selection of the target operating parameters includes:
[0034] In response to the selection and confirmation operation of the target operating parameters, the air conditioning control application interface is returned and displayed, and the target operating parameter card is displayed in the air conditioning control application interface, wherein the target operating parameter card displays the target operating parameters and the operation execution control;
[0035] In response to a touch operation on the operation execution control in the target operation parameter card, the operation parameters of the target air conditioner are set to the target operation parameters.
[0036] Secondly, embodiments of the present invention also provide an electronic device, including a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor executes the program to implement the method for setting air conditioner operating parameters as described in the first aspect of the technical solution above.
[0037] Thirdly, embodiments of the present invention also provide a computer-readable storage medium storing computer-executable instructions for causing an electronic device to perform the method for setting air conditioner operating parameters as described in the first aspect of the technical solution above.
[0038] Fourthly, embodiments of the present invention also provide a computer program product, including a computer program or computer instructions, wherein the computer program or computer instructions are stored in a computer-readable storage medium, a processor of an electronic device reads the computer program or computer instructions from the computer-readable storage medium, and the processor executes the computer program or computer instructions, causing the electronic device to perform the method for setting air conditioner operating parameters as described in the first aspect of the technical solution above.
[0039] Other features and advantages of the invention will be set forth in the description which follows, and will be apparent in part from the description, or may be learned by practicing the invention. The objects and other advantages of the invention may be realized and obtained by means of the structures particularly pointed out in the description, claims, and drawings. Attached Figure Description
[0040] The accompanying drawings are provided to further understand the technical solutions of the present invention and constitute a part of the specification. They are used together with the embodiments of the present invention to explain the technical solutions of the present invention, and do not constitute a limitation on the technical solutions of the present invention.
[0041] The present invention will be further described below with reference to the accompanying drawings and embodiments;
[0042] Figure 1 This is a flowchart of a method for setting air conditioner operating parameters according to an embodiment of the present invention;
[0043] Figure 2 This is a schematic diagram of an air conditioner power saving comparison interface provided in an embodiment of the present invention;
[0044] Figure 3 This is a flowchart of a method for setting air conditioner operating parameters according to another embodiment of the present invention;
[0045] Figure 4 This is a schematic diagram of an air conditioner control application interface provided by an embodiment of the present invention, which displays the date and the corresponding power consumption of the air conditioner on different dates;
[0046] Figure 5 This is a flowchart of a method for displaying an air conditioner power saving comparison interface provided by an embodiment of the present invention;
[0047] Figure 6This is a flowchart of a method provided by an embodiment of the present invention for determining the air conditioner corresponding to the installation location represented by the target selection sub-item as the target air conditioner and displaying an air conditioner power saving comparison interface;
[0048] Figure 7 This is a flowchart of a method for displaying an air conditioner power saving comparison interface according to another embodiment of the present invention;
[0049] Figure 8 This is a schematic diagram of an air conditioner selection interface provided in another embodiment of the present invention;
[0050] Figure 9 This is a flowchart of a method for displaying an air conditioner selection interface in response to a touch operation of a power saving comparison control in an air conditioner control application interface, provided by an embodiment of the present invention.
[0051] Figure 10 This is a flowchart of a method for setting the operating parameters of a target air conditioner to target operating parameters in response to the selection of target operating parameters, according to an embodiment of the present invention.
[0052] Figure 11 This is a schematic diagram of an air conditioning control application interface provided in another embodiment of the present invention;
[0053] Figure 12 This is a schematic diagram of the structure of an electronic device provided in an embodiment of the present invention. Detailed Implementation
[0054] This section will describe in detail specific embodiments of the present invention. Preferred embodiments of the present invention are shown in the accompanying drawings. The purpose of the drawings is to supplement the textual description with graphics, so that people can intuitively and vividly understand each technical feature and overall technical solution of the present invention, but they should not be construed as limiting the scope of protection of the present invention.
[0055] In the description of this invention, "several" means one or more, "multiple" means two or more, "greater than," "less than," "exceeding," etc. are understood to exclude the number itself, while "above," "below," "within," etc. are understood to include the number itself. "Any one" refers to one or more, and "at least one of the following" and similar expressions refer to any combination of these items, including any combination of single or multiple items. If "first" or "second" is used in the description, it is only for the purpose of distinguishing technical features and should not be construed as indicating or implying relative importance or implicitly indicating the number of indicated technical features or the order of the indicated technical features.
[0056] It should be noted that the terms "setting," "installing," and "connecting" in the embodiments of this invention should be interpreted broadly. Those skilled in the art can reasonably determine the specific meaning of the above terms in the embodiments of this invention in conjunction with the specific content of the technical solution. For example, the term "connection" can be a mechanical connection, an electrical connection, or a connection that allows for mutual communication; it can be a direct connection or an indirect connection through an intermediate medium.
[0057] It should be noted that the technical features involved in the various embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other.
[0058] Energy consumption is one of the factors users consider when evaluating the quality of an air conditioner. An air conditioner's energy consumption is influenced by a variety of factors, including equipment performance, parameter settings, local environmental conditions, the size of the space where the air conditioner is located, and the insulation of the room. Many users, when comparing their air conditioner's energy consumption with other users of the same model, easily overlook these influencing factors, thus mistakenly believing their air conditioner consumes more energy than others, leading to dissatisfaction. When users feel their air conditioner consumes more energy than others, they generally try to save energy by turning on energy-saving functions, but they don't know how to adjust the air conditioner's operating parameters to reduce power consumption, often failing to achieve the energy-saving effects of other users' air conditioners with lower energy consumption.
[0059] Currently, most users save on air conditioner power consumption by activating energy-saving modes. However, most air conditioners' built-in energy-saving modes use fixed logic, automatically adjusting settings based on data from the air conditioner's built-in environmental sensors. This fixed logic, derived from laboratory data, cannot cover complex user scenarios, limiting the sensing capabilities of the air conditioner's environmental sensors and making it difficult to detect all factors affecting power consumption. Therefore, it's difficult to achieve optimal energy-saving results for all users. Some manufacturers collect air conditioner operating data from the cloud and use big data and artificial intelligence to analyze the most energy-efficient operating parameters under different conditions, then recommend these parameters as energy-saving modes to users. However, this approach lacks consideration of factors such as the size of the space where the air conditioner is located and the insulation of the house, resulting in low applicability and reference value for the recommended energy-saving parameters. Furthermore, it cannot guarantee the energy-saving effect for different users operating at the recommended parameters.
[0060] Based on this, embodiments of the present invention provide a method for setting air conditioner operating parameters, an electronic device, and a readable storage medium, which is beneficial for optimizing the operating parameters of the air conditioner and improving its energy-saving effect.
[0061] Reference Figure 1 As shown, Figure 1This is a flowchart of a method for setting air conditioner operating parameters according to an embodiment of the present invention. The method for setting air conditioner operating parameters includes, but is not limited to, steps S100 to S300. Specifically,
[0062] Step S100: In response to a touch operation on the power saving comparison control in the air conditioning control application interface, an air conditioner selection interface is displayed. The air conditioner selection interface displays at least one air conditioner selection item, which is used to select the air conditioner to be compared for power saving.
[0063] Step S200: In response to the selection and determination of a target air conditioner through at least one air conditioner selection option, an air conditioner power saving comparison interface is displayed. The air conditioner power saving comparison interface displays a power saving ranking list and the target operating parameters of the air conditioner ranked first in the power saving ranking list. The power saving ranking list is a ranking list with the target air conditioner as the comparison benchmark.
[0064] Step S300: In response to the selection of target operating parameters, perform an operation to set the operating parameters of the target air conditioner to the target operating parameters.
[0065] In some embodiments of the present invention, the air conditioner is configured with a corresponding air conditioner control application. The air conditioner control application displays a power-saving comparison control. The method for setting the air conditioner's operating parameters includes: when a user touches the power-saving comparison control in the air conditioner control application interface, in response to the touch operation of the power-saving comparison control in the air conditioner control application interface, an air conditioner selection interface is displayed. The displayed air conditioner selection interface shows at least one air conditioner selection item, which is used to select the air conditioner to be compared for power saving. The user can determine which air conditioners will participate in the subsequent power saving comparison by clicking or touching any one or more air conditioner selection items. In response to selecting a target air conditioner through at least one air conditioner selection item, the air conditioner power-saving comparison interface is displayed, referring to... Figure 2 As shown, Figure 2This is a schematic diagram of an air conditioner power saving comparison interface provided in an embodiment of the present invention. This interface displays a power saving ranking of air conditioners from different users, and shows the target operating parameters of the top-ranked air conditioner. This improves the visualization of the target operating parameters of the top-ranked air conditioner, allowing users to optimize the air conditioner's operation based on the power saving comparison results to achieve better energy-saving effects. Furthermore, the target operating parameters of the top-ranked air conditioner are highly applicable and have significant reference value, providing users with a reference for setting the air conditioner's power saving operating parameters. If a user is interested in the target operating parameters of the top-ranked air conditioner, they can refer to these parameters to further select and execute operations on the air conditioner. In response to the selection and execution of target operating parameters, the operating parameters of the target air conditioner are set to the target operating parameters of the top-ranked air conditioner.
[0066] By setting the air conditioner operating parameters as described above, users can more intuitively understand the energy savings of different air conditioners through the energy-saving ranking displayed on the air conditioner energy-saving comparison interface. They can also clearly see the target operating parameters of the air conditioner ranked first in the energy-saving ranking. Users can set the air conditioner to execute the target operating parameters of the first-ranked air conditioner according to the actual situation, so as to optimize the air conditioner's operating parameters, thereby improving the energy-saving effect of the target air conditioner, increasing users' enthusiasm for using energy-saving functions, and enhancing users' sense of participation and environmental awareness.
[0067] It should be noted that the power saving ranking in this embodiment of the invention is a ranking based on the target air conditioner, which improves the applicability and reference value of the power saving ranking for the target air conditioner, so that when the target air conditioner performs the target operating parameters of the air conditioner ranked first in the power saving ranking, the target air conditioner can have a better energy saving effect.
[0068] Reference Figure 3 As shown, Figure 3 This is a flowchart of a method for setting air conditioner operating parameters according to another embodiment of the present invention. The method for setting air conditioner operating parameters includes, but is not limited to, steps S10 to S100. Specifically,
[0069] Step S10: In response to the target date being selected in the calendar information, display the power saving comparison control in the air conditioning control application interface;
[0070] Step S20: In response to the target date being selected in the calendar information, the power saving comparison control displayed in the air conditioning control application interface is set to a touch-sensitive state.
[0071] Step S100: In response to a touch operation on the power saving comparison control in the air conditioning control application interface, the air conditioner selection interface is displayed.
[0072] In some embodiments of the present invention, the air conditioning control application further includes a calendar module, which is used to include, but is not limited to, recording the power consumption of the air conditioner, recording the power saving of the air conditioner, and setting the operating mode of the air conditioner for a specific date. The air conditioning control application interface also displays calendar information.
[0073] In one embodiment, refer to Figure 4 As shown, Figure 4 This is a schematic diagram of an air conditioner control application interface displaying date information and corresponding air conditioner power consumption on different dates, provided by an embodiment of the present invention. The calendar information in the air conditioner control application interface displays date information and corresponding air conditioner power consumption on different dates. Air conditioner power consumption can be displayed in text or numerical form. When a user wants to view a power-saving ranking of air conditioners for a specific day and the target operating parameters of the top-ranked air conditioner in the power-saving ranking, they click on a date in the calendar information, i.e., the target date. In response to the target date being selected in the calendar information, a power-saving comparison control is displayed in the air conditioner control application interface. By clicking on the power-saving comparison control displayed in the air conditioner control application interface, in response to the touch operation of the power-saving comparison control, an air conditioner selection interface is displayed. At this time, the air conditioner selection interface displays at least one air conditioner selection item, which is used to select the air conditioner to be compared for power saving. The user can determine which air conditioners will participate in the subsequent power-saving comparison by clicking or touching any one or more air conditioner selection items, thereby determining the target air conditioner for power saving comparison.
[0074] In another embodiment, the air conditioning control application interface also displays a power saving comparison control, which is initially in a non-touchable state. When the user clicks on a day in the calendar information, i.e., the target date, in response to the target date being selected in the calendar information, the power saving comparison control displayed in the air conditioning control application interface is set to a touchable state. In response to the touch operation on the power saving comparison control in the air conditioning control application interface, an air conditioner selection interface is displayed. The air conditioner selection interface displays at least one air conditioner selection item. The user can determine which air conditioners will participate in the subsequent power saving comparison by clicking or touching any one or more air conditioner selection items, thereby determining the target air conditioner for the power saving comparison.
[0075] By displaying a power-saving comparison control in the air conditioning control application interface, users can access the air conditioner selection interface by clicking the control. This means that users can further operate the power-saving comparison control by clicking or touching it. The control is set to be untouchable until a target date in the calendar information is selected, thus preventing accidental touches. Only after the target date is selected is the control made touchable, and in response to touch on the control in the air conditioning control application interface, the air conditioner selection interface is displayed, allowing the user to select and set the target air conditioner.
[0076] In the two embodiments described above, after the user clicks to confirm the target date in the calendar information, in response to the target date being selected in the calendar information, an air conditioner selection interface is displayed, allowing the user to select the target air conditioner to participate in the energy saving comparison. The user can obtain a ranking list with the target air conditioner as the comparison benchmark, which improves the applicability and reference value of the energy saving ranking list for the target air conditioner. This allows the user to optimize the operation of the target air conditioner based on the results of the energy saving comparison to achieve better energy saving effect.
[0077] It should be noted that, in some embodiments, the air conditioner selection interface is displayed in response to a touch operation on the power saving comparison control in the air conditioner control application interface. The touch operation can be a simple click by the user, a long press by the user, or a sliding of the user along a preset path in the power saving comparison control. The type of touch operation can be set according to the actual situation, and the embodiments of the present invention do not limit the type of touch operation.
[0078] Reference Figure 5 As shown, Figure 5 This is a flowchart of a method for displaying an air conditioner power saving comparison interface according to an embodiment of the present invention. The method for displaying the air conditioner power saving comparison interface includes, but is not limited to, steps S210 to S220. Specifically,
[0079] Step S210: In response to the selection operation of a target selection item in at least one air conditioner selection item, the target selection item is selected and highlighted, and at least one space selection sub-item in the target selection item is set to a touchable state;
[0080] Step S220: In response to the selection and determination operation of the target selection sub-item in at least one space selection sub-item, the air conditioner corresponding to the installation location represented by the target selection sub-item is determined as the target air conditioner, and the air conditioner power saving comparison interface is displayed.
[0081] In some embodiments of the present invention, reference is made to... Figure 8 As shown, Figure 8This is a schematic diagram of an air conditioner selection interface provided in another embodiment of the present invention. The air conditioner selection options include at least one space selection sub-item, which is used to represent the installation location of the air conditioner. For example, the space selection sub-item includes, but is not limited to, living room, master bedroom, secondary bedroom, study, etc., respectively representing that the air conditioner is installed in the living room, master bedroom, secondary bedroom, study, etc. The type of space selection sub-item can be set according to the actual situation, and the embodiments of the present invention do not limit the type of space selection sub-item.
[0082] The method for displaying the air conditioner energy-saving comparison interface in response to the selection of a target air conditioner through at least one air conditioner selection option includes: when the user selects at least one air conditioner selection option in the air conditioner selection interface to determine the target air conditioner, in response to the selection operation of the target selection option among the at least one air conditioner selection option, the target selection option is selected and highlighted; for example, the target setting option is highlighted or a check mark is added, making the target setting option stand out in the air conditioner selection interface, improving the visibility of the target setting option selected by the user, so that the user can clearly see which air conditioner selection option is currently selected, making it easier for the user to confirm the accuracy of the selected target setting option, thereby improving the accuracy of the method for setting the air conditioner operating parameters. Furthermore, at least one space selection sub-item among the target selection options is made touch-sensitive, facilitating the user to further select the specific installation location of the target air conditioner. When the user performs a selection confirmation operation on the target selection sub-item among the at least one space selection sub-item, in response to the selection confirmation operation of the target selection sub-item among the at least one space selection sub-item, the air conditioner corresponding to the installation location represented by the target selection sub-item is determined as the target air conditioner. Then, the air conditioner power saving comparison interface is displayed. The air conditioner power saving comparison interface will display the power saving ranking based on the target air conditioner, as well as the target operating parameters of the air conditioner ranked first.
[0083] Reference Figure 8As shown, in one embodiment, the air conditioner selection options in the air conditioner control application interface include, but are not limited to, a first floor plan selection option, a second floor plan selection option, and a third floor plan selection option. Each floor plan selection option has a corresponding space selection sub-item, which includes, but is not limited to, living room, master bedroom, secondary bedroom, and study. Assuming all spaces in a user's home have air conditioners installed, the user first clicks on the first floor plan selection in the air conditioner selection section of the air conditioner control application interface. In response to this selection, the first floor plan selection is selected and highlighted, and at least one space selection sub-item within it is made touch-sensitive. The user then clicks on the space selection sub-item containing the air conditioner for which energy saving comparison is desired, such as the living room. This space selection is then selected and highlighted. In response to this confirmation, the living room air conditioner is designated as the target air conditioner. The user then enters the air conditioner energy saving comparison interface, which displays a ranking of energy-saving performance based on the living room air conditioner, as well as the target operating parameters of the top-ranked air conditioner in the ranking.
[0084] By setting the air conditioner operating parameters as described above, users can more accurately select the specific air conditioner they want to compare energy savings in by choosing the floor plan option corresponding to their house type in the air conditioner selection options and clicking the space selection sub-option where energy saving comparison is needed. This makes the operation more flexible and in line with actual usage scenarios. It also enhances the applicability and reference value of the energy saving ranking list generated based on the floor plan selection options and space selection sub-options selected by the user. As a result, users can optimize the operating status of the target air conditioner based on the energy saving comparison results to achieve better energy-saving effects.
[0085] Reference Figure 6 As shown, Figure 6 This is a flowchart of a method for determining the air conditioner corresponding to the installation location represented by the target selection sub-item as the target air conditioner and displaying an air conditioner power saving comparison interface, provided by an embodiment of the present invention. The method includes, but is not limited to, steps S110 to S120. Specifically,
[0086] Step S101: In response to the selection operation of the target selection sub-item in at least one space selection sub-item, the air conditioner corresponding to the installation location represented by the target selection sub-item is determined as the target air conditioner, and a confirmation selection control is displayed in the air conditioner selection interface;
[0087] Step S102: In response to a touch operation on the confirmation selection control, display the air conditioner power saving comparison interface.
[0088] In some embodiments of the present invention, the air conditioner selection interface also displays a confirmation selection control. When a user selects a target selection sub-item from at least one space selection sub-item, in response to the selection operation of the target selection sub-item, the air conditioner corresponding to the installation location represented by the target selection sub-item is determined as the target air conditioner. Simultaneously, a confirmation selection control is displayed on the air conditioner selection interface, allowing the user to confirm whether their selection is correct, thereby improving the accuracy of selecting the target air conditioner. When the user confirms that the selected target air conditioner is correct, clicking or touching the confirmation selection control, in response to the touch operation of the confirmation selection control, displays an air conditioner energy-saving comparison interface. This interface displays an energy-saving ranking based on the target air conditioner, as well as information such as the target operating parameters of the air conditioner ranked first.
[0089] In one embodiment, the target selection sub-item is the living room. When the user selects the living room as the target selection sub-item in the space selection sub-item selection, in response to the selection operation of the living room as the target selection sub-item, the air conditioner corresponding to the installation location in the living room is identified as the target air conditioner, and the living room as the target selection sub-item is highlighted. A confirmation control, such as a button with the word "Confirm," is displayed in the air conditioner selection interface. After the user confirms that the target selection sub-item is correct, clicking the confirmation control will take them to the air conditioner energy saving comparison interface, displaying relevant energy saving rankings and target operating parameters. By adding a confirmation control and displaying it in the air conditioner selection interface to prompt the user to confirm whether the target air conditioner selection is correct, the user has the opportunity to confirm their selection before entering the energy saving comparison interface, thereby reducing incorrect selections caused by accidental operation. This provides users with clearer feedback during the operation, enhances the reliability of the operation and the user's trust, and improves the overall user experience.
[0090] Reference Figure 7 As shown, Figure 7 This is a flowchart of a method for displaying an air conditioner power saving comparison interface according to another embodiment of the present invention. The method for displaying the air conditioner power saving comparison interface includes, but is not limited to, steps S221 to S222. Specifically,
[0091] Step S221: In response to the selection operation of the target selection sub-item in at least one space selection sub-item, the air conditioner corresponding to the installation location represented by the target selection sub-item is determined as the target air conditioner, and the confirmation selection control displayed in the air conditioner selection interface is set to a touch-sensitive state.
[0092] Step S222: In response to a touch operation on the confirmation selection control, display the air conditioner power saving comparison interface.
[0093] In some embodiments of the present invention, reference is made to... Figure 7 and Figure 8 As shown, the air conditioner selection interface has a confirmation control, which is initially untouchable. Only after the user completes the selection of the target sub-item and confirms the air conditioner corresponding to its installation location as the target air conditioner, is the confirmation control displayed on the air conditioner selection interface made touchable. Only then can the user click the confirmation control to proceed. When the user clicks or touches the confirmation control, a power-saving comparison interface is displayed. On this interface, the user can see a power-saving ranking based on the target air conditioner, as well as information such as the target operating parameters of the top-ranked air conditioner.
[0094] By setting the confirmation selection control on the air conditioner selection interface to only become touch-sensitive after the user has selected the target air conditioner, errors caused by accidental operation are reduced. By adding the confirmation selection control, users have the opportunity to confirm whether their selection is correct before entering the energy saving comparison interface, thereby improving the accuracy and reliability of the method for setting air conditioner operating parameters.
[0095] In some embodiments of the present invention, the air conditioner selection option further includes a floor plan display area, which displays a floor plan corresponding to the installation location represented by the space selection sub-item; after determining the air conditioner corresponding to the installation location represented by the target selection sub-item as the target air conditioner, the method for setting the air conditioner operating parameters further includes step S223, specifically:
[0096] Step S223: Highlight the installation location represented by the target selection sub-item in the floor plan.
[0097] The air conditioner selection options include a floor plan display area, which shows the floor plan corresponding to the installation location represented by the selected space sub-item. The floor plan is a 3D diagram showing the layout of the house and the location of each space, helping users understand the air conditioner's installation location more intuitively. When a user selects a target sub-item from at least one space selection sub-item, the air conditioner corresponding to the installation location represented by the target sub-item is identified as the target air conditioner. Then, the installation location represented by the target sub-item is highlighted on the floor plan. This highlighting can be done in various ways, such as using different colored markers, icons, or highlighting effects to identify the target location, allowing the user to clearly see the specific installation location of the selected air conditioner. When the user clicks the confirmation button, in response to the touch operation of the confirmation button, the user enters the air conditioner energy-saving comparison interface, displaying relevant energy-saving rankings and target operating parameters.
[0098] Reference Figure 9 As shown, Figure 9 This is a flowchart of a method for displaying an air conditioner selection interface in response to a touch operation on a power-saving comparison control in an air conditioner control application interface, according to an embodiment of the present invention. The method includes, but is not limited to, steps S110 to S120. Specifically,
[0099] Step S110: In response to a touch operation on the power saving comparison control in the air conditioning control application interface, display the air conditioner selection interface with the cell selection control;
[0100] Step S120: In response to selecting a target cell via the cell selection control, at least one air conditioner selection item is displayed in the air conditioner selection interface.
[0101] In some embodiments of the present invention, when a user clicks or touches the power-saving comparison control in the air conditioner control application interface, in response to the touch operation of the power-saving comparison control in the air conditioner control application interface, an air conditioner selection interface with a cell selection control is displayed, referring to... Figure 8 As shown, the air conditioner selection interface at this time not only includes air conditioner selection items, but also a community selection control. The community selection control is used to allow users to select a specific community. When the user selects the target community in the community selection control, at least one air conditioner selection item is displayed in the air conditioner selection interface in response to the selection of the target community through the community selection control.
[0102] By adding a community selection control, users can first select a specific community and then select a specific air conditioner option. This provides users with clearer steps and feedback during the operation. Users can easily compare the power saving of air conditioners in the same or different communities, improving the applicability and reference value of the power saving ranking. This allows users to set power saving operating parameters for their air conditioners, making it suitable for property management systems that manage multiple communities. It makes the power saving comparison operation more flexible and accurate, better meeting the needs of users in complex scenarios and improving the accuracy of the power saving comparison operation and user satisfaction.
[0103] In one embodiment, suppose the user is using a property management air conditioning control application that manages air conditioners in multiple residential communities. The user wants to compare the energy savings of different air conditioners; the operation process is as follows:
[0104] When a user clicks the power-saving comparison control in the air conditioner control application interface, a device selection interface is displayed, including a community selection control. This community selection control may be a drop-down menu listing all managed communities. The user selects a target community from the drop-down menu, such as "Sunshine Community." The air conditioner selection interface then displays "Sunshine Community" and at least one air conditioner selection item. Each air conditioner selection item has corresponding space selection sub-items, such as "Living Room" and "Bedroom." After the user confirms the target air conditioner, a confirmation control is displayed. The user clicks the confirmation control to confirm the selected target air conditioner. Then, the air conditioner power-saving comparison interface is displayed, showing a power-saving ranking based on the target air conditioner and information such as the target operating parameters of the top-ranked air conditioner.
[0105] By adding a community selection control, users can first select a specific community and then select a specific air conditioner option, providing users with clearer steps and feedback during the operation. Users can easily compare the power saving of air conditioners in the same or different communities, improving the applicability and reference value of the power saving ranking.
[0106] It should be noted that the server can know the model of all the user's air conditioners, and therefore know the performance of the air conditioners. By collecting GPS location data, it can also roughly know the user's geographical location, such as the location of the community. However, the location of nearby communities may be incorrect. Even within the same community, there may be different apartment types and different rooms. This information will affect the power consumption and energy-saving effect of the air conditioner. Therefore, first-time users need to confirm this information themselves.
[0107] In some embodiments of the present invention, a method for displaying at least one air conditioner selection item in an air conditioner selection interface in response to selecting a target cell via a cell selection control includes, but is not limited to, step S121:
[0108] Step S121: In response to selecting a target community through the community selection control, at least one air conditioner selection item is displayed in the air conditioner selection interface, and the target floor plan corresponding to the target community is displayed in the floor plan display area of each air conditioner selection item, wherein the target floor plan displayed in different air conditioner selection items is different.
[0109] Users select a target community using the community selection control. In response to the selection of a target community using the community selection control, at least one air conditioner selection item is displayed in the air conditioner selection interface. The target floor plan corresponding to the target community is displayed in the floor plan display area of each air conditioner selection item. The target floor plan displayed in different air conditioner selection items is different to reflect the floor plan layout of different installation locations.
[0110] By displaying the target floor plan in the apartment layout area, users can more intuitively understand the specific location of the selected air conditioner and the layout of the target selection items, reducing misoperations caused by unclear locations. This provides users with clearer visual feedback during operation, allowing them to more clearly locate the target air conditioner, enhancing the reliability of the operation and user trust, and improving the overall user experience.
[0111] Reference Figure 10 As shown, Figure 10 This is a flowchart of a method for setting the operating parameters of a target air conditioner to target operating parameters in response to the selection of target operating parameters, according to an embodiment of the present invention. The method for setting the operating parameters of a target air conditioner to target operating parameters includes, but is not limited to, steps S310 to S320. Specifically,
[0112] Step S310: In response to the selection and confirmation operation of the target operating parameters, return to the display of the air conditioning control application interface, and display the target operating parameter card in the air conditioning control application interface, wherein the target operating parameter card displays the target operating parameters and the operation execution control;
[0113] Step S320: In response to a touch operation on the operation execution control in the target operation parameter card, set the operation parameters of the target air conditioner to the target operation parameters.
[0114] In some embodiments of the present invention, in response to selecting and determining a target air conditioner via an air conditioner selection option, an air conditioner power saving comparison interface is displayed, referring to... Figure 11 As shown, Figure 11This is a schematic diagram of an air conditioner control application interface provided in another embodiment of the present invention. The air conditioner power saving comparison interface displays a power saving ranking list with the target air conditioner as the comparison benchmark and the target operating parameters of the air conditioner ranked first in the power saving ranking list, so as to provide users with reference to set the power saving operating parameters of the air conditioner. If the user is interested in the target operating parameters of the air conditioner ranked first, the user can refer to the target operating parameters of the air conditioner ranked first to further select and execute operations on the air conditioner. In response to the selection and confirmation operation of the target operating parameters of the air conditioner ranked first, the air conditioner control application interface is returned and displayed. The air conditioner control application interface displays a target operating parameter card with target operating parameters and operation execution control. The user can make the target air conditioner run the target operating parameters by clicking or touching the operation execution control. Specifically, in response to the touch operation of the operation execution control in the target operating parameter card, the operating parameters of the target air conditioner are set to the target operating parameters of the air conditioner ranked first.
[0115] After selecting and confirming the target operating parameters, the system returns to the air conditioning control application interface. By returning to the interface and displaying the target operating parameter card, users can clearly see the target operating parameters to be set, enhancing the transparency and reliability of the operation. Before clicking or touching the execution controls on the target operating parameter card, users have the opportunity to confirm the accuracy of the target operating parameters to be set, reducing errors caused by misoperation. This provides users with clearer steps and feedback during the operation, enhancing the reliability of the operation and user trust, and improving the overall user experience.
[0116] It should be noted that, in some embodiments of the present invention, the target operating parameter card displays the target operating parameters and the operation execution control. The target operating parameters include, but are not limited to, the air conditioner set temperature, the air conditioner mode, and the air conditioner fan speed. The target operating parameters can be set according to the actual situation. The embodiments of the present invention do not limit the target operating parameters.
[0117] In one embodiment, the target operating parameters for the top-ranked air conditioner are: air conditioner set temperature of 24°C, air conditioner mode of cooling, and air conditioner fan speed of 100%. In response to the selection and confirmation of the target operating parameters, the system returns to the air conditioner control application interface, displaying a card showing the target operating parameters: air conditioner set temperature of 24°C, air conditioner mode of cooling, and air conditioner fan speed of 100%. When the user clicks or touches the execution control on the target operating parameter card, in response to the touch operation of the execution control, the operating parameters of the target air conditioner are set to the air conditioner set temperature of 24°C, air conditioner mode of cooling, and air conditioner fan speed of 100%. By learning the target operating parameters of the top-ranked air conditioner on the energy-saving leaderboard, the operating parameters of the target air conditioner can be optimized, thereby improving the energy-saving effect of the target air conditioner and increasing user enthusiasm and participation in using energy-saving functions.
[0118] In some embodiments of the present invention, the method for setting air conditioner operating parameters includes: the user clicks the touch operation of the power saving comparison control in the air conditioner control application interface to enter the display air conditioner selection interface. After completing the information entry of the space where the air conditioner is located, the user can view the ranking of the average 1 kWh usage time of the air conditioners of users with similar usage conditions who participated in the power saving ranking operation. This allows the user to understand the commonly used operating parameter settings of the most power-saving user (the user with the longest average 1 kWh usage time) under similar usage conditions. The operating parameters of the air conditioner of the user with the longest average 1 kWh usage time are determined as the target operating parameters and displayed in the air conditioner control application interface. This improves the visualization of the target operating parameters, allowing the user to refer to the parameter settings of the user with the longest average 1 kWh usage time, so that the user's air conditioner can also achieve a similar power consumption level, thereby achieving energy saving effect.
[0119] The air conditioning control application system analyzes the user's monthly electricity consumption. Only after the cumulative monthly runtime exceeds a certain period will the touch operation of the power saving comparison control appear in the air conditioning control application interface. This ensures that users who use this power saving comparison function have accumulated certain usage data. This allows for feedback on the user's actual power consumption and energy-saving effect of the air conditioner. It also ensures that the air conditioner ranked first in the power saving ranking is the one that has run for the longest time on 1 kWh of electricity under normal use conditions. This can be understood as the most energy-saving performance that users can accept under similar usage conditions. Such setting parameters are valuable for other users, and at the same time, it improves the accuracy and reliability of the power saving ranking and the target operating parameters of the air conditioner ranked first in the power saving ranking, thus increasing its reference value.
[0120] The following example illustrates the method for setting air conditioner operating parameters provided in this embodiment of the invention:
[0121] Upon first entering the air conditioning control application interface, users need to confirm that the community location identified via GPS is correct; if not, it can be changed. The available apartment types within the community, as well as the different space options within each apartment, will be displayed. Users simply need to select and confirm the air conditioner they wish to participate in the energy-saving ranking as their target air conditioner. Information such as apartment types and spatial layouts can be collected through cooperation with real estate companies or on-site surveys and research, and then provided to users to ensure the accuracy of this data. Considering that users may have different uses for the same space in the same community and with the same apartment type, selecting a specific space option will highlight that area on the floor plan. Figure 8 As shown, ensuring the user's selected space sub-item is correct is crucial to guaranteeing the energy-saving ranking is based on the target air conditioner, keeping the factors influencing energy consumption as consistent as possible. When the user hasn't selected the community or space selection item for the air conditioner, they cannot participate in the energy-saving ranking. The energy-saving comparison control is grayed out, making it untouchable. It only becomes touchable after selecting a space sub-item, ensuring the user carefully confirms the location of the target air conditioner to guarantee the accuracy of the energy-saving ranking.
[0122] After confirming that the space information of the target air conditioner is correct, the user can proceed with the energy-saving ranking operation, which displays an air conditioner energy-saving comparison interface. This interface shows a ranking of energy-saving performance based on the target air conditioner and the target operating parameters of the top-ranked air conditioner. Through this interface, the user can see the average operating time per kilowatt-hour of air conditioning used by other users who use the same model of air conditioner, live in the same community, have the same apartment layout, and whose equipment is placed in the same space. Considering that the number of users meeting the above conditions may be relatively limited, the energy-saving ranking can also include air conditioners with similar performance in neighboring communities, similar orientations, layouts, and sizes, and whose air conditioners are placed in spaces with similar areas.
[0123] Since the living environments, air conditioners, and operating spaces of other users on the energy-saving leaderboard are largely similar, their air conditioner usage patterns are quite comparable. Therefore, the average operating time per kilowatt-hour of the air conditioners used by users participating in the energy-saving ranking can essentially reflect which user's air conditioner is more energy-efficient. In this case, the commonly used settings of the user ranked first on the energy-saving leaderboard are used as target operating parameters and displayed in the air conditioner energy-saving comparison interface. This is recommended to other users participating in the energy-saving ranking. They can refer to these target operating parameters and add them to the target operating parameter card in the air conditioner control application interface so that users can easily execute these target operating parameters in the future, allowing their air conditioners to achieve similar energy-saving effects to the top-ranked air conditioner. By clicking or touching the operation execution control on the target operating parameter card, in response to the touch operation of the operation execution control in the target operating parameter card, the operating parameters of the target air conditioner are set to the target operating parameters, allowing the user's air conditioner to achieve a similar power consumption level to the top-ranked air conditioner, thereby achieving energy-saving effects.
[0124] In some embodiments of the present invention, an electronic device is also provided, with reference to Figure 12 As shown, Figure 12This is a schematic diagram of the structure of an electronic device 1000 provided in an embodiment of the present invention. It includes a memory, a processor, and a computer program stored in the memory and executable on the processor. The processor executes the program to implement the method for setting air conditioner operating parameters as described in the above embodiment. Specifically, the electronic device includes a processor 1001, which can be implemented using a general-purpose CPU (Central Processing Unit), microprocessor, application-specific integrated circuit (ASIC), or one or more integrated circuits, for executing relevant programs to implement the method provided in the embodiment of the present invention; the memory 1002 can be implemented using a read-only memory (ROM), static storage device, dynamic storage device, or random access memory (RAM), etc. The memory 1002 can store the operating system and other applications. When the technical solutions provided in the embodiments of this specification are implemented through software or firmware, the relevant program code is stored in the memory 1002 and is called and executed by the processor 1001. The input / output interface 1003 is used to implement information input and output. The communication interface 1004 is used to realize communication interaction between this device and other devices. Communication can be realized through wired means (such as USB, network cable, etc.) or through wireless means (such as mobile network, WIFI, Bluetooth, etc.). The bus transmits information between the various components of the device (such as the processor 1001, memory 1002, input / output interface 1003 and communication interface 1004). The processor 1001, memory 1002, input / output interface 1003 and communication interface 1004 are connected to each other within the device through the bus.
[0125] In some embodiments of the present invention, a computer-readable storage medium is also provided, which stores computer-executable instructions for causing an electronic device to perform the method for setting air conditioner operating parameters as described in the above embodiments.
[0126] In some embodiments of the present invention, a computer program product is also provided, including a computer program or computer instructions stored in a computer-readable storage medium. The processor of an electronic device reads the computer program or computer instructions from the computer-readable storage medium and executes the computer program or computer instructions, causing the electronic device to perform the air conditioner operating parameter setting method as described in the above embodiments.
[0127] Those skilled in the art will understand that all or some of the steps and systems in the methods disclosed above can be implemented as software, firmware, hardware, and suitable combinations thereof. Some or all of the physical components can be implemented as software executed by a processor, such as a central processing unit, digital signal processor, or microprocessor, or as hardware, or as an integrated circuit, such as an application-specific integrated circuit. Such software can be distributed on a computer-readable medium, which can include computer-readable storage media (or non-transitory media) and communication media (or transient media). As is known to those skilled in the art, the term computer-readable storage media includes volatile and non-volatile, removable and non-removable media implemented in any method or technology for storing information (such as computer-readable instructions, data structures, program modules, or other data). Computer-readable storage media include, but are not limited to, RAM, ROM, EEPROM, flash memory or other memory technologies, CD-ROM, digital versatile disc (DVD) or other optical disc storage, magnetic cartridges, magnetic tape, disk storage or other magnetic storage devices, or any other medium that can be used to store desired information and is accessible to a computer. Furthermore, as is known to those skilled in the art, communication media typically contain computer-readable instructions, data structures, program modules, or other data in modulated data signals such as carrier waves or other transmission mechanisms, and may include any information delivery medium.
[0128] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present invention.
Claims
1. A method for setting operating parameters of an air conditioner, characterized in that, The method includes: In response to a touch operation on the power saving comparison control in the air conditioning control application interface, an air conditioner selection interface is displayed, which displays at least one air conditioner selection item for selecting the air conditioner to be compared for power saving. In response to the selection of a target air conditioner through the at least one air conditioner selection option, an air conditioner power saving comparison interface is displayed. The air conditioner power saving comparison interface displays a power saving ranking list and the target operating parameters of the air conditioner ranked first in the power saving ranking list. The power saving ranking list is a ranking list with the target air conditioner as the comparison benchmark. In response to the selection of the target operating parameters, the operating parameters of the target air conditioner are set to the target operating parameters.
2. The method for setting air conditioner operating parameters according to claim 1, characterized in that, The air conditioning control application interface also displays calendar information; Before displaying the air conditioner selection interface in response to a touch operation on the power saving comparison control in the air conditioner control application interface, the method further includes: In response to the selection of a target date in the calendar information, the power saving comparison control is displayed in the air conditioning control application interface; Alternatively, in response to the selection of a target date in the calendar information, the power saving comparison control displayed in the air conditioning control application interface is set to a touch-sensitive state.
3. The method for setting air conditioner operating parameters according to claim 1, characterized in that, The air conditioner selection options include at least one space selection sub-option, which is used to characterize the installation location of the air conditioner. The response to selecting and determining a target air conditioner through the at least one air conditioner selection option, displaying an air conditioner energy saving comparison interface, includes: In response to a selection operation of a target selection item in the at least one air conditioner selection item, the target selection item is selected and highlighted, and the at least one space selection sub-item in the target selection item is set to a touch-sensitive state; In response to the selection and determination operation of the target selection sub-item in the at least one space selection sub-item, the air conditioner corresponding to the installation location represented by the target selection sub-item is determined as the target air conditioner, and the air conditioner power saving comparison interface is displayed.
4. The method for setting air conditioner operating parameters according to claim 3, characterized in that, In response to the selection and determination operation of the target selection sub-item in the at least one space selection sub-item, the air conditioner corresponding to the installation location represented by the target selection sub-item is determined as the target air conditioner, and an air conditioner power saving comparison interface is displayed, including: In response to the selection operation of the target selection sub-item in the at least one space selection sub-item, the air conditioner corresponding to the installation location represented by the target selection sub-item is determined as the target air conditioner, and a confirmation selection control is displayed in the air conditioner selection interface; In response to a touch operation on the confirmation selection control, an air conditioner energy saving comparison interface is displayed.
5. The method for setting air conditioner operating parameters according to claim 3, characterized in that, In response to the selection and determination operation of the target selection sub-item in the at least one space selection sub-item, the air conditioner corresponding to the installation location represented by the target selection sub-item is determined as the target air conditioner, and an air conditioner power saving comparison interface is displayed, including: In response to the selection operation of the target selection sub-item in the at least one space selection sub-item, the air conditioner corresponding to the installation location represented by the target selection sub-item is determined as the target air conditioner, and the confirmation selection control displayed in the air conditioner selection interface is set to a touch-sensitive state. In response to a touch operation on the confirmation selection control, an air conditioner energy saving comparison interface is displayed.
6. The method for setting air conditioner operating parameters according to claim 4 or 5, characterized in that, The air conditioner selection options also include a floor plan display area, which displays a floor plan corresponding to the installation location represented by the space selection sub-item. After determining the air conditioner corresponding to the installation location represented by the target selection sub-item as the target air conditioner, the method further includes: The installation location represented by the target selection sub-item is highlighted in the floor plan.
7. The method for setting air conditioner operating parameters according to claim 1, characterized in that, The method of displaying an air conditioner selection interface in response to a touch operation on a power-saving comparison control in the air conditioner control application interface includes: In response to a touch operation on the power saving comparison control in the air conditioning control application interface, an air conditioner selection interface with a cell selection control is displayed. In response to selecting a target cell via the cell selection control, at least one air conditioner selection item is displayed in the air conditioner selection interface.
8. The method for setting air conditioner operating parameters according to claim 7, characterized in that, The air conditioner selection options also include a floor plan display area; The step of displaying at least one air conditioner selection item in the air conditioner selection interface in response to selecting a target cell via the cell selection control includes: In response to selecting a target community through the community selection control, at least one air conditioner selection item is displayed in the air conditioner selection interface, and the target floor plan corresponding to the target community is displayed in the floor plan display area of each air conditioner selection item, wherein the target floor plan displayed in different air conditioner selection items is different.
9. The method for setting air conditioner operating parameters according to claim 1, characterized in that, The step of performing an operation in response to the selection of the target operating parameters, setting the operating parameters of the target air conditioner to the target operating parameters, includes: In response to the selection and confirmation operation of the target operating parameters, the air conditioning control application interface is returned and displayed, and the target operating parameter card is displayed in the air conditioning control application interface, wherein the target operating parameter card displays the target operating parameters and the operation execution control; In response to a touch operation on the operation execution control in the target operation parameter card, the operation parameters of the target air conditioner are set to the target operation parameters.
10. An electronic device, characterized in that, The device includes a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor executes the program to implement the method for setting air conditioner operating parameters as described in any one of claims 1 to 9.
11. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores computer-executable instructions for causing an electronic device to perform the method for setting air conditioner operating parameters as described in any one of claims 1 to 9.
12. A computer program product, comprising a computer program or computer instructions, characterized in that, The computer program or the computer instructions are stored in a computer-readable storage medium. The processor of the electronic device reads the computer program or the computer instructions from the computer-readable storage medium and executes the computer program or the computer instructions, causing the electronic device to perform the method for setting air conditioner operating parameters as described in any one of claims 1 to 9.