Air conditioner installation management and control method and device based on outdoor parameters
By collecting and analyzing outdoor parameter data, an air conditioning installation plan is generated, which solves the problem of inaccurate air conditioning installation, achieves precise installation of the air conditioning unit and the outdoor unit, and improves the installation effect and service life.
Patent Information
- Application Number
- CN202311333137.4
- 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
The lack of accurate data support in the current air conditioner installation process leads to poor coordination between the installation location and the environment, which can easily result in errors and reduced service life.
By collecting outdoor parameter data, the installation information of the air conditioner in the proposed installation scenario is determined, and an installation plan for the air conditioner main unit and outdoor unit is generated. The installation location is optimized by combining user needs and airflow control information.
It improves the accuracy of air conditioner installation and its compatibility with the environment, ensuring that the installation positions of the air conditioner unit and outdoor unit are adapted to the installation scenario, thereby enhancing user experience and equipment lifespan.
Smart Images

Figure CN119826246B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of air conditioning installation technology, and in particular to an air conditioning installation control method and device based on outdoor parameters. Background Technology
[0002] Currently, the indoor and outdoor units of wall-mounted air conditioners are typically installed by installers based on their past experience. This method demands a high level of expertise from the installers. Furthermore, due to the varying skill levels of installers, the installation results are highly unpredictable. Even experienced installers are prone to errors, as their reliance on experience lacks precise data support. A common problem is poor coordination between the air conditioner's installation location and its surrounding environment, leading to errors or improper installation, such as poor drainage. This reduces the lifespan of both the indoor and outdoor units and negatively impacts the user experience. Therefore, addressing the technical challenges of inaccurate air conditioner installation and improving the coordination between air conditioner installation and its environment is crucial. Summary of the Invention
[0003] The technical problem to be solved by the present invention is to provide an air conditioner installation control method and device based on outdoor parameters, which can reduce the situation of inaccurate air conditioner installation and thus improve the coordination between air conditioner installation and the environment.
[0004] To address the aforementioned technical problems, the first aspect of this invention discloses an air conditioning installation and control method based on outdoor parameters, the method comprising:
[0005] Collect outdoor data corresponding to preset outdoor parameters. The outdoor data is used to determine the installation information of the air conditioner in its installation scenario. The air conditioner includes an air conditioner unit installed indoors and an air conditioner outdoor unit installed outdoors.
[0006] Based on the outdoor data, the target area in the installation scenario that meets the air conditioning control conditions and its corresponding air conditioning control information are determined. The air conditioning control information is used to adjust the installation information of the air conditioning unit and the air conditioning outdoor unit.
[0007] Based on the airflow control information and the air outlet parameters of the air conditioner, and combined with the user's installation requirements, at least one installation plan is generated for the air conditioner main unit and the air conditioner outdoor unit.
[0008] As an optional implementation, in the first aspect of the present invention, the collection of outdoor data corresponding to preset outdoor parameters includes:
[0009] Identify all installation sites for the air conditioner in its intended installation scenario, including main unit sites for installing the air conditioner main unit and outdoor unit sites for installing the air conditioner outdoor unit;
[0010] A first influence factor corresponding to all the host sites and a second influence factor corresponding to all the outdoor sites are determined as preset outdoor parameters;
[0011] Collect first data corresponding to each first impact factor and second data corresponding to each second impact factor, and determine outdoor data based on all first data and all second data.
[0012] The first influencing factor includes at least one of the indoor orientation information, overall geometric structure, and indoor item layout corresponding to the installation scene; the second influencing factor includes at least one of the external heat absorption information, adjacent house information, or floor information corresponding to the exterior of the installation scene.
[0013] As an optional implementation, in the first aspect of the present invention, the method further includes:
[0014] For each installation scheme, it is input into a preset virtual model to obtain a test model corresponding to the installation scheme. The virtual model includes a three-dimensional scene model corresponding to the installation scene, and the virtual model is set with all scene parameters for the three-dimensional scene model. The scene parameters include at least one of the following: indoor scene layout, indoor environment parameters, overall modeling structure, and outdoor environment parameters.
[0015] For each test model, a virtual test operation is performed on the test model to obtain the test result corresponding to the test model; the virtual test operation includes at least one of the following: data acquisition for the test model after the air conditioner is started, model parameter adjustment, and data comparison analysis;
[0016] Analyze the test results corresponding to all the test models to obtain the location evaluation result for each test model; the location evaluation result for each test model includes the location evaluation level of that test model.
[0017] Select the target test model from all the test models whose location evaluation level is higher than the standard screening rating, and provide the target test model and its corresponding installation plan to the user.
[0018] As an optional implementation, in the first aspect of the present invention, determining the target area in the installation scenario that meets the airflow control conditions and its corresponding airflow control information based on the outdoor data includes:
[0019] Based on the first data, the ventilation area and its ventilation direction in the installation scenario are determined; then, the air outlet direction intersecting with the ventilation direction and its corresponding air outlet area are determined, and the area in the installation scenario other than the ventilation area and the air outlet area is determined as the wind-receiving area;
[0020] The exhaust airflow direction of the outdoor unit of the air conditioner is determined based on the second data. Then, based on the exhaust airflow direction and the second data, the area with the highest heat absorption among the air outlet area, the ventilation area, and the air receiving area is determined as the target area that meets the airflow control conditions. Neither the air conditioner main unit nor the outdoor unit is installed in the target area.
[0021] Based on the heat absorption of the target area, the airflow direction, the ventilation direction, and the size of the space in the installation scenario, airflow control information is generated for the target area.
[0022] As an optional implementation, in the first aspect of the present invention, generating airflow control information for the target area based on the regional heat absorption of the target area, the air outlet direction, the ventilation direction, and the space size of the installation scenario includes:
[0023] Calculate the heat exchange value of the ventilation area based on the ventilation area and the ventilation direction;
[0024] Based on the air outlet parameters of the air conditioning unit, multiple air outlet data points are determined for the air conditioning unit installed in the air outlet area. Each air outlet data point corresponds to an installation height of the air conditioning unit in the air outlet area, the angle of the air outlet baffle of the air conditioning unit, the air outlet direction, and the air outlet influence area.
[0025] Based on the heat absorption of the target area, the heat exchange value, and the size of the space in the installation scenario, calculate the comprehensive heat exchange value corresponding to each air outlet data.
[0026] Select the comprehensive heat exchange value that is greater than the preset screening value from all the comprehensive heat exchange values, and use it as the target heat exchange value. Then, determine the air outlet data of the air conditioning unit installed in the air outlet area corresponding to the target heat exchange value as the air blowing control information.
[0027] As an optional implementation, in the first aspect of the present invention, the step of analyzing the test results corresponding to all the test models to obtain the position evaluation result of each test model includes:
[0028] For each test model, the first rating value of the air conditioner unit is calculated based on the unit installation height, air outlet direction, and air outlet influence range of the air conditioner unit in the test model.
[0029] Based on the outdoor unit installation height, airflow direction, and installation difficulty of the outdoor unit described in the test model, the second rating value for installing the outdoor unit of the air conditioner is calculated.
[0030] Based on the first rating value, the second rating value, and the installation cost of the air conditioner corresponding to the test model, a comprehensive evaluation information of the test model is generated as the location evaluation result.
[0031] As an optional implementation, in a first aspect of the invention, determining outdoor data based on all the first data and all the second data includes:
[0032] When the first data includes orientation data corresponding to the indoor orientation information, and the second data includes heat absorption data corresponding to the external heat absorption information and neighbor data corresponding to the adjacent house information, the external light blocking area of each wall under different light angles in the scene to be installed is determined according to the neighbor data.
[0033] Based on the orientation data, the heat absorption data, and the external light blocking area, determine the target wall data corresponding to each wall surface;
[0034] And all the first data, all the second data, and the target wall data corresponding to each of the wall surfaces are determined as outdoor data;
[0035] The target wall data for each wall includes the wall heat exchange rate and the wall sound insulation value under different indoor and outdoor temperature differences.
[0036] A second aspect of the present invention discloses an air conditioner installation control device based on outdoor parameters, the device comprising:
[0037] The data acquisition module is used to acquire outdoor data corresponding to preset outdoor parameters. The outdoor data is used to determine the installation information of the air conditioner in its installation scenario. The air conditioner includes an air conditioner unit installed indoors and an air conditioner outdoor unit installed outdoors.
[0038] The determination module is used to determine, based on the outdoor data, the target area in the installation scenario that meets the air conditioning control conditions and its corresponding air conditioning control information, wherein the air conditioning control information is used to adjust the installation information of the air conditioning unit and the air conditioning outdoor unit respectively;
[0039] The generation module is used to generate at least one installation plan for the air conditioning unit and the air conditioning outdoor unit based on the air blowing control information and the air outlet parameters of the air conditioner, combined with the user's installation requirements.
[0040] As an optional implementation, in the second aspect of the present invention, the method by which the acquisition module acquires outdoor data corresponding to preset outdoor parameters specifically includes:
[0041] Identify all installation sites for the air conditioner in its intended installation scenario, including main unit sites for installing the air conditioner main unit and outdoor unit sites for installing the air conditioner outdoor unit;
[0042] A first influence factor corresponding to all the host sites and a second influence factor corresponding to all the outdoor sites are determined as preset outdoor parameters;
[0043] Collect first data corresponding to each first impact factor and second data corresponding to each second impact factor, and determine outdoor data based on all first data and all second data.
[0044] The first influencing factor includes at least one of the indoor orientation information, overall geometric structure, and indoor item layout corresponding to the installation scene; the second influencing factor includes at least one of the external heat absorption information, adjacent house information, or floor information corresponding to the exterior of the installation scene.
[0045] As an optional implementation, in a second aspect of the invention, the apparatus further includes:
[0046] The virtual testing module is used to input each of the installation schemes into a preset virtual model to obtain a test model corresponding to the installation scheme. The virtual model includes a three-dimensional scene model corresponding to the installation scene, and the virtual model is set with all scene parameters for the three-dimensional scene model. The scene parameters include at least one of the following: indoor scene layout, indoor environment parameters, overall modeling structure, and outdoor environment parameters.
[0047] The virtual testing module is also used to perform virtual testing operations on each of the test models to obtain the test results corresponding to the test model; the virtual testing operations include at least one of the following: data acquisition for the test model after the air conditioner is started, model parameter adjustment, and data comparison analysis;
[0048] The analysis module is used to analyze the test results corresponding to all the test models to obtain the location evaluation result of each test model; the location evaluation result corresponding to each test model includes the location evaluation level of the test model.
[0049] The filtering module is used to filter out target test models from all the test models whose location evaluation level is higher than the standard filtering rating, and to provide the target test model and its corresponding installation scheme to the user.
[0050] As an optional implementation, in the second aspect of the present invention, the method by which the determining module determines the target area in the installation scenario that meets the airflow control conditions and its corresponding airflow control information based on the outdoor data specifically includes:
[0051] Based on the first data, the ventilation area and its ventilation direction in the installation scenario are determined; then, the air outlet direction intersecting with the ventilation direction and its corresponding air outlet area are determined, and the area in the installation scenario other than the ventilation area and the air outlet area is determined as the wind-receiving area;
[0052] The exhaust airflow direction of the outdoor unit of the air conditioner is determined based on the second data. Then, based on the exhaust airflow direction and the second data, the area with the highest heat absorption among the air outlet area, the ventilation area, and the air receiving area is determined as the target area that meets the airflow control conditions. Neither the air conditioner main unit nor the outdoor unit is installed in the target area.
[0053] Based on the heat absorption of the target area, the airflow direction, the ventilation direction, and the size of the space in the installation scenario, airflow control information is generated for the target area.
[0054] As an optional implementation, in a second aspect of the present invention, the method by which the determining module generates airflow control information for the target area based on the regional heat absorption of the target area, the airflow direction, the ventilation direction, and the space size of the installation scenario specifically includes:
[0055] Calculate the heat exchange value of the ventilation area based on the ventilation area and the ventilation direction;
[0056] Based on the air outlet parameters of the air conditioning unit, multiple air outlet data points are determined for the air conditioning unit installed in the air outlet area. Each air outlet data point corresponds to an installation height of the air conditioning unit in the air outlet area, the angle of the air outlet baffle of the air conditioning unit, the air outlet direction, and the air outlet influence area.
[0057] Based on the heat absorption of the target area, the heat exchange value, and the size of the space in the installation scenario, calculate the comprehensive heat exchange value corresponding to each air outlet data.
[0058] Select the comprehensive heat exchange value that is greater than the preset screening value from all the comprehensive heat exchange values, and use it as the target heat exchange value. Then, determine the air outlet data of the air conditioning unit installed in the air outlet area corresponding to the target heat exchange value as the air blowing control information.
[0059] As an optional implementation, in the second aspect of the present invention, the method by which the analysis module analyzes the test results corresponding to all the test models to obtain the position evaluation result of each test model specifically includes:
[0060] For each test model, the first rating value of the air conditioner unit is calculated based on the unit installation height, air outlet direction, and air outlet influence range of the air conditioner unit in the test model.
[0061] Based on the outdoor unit installation height, airflow direction, and installation difficulty of the outdoor unit described in the test model, the second rating value for installing the outdoor unit of the air conditioner is calculated.
[0062] Based on the first rating value, the second rating value, and the installation cost of the air conditioner corresponding to the test model, a comprehensive evaluation information of the test model is generated as the location evaluation result.
[0063] As an optional implementation, in a second aspect of the present invention, the method by which the acquisition module determines outdoor data based on all the first data and all the second data specifically includes:
[0064] When the first data includes orientation data corresponding to the indoor orientation information, and the second data includes heat absorption data corresponding to the external heat absorption information and neighbor data corresponding to the adjacent house information, the external light blocking area of each wall under different light angles in the scene to be installed is determined according to the neighbor data.
[0065] Based on the orientation data, the heat absorption data, and the external light blocking area, determine the target wall data corresponding to each wall surface;
[0066] And all the first data, all the second data, and the target wall data corresponding to each of the wall surfaces are determined as outdoor data;
[0067] The target wall data for each wall includes the wall heat exchange rate and the wall sound insulation value under different indoor and outdoor temperature differences.
[0068] A third aspect of the present invention discloses another air conditioning installation control device based on outdoor parameters, the device comprising:
[0069] Memory containing executable program code;
[0070] A processor coupled to the memory;
[0071] The processor calls the executable program code stored in the memory to execute the air conditioning installation and control method based on outdoor parameters disclosed in the first aspect of the present invention.
[0072] The fourth aspect of the present invention discloses a computer storage medium storing computer instructions, which, when invoked, are used to execute the air conditioning installation and control method based on outdoor parameters disclosed in the first aspect of the present invention.
[0073] Compared with the prior art, the embodiments of the present invention have the following beneficial effects:
[0074] This invention provides a method for air conditioner installation management based on outdoor parameters. The method includes: collecting outdoor data corresponding to preset outdoor parameters, whereby the outdoor data is used to determine the installation information of the air conditioner in its intended installation scenario. The air conditioner includes an indoor air conditioning unit and an outdoor unit. Based on the outdoor data, the method identifies target areas in the intended installation scenario that meet the airflow control conditions and their corresponding airflow control information, which is used to adjust the installation information of the air conditioning unit and the outdoor unit. Based on the airflow control information and the air conditioner's air outlet parameters, combined with the user's installation requirements, at least one installation plan is generated for the air conditioning unit and the outdoor unit. Therefore, implementing this invention enables outdoor data collection and analysis before air conditioner installation, simultaneously identifying target areas requiring key airflow adjustments and their airflow control information. Then, based on the airflow control information and the air conditioner's air outlet parameters, combined with the user's installation requirements, a corresponding air conditioner installation plan is generated, making the installation of the air conditioning unit and outdoor unit more precise. This intelligent approach, combining outdoor data from the intended installation scenario, ensures that the final installation positions of the air conditioning unit and outdoor unit are adapted to the intended installation scenario, thus improving the scenario adaptability of air conditioner installation. Attached Figure Description
[0075] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0076] Figure 1 This is a schematic diagram illustrating the applicable scenario for an air conditioning installation and control method based on outdoor parameters disclosed in an embodiment of the present invention.
[0077] Figure 2 This is a flowchart illustrating an air conditioning installation and control method based on outdoor parameters disclosed in an embodiment of the present invention.
[0078] Figure 3 This is a flowchart illustrating another air conditioning installation control method based on outdoor parameters disclosed in an embodiment of the present invention.
[0079] Figure 4 This is a schematic diagram of the structure of an air conditioning installation control device based on outdoor parameters disclosed in an embodiment of the present invention;
[0080] Figure 5 This is a schematic diagram of another air conditioning installation control device based on outdoor parameters disclosed in an embodiment of the present invention;
[0081] Figure 6 This is a schematic diagram of another air conditioning installation and control device based on outdoor parameters disclosed in an embodiment of the present invention. Detailed Implementation
[0082] To enable those skilled in the art to better understand the present invention, the technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0083] The terms "first," "second," etc., used in the specification, claims, and accompanying drawings of this invention are used to distinguish different objects, not to describe a specific order. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion. For example, a process, method, apparatus, product, or end that includes a series of steps or units is not limited to the listed steps or units, but may optionally include steps or units not listed, or may optionally include other steps or units inherent to these processes, methods, products, or ends.
[0084] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of the invention. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0085] This invention discloses an air conditioner installation control method and device based on outdoor parameters. It enables outdoor data collection and analysis before air conditioner installation, simultaneously locating the target area requiring key airflow adjustments and its airflow control information. Then, based on this airflow control information and the air conditioner's output parameters, combined with the user's installation needs, a corresponding air conditioner installation is generated. This makes the installation of the air conditioner's main unit and outdoor unit more precise. This intelligent approach, combining outdoor data from the installation scenario, ensures that the final installation positions of the air conditioner's main unit and outdoor unit are adapted to the installation scenario, thus improving the scenario adaptability of the air conditioner installation. Detailed descriptions follow.
[0086] To better understand the air conditioner installation control method and device based on outdoor parameters described in this invention, the applicable scenario for the air conditioner installation control method based on outdoor parameters is first described. Specifically, this scenario can be as follows: Figure 1 As shown, Figure 1 This is a schematic diagram illustrating a scenario applicable to the air conditioning installation and control method based on outdoor parameters disclosed in an embodiment of the present invention. Figure 1 As shown, the scenario may include:
[0087] Air conditioning unit 101 is used for... Figure 1 Adjust indoor scene parameters such as cooling and heating in the shown scenario.
[0088] The air conditioning unit 101 is an indoor unit installed in an indoor environment; and the indoor unit can be installed on any of the four walls. The actual installation location can be adjusted according to user needs and installation plan suggestions, and this architectural diagram does not limit it.
[0089] Optional, Figure 1 The scenario shown may also include an air conditioner outdoor unit, which is typically installed in... Figure 1 In the scenario shown, the installation location of the outdoor air conditioning unit on the outdoor wall needs to take into account factors such as the heat absorption of the outdoor wall, the amount of sunlight, and the pipe connection with the indoor unit.
[0090] It should be noted that, Figure 1 The scenario shown is only to illustrate the applicable scenarios for the air conditioning installation and control method based on outdoor parameters. The air conditioning unit 101 involved is only shown schematically. The specific structure / size / shape / location / installation method, etc., can be adapted to the actual scenario. Figure 1 The scenario shown is not limited to this.
[0091] The above describes the application scenarios applicable to the air conditioner installation control method based on outdoor parameters. The following is a detailed description of the air conditioner installation control method and device based on outdoor parameters.
[0092] Example 1
[0093] Please see Figure 2 , Figure 2 This is a flowchart illustrating an air conditioning installation and control method based on outdoor parameters disclosed in an embodiment of the present invention. Wherein, Figure 2 The described air conditioner installation control method based on outdoor parameters can be applied to air conditioner installation control devices based on outdoor parameters, and the embodiments of the present invention are not limited thereto. Figure 2 As shown, the air conditioning installation management method based on outdoor parameters may include the following operations:
[0094] 201. Collect outdoor data corresponding to preset outdoor parameters. The outdoor data is used to determine the installation information of the air conditioner in the installation scenario. The air conditioner includes the air conditioning unit installed indoors and the air conditioning outdoor unit installed outdoors.
[0095] In this embodiment of the invention, step 201, which involves collecting outdoor data corresponding to preset outdoor parameters, specifically includes:
[0096] Identify all installation sites for the air conditioner in its intended installation scenario. All installation sites include the main unit installation site for the air conditioner's main unit and the outdoor unit installation site for the air conditioner's outdoor unit.
[0097] The first influence factor corresponding to all host sites and the second influence factor corresponding to all outdoor sites were determined as preset outdoor parameters.
[0098] Collect first data corresponding to each first impact factor and second data corresponding to each second impact factor, and determine outdoor data based on all first data and all second data;
[0099] The first influencing factor includes at least one of the following: indoor orientation information, overall geometric structure, and indoor item layout corresponding to the installation scene; the second influencing factor includes at least one of the following: external heat absorption information, adjacent building information, or floor information corresponding to the installation scene.
[0100] In this embodiment of the invention, specifically, the indoor orientation information corresponding to the installation scene can refer to the house being oriented north-south, east-west, etc.; the external heat absorption information includes the material of each wall (such as cement wall, red brick wall, exterior with heat insulation coating, or a wall with floor-to-ceiling glass design, etc.) and the heat insulation information of the material; the adjacent house information includes whether the installation scene is a detached building and the distance between the room corresponding to the installation scene and other rooms; the floor information includes the floor where the installation scene is located or its vertical height from the ground, etc., which are not limited in this embodiment of the invention.
[0101] In this embodiment of the invention, the actual installation of the air conditioner requires the installation of both the air conditioner main unit and the outdoor unit. At this time, the collected outdoor data can be collected in a targeted manner for the installation of the air conditioner main unit and the outdoor unit: by collecting the first data corresponding to multiple preset first influencing factors as outdoor parameters for determining the installation location of the air conditioner main unit, and by collecting the second data corresponding to multiple preset second influencing factors as outdoor parameters for determining the installation location of the outdoor unit; thus, the installation location can be determined more accurately when installing different components of the air conditioner (main unit and outdoor unit).
[0102] As can be seen, in this embodiment of the invention, corresponding first and second influencing factors are set for the installation of the air conditioning unit and the air conditioning outdoor unit, respectively, so as to collect first and second data in a targeted manner as analysis data for subsequently determining the installation positions of the air conditioning unit and the air conditioning outdoor unit; the collection of outdoor data corresponding to the outdoor parameters means that the air conditioning installation position takes into account the surrounding environment, which is conducive to improving the adaptability of the subsequently determined air conditioning installation scheme to the surrounding environment; the collection of the first and second data is conducive to improving the accuracy of determining the installation positions of the two units.
[0103] In this embodiment of the invention, the method of determining outdoor data based on all first data and all second data specifically includes:
[0104] When the first data includes orientation data corresponding to indoor orientation information, and the second data includes heat absorption data corresponding to external heat absorption information and neighboring data corresponding to adjacent house information, the external light blocking area of each wall under different light angles in the scene to be installed is determined based on the neighboring data.
[0105] Based on the orientation data, heat absorption data, and external light blocking area, determine the target wall data corresponding to each wall surface;
[0106] And all the first data, all the second data, and the target wall data corresponding to each wall are determined as outdoor data;
[0107] The target wall data for each wall includes the wall's heat exchange rate under different indoor and outdoor temperature differences and the wall's sound insulation value.
[0108] As can be seen, in this embodiment of the invention, in addition to the basic integration of the first and second data, the outdoor data can further determine the target wall data of each wall in the installation scenario, including the room orientation data of the first data, the heat absorption data of the second data, and the neighboring data. As supplementary data for determining the outdoor data, it enriches the data content of the outdoor data and improves the accuracy of the outdoor data.
[0109] 202. Based on outdoor data, determine the target area in the installation scenario that meets the airflow control conditions and its corresponding airflow control information. The airflow control information is used to adjust the installation information of the air conditioning unit and the outdoor unit.
[0110] 203. Based on the airflow control information and the air outlet parameters of the air conditioner, and in conjunction with the user's installation requirements, generate at least one installation plan for the air conditioner main unit and the air conditioner outdoor unit.
[0111] It is evident that implementation Figure 2 The described air conditioner installation control method based on outdoor parameters enables outdoor data collection and analysis before air conditioner installation, and simultaneously identifies the target area requiring key air conditioning airflow adjustment and its airflow control information. Then, based on this airflow control information and the air conditioner's output parameters, combined with the user's installation requirements, a corresponding air conditioner installation is generated, making the installation of the air conditioner unit and outdoor unit more precise. This intelligent approach, combining outdoor data from the installation scenario, ensures that the final installation positions of the air conditioner unit and outdoor unit are adapted to the installation scenario, thus improving the scenario adaptability of air conditioner installation.
[0112] Example 2
[0113] Please see Figure 3 , Figure 3 This is a flowchart illustrating another air conditioning installation and control method based on outdoor parameters disclosed in an embodiment of the present invention. Figure 3 The described air conditioner installation control method based on outdoor parameters can be applied to air conditioner installation control devices based on outdoor parameters, and the embodiments of the present invention are not limited thereto. Figure 3 As shown, the air conditioning installation management method based on outdoor parameters may include the following operations:
[0114] 301. Collect outdoor data corresponding to preset outdoor parameters. The outdoor data is used to determine the installation information of the air conditioner in its installation scenario. The air conditioner includes the air conditioning unit installed indoors and the air conditioning outdoor unit installed outdoors.
[0115] 302. Based on outdoor data, determine the target area in the installation scenario that meets the airflow control conditions and its corresponding airflow control information. The airflow control information is used to adjust the installation information of the air conditioning unit and the outdoor unit.
[0116] 303. Based on the airflow control information and the air outlet parameters of the air conditioner, and in conjunction with the user's installation requirements, generate at least one installation plan for the air conditioner main unit and the air conditioner outdoor unit.
[0117] For further descriptions of steps 301-303 in this embodiment of the invention, please refer to the other specific descriptions of steps 201-203 in Embodiment 1. These descriptions will not be repeated in this embodiment of the invention.
[0118] 304. For each installation scheme, input it into the preset virtual model to obtain the test model corresponding to that installation scheme.
[0119] In this embodiment of the invention, the virtual model includes a three-dimensional scene model corresponding to the scene to be installed, and the virtual model is set with all scene parameters for the three-dimensional scene modeling. The scene parameters include at least one of the following: indoor scene layout, indoor environment parameters, overall modeling structure, and outdoor environment parameters.
[0120] In this embodiment of the invention, the virtual model and test model can be simulated and displayed through an APP on a mobile terminal (such as a mobile phone or tablet) or a computer terminal (such as a desktop computer), and users can edit and test the model on the APP.
[0121] 305. For each test model, perform a virtual test operation on the test model to obtain the test results corresponding to the test model.
[0122] In this embodiment of the invention, the virtual test operation includes at least one of the following: data acquisition for the test model after the air conditioner is started, model parameter adjustment, and data comparison analysis.
[0123] In this embodiment of the invention, specifically, when initiating a virtual test for a certain test model, the air conditioner is first started according to user settings (or default parameters), and then data changes in the scene of the test model are collected after the air conditioner is started. The initial data of the test model is compared and analyzed with the data after the air conditioner is started. During this process, the output parameters of the air conditioner in the test model can be adjusted.
[0124] 306. Analyze the test results corresponding to all test models to obtain the location evaluation result of each test model; the location evaluation result corresponding to each test model includes the location evaluation level of that test model.
[0125] In this embodiment of the invention, step 306, analyzing the test results corresponding to all test models to obtain the position evaluation result of each test model, specifically includes the following methods:
[0126] For each test model, the first rating value of the air conditioner unit is calculated based on the unit's installation height, airflow direction, and airflow influence range.
[0127] Based on the installation height of the outdoor unit, the airflow direction of the outdoor unit, and the installation difficulty of the outdoor unit in the test model, the second rating value for installing the outdoor unit of the air conditioner is calculated.
[0128] Based on the first rating value, the second rating value, and the installation cost of the air conditioner corresponding to the test model, a comprehensive evaluation information of the test model is generated as the location evaluation result.
[0129] 307. Select the target test model from all test models whose location evaluation level is higher than the standard screening rating, and provide the target test model and its corresponding installation plan to the user.
[0130] It is evident that implementation Figure 3 The described air conditioner installation management method based on outdoor parameters includes a virtual effect display and analysis function after the installation plan is generated. Through the virtual testing function built into the APP or software program, users can intuitively view the installation effect of the air conditioner in different installation locations. During this process, the method can also automatically analyze and generate the location evaluation level for each test model, which improves the convenience for users to view the installation effect. At the same time, the virtual testing function makes the user's installation choices more intuitive and diversified, and makes the final determined air conditioner installation location more suitable for the user's needs.
[0131] In an optional embodiment, step 302, which determines the target area in the installation scenario that meets the airflow control conditions and its corresponding airflow control information based on outdoor data, specifically includes the following methods:
[0132] Based on the first data, determine the ventilation area and its ventilation direction in the installation scenario; then determine the air outlet direction that intersects with the ventilation direction and its corresponding air outlet area, and determine the area in the installation scenario other than the ventilation area and the air outlet area as the wind-receiving area;
[0133] The exhaust airflow direction of the outdoor unit of the air conditioner is determined based on the second data. Then, based on the exhaust airflow direction and the second data, the area with the highest heat absorption among the three areas of air outlet area, ventilation area and air receiving area is determined as the target area that meets the air blowing control conditions. Neither the air conditioner main unit nor the outdoor unit is installed in the target area.
[0134] Based on the heat absorption, airflow direction, ventilation direction of the target area, and the size of the space to be installed, airflow control information is generated for the target area.
[0135] In this optional embodiment, the ventilation area generally refers to the area where ventilation points such as entrances, windows, or exhaust vents are located in the installation scenario.
[0136] In this optional embodiment, the method of generating airflow control information for the target area based on the area's heat absorption, airflow direction, ventilation direction, and the size of the space to be installed specifically includes:
[0137] Calculate the heat exchange value of the ventilation area based on the ventilation area and ventilation direction;
[0138] Based on the air outlet parameters of the air conditioning unit, determine multiple air outlet data points for the air conditioning unit installed in the air outlet area. Each air outlet data point corresponds to an installation height of the air conditioning unit in the air outlet area, as well as the angle of the air outlet baffle, the air outlet direction, and the area affected by the air outlet.
[0139] Based on the heat absorption and heat exchange value of the target area and the size of the space where the installation will be carried out, calculate the comprehensive heat exchange value corresponding to each air outlet data.
[0140] Select the comprehensive heat exchange value that is greater than the preset screening value from all comprehensive heat exchange values, and use it as the target heat exchange value. Then, determine the air outlet data of the air conditioning unit installed in the air outlet area corresponding to the target heat exchange value as the air blowing control information.
[0141] In this optional embodiment, the method for calculating the heat exchange value of the ventilation area based on the ventilation area and the ventilation direction specifically includes:
[0142] Based on the material corresponding to the identified ventilation area, determine the basic heat dissipation rate of the ventilation area and the ventilation heat dissipation rate corresponding to the ventilation area and ventilation direction; and obtain the thermal conductivity and heat absorption information of the material in the area.
[0143] Based on the basic heat dissipation rate, ventilation heat dissipation rate, thermal conductivity information, and heat dissipation information of the ventilation area, the heat exchange value of the ventilation area is calculated.
[0144] As can be seen, in this optional embodiment, guided by regional heat absorption, the first data and the second data can be intelligently combined to determine the target area by comprehensively considering regional airflow guidance and regional heat absorption. This makes the determined target area more accurate and reliable. Subsequently, based on multiple factors such as the regional heat absorption, airflow direction, ventilation direction, and the size of the space to be installed in the target area, airflow control information can be generated, which improves the reliability and accuracy of the airflow control information.
[0145] Example 3
[0146] Please see Figure 4 , Figure 4This is a schematic diagram of an air conditioner installation and control device based on outdoor parameters disclosed in an embodiment of the present invention. The air conditioner installation and control device based on outdoor parameters can be an air conditioner installation and control terminal based on outdoor parameters, an air conditioner installation and control equipment based on outdoor parameters, an air conditioner installation and control system based on outdoor parameters, or an air conditioner installation and control server based on outdoor parameters. The air conditioner installation and control server based on outdoor parameters can be a local server, a remote server, or a cloud server (also known as a cloud server). When the air conditioner installation and control server based on outdoor parameters is not a cloud server, it can communicate with the cloud server. This embodiment of the present invention does not impose any limitations. Figure 4 As shown, the air conditioning installation control device based on outdoor parameters may include a data acquisition module 401, a determination module 402, and a generation module 403, wherein:
[0147] The data acquisition module 401 is used to acquire outdoor data corresponding to preset outdoor parameters. The outdoor data is used to determine the installation information of the air conditioner in its installation scenario. The air conditioner includes the air conditioner unit installed indoors and the air conditioner outdoor unit installed outdoors.
[0148] In this embodiment of the invention, the method by which the acquisition module 401 acquires outdoor data corresponding to preset outdoor parameters specifically includes:
[0149] Identify all installation sites for the air conditioner in its intended installation scenario. All installation sites include the main unit installation site for the air conditioner's main unit and the outdoor unit installation site for the air conditioner's outdoor unit.
[0150] The first influence factor corresponding to all host sites and the second influence factor corresponding to all outdoor sites were determined as preset outdoor parameters.
[0151] Collect first data corresponding to each first impact factor and second data corresponding to each second impact factor, and determine outdoor data based on all first data and all second data;
[0152] The first influencing factor includes at least one of the following: indoor orientation information, overall geometric structure, and indoor item layout corresponding to the installation scene; the second influencing factor includes at least one of the following: external heat absorption information, adjacent building information, or floor information corresponding to the installation scene.
[0153] As can be seen, in this embodiment of the invention, corresponding first and second influencing factors are set for the installation of the air conditioning unit and the air conditioning outdoor unit, respectively, so as to collect first and second data in a targeted manner as analysis data for subsequently determining the installation positions of the air conditioning unit and the air conditioning outdoor unit; the collection of outdoor data corresponding to the outdoor parameters means that the air conditioning installation position takes into account the surrounding environment, which is conducive to improving the adaptability of the subsequently determined air conditioning installation scheme to the surrounding environment; the collection of the first and second data is conducive to improving the accuracy of determining the installation positions of the two units.
[0154] In this embodiment of the invention, the method by which the acquisition module 401 determines outdoor data based on all first data and all second data specifically includes:
[0155] When the first data includes orientation data corresponding to indoor orientation information, and the second data includes heat absorption data corresponding to external heat absorption information and neighboring data corresponding to adjacent house information, the external light blocking area of each wall under different light angles in the scene to be installed is determined based on the neighboring data.
[0156] Based on the orientation data, heat absorption data, and external light blocking area, determine the target wall data corresponding to each wall surface;
[0157] And all the first data, all the second data, and the target wall data corresponding to each wall are determined as outdoor data;
[0158] The target wall data for each wall includes the wall's heat exchange rate under different indoor and outdoor temperature differences and the wall's sound insulation value.
[0159] As can be seen, in this embodiment of the invention, in addition to the basic integration of the first and second data, the outdoor data can further determine the target wall data of each wall in the installation scenario, including the room orientation data of the first data, the heat absorption data of the second data, and the neighboring data. As supplementary data for determining the outdoor data, it enriches the data content of the outdoor data and improves the accuracy of the outdoor data.
[0160] The determination module 402 is used to determine the target area in the installation scenario that meets the air blowing control conditions and its corresponding air blowing control information based on outdoor data. The air blowing control information is used to adjust the installation information of the air conditioning unit and the air conditioning outdoor unit.
[0161] The generation module 403 is used to generate at least one installation plan for the air conditioning unit and the outdoor unit based on the air blowing control information and the air conditioner's air outlet parameters, combined with the user's installation requirements.
[0162] It is evident that implementation Figure 4The described air conditioner installation control device based on outdoor parameters can collect and analyze outdoor data before air conditioner installation, and locate the target area where the air conditioner's airflow needs to be adjusted and its airflow control information. Then, based on the airflow control information and the air conditioner's air outlet parameters, combined with the user's installation requirements, it generates the corresponding air conditioner installation, making the installation of the air conditioner unit and outdoor unit more accurate. This intelligent method of combining outdoor data of the installation scenario ensures that the final installation position of the air conditioner unit and outdoor unit can be adapted to the installation scenario, which is conducive to improving the scenario adaptability of air conditioner installation.
[0163] In an optional embodiment, such as Figure 5 As shown, the device may further include a virtual testing module 404, an analysis module 405, and a screening module 406, wherein:
[0164] The virtual testing module 404 is used to input each installation scheme into a preset virtual model to obtain a test model corresponding to the installation scheme. The virtual model includes a three-dimensional scene model corresponding to the scene to be installed, and the virtual model is set with all scene parameters for the three-dimensional scene model. The scene parameters include at least one of the following: indoor scene layout, indoor environment parameters, overall modeling structure, and outdoor environment parameters.
[0165] The virtual testing module 404 is also used to perform virtual testing operations on each test model to obtain the test results corresponding to the test model; the virtual testing operations include at least one of the following: data acquisition for the test model after the air conditioner is started, model parameter adjustment, and data comparison analysis.
[0166] Analysis module 405 is used to analyze the test results corresponding to all test models and obtain the position evaluation result of each test model; the position evaluation result of each test model includes the position evaluation level of that test model.
[0167] In this optional embodiment, the analysis module 405 analyzes the test results corresponding to all test models to obtain the position evaluation result of each test model in the following specific ways:
[0168] For each test model, the first rating value of the air conditioner unit is calculated based on the unit's installation height, airflow direction, and airflow influence range.
[0169] Based on the installation height of the outdoor unit, the airflow direction of the outdoor unit, and the installation difficulty of the outdoor unit in the test model, the second rating value for installing the outdoor unit of the air conditioner is calculated.
[0170] Based on the first rating value, the second rating value, and the installation cost of the air conditioner corresponding to the test model, a comprehensive evaluation information of the test model is generated as the location evaluation result.
[0171] The filtering module 406 is used to filter out target test models from all test models whose location evaluation level is higher than the standard screening rating, and to provide the target test model and its corresponding installation plan to the user.
[0172] It is evident that implementation Figure 5 The described air conditioner installation control device based on outdoor parameters, after generating the installation plan, also features a virtual effect display and analysis function. Through the virtual testing function built into the APP or software program, users can intuitively view the installation effect of the air conditioner at different installation locations. During this process, the device can automatically analyze and generate a location evaluation level for each test model, improving the convenience for users to view the installation effect. At the same time, the virtual testing function makes the user's installation choices more intuitive and diversified, ensuring that the final determined air conditioner installation location is more suitable for the user's needs.
[0173] In another optional embodiment, the method by which the determining module 402 determines the target area in the installation scenario that meets the airflow control conditions and its corresponding airflow control information based on outdoor data specifically includes:
[0174] Based on the first data, determine the ventilation area and its ventilation direction in the installation scenario; then determine the air outlet direction that intersects with the ventilation direction and its corresponding air outlet area, and determine the area in the installation scenario other than the ventilation area and the air outlet area as the wind-receiving area;
[0175] The exhaust airflow direction of the outdoor unit of the air conditioner is determined based on the second data. Then, based on the exhaust airflow direction and the second data, the area with the highest heat absorption among the three areas of air outlet area, ventilation area and air receiving area is determined as the target area that meets the air blowing control conditions. Neither the air conditioner main unit nor the outdoor unit is installed in the target area.
[0176] Based on the heat absorption, airflow direction, ventilation direction of the target area, and the size of the space to be installed, airflow control information is generated for the target area.
[0177] In this optional embodiment, the method by which the determining module 402 generates airflow control information for the target area based on the area's heat absorption, airflow direction, ventilation direction, and the size of the space to be installed includes:
[0178] Calculate the heat exchange value of the ventilation area based on the ventilation area and ventilation direction;
[0179] Based on the air outlet parameters of the air conditioning unit, determine multiple air outlet data points for the air conditioning unit installed in the air outlet area. Each air outlet data point corresponds to an installation height of the air conditioning unit in the air outlet area, as well as the angle of the air outlet baffle, the air outlet direction, and the area affected by the air outlet.
[0180] Based on the heat absorption and heat exchange value of the target area and the size of the space where the installation will be carried out, calculate the comprehensive heat exchange value corresponding to each air outlet data.
[0181] Select the comprehensive heat exchange value that is greater than the preset screening value from all comprehensive heat exchange values, and use it as the target heat exchange value. Then, determine the air outlet data of the air conditioning unit installed in the air outlet area corresponding to the target heat exchange value as the air blowing control information.
[0182] As can be seen, in this optional embodiment, guided by regional heat absorption, the first data and the second data can be intelligently combined to determine the target area by comprehensively considering regional airflow guidance and regional heat absorption. This makes the determined target area more accurate and reliable. Subsequently, based on multiple factors such as the regional heat absorption, airflow direction, ventilation direction, and the size of the space to be installed in the target area, airflow control information can be generated, which improves the reliability and accuracy of the airflow control information.
[0183] Example 4
[0184] Please see Figure 6 , Figure 6 This is a schematic diagram of another air conditioning installation and control device based on outdoor parameters disclosed in an embodiment of the present invention. Figure 6 As shown, the air conditioning installation control device based on outdoor parameters may include:
[0185] Memory 501 storing executable program code;
[0186] Processor 502 coupled to memory 501;
[0187] The processor 502 calls the executable program code stored in the memory 501 to execute the steps in the air conditioning installation and control method based on outdoor parameters described in Embodiment 1 or Embodiment 2 of the present invention.
[0188] Example 5
[0189] This invention discloses a computer storage medium storing computer instructions. When these computer instructions are invoked, they are used to execute the steps in the air conditioning installation and control method based on outdoor parameters described in Embodiment 1 or Embodiment 2 of this invention.
[0190] Example 6
[0191] This invention discloses a computer program product, which includes a non-transitory computer storage medium storing a computer program, and the computer program is operable to cause a computer to perform the steps in the air conditioning installation and control method based on outdoor parameters described in Embodiment 1 or Embodiment 2.
[0192] The device embodiments described above are merely illustrative. The modules described as separate components may or may not be physically separate, and the components shown as modules may or may not be physical modules; that is, they may be located in one place or distributed across multiple network modules. Some or all of the modules can be selected to achieve the purpose of this embodiment according to actual needs. Those skilled in the art can understand and implement this without any creative effort.
[0193] Through the detailed description of the above embodiments, those skilled in the art can clearly understand that each implementation method can be implemented by means of software plus necessary general-purpose hardware platforms, and of course, it can also be implemented by hardware. Based on this understanding, the above technical solutions, in essence or the part that contributes to the prior art, can be embodied in the form of a software product. This computer software product can be stored in a computer storage medium, including read-only memory (ROM), random access memory (RAM), programmable read-only memory (PROM), erasable programmable read-only memory (EPROM), one-time programmable read-only memory (OTPROM), electrically-erasable programmable read-only memory (EEPROM), compact disc read-only memory (CD-ROM) or other optical disc storage, disk storage, magnetic tape storage, or any other computer-readable medium that can be used to carry or store data.
[0194] Finally, it should be noted that the air conditioning installation control method and device based on outdoor parameters disclosed in the embodiments of the present invention are merely preferred embodiments of the present invention and are only used to illustrate the technical solutions of the present invention, not to limit it. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A method for controlling the installation of air conditioners based on outdoor parameters, characterized in that, The method comprises: Collecting outdoor data corresponding to preset outdoor parameters, the outdoor data being used to determine installation information of an air conditioner in a scene where the air conditioner is to be installed, the air conditioner comprising an air conditioner host installed indoors and an air conditioner outdoor unit installed outdoors; According to the outdoor data, determining a target region in the scene to be installed that meets a blowing regulation condition and corresponding blowing regulation information of the target region, the blowing regulation information being used to adjust installation information of the air conditioner host and the air conditioner outdoor unit respectively; According to the blowing regulation information and air outlet parameters of the air conditioner, at least one installation scheme for the air conditioner host and the air conditioner outdoor unit is generated in combination with installation requirements of a user; The collecting of the outdoor data corresponding to the preset outdoor parameters comprises: Determining all installation sites of the air conditioner in the scene to be installed, all the installation sites comprising a host site for installing the air conditioner host and an outdoor unit site for installing the air conditioner outdoor unit; Determining a first influence factor corresponding to all the host sites and a second influence factor corresponding to all the outdoor unit sites as the preset outdoor parameters; Collecting first data corresponding to each of the first influence factors and second data corresponding to each of the second influence factors, and determining outdoor data according to all the first data and all the second data; The first influence factor comprises at least one of indoor orientation information, overall geometric structure and indoor article layout of the scene to be installed; and the second influence factor comprises at least one of external heat absorption information, adjacent house information or floor information corresponding to an outside of the scene to be installed; The determining of the target region in the scene to be installed that meets the blowing regulation condition and the corresponding blowing regulation information of the target region according to the outdoor data comprises: Determining a ventilation region and a ventilation flow direction thereof in the scene to be installed according to the first data; then determining an air outlet flow direction and a corresponding air outlet region thereof intersecting the ventilation flow direction, and determining a wind receiving region in the scene to be installed except the ventilation region, the air outlet region and the wind receiving region; Determining an exhaust flow direction of the air conditioner outdoor unit according to the second data, and then determining a target region that meets the blowing regulation condition from among the air outlet region, the ventilation region and the wind receiving region according to the exhaust flow direction, the second data and a region heat absorption amount of the target region; neither the air conditioner host nor the air conditioner outdoor unit is installed in the target region; Generating blowing regulation information for the target region according to the region heat absorption amount of the target region, the exhaust flow direction, the ventilation flow direction and a space size of the scene to be installed. 2.The outdoor parameter-based air conditioner installation management method of claim 1, wherein The method further comprises: For each of the installation schemes, inputting the installation scheme into a preset virtual model to obtain a test model corresponding to the installation scheme, the virtual model comprising a three-dimensional scene modeling corresponding to the scene to be installed, and all scene parameters for the three-dimensional scene modeling being set in the virtual model, the scene parameters comprising at least one of indoor scene layout, indoor environment parameter, overall modeling structure and outdoor environment parameter. For each test model, a virtual test operation is performed on the test model to obtain a test result corresponding to the test model; the virtual test operation comprises at least one of data collection, model parameter adjustment, and data comparison analysis of the air conditioner after starting for the test model; All test results corresponding to the test models are analyzed to obtain a position evaluation result of each test model; the position evaluation result corresponding to each test model comprises a position evaluation level of the test model; From all the test models, a target test model whose position evaluation level is higher than a standard screening level is screened out, and the target test model and its corresponding installation scheme are fed back to the user. 3.The outdoor parameter-based air conditioner installation management method of claim 1, wherein The blowing regulation information for the target area is generated according to the area heat absorption of the target area, the air outlet flow direction, the ventilation flow direction, and the space size of the to-be-installed scene, comprising: According to the ventilation area of the ventilation area and the ventilation flow direction, the heat exchange value of the ventilation area is calculated; According to the air outlet parameters of the air conditioner host, a plurality of air outlet data of the air conditioner host installed in the air outlet area are determined, each air outlet data corresponding to an installation height of the air conditioner host on the air outlet area and an air outlet baffle angle, an air outlet flow direction and an air outlet influence area of the air conditioner host; According to the area heat absorption of the target area, the heat exchange value and the space size of the to-be-installed scene, a comprehensive heat exchange value corresponding to each air outlet data is calculated; From all the comprehensive heat exchange values, a comprehensive heat exchange value greater than a preset screening value is selected as a target heat exchange value, and the air outlet data of the air conditioner host installed in the air outlet area corresponding to the target heat exchange value is determined as the blowing regulation information. 4.The outdoor parameter-based air conditioner installation management method of claim 2, wherein The analysis of all test results corresponding to the test models to obtain the position evaluation result of each test model comprises: For each test model, a first rating value is calculated according to the host installation height, the host air outlet flow direction, and the host air outlet influence range of the air conditioner host in the test model; A second rating value is calculated according to the outdoor unit installation height, the outdoor unit air outlet flow direction, and the outdoor unit installation difficulty of the air conditioner outdoor unit in the test model; According to the first rating value, the second rating value and the installation cost of the air conditioner corresponding to the test model, a comprehensive evaluation information of the test model is generated as the position evaluation result. 5.The outdoor parameter-based air conditioner installation management method of claim 1, wherein The determination of outdoor data according to all first data and all second data comprises: When the first data comprises orientation data corresponding to the indoor orientation information, and the second data comprises heat absorption data corresponding to the external heat absorption information and inter-wall data corresponding to the adjacent house information, the external light shading area of each wall surface of the to-be-installed scene under different light angles is determined according to the inter-wall data; According to the orientation data, the heat absorption data and the external light shading area, target wall surface data corresponding to each wall surface is determined; determining all the first data, all the second data, and target wall surface data corresponding to each of the wall surfaces as outdoor data; The target wall surface data corresponding to each of the wall surfaces includes wall heat exchange rates and wall sound insulation values of the wall surface under different indoor-outdoor temperature differences.
6. An outdoor parameter-based air conditioner installation management device, characterized by The device is used to perform the outdoor parameter-based air conditioner installation control method according to any one of claims 1-5, and the device includes: an acquisition module, configured to acquire outdoor data corresponding to a preset outdoor parameter, the outdoor data being used to determine installation information corresponding to a scene where an air conditioner is to be installed, the air conditioner including an air conditioner host installed indoors and an air conditioner outdoor unit installed outdoors; a determination module, configured to determine, according to the outdoor data, a target area in the scene where the air conditioner is to be installed that meets a blowing regulation condition and blowing regulation information corresponding to the target area, the blowing regulation information being used to adjust installation information of the air conditioner host and the air conditioner outdoor unit respectively; a generation module, configured to generate at least one installation scheme for the air conditioner host and the air conditioner outdoor unit according to the blowing regulation information and air outlet parameters of the air conditioner, in combination with installation requirements of a user.
7. An outdoor parameter-based air conditioner installation management device, characterized by The device includes: a memory storing executable program codes; a processor coupled to the memory; the processor invokes the executable program codes stored in the memory to perform the outdoor parameter-based air conditioner installation control method according to any one of claims 1-5.
8. A computer storage medium, characterized in that, The computer storage medium stores computer instructions, and the computer instructions are invoked to perform the outdoor parameter-based air conditioner installation control method according to any one of claims 1-5.
Citation Information
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