Indoor parameter-based air conditioner installation position determination method and device
By acquiring indoor parameters to predict the airflow convection parameters of the air conditioner and selecting the target installation location, the problem of ignoring environmental factors during the installation of smart air conditioners is solved, thereby improving the accuracy of air conditioner installation and user comfort.
Patent Information
- Application Number
- CN202311333134.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-13
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2043-10-13
AI Technical Summary
Current smart air conditioner installation methods ignore environmental factors, resulting in the air conditioner vents being too close to obstacles, affecting user comfort and reducing the user experience.
By acquiring indoor parameters, the system predicts the airflow convection parameters of the air conditioner at different installation locations, selects target installation locations that meet the airflow convection conditions, and ensures that the air conditioner can accurately generate airflow convection after installation.
It improves the reliability and accuracy of air conditioner installation location analysis, ensuring that the air conditioner can accurately generate airflow convection after installation, thus enhancing the user experience.
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Figure CN119826309B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of intelligent air conditioners, and in particular to an air conditioner installation position determination method and device based on indoor parameters. BACKGROUND
[0002] With the rapid development of home appliance technology, intelligent air conditioners have gradually become a necessary home appliance for people. The emergence of intelligent air conditioners can create a warm winter and cool summer living space for users, allowing users to live comfortably and happily.
[0003] Currently, for the installation method of an intelligent air conditioner, a worker generally inspects the actual scene, determines a target position that is easy to install and can save manpower and material resources from the perspective of installation simplicity, and then installs the intelligent air conditioner at the target position. However, this manual determination of the installation position tends to ignore various environmental factors that affect the operation of the installed air conditioner, such as the proximity of an obstacle to the air outlet of the air conditioner, which cannot generate convection, thereby greatly reducing the comfort of the user when using the air conditioner and affecting the user experience. Therefore, it is particularly important to provide a method for improving the accuracy of determining the installation position of an air conditioner. SUMMARY
[0004] The technical problem to be solved by the present application is to provide an air conditioner installation position determination method and device based on indoor parameters, which improves the analysis reliability and accuracy of the installation position of an air conditioner, and thus ensures that the air conditioner can accurately generate air flow convection after installation, thereby improving the user experience.
[0005] To solve the above technical problem, the present application discloses an air conditioner installation position determination method based on indoor parameters in the first aspect, which comprises:
[0006] Obtaining indoor parameters of an area where an air conditioner needs to be installed; the indoor parameters include at least one of a house type parameter, a house floor parameter, a house orientation parameter, and a house geometric structure parameter;
[0007] For each to-be-determined installation position of the preset area, according to the indoor parameters of the area, predicting an operating air flow convection parameter corresponding to the installation of the air conditioner at the to-be-determined installation position; the operating air flow convection parameter includes at least one of an operating air flow convection intensity parameter, an operating air flow convection direction parameter, and an operating air flow convection heat exchange parameter;
[0008] According to the operating air flow convection parameter corresponding to the air conditioner at each to-be-determined installation position, determining a target installation position that meets a preset air flow convection condition from all the to-be-determined installation positions, so as to install the air conditioner at the target installation position.
[0009] As an optional implementation, in the first aspect of the present application, the step of predicting the running air flow convection parameter corresponding to the air conditioner after being installed at the to-be-determined installation position according to the indoor parameter of the region comprises:
[0010] determining an object parameter of a target object contained in the region; the object parameter of the target object contained in the region comprises a first parameter of furniture contained in the region and / or a second parameter of an electrical appliance contained in the region, the first parameter of the furniture comprises at least one of a type parameter, a size parameter, a material parameter and a distribution situation of the furniture, and the second parameter of the electrical appliance comprises a type parameter and / or a distribution situation of the electrical appliance;
[0011] predicting the running air flow convection parameter corresponding to the air conditioner after being installed at the to-be-determined installation position according to the indoor parameter of the region and the object parameter of the target object.
[0012] As an optional implementation, in the first aspect of the present application, the step of predicting the running air flow convection parameter corresponding to the air conditioner after being installed at the to-be-determined installation position according to the indoor parameter of the region and the object parameter of the target object comprises:
[0013] when the object parameter of the target object comprises the first parameter of the furniture, predicting a first target influence situation of the furniture on the air conditioner after the air conditioner is installed at the to-be-determined installation position according to the first parameter of the furniture; the first target influence situation comprises a first heat absorption and heat dissipation influence situation and / or an air flow blocking influence situation;
[0014] determining a first influence degree corresponding to the first target influence situation according to the first target influence situation, and judging whether the first influence degree is greater than or equal to a preset first influence degree threshold value;
[0015] when it is judged that the first influence degree is greater than or equal to the first influence degree threshold value, predicting the running air flow convection parameter corresponding to the air conditioner after being installed at the to-be-determined installation position according to the first target influence situation and the indoor parameter of the region;
[0016] when it is judged that the first influence degree is less than the first influence degree threshold value, predicting the running air flow convection parameter corresponding to the air conditioner after being installed at the to-be-determined installation position according to the indoor parameter of the region.
[0017] As an optional implementation, in the first aspect of the present application, the method further comprises:
[0018] When the object parameter of the target object includes the second parameter of the appliance, based on the second parameter of the appliance, the second target impact of the appliance on the air conditioner when it is in use after the air conditioner is installed at the designated installation location is predicted; the second target impact includes the second heat absorption and dissipation impact and / or the heat source distribution impact.
[0019] Based on the second target impact of the appliance on the air conditioner when it is in use, determine the second impact level corresponding to the second target impact, and determine whether the second impact level is greater than or equal to a preset second impact level threshold.
[0020] When it is determined that the second degree of influence is greater than or equal to the second degree of influence threshold, the operating airflow convection parameters of the air conditioner after it is installed at the undetermined installation location are predicted based on the second target influence and the indoor parameters of the area.
[0021] When it is determined that the second degree of influence is less than the second degree of influence threshold, the operating airflow convection parameters corresponding to the air conditioner after it is installed at the undetermined installation location are predicted based on the indoor parameters of the area.
[0022] As an optional implementation, in the first aspect of the present invention, determining a target installation location that satisfies preset airflow convection conditions from all the undetermined installation locations based on the operating airflow convection parameters corresponding to each of the undetermined installation locations includes:
[0023] Determine the user scenario parameters of the air conditioner, and predict the metabolic heat production of the user when using the air conditioner based on the user scenario parameters;
[0024] The user's health status parameters are determined, and based on the user's metabolic heat production when using the air conditioner, the user's health status parameters, and the airflow convection parameters of the air conditioner at each of the proposed installation locations, a target installation location that meets the preset airflow convection conditions is determined from all the proposed installation locations.
[0025] As an optional implementation, in the first aspect of the present invention, determining a target installation location that meets preset airflow convection conditions from all the undetermined installation locations based on the user's metabolic heat production status when using the air conditioner, the user's health status parameters, and the airflow convection parameters of the air conditioner at each of the undetermined installation locations includes:
[0026] determine metabolic heat change caused by the running air current of the air conditioner in each of the to-be-installed positions to the user according to the running air current convection parameter corresponding to each of the to-be-installed positions of the air conditioner and the metabolic heat condition of the user;
[0027] determine whether the user belongs to a preset special user type according to the health state parameter of the user;
[0028] when it is determined that the user does not belong to the special user type, determine a to-be-installed position, from all the to-be-installed positions, in which the metabolic heat change condition meets a preset metabolic heat change trend condition as a target installation position meeting a preset air current convection condition, according to the metabolic heat change caused by the running air current of the air conditioner in each of the to-be-installed positions to the user.
[0029] As an optional implementation form, in the first aspect of the present application, the method further comprises:
[0030] when it is determined that the user belongs to the special user type, determine health state change caused by the running air current of the air conditioner in each of the to-be-installed positions to the user according to the running air current convection parameter corresponding to each of the to-be-installed positions of the air conditioner and the health state parameter of the user;
[0031] determine a to-be-installed position, from all the to-be-installed positions, in which the health state change condition meets a preset health state change trend condition and the metabolic heat change condition meets the metabolic heat change trend condition as a target installation position meeting a preset air current convection condition, according to the health state change caused by the running air current of the air conditioner in each of the to-be-installed positions to the user and the metabolic heat change caused by the running air current of the air conditioner in each of the to-be-installed positions to the user.
[0032] The second aspect of the present application discloses an air conditioner installation position determination device based on indoor parameters, which comprises:
[0033] an acquisition module configured to acquire indoor parameters of a region in which an air conditioner needs to be installed; the indoor parameters comprise at least one of a house type parameter, a house floor parameter, a house orientation parameter and a house geometric structure parameter;
[0034] a prediction module configured to, for each to-be-installed position of the region, predict a running air current convection parameter corresponding to the air conditioner after installation in the to-be-installed position according to the indoor parameters of the region; the running air current convection parameter comprises at least one of a running air current convection intensity parameter, a running air current convection direction parameter and a running air current convection heat exchange parameter;
[0035] determining module configured to determine a target installation position from all the to-be-installed installation positions according to the operation air flow convection parameter corresponding to the air conditioner in each of the to-be-installed installation positions, so as to install the air conditioner to the target installation position.
[0036] As an optional implementation, in the second aspect, the prediction module predicts the operation air flow convection parameter corresponding to the air conditioner after installation in the to-be-installed installation position according to the indoor parameter of the region in the following manner:
[0037] determining an object parameter of a target object contained in the region; the object parameter of the target object contained in the region includes a first parameter of furniture contained in the region and / or a second parameter of an electrical appliance contained in the region, the first parameter of the furniture includes at least one of a type parameter, a size parameter, a material parameter and a distribution situation of the furniture, and the second parameter of the electrical appliance includes a type parameter and / or a distribution situation of the electrical appliance;
[0038] predicting the operation air flow convection parameter corresponding to the air conditioner after installation in the to-be-installed installation position according to the indoor parameter of the region and the object parameter of the target object.
[0039] As an optional implementation, in the second aspect, the prediction module predicts the operation air flow convection parameter corresponding to the air conditioner after installation in the to-be-installed installation position according to the indoor parameter of the region and the object parameter of the target object in the following manner:
[0040] when the object parameter of the target object includes the first parameter of the furniture, predicting a first target influence situation of the furniture on the air conditioner after installation of the air conditioner in the to-be-installed installation position according to the first parameter of the furniture; the first target influence situation includes a first heat absorption and heat dissipation influence situation and / or an air flow blocking influence situation;
[0041] determining a first influence degree corresponding to the first target influence situation according to the first target influence situation, and judging whether the first influence degree is greater than or equal to a preset first influence degree threshold value;
[0042] when it is judged that the first influence degree is greater than or equal to the first influence degree threshold value, predicting the operation air flow convection parameter corresponding to the air conditioner after installation in the to-be-installed installation position according to the first target influence situation and the indoor parameter of the region;
[0043] When it is determined that the first influence degree is less than the first influence degree threshold, the indoor parameter of the region is used to predict the running air flow convection parameter of the air conditioner after installation at the to-be-installed installation position.
[0044] As an optional implementation, in the second aspect of the present application, the prediction module predicts the running air flow convection parameter of the air conditioner after installation at the to-be-installed installation position according to the indoor parameter of the region and the object parameter of the target object, and the specific implementation includes:
[0045] When the object parameter of the target object includes the second parameter of the electrical appliance, the second target influence situation of the electrical appliance on the air conditioner when the electrical appliance is in use is predicted according to the second parameter of the electrical appliance, and the second target influence situation includes the second heat absorption and dissipation influence situation and / or the heat source distribution influence situation.
[0046] According to the second target influence situation of the electrical appliance on the air conditioner when the electrical appliance is in use, the second influence degree corresponding to the second target influence situation is determined, and it is determined whether the second influence degree is greater than or equal to a preset second influence degree threshold.
[0047] When it is determined that the second influence degree is greater than or equal to the second influence degree threshold, the running air flow convection parameter of the air conditioner after installation at the to-be-installed installation position is predicted according to the second target influence situation and the indoor parameter of the region.
[0048] When it is determined that the second influence degree is less than the second influence degree threshold, the running air flow convection parameter of the air conditioner after installation at the to-be-installed installation position is predicted according to the indoor parameter of the region.
[0049] As an optional implementation, in the second aspect of the present application, the determination module determines the target installation position that meets the preset air flow convection condition from all the to-be-installed installation positions according to the running air flow convection parameter of the air conditioner corresponding to each to-be-installed installation position, and the specific implementation includes:
[0050] The use scenario parameter of the user of the air conditioner is determined, and the corresponding metabolic heat production situation of the user when using the air conditioner is predicted according to the use scenario parameter of the user.
[0051] determine a health state parameter of the user, and determine a target installation position from all the to-be-installed installation positions according to the metabolic heat generation of the user when using the air conditioner, the health state parameter of the user, and the running air flow convection parameter of the air conditioner corresponding to each of the to-be-installed installation positions.
[0052] As an optional implementation, in the second aspect, the determining module determines the target installation position from all the to-be-installed installation positions according to the metabolic heat generation of the user when using the air conditioner, the health state parameter of the user, and the running air flow convection parameter of the air conditioner corresponding to each of the to-be-installed installation positions, and the manner specifically includes:
[0053] determine a metabolic heat generation change of the user caused by the running air flow convection of the air conditioner in each of the to-be-installed installation positions according to the running air flow convection parameter of the air conditioner corresponding to each of the to-be-installed installation positions and the metabolic heat generation of the user;
[0054] determine whether the user belongs to a preset special user type according to the health state parameter of the user;
[0055] when it is determined that the user does not belong to the special user type, determine a to-be-installed installation position from all the to-be-installed installation positions according to the metabolic heat generation change of the user caused by the running air flow convection of the air conditioner in each of the to-be-installed installation positions, as the target installation position that satisfies the preset air flow convection condition, when the metabolic heat generation change satisfies a preset metabolic heat generation change trend condition.
[0056] As an optional implementation, in the second aspect, the determining module determines the target installation position from all the to-be-installed installation positions according to the metabolic heat generation of the user when using the air conditioner, the health state parameter of the user, and the running air flow convection parameter of the air conditioner corresponding to each of the to-be-installed installation positions, and the manner specifically includes:
[0057] when it is determined that the user belongs to the special user type, determine a health state change of the user caused by the running air flow convection of the air conditioner in each of the to-be-installed installation positions according to the running air flow convection parameter of the air conditioner corresponding to each of the to-be-installed installation positions and the health state parameter of the user;
[0058] According to health state change conditions and metabolic heat change conditions caused by operation air flow convection of the air conditioner in each of the to-be-installed installation positions on the user, a to-be-installed installation position, in which the health state change condition meets a preset health state change trend condition and the metabolic heat change condition meets a metabolic heat change trend condition, is determined from all the to-be-installed installation positions as a target installation position meeting the preset air flow convection condition.
[0059] The third aspect of the present application discloses another air conditioner installation position determination device based on indoor parameters, which comprises:
[0060] a memory in which executable program codes are stored;
[0061] a processor coupled with the memory;
[0062] The processor invokes the executable program codes stored in the memory to execute the air conditioner installation position determination method based on indoor parameters disclosed in the first aspect of the present application.
[0063] The fourth aspect of the present application discloses a computer storage medium which stores computer instructions, and the computer instructions are invoked to execute the air conditioner installation position determination method based on indoor parameters disclosed in the first aspect of the present application.
[0064] Compared with the prior art, the embodiments of the present application have the following beneficial effects:
[0065] In the embodiments of the present application, for each to-be-installed installation position of a preset region in which an air conditioner needs to be installed, the operation air flow convection parameter corresponding to the installation of the air conditioner in the to-be-installed installation position is predicted according to the indoor parameter of the region; and a target installation position meeting a preset air flow convection condition is determined according to the operation air flow convection parameter corresponding to the installation of the air conditioner in each to-be-installed installation position, so as to install the air conditioner in the target installation position. It can be seen that, by implementing the present application, the operation air flow convection parameter of the air conditioner after installation in each to-be-installed installation position can be predicted based on the indoor parameter of the region, and the target installation position can be determined based on all the operation air flow convection parameters, so as to realize the installation operation of the air conditioner, improve the analysis reliability and accuracy of the air conditioner installation position, and further ensure that the air flow convection of the air conditioner after installation is accurate, thereby improving the user experience. BRIEF DESCRIPTION OF DRAWINGS
[0066] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative effort.
[0067] Figure 1 is a schematic diagram of a scene of determining an installation position of an air conditioner based on indoor parameters according to an embodiment of the present application;
[0068] Figure 2 is a flowchart of a method of determining an installation position of an air conditioner based on indoor parameters according to an embodiment of the present application;
[0069] Figure 3 is a flowchart of another method of determining an installation position of an air conditioner based on indoor parameters according to an embodiment of the present application;
[0070] Figure 4 is a structural schematic diagram of a device for determining an installation position of an air conditioner based on indoor parameters according to an embodiment of the present application;
[0071] Figure 5 is a structural schematic diagram of another device for determining an installation position of an air conditioner based on indoor parameters according to an embodiment of the present application. DETAILED DESCRIPTION
[0072] In order to make the personnel in the art better understand the present application, the technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0073] The terms "first", "second", and the like in the specification of the present application and the above-described drawings are used to distinguish different objects, rather than to describe a particular order. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, device, product, or end including a series of steps or units is not limited to the listed steps or units, but can optionally include steps or units not listed or can optionally include other steps or units inherent to the process, method, product, or end.
[0074] In this document, the term "embodiment" means that the specific features, structures, or characteristics described in connection with the embodiment can be included in at least one embodiment of the present application. The appearance of this phrase in various places in the specification does not necessarily mean the same embodiment is referred to, nor does it mean that the independent or alternative embodiments are mutually exclusive or alternative to each other. It is explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0075] The application discloses an air conditioner installation position determination method and device based on indoor parameters, improves the analysis reliability and accuracy of the air conditioner installation position, and further ensures that the air conditioner can accurately generate air flow convection after installation, thereby improving the user experience.
[0076] Embodiment one
[0077] Please refer to Figure 2 , Figure 2 is a flowchart of an air conditioner installation position determination method based on indoor parameters disclosed by the embodiment of the application. Wherein, Figure 2 The air conditioner installation position determination method based on indoor parameters described can be applied to the determination of air conditioner installation positions in various scene types, such as home scenes, office scenes, indoor entertainment places, and the like, and the embodiment of the application does not make any limitation. Optionally, the method can be realized by an installation position determination system, which can be integrated in an installation position determination device, or a local server or a cloud server used for processing the installation position determination process of the air conditioner, and the embodiment of the application does not make any limitation. As shown in the figure, Figure 2 The air conditioner installation position determination method based on indoor parameters can include the following operations:
[0078] 101, obtaining the indoor parameters of the area where the air conditioner needs to be installed.
[0079] In the embodiment of the application, optionally, the indoor parameters include at least one of the house type parameters, the house floor parameters, the house orientation parameters and the house geometric structure parameters, wherein the various indoor parameters described above will all affect the air flow convection generated by the installed air conditioner during operation, such as intensity influence, direction influence, heat exchange influence, and the like.
[0080] 102, for each to-be-determined installation position of the preset area, according to the indoor parameters of the area, predicting the running air flow convection parameters corresponding to the installation of the air conditioner at the to-be-determined installation position.
[0081] In the embodiment of the application, it can be understood that the running air flow convection parameters corresponding to the installation of the air conditioner at different to-be-determined installation positions are predicted according to the window orientation of the house, the wall position of the house, the specific floor, and the like. Optionally, the running air flow convection parameters include at least one of the running air flow convection intensity parameters, the running air flow convection direction parameters and the running air flow convection heat exchange parameters.
[0082] 103, according to the running air flow convection parameters corresponding to the installation of the air conditioner at each to-be-determined installation position, determining the target installation position that meets the preset air flow convection condition from all the to-be-determined installation positions, so as to install the air conditioner on the target installation position.
[0083] In this embodiment of the invention, a target installation location that meets preset airflow convection conditions can be understood as an location where, after the air conditioner is installed, it can normally generate airflow convection, and the generated airflow convection can meet the user's usage needs. For example, such as Figure 1 As shown, Figure 1 There are three undetermined installation locations. The installation location determines the indoor parameters of the corresponding area collected by the system. Figure 1 Following the description of "the house is square with windows facing south", the airflow convection parameters corresponding to the proposed installation locations ①②③ are predicted based on the indoor parameters of the area. For example, the airflow convection direction of proposed installation location ① is based on the horizontal central axis in front of itself, with a left and right angle range of [-60°, 40°], while that of proposed installation location ② is based on the horizontal central axis in front of itself, with a left and right angle range of [-60°, 20°], and that of proposed installation location ③ is based on the horizontal central axis in front of itself, with a left and right angle range of [-40°, 40°]. At this time, it can be analyzed that the airflow convection generated by proposed installation location ① can effectively reduce the user's metabolic heat production. That is, it can be determined that proposed installation location ① is the target installation location that meets the preset airflow convection conditions, and the air conditioner can be installed at proposed installation location ①.
[0084] As can be seen, implementing the embodiments of the present invention can predict the airflow convection parameters of the air conditioner after installation at each undetermined installation location based on the indoor parameters of the area, and determine the target installation location based on all the airflow convection parameters to realize the installation operation of the air conditioner. This improves the reliability and accuracy of the analysis of the air conditioner installation location, thereby ensuring that the air conditioner can accurately generate airflow convection after installation, thus improving the user experience.
[0085] In an optional embodiment, step 102 above, predicting the operating airflow convection parameters corresponding to the air conditioner after installation at the designated installation location based on the indoor parameters of the area, includes:
[0086] Determine the object parameters of the target objects contained within the region;
[0087] Based on the indoor parameters of the area and the object parameters of the target object, predict the corresponding airflow convection parameters after the air conditioner is installed at the designated installation location.
[0088] In the optional embodiment, the furniture and / or the electrical appliances contained in the region can affect the strength, direction and heat exchange strength of the air flow convection generated by the air conditioner in the to-be-determined installation position, and so on. For example, if the seat is made of sponge and heat-absorbing cloth, it can absorb the cold / hot air flow generated by the air conditioner, thereby affecting the strength of the cold / hot air flow generated by the air conditioner. If the seat is made of wood, it will hardly absorb the cold / hot air flow generated by the air conditioner, and in this case, the strength of the air flow convection generated by the air conditioner can not be considered. Optionally, the object parameters of the target objects contained in the region include first parameters of furniture and / or second parameters of electrical appliances contained in the region. Further optionally, the first parameters of the furniture include at least one of a type parameter, a size parameter, a material parameter and a distribution of the furniture, and the second parameters of the electrical appliances include a type parameter and / or a distribution of the electrical appliances.
[0089] It can be seen that the optional embodiment can predict the operation air flow parameters of the air conditioner in the to-be-determined installation position in combination with the object parameters of the target objects in the region, which is beneficial to improve the analysis comprehensiveness of the operation air flow convection of the air conditioner, and further beneficial to improve the analysis reliability and accuracy of the operation air flow convection of the air conditioner, thereby improving the reliability, accuracy and effectiveness of the subsequently determined target installation position.
[0090] In another optional embodiment, the step of predicting the operation air flow convection parameters of the air conditioner in the to-be-determined installation position after installation according to the indoor parameters of the region and the object parameters of the target objects includes:
[0091] When the object parameters of the target objects include the first parameters of the furniture, the first target influence situation of the furniture on the air conditioner after installation of the air conditioner in the to-be-determined installation position is predicted according to the first parameters of the furniture.
[0092] The first influence degree corresponding to the first target influence situation is determined according to the first target influence situation of the furniture on the air conditioner, and it is determined whether the first influence degree is greater than or equal to a preset first influence degree threshold.
[0093] When it is determined that the first influence degree is greater than or equal to the first influence degree threshold, the operation air flow convection parameters of the air conditioner in the to-be-determined installation position after installation are predicted according to the first target influence situation and the indoor parameters of the region.
[0094] When it is determined that the first influence degree is less than the first influence degree threshold, the operation air flow convection parameters of the air conditioner in the to-be-determined installation position after installation are predicted according to the indoor parameters of the region.
[0095] In the optional embodiment, optionally, the first target influence condition includes a first heat absorption and dissipation influence condition and / or an air flow blocking influence condition, such as the size and placement of a conference table in the region, which can block the running air flow convection generated by the air conditioner at the to-be-determined installation position, thereby affecting the direction and intensity of the running air flow convection of the air conditioner.
[0096] Further, as an optional implementation, the method further includes:
[0097] When the object parameter of the target object includes the second parameter of the electrical appliance, according to the second parameter of the electrical appliance, the second target influence condition caused by the electrical appliance in the use state to the air conditioner after the air conditioner is installed at the to-be-determined installation position is predicted.
[0098] According to the second target influence condition caused by the electrical appliance in the use state to the air conditioner, a second influence degree corresponding to the second target influence condition is determined, and it is judged whether the second influence degree is greater than or equal to a preset second influence degree threshold.
[0099] When it is judged that the second influence degree is greater than or equal to the second influence degree threshold, according to the second target influence condition and the indoor parameter of the region, the running air flow convection parameter corresponding to the air conditioner after the air conditioner is installed at the to-be-determined installation position is predicted.
[0100] When it is judged that the second influence degree is less than the second influence degree threshold, according to the indoor parameter of the region, the running air flow convection parameter corresponding to the air conditioner after the air conditioner is installed at the to-be-determined installation position is predicted.
[0101] In the optional embodiment, optionally, the second target influence condition includes a second heat absorption and dissipation influence condition and / or a heat source distribution influence condition, such as the use blowing intensity and heat of a hair dryer in the region, which can reduce the heat dissipation effect of the running air flow convection generated by the air conditioner at the to-be-determined installation position, thereby affecting the heat exchange intensity of the running air flow convection of the air conditioner.
[0102] It can be seen that the optional embodiment can not only predict the running air flow convection parameter of the air conditioner at the to-be-determined installation position based on the heat absorption and dissipation condition and the air flow blocking influence condition caused by the furniture to the air conditioner, but also predict the running air flow convection parameter of the air conditioner at the to-be-determined installation position based on the heat absorption and dissipation influence condition and the heat source distribution influence condition caused by the electrical appliance to the air conditioner. Therefore, the prediction reliability and accuracy of the running air flow convection parameter of the air conditioner can be improved, and the determination reliability and accuracy of the target installation position of the air conditioner can be improved, so that the comfort of the region can be ensured and the use experience of the user can be improved after the air conditioner is installed at the target installation position.
[0103] Embodiment Two
[0104] Please refer toFigure 3 , Figure 3 is a flowchart of a method for determining an installation position of an air conditioner based on indoor parameters according to an embodiment of the present application. In the method, Figure 3 The method for determining an installation position of an air conditioner based on indoor parameters can be applied to determining an installation position of an air conditioner in various scenarios, such as a home scenario, an office scenario, an indoor entertainment place, and the like, and the present application is not limited thereto. Optionally, the method can be implemented by an installation position determining system, which can be integrated in an installation position determining device, or a local server or a cloud server for processing an installation position determining process of an air conditioner, and the present application is not limited thereto. As shown in Figure 3 The method for determining an installation position of an air conditioner based on indoor parameters can include the following operations:
[0105] 201. Obtain indoor parameters of an area in which an air conditioner is to be installed.
[0106] 202. For each to-be-determined installation position of a preset area, predict an operating air flow convection parameter corresponding to the to-be-determined installation position after the air conditioner is installed at the to-be-determined installation position according to the indoor parameters of the area.
[0107] 203. Determine a use scenario parameter of a user of the air conditioner, and predict a metabolic heat production situation of the user when using the air conditioner according to the use scenario parameter of the user.
[0108] In the present application, if the user generally uses the air conditioner when sleeping, the metabolic heat production situation of the user when using the air conditioner predicted by the present application is of a general intensity, and if the user generally uses the air conditioner after exercising, the metabolic heat production situation of the user when using the air conditioner predicted by the present application is of a medium-high intensity, and the like.
[0109] 204. Determine a health status parameter of the user, and determine a target installation position from all the to-be-determined installation positions according to the metabolic heat production situation of the user when using the air conditioner, the health status parameter of the user, and the operating air flow convection parameter corresponding to each to-be-determined installation position of the air conditioner, so as to install the air conditioner at the target installation position.
[0110] In the present application, optionally, the health status parameter of the user can be health, a cold-susceptible constitution, an allergy-prone constitution, and the like, that is, the process of determining the target installation position can be understood as that the operating air flow convection of the air conditioner at the target installation position not only meets the heat dissipation demand of the metabolic heat production of the user, but also meets the health demand of the user when using the air conditioner, and the like.
[0111] In the embodiment of the present application, for other descriptions of steps 201-202, refer to the detailed descriptions of steps 101-102 in Embodiment One, and the embodiment of the present application will not be repeated here.
[0112] It can be seen that by implementing the embodiment of the present application, the target installation position meeting the preset air flow convection condition can be determined from all the pending installation positions in combination with the use scene parameters of the air conditioner and the health state parameters of the user, so that the reliability and accuracy of the air flow convection condition judgment operation on the pending installation position of the air conditioner can be improved, and then the determination reliability, accuracy and effectiveness of the target installation position can be improved, so that the running air flow convection generated by the air conditioner in the target installation position can meet the related needs of the user.
[0113] In an optional embodiment, the step 204 of determining the target installation position meeting the preset air flow convection condition from all the pending installation positions according to the metabolic heat production of the user when using the air conditioner, the health state parameters of the user and the running air flow convection parameters of the air conditioner corresponding to each pending installation position comprises:
[0114] determining the metabolic heat production change of the user caused by the running air flow convection of the air conditioner in each pending installation position according to the running air flow convection parameters of the air conditioner corresponding to each pending installation position and the metabolic heat production of the user;
[0115] judging whether the user belongs to a preset special user type according to the health state parameters of the user;
[0116] when it is judged that the user does not belong to the special user type, determining the pending installation position meeting the preset metabolic heat production change trend condition from all the pending installation positions as the target installation position meeting the preset air flow convection condition according to the metabolic heat production change of the user caused by the running air flow convection of the air conditioner in each pending installation position.
[0117] In this optional embodiment, optionally, the special user type can include the user type susceptible to cold, the user type susceptible to allergy, the user type with a history of cardiovascular and cerebrovascular disease, the user type with a history of diabetes, etc., i.e., the user type susceptible to the negative influence of the running air flow convection generated by the air conditioner. Further, the preset metabolic heat production change trend condition can be that the metabolic heat production of the user is stably reduced.
[0118] It can be seen that the optional embodiment can determine the target installation position meeting the metabolic heat change trend condition according to the metabolic heat change caused by the running air flow convection of the air conditioner at each to-be-installed installation position, can improve the determination reliability and accuracy of the metabolic heat change trend condition of the running air flow convection of the air conditioner at the to-be-installed installation position, and can further improve the determination reliability and accuracy of the target installation position of the air conditioner, so that the metabolic heat of the user can be stably dissipated by the air conditioner based on the target installation position, and the comfort of the user can be improved.
[0119] In another optional embodiment, the method further comprises:
[0120] When it is determined that the user belongs to a special user type, the health state change caused by the running air flow convection of the air conditioner at each to-be-installed installation position to the user is determined according to the running air flow convection parameter corresponding to each to-be-installed installation position and the health state parameter of the user.
[0121] The to-be-installed installation position meeting the preset health state change trend condition and the metabolic heat change trend condition is determined as the target installation position meeting the preset air flow convection condition according to the health state change and the metabolic heat change caused by the running air flow convection of the air conditioner at each to-be-installed installation position to the user.
[0122] In the optional embodiment, that is, in the case where the user belongs to a special user type, the to-be-installed installation position is further determined according to the health state change caused by the running air flow convection of the air conditioner at the to-be-installed installation position to the user. Further, the preset health state change trend condition can be that the arrector pili of the user does not contract too fast or the blood vessels do not contract too fast, and the like.
[0123] It can be seen that the optional embodiment can further determine the target installation position meeting the health state change trend condition according to the health state change caused by the running air flow convection of the air conditioner at each to-be-installed installation position to the user, can further improve the determination reliability and accuracy of the target installation position of the air conditioner, and the metabolic heat of the user can be stably dissipated by the air conditioner based on the target installation position and will not have a negative impact on the health of the user, so that the comfort and health of the user can be further improved.
[0124] Embodiment three
[0125] Please refer to Figure 4 , Figure 4 is a structural schematic diagram of an air conditioner installation position determination device based on indoor parameters disclosed by the embodiment of the application. As shown inFigure 4 As shown, the air conditioner installation location determination device based on indoor parameters may include:
[0126] The acquisition module 301 is used to acquire indoor parameters of the area where air conditioning needs to be installed;
[0127] The prediction module 302 is used to predict the airflow convection parameters of the air conditioner after it is installed at each of the two installation locations in the preset area, based on the indoor parameters of the area.
[0128] The determining module 303 is used to determine the target installation position that meets the preset airflow convection conditions from all the undetermined installation positions based on the airflow convection parameters corresponding to each undetermined installation position of the air conditioner, so as to install the air conditioner at the target installation position.
[0129] In this embodiment of the invention, the indoor parameters include at least one of the following: house type parameters, house floor parameters, house orientation parameters, and house geometric structure parameters; the operating airflow convection parameters include at least one of the following: operating airflow convection intensity parameters, operating airflow convection direction parameters, and operating airflow convection heat transfer parameters.
[0130] It is evident that implementation Figure 4 The described air conditioner installation location determination device based on indoor parameters can predict the airflow convection parameters of the air conditioner after installation at each undetermined installation location based on the indoor parameters of the area, and determine the target installation location based on all operating airflow convection parameters to realize the installation operation of the air conditioner. This improves the reliability and accuracy of the analysis of the air conditioner installation location, thereby ensuring that the air conditioner can accurately generate airflow convection after installation, thus improving the user experience.
[0131] In an optional embodiment, the prediction module 302 predicts the operating airflow convection parameters corresponding to the air conditioner after installation at the designated installation location based on the indoor parameters of the area, specifically including:
[0132] Determine the object parameters of the target objects contained within the region;
[0133] Based on the indoor parameters of the area and the object parameters of the target object, predict the corresponding airflow convection parameters after the air conditioner is installed at the designated installation location.
[0134] In this optional embodiment, the object parameters of the target objects contained in the region include a first parameter of the furniture contained in the region and / or a second parameter of the appliances contained in the region. The first parameter of the furniture includes at least one of the furniture type parameter, size parameter, material parameter, and distribution. The second parameter of the appliances includes the appliance type parameter and / or distribution.
[0135] It can be seen that the implementation Figure 4 The indoor parameter-based air conditioner installation position determination apparatus described herein can combine the object parameters of the target object in the region to predict the operating air flow parameters of the air conditioner corresponding to the to-be-determined installation position, which is conducive to improving the comprehensiveness of the analysis of the operating air flow convection of the air conditioner, and further conducive to improving the reliability and accuracy of the analysis of the operating air flow convection of the air conditioner, thereby improving the reliability, accuracy and effectiveness of the subsequently determined target installation position.
[0136] In another optional embodiment, the prediction module 302 predicts the operating air flow convection parameters corresponding to the air conditioner installed at the to-be-determined installation position according to the indoor parameters of the region and the object parameters of the target object in the following manner:
[0137] When the object parameters of the target object include the first parameters of the furniture, the first target influence situation of the furniture on the air conditioner after the air conditioner is installed at the to-be-determined installation position is predicted according to the first parameters of the furniture.
[0138] According to the first target influence situation of the furniture on the air conditioner, a first influence degree corresponding to the first target influence situation is determined, and it is determined whether the first influence degree is greater than or equal to a preset first influence degree threshold.
[0139] When it is determined that the first influence degree is greater than or equal to the first influence degree threshold, the operating air flow convection parameters corresponding to the air conditioner installed at the to-be-determined installation position are predicted according to the first target influence situation and the indoor parameters of the region.
[0140] When it is determined that the first influence degree is less than the first influence degree threshold, the operating air flow convection parameters corresponding to the air conditioner installed at the to-be-determined installation position are predicted according to the indoor parameters of the region.
[0141] In this optional embodiment, the first target influence situation includes the first heat absorption and dissipation influence situation and / or the air flow blocking influence situation.
[0142] Further, as an optional implementation, the prediction module 302 predicts the operating air flow convection parameters corresponding to the air conditioner installed at the to-be-determined installation position according to the indoor parameters of the region and the object parameters of the target object in the following manner:
[0143] When the object parameters of the target object include the second parameters of the electrical appliances, the second target influence situation of the electrical appliances on the air conditioner when the electrical appliances are in a use state after the air conditioner is installed at the to-be-determined installation position is predicted according to the second parameters of the electrical appliances.
[0144] determine a second influence degree corresponding to the second target influence situation according to the second target influence situation caused by the electrical appliance in the use state to the air conditioner, and determine whether the second influence degree is greater than or equal to a preset second influence degree threshold value;
[0145] When it is determined that the second influence degree is greater than or equal to the second influence degree threshold value, predict the running air flow convection parameter corresponding to the air conditioner after being installed at the to-be-determined installation position according to the second target influence situation and the indoor parameter of the region;
[0146] When it is determined that the second influence degree is less than the second influence degree threshold value, predict the running air flow convection parameter corresponding to the air conditioner after being installed at the to-be-determined installation position according to the indoor parameter of the region.
[0147] In the optional embodiment, the second target influence situation includes the second heat absorption and dissipation influence situation and / or the heat source distribution influence situation.
[0148] It can be seen that, in the implementation Figure 4 The air conditioner installation position determination apparatus described based on the indoor parameter can not only predict the running air flow convection parameter corresponding to the air conditioner at the to-be-determined installation position based on the heat absorption and dissipation situation and the air flow blocking influence situation caused by the furniture to the air conditioner, but also predict the running air flow convection parameter corresponding to the air conditioner at the to-be-determined installation position based on the heat absorption and dissipation influence situation and the heat source distribution influence situation caused by the electrical appliance to the air conditioner. Therefore, the prediction reliability and accuracy of the running air flow convection parameter of the air conditioner can be improved, and the determination reliability and accuracy of the target installation position of the air conditioner can be improved, so that the comfort of the region can be ensured and the use experience of the user can be improved after the air conditioner is installed at the target installation position.
[0149] In yet another optional embodiment, the determination module 303 determines the target installation position satisfying the preset air flow convection condition from all the to-be-determined installation positions according to the running air flow convection parameter corresponding to the air conditioner at each to-be-determined installation position in the following manner:
[0150] determine a use scenario parameter of a user of the air conditioner, and predict a metabolic heat production situation corresponding to the user when using the air conditioner according to the use scenario parameter of the user;
[0151] determine a health state parameter of the user, and determine the target installation position satisfying the preset air flow convection condition from all the to-be-determined installation positions according to the metabolic heat production situation corresponding to the user when using the air conditioner, the health state parameter of the user, and the running air flow convection parameter corresponding to the air conditioner at each to-be-determined installation position.
[0152] It can be seen that, in the implementation Figure 4The described indoor parameter-based air conditioner installation position determination apparatus can determine a target installation position meeting a preset air flow convection condition from all to-be-determined installation positions in combination with a use scene parameter of the air conditioner and a health state parameter of the user, so that the reliability and accuracy of the air flow convection condition judgment operation on the to-be-determined installation position of the air conditioner can be improved, and then the determination reliability, accuracy and effectiveness of the target installation position can be improved, so that the operation air flow convection generated by the air conditioner at the target installation position can meet the related needs of the user.
[0153] In yet another optional embodiment, the determination module 303 determines the target installation position meeting the preset air flow convection condition from all to-be-determined installation positions according to the corresponding metabolic heat generation of the user when using the air conditioner, the health state parameter of the user and the operation air flow convection parameter of the air conditioner corresponding to each to-be-determined installation position, and the manner specifically includes:
[0154] According to the operation air flow convection parameter of the air conditioner corresponding to each to-be-determined installation position and the corresponding metabolic heat generation of the user, the metabolic heat generation change of the user caused by the operation air flow convection of the air conditioner at each to-be-determined installation position is determined.
[0155] According to the health state parameter of the user, it is judged whether the user belongs to a preset special user type.
[0156] When it is judged that the user does not belong to the special user type, the to-be-determined installation position meeting the preset metabolic heat generation change trend condition in the metabolic heat generation change caused by the operation air flow convection of the air conditioner at each to-be-determined installation position is determined from all to-be-determined installation positions as the target installation position meeting the preset air flow convection condition.
[0157] It can be seen that the implementation Figure 4 The described indoor parameter-based air conditioner installation position determination apparatus can determine the target installation position meeting the metabolic heat generation change trend condition according to the metabolic heat generation change of the user caused by the operation air flow convection of the air conditioner at each to-be-determined installation position, so that the determination reliability and accuracy of the metabolic heat generation change trend condition of the operation air flow convection of the air conditioner at the to-be-determined installation position can be improved, and then the determination reliability and accuracy of the target installation position of the air conditioner can be improved, so that the metabolic heat generation of the user can be smoothly dissipated by the air conditioner based on the target installation position, so as to improve the comfort of the user.
[0158] In yet another optional embodiment, the determining module 303 determines the target installation position satisfying the preset air flow convection condition from all the to-be-installed installation positions according to the metabolic heat production of the user when using the air conditioner, the health state parameter of the user, and the running air flow convection parameter of the air conditioner corresponding to each to-be-installed installation position in the following manner:
[0159] When it is determined that the user belongs to the special user type, the health state change of the user caused by the running air flow convection of the air conditioner corresponding to each to-be-installed installation position is determined according to the running air flow convection parameter of the air conditioner corresponding to each to-be-installed installation position and the health state parameter of the user.
[0160] The to-be-installed installation position satisfying the preset health state change trend condition and the metabolic heat production change trend condition is determined from all the to-be-installed installation positions according to the health state change of the user caused by the running air flow convection of the air conditioner corresponding to each to-be-installed installation position and the metabolic heat production change of the user, and is taken as the target installation position satisfying the preset air flow convection condition.
[0161] It can be seen that the implementation Figure 5 The air conditioner installation position determining device based on indoor parameters described in the embodiments can further determine the target installation position satisfying the health state change trend condition according to the health state change of the user caused by the running air flow convection of the air conditioner corresponding to each to-be-installed installation position, and can further improve the determination reliability and accuracy of the target installation position of the air conditioner. In this way, the metabolic heat production of the user can be stably dissipated by the air conditioner and the health of the user will not be negatively affected, so that the comfort and health of the user can be further improved.
[0162] Embodiment Four
[0163] Please refer to Figure 5 , Figure 5 is another structure diagram of the air conditioner installation position determining device based on indoor parameters disclosed in the embodiments of the present application. As shown in , the air conditioner installation position determining device based on indoor parameters can include:
[0164] a memory 401 storing executable program codes;
[0165] a processor 402 coupled with the memory 401;
[0166] The processor 402 invokes the executable program codes stored in the memory 401 to execute the steps in the air conditioner installation position determining method based on indoor parameters described in the embodiment one or the embodiment two of the present application.
[0167] Embodiment Five
[0168] The embodiment of the present application discloses a computer storage medium, which stores computer instructions, and the computer instructions are used to execute the steps of the air conditioner installation position determination method based on indoor parameters described in the embodiment one or the embodiment two when being invoked.
[0169] Embodiment six
[0170] The embodiment of the present application discloses a computer program product, which comprises a non-transitory computer readable storage medium storing a computer program, and the computer program is operable to cause a computer to execute the steps of the air conditioner installation position determination method based on indoor parameters described in the embodiment one or the embodiment two.
[0171] The device embodiments described above are only schematic, wherein the modules described as separate components can or can not be physically separate, and the components displayed as modules can or can not be physical modules, i.e., can be located in one place, or can be distributed on multiple network modules. Part or all of the modules can be selected to achieve the purpose of the embodiment scheme according to actual needs. Those skilled in the art can understand and implement without creative labor.
[0172] Those skilled in the art can clearly understand the implementation of the various embodiments by means of software and necessary general hardware platforms through the above specific description of the embodiments, and of course, the embodiments can also be implemented by hardware. Based on such understanding, the above technical solutions, essentially or in other words, the part of the prior art that makes a contribution, can be embodied in the form of a software product. The computer software product can be stored in a computer readable storage medium, and the storage medium includes a read-only memory (ROM), a random access memory (RAM), a programmable read-only memory (PROM), an erasable programmable read-only memory (EPROM), a one-time programmable read-only memory (OTPROM), an electrically erasable programmable read-only memory (EEPROM), a compact disc read-only memory (CD-ROM) or other optical disk storage, a magnetic disk storage, a magnetic tape storage, or any other computer readable medium that can be used to carry or store data.
[0173] Finally, it should be noted that: the air conditioner installation position determination method and device based on indoor parameters disclosed by the embodiments of the present application are only the preferred embodiments of the present application, and are used to illustrate the technical solutions of the present application, but not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that: the technical solutions recorded in the foregoing embodiments can still be modified, or some technical features can be replaced by equivalents; and these modifications or replacements do not make the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A method for determining the installation location of an air conditioner based on indoor parameters, characterized in that, The method includes: Obtain the indoor parameters of the area where air conditioning needs to be installed; the indoor parameters include at least one of the following: house type parameters, house floor parameters, house orientation parameters, and house geometric structure parameters; For each undetermined installation location in the preset area, based on the indoor parameters of the area, the corresponding operating airflow convection parameters after the air conditioner is installed at the undetermined installation location are predicted; the operating airflow convection parameters include at least one of operating airflow convection intensity parameters, operating airflow convection direction parameters, and operating airflow convection heat transfer parameters. Determine the user scenario parameters of the air conditioner, and predict the metabolic heat production of the user when using the air conditioner based on the user scenario parameters; The user's health status parameters are determined, and based on the user's metabolic heat production when using the air conditioner, the user's health status parameters, and the airflow convection parameters of the air conditioner at each of the proposed installation locations, a target installation location that meets the preset airflow convection conditions is determined from all the proposed installation locations, so that the air conditioner can be installed at the target installation location.
2. The method for determining the installation location of an air conditioner based on indoor parameters according to claim 1, characterized in that, The step of predicting the operating airflow convection parameters of the air conditioner after it is installed at the designated installation location, based on the indoor parameters of the area, includes: Determine the object parameters of the target objects contained in the region; the object parameters of the target objects contained in the region include a first parameter of the furniture contained in the region and / or a second parameter of the appliances contained in the region, wherein the first parameter of the furniture includes at least one of the type parameter, size parameter, material parameter and distribution of the furniture, and the second parameter of the appliances includes the type parameter and / or distribution of the appliances; Based on the indoor parameters of the area and the object parameters of the target object, predict the operating airflow convection parameters of the air conditioner after it is installed at the designated installation location.
3. The method for determining the installation location of an air conditioner based on indoor parameters according to claim 2, characterized in that, The step of predicting the operating airflow convection parameters of the air conditioner after it is installed at the designated installation location, based on the indoor parameters of the area and the object parameters of the target object, includes: When the object parameters of the target object include the first parameters of the furniture, based on the first parameters of the furniture, the first target impact of the furniture on the air conditioner after the air conditioner is installed at the undetermined installation location is predicted; the first target impact includes the first heat absorption and dissipation impact and / or the airflow obstruction impact. Based on the first target impact of the furniture on the air conditioner, determine the first impact level corresponding to the first target impact level, and determine whether the first impact level is greater than or equal to a preset first impact level threshold. When it is determined that the first degree of influence is greater than or equal to the first degree of influence threshold, the operating airflow convection parameters of the air conditioner after it is installed at the undetermined installation location are predicted based on the first target influence and the indoor parameters of the area. When it is determined that the first degree of influence is less than the first degree of influence threshold, the operating airflow convection parameters corresponding to the air conditioner after it is installed at the undetermined installation location are predicted based on the indoor parameters of the area.
4. The method for determining the installation location of an air conditioner based on indoor parameters according to claim 3, characterized in that, The method further includes: When the object parameter of the target object includes the second parameter of the appliance, based on the second parameter of the appliance, the second target impact of the appliance on the air conditioner when it is in use after the air conditioner is installed at the designated installation location is predicted; the second target impact includes the second heat absorption and dissipation impact and / or the heat source distribution impact. Based on the second target impact of the appliance on the air conditioner when it is in use, determine the second impact level corresponding to the second target impact, and determine whether the second impact level is greater than or equal to a preset second impact level threshold. When it is determined that the second degree of influence is greater than or equal to the second degree of influence threshold, the operating airflow convection parameters of the air conditioner after it is installed at the undetermined installation location are predicted based on the second target influence and the indoor parameters of the area. When it is determined that the second degree of influence is less than the second degree of influence threshold, the operating airflow convection parameters corresponding to the air conditioner after it is installed at the undetermined installation location are predicted based on the indoor parameters of the area.
5. The method for determining the installation location of an air conditioner based on indoor parameters according to any one of claims 1-4, characterized in that, The step of determining a target installation location that meets preset airflow convection conditions from all the undetermined installation locations based on the user's metabolic heat production status when using the air conditioner, the user's health status parameters, and the airflow convection parameters of the air conditioner at each of the undetermined installation locations includes: Based on the airflow convection parameters of the air conditioner at each of the proposed installation locations and the metabolic heat production of the user, determine the changes in metabolic heat production caused by the airflow convection generated by the air conditioner at each of the proposed installation locations to the user; Based on the user's health status parameters, determine whether the user belongs to a preset special user type; When it is determined that the user does not belong to the special user type, based on the changes in metabolic heat production caused by the airflow convection generated by the air conditioner at each of the proposed installation locations, the proposed installation locations that satisfy the preset metabolic heat production change trend conditions are determined from all the proposed installation locations, and these locations are used as the target installation locations that satisfy the preset airflow convection conditions.
6. The method for determining the installation location of an air conditioner based on indoor parameters according to claim 5, characterized in that, The method further includes: When it is determined that the user belongs to the special user type, the changes in the user's health status caused by the airflow convection generated by the air conditioner at each of the proposed installation locations are determined based on the airflow convection parameters corresponding to the air conditioner at each of the proposed installation locations and the user's health status parameters. Based on the changes in the user's health status and metabolic heat production caused by the airflow convection generated by the air conditioner at each of the proposed installation locations, the proposed installation locations that satisfy the preset health status change trend conditions and the metabolic heat production change conditions are determined from all the proposed installation locations, and are used as the target installation locations that satisfy the preset airflow convection conditions.
7. A device for determining the installation location of an air conditioner based on indoor parameters, characterized in that, The apparatus is used to perform the air conditioner installation location determination method based on indoor parameters as described in any one of claims 1-6, and the apparatus comprises: The acquisition module is used to acquire indoor parameters of the area where air conditioning needs to be installed; the indoor parameters include at least one of the following: house type parameters, house floor parameters, house orientation parameters, and house geometric structure parameters. The prediction module is used to predict, for each potential installation location in the preset area, the corresponding operating airflow convection parameters after the air conditioner is installed at the potential installation location, based on the indoor parameters of the area; the operating airflow convection parameters include at least one of operating airflow convection intensity parameters, operating airflow convection direction parameters, and operating airflow convection heat transfer parameters. The determining module is used to determine a target installation location that meets preset airflow convection conditions from all the undetermined installation locations based on the airflow convection parameters corresponding to each undetermined installation location of the air conditioner, so as to install the air conditioner at the target installation location.
8. A device for determining the installation location of an air conditioner based on indoor parameters, characterized in that, The device includes: Memory containing executable program code; A processor coupled to the memory; The processor calls the executable program code stored in the memory to execute the air conditioner installation location determination method based on indoor parameters as described in any one of claims 1-6.
9. A computer storage medium, characterized in that, The computer storage medium stores computer instructions, which, when invoked, are used to execute the air conditioner installation location determination method based on indoor parameters as described in any one of claims 1-6.
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