Air conditioning control method and device based on air flow diffusion distribution consistency effect
By obtaining the spatial information and airflow output parameters of the scene where the air conditioner is located, determining the target area and controlling the airflow delivery, the problem of uneven airflow diffusion in smart air conditioners is solved, achieving more efficient airflow control and improving user experience.
Patent Information
- Application Number
- CN202411442598.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-15
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2044-10-15
AI Technical Summary
The existing airflow diffusion control method of smart air conditioners requires the remote control device to be always next to the user, which causes delayed and uneven airflow diffusion and makes it difficult to improve the user experience.
By obtaining the spatial information of the scene where the target air conditioner is located and the airflow output parameters of the air outlet, multiple target areas are determined, and the air conditioner is controlled to perform airflow delivery operations based on this information to achieve uniform distribution of airflow diffusion.
It improves the reliability and accuracy of air conditioning airflow control, achieves even distribution of airflow in the scene, and enhances the user experience.
Smart Images

Figure CN119103689B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of air conditioning control, and in particular to an air conditioning control method and device based on the consistency effect of air flow diffusion distribution. Background Art
[0002] With the rapid development of science and technology, more and more smart devices, such as smart air conditioners, have entered users' lives, making users increasingly feel the convenience and comfort brought by smart devices, which has greatly improved users' living environment and enhanced users' experience of using smart devices.
[0003] Currently, users typically adjust the wind speed of smart air conditioners using remote controls to experience the comfort of the air they deliver. However, this control method requires the remote control to be constantly nearby for timely control. Furthermore, this control method introduces a lag in airflow diffusion, which hinders even airflow distribution and hinders the user experience. Therefore, it is crucial to provide a method that improves the accuracy of airflow diffusion control for smart air conditioners. Summary of the Invention
[0004] The present invention provides an air conditioning control method and device based on the consistency effect of air flow diffusion distribution, which can improve the reliability and accuracy of air conditioning air flow delivery control, and further achieve the effect of average air flow distribution in the scene, thereby improving the user's air conditioning experience.
[0005] In order to solve the above technical problems, the first aspect of the present invention discloses an air conditioning control method based on the consistency effect of air flow diffusion distribution, the method comprising:
[0006] Acquire spatial information of a scene where a target air conditioner is located; the spatial information includes spatial layout information and spatial area information;
[0007] determining an airflow output parameter of an air outlet of the target air conditioner, and determining a plurality of target areas in the scene where airflow delivery is required based on spatial information of the scene and the airflow output parameter; the airflow output parameter including at least one of an airflow output volume parameter, an airflow output range parameter, and an airflow output path parameter;
[0008] According to all the target areas, the target air conditioner is controlled to perform corresponding airflow delivery operations so that the airflow diffusion distribution conditions of all the target areas match.
[0009] As an optional embodiment, in the first aspect of the present invention, determining multiple target areas in the scene that require airflow delivery based on the spatial information of the scene and the airflow output parameters includes:
[0010] determining object parameters of a target object in the scene, and determining blockage information of the output airflow of the target air conditioner based on spatial information of the scene, the airflow output parameters, and the object parameters; the object parameters including at least one of an object type parameter, an object placement position parameter, and an object air permeability parameter;
[0011] determining first airflow diffusion phenomenon information of the target air conditioner based on the output airflow obstruction information; the first airflow diffusion phenomenon information including at least one of first airflow diffusion position information, first airflow diffusion density information, and first airflow diffusion speed information;
[0012] Based on the first airflow diffusion phenomenon information, multiple target areas in the scene where airflow transportation is required are determined.
[0013] As an optional embodiment, in the first aspect of the present invention, before determining the plurality of target areas requiring airflow transport in the scene based on the first airflow diffusion phenomenon information, the method further includes:
[0014] Determining regional position information of a plurality of preset areas in the scene, and analyzing basic airflow information of each preset area based on the regional position information of all the preset areas and the spatial information of the scene; the basic airflow information of each preset area includes at least one of basic airflow direction information, basic airflow density information, and basic airflow position information of the preset area;
[0015] Determining change information of the output airflow of the target air conditioner based on the basic airflow information of all the preset areas and the airflow output parameters; the change information of the output airflow includes intensity change information and / or direction change information of the output airflow;
[0016] determining second airflow diffusion phenomenon information of the target air conditioner based on the change information of the output airflow; wherein the second airflow diffusion phenomenon information includes at least one of second airflow diffusion position information, second airflow diffusion density information, and second airflow diffusion speed information;
[0017] The step of determining, based on the first airflow diffusion phenomenon information, a plurality of target areas in the scene requiring airflow transportation includes:
[0018] According to the first airflow diffusion phenomenon information and the second airflow diffusion phenomenon information, a plurality of target areas in the scene requiring airflow transportation are determined.
[0019] As an optional embodiment, in the first aspect of the present invention, controlling the target air conditioner to perform corresponding airflow delivery operations according to all the target areas includes:
[0020] predicting an airflow storage parameter corresponding to each of the target areas based on the first airflow diffusion phenomenon information and the second airflow diffusion phenomenon information; the airflow storage parameter including at least one of an airflow storage duration parameter, an airflow storage location parameter, and an airflow storage amount parameter;
[0021] According to the airflow storage parameters corresponding to each of the target areas, the airflow delivery control parameters corresponding to each of the target areas are determined, and according to the airflow delivery control parameters corresponding to all of the target areas, the target air conditioner is controlled to perform the corresponding airflow delivery operation; the airflow delivery control parameters corresponding to each of the target areas include at least one of the airflow delivery temperature control parameters, airflow delivery position control parameters, airflow delivery volume control parameters, airflow delivery direction control parameters and airflow delivery duration control parameters corresponding to the target area.
[0022] As an optional embodiment, in the first aspect of the present invention, determining the airflow delivery control parameter corresponding to each target area according to the airflow storage parameter corresponding to each target area includes:
[0023] determining target parameters of a user of the target air conditioner;
[0024] determining, according to the user's target parameters, an airflow storage requirement parameter corresponding to each target area matching the user;
[0025] The airflow delivery control parameter corresponding to each target area is determined according to the airflow storage parameter and the corresponding airflow storage demand parameter corresponding to each target area.
[0026] As an optional embodiment, in the first aspect of the present invention, determining, based on the user's target parameters, the airflow storage requirement parameter corresponding to each target area matching the user includes:
[0027] determining air parameters of the scene;
[0028] Determining the user's sensitive parameters according to the air parameters of the scene;
[0029] The airflow storage requirement parameter corresponding to each target area matching the user is determined according to the user's target parameter and the user's sensitive parameter.
[0030] As an optional embodiment, in the first aspect of the present invention, the target parameters include at least one of activity type parameters, activity duration parameters, activity location parameters, clothing parameters and user type parameters; the air parameters include at least one of air particle type parameters, air particle concentration parameters, air gas type parameters and air gas concentration parameters.
[0031] A second aspect of the present invention discloses an air conditioning control device based on the air flow diffusion distribution consistency effect, the device comprising:
[0032] An acquisition module, configured to acquire spatial information of a scene where a target air conditioner is located; the spatial information includes spatial layout information and spatial area information;
[0033] A first determining module, configured to determine an airflow output parameter of an air outlet of the target air conditioner;
[0034] a second determining module, configured to determine a plurality of target areas in the scene requiring airflow delivery based on the spatial information of the scene and the airflow output parameters, wherein the airflow output parameters include at least one of an airflow output volume parameter, an airflow output range parameter, and an airflow output path parameter;
[0035] The control module is used to control the target air conditioner to perform corresponding air flow delivery operations according to all the target areas, so that the air flow diffusion distribution conditions of all the target areas are matched.
[0036] As an optional embodiment, in the second aspect of the present invention, the second determination module determines the multiple target areas in the scene that require airflow delivery based on the spatial information of the scene and the airflow output parameter, specifically including:
[0037] determining object parameters of a target object in the scene, and determining blockage information of the output airflow of the target air conditioner based on spatial information of the scene, the airflow output parameters, and the object parameters; the object parameters including at least one of an object type parameter, an object placement position parameter, and an object air permeability parameter;
[0038] determining first airflow diffusion phenomenon information of the target air conditioner based on the output airflow obstruction information; the first airflow diffusion phenomenon information including at least one of first airflow diffusion position information, first airflow diffusion density information, and first airflow diffusion speed information;
[0039] Based on the first airflow diffusion phenomenon information, multiple target areas in the scene where airflow transportation is required are determined.
[0040] As an optional embodiment, in the second aspect of the present invention, the second determination module determines the multiple target areas in the scene that require airflow delivery based on the spatial information of the scene and the airflow output parameter, and further includes:
[0041] Before determining the multiple target areas in the scene that require airflow delivery based on the first airflow diffusion phenomenon information, determining the area position information of multiple preset areas in the scene, and analyzing the basic airflow information of each preset area based on the area position information of all the preset areas and the spatial information of the scene; the basic airflow information of each preset area includes at least one of basic airflow direction information, basic airflow density information, and basic airflow position information of the preset area;
[0042] Determining change information of the output airflow of the target air conditioner based on the basic airflow information of all the preset areas and the airflow output parameters; the change information of the output airflow includes intensity change information and / or direction change information of the output airflow;
[0043] determining second airflow diffusion phenomenon information of the target air conditioner based on the change information of the output airflow; wherein the second airflow diffusion phenomenon information includes at least one of second airflow diffusion position information, second airflow diffusion density information, and second airflow diffusion speed information;
[0044] The second determining module determines the plurality of target areas requiring airflow transport in the scene according to the spatial information of the scene and the airflow output parameter in a manner specifically including:
[0045] According to the first airflow diffusion phenomenon information and the second airflow diffusion phenomenon information, a plurality of target areas in the scene requiring airflow transportation are determined.
[0046] As an optional embodiment, in the second aspect of the present invention, the control module controls the target air conditioner to perform the corresponding airflow delivery operation according to all the target areas, specifically including:
[0047] predicting an airflow storage parameter corresponding to each of the target areas based on the first airflow diffusion phenomenon information and the second airflow diffusion phenomenon information; the airflow storage parameter including at least one of an airflow storage duration parameter, an airflow storage location parameter, and an airflow storage amount parameter;
[0048] According to the airflow storage parameters corresponding to each of the target areas, the airflow delivery control parameters corresponding to each of the target areas are determined, and according to the airflow delivery control parameters corresponding to all of the target areas, the target air conditioner is controlled to perform the corresponding airflow delivery operation; the airflow delivery control parameters corresponding to each of the target areas include at least one of the airflow delivery temperature control parameters, airflow delivery position control parameters, airflow delivery volume control parameters, airflow delivery direction control parameters and airflow delivery duration control parameters corresponding to the target area.
[0049] As an optional embodiment, in the second aspect of the present invention, the control module determines the airflow delivery control parameter corresponding to each target area according to the airflow storage parameter corresponding to each target area, specifically including:
[0050] determining target parameters of a user of the target air conditioner;
[0051] determining, according to the user's target parameters, an airflow storage requirement parameter corresponding to each target area matching the user;
[0052] The airflow delivery control parameter corresponding to each target area is determined according to the airflow storage parameter and the corresponding airflow storage demand parameter corresponding to each target area.
[0053] As an optional embodiment, in the second aspect of the present invention, the control module determines, based on the user's target parameters, the airflow storage requirement parameters corresponding to each target area matching the user, in a manner specifically including:
[0054] determining air parameters of the scene;
[0055] Determining the user's sensitive parameters according to the air parameters of the scene;
[0056] The airflow storage requirement parameter corresponding to each target area matching the user is determined according to the user's target parameter and the user's sensitive parameter.
[0057] As an optional embodiment, in the second aspect of the present invention, the target parameters include at least one of activity type parameters, activity duration parameters, activity location parameters, clothing parameters and user type parameters; the air parameters include at least one of air particle type parameters, air particle concentration parameters, air gas type parameters and air gas concentration parameters.
[0058] A third aspect of the present invention discloses another air conditioning control device based on the air flow diffusion distribution consistency effect, the device comprising:
[0059] a memory storing executable program code;
[0060] a processor coupled to the memory;
[0061] The processor calls the executable program code stored in the memory to execute the air conditioning control method based on the air flow diffusion distribution consistency effect disclosed in the first aspect of the present invention.
[0062] The fourth aspect of the present invention discloses a computer storage medium, which stores computer instructions. When the computer instructions are called, they are used to execute the air conditioning control method based on the consistency effect of air flow diffusion distribution disclosed in the first aspect of the present invention.
[0063] Compared with the prior art, the embodiments of the present invention have the following beneficial effects:
[0064] In an embodiment of the present invention, multiple target areas where airflow needs to be transported are determined based on the spatial information of the scene in which the target air conditioner is located and the airflow output parameters of the air outlet, thereby realizing airflow transport control of the target air conditioner. In this way, the reliability and accuracy of the air conditioning airflow transport control can be improved, and the effect of evenly distributed airflow in the scene can be achieved, thereby improving the user's air conditioning experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0065] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.
[0066] Figure 1 This is a schematic diagram of an air conditioning control scenario based on the airflow diffusion distribution consistency effect disclosed in an embodiment of the present invention;
[0067] Figure 2 This is a flow chart of an air conditioning control method based on the air flow diffusion distribution consistency effect disclosed in an embodiment of the present invention;
[0068] Figure 3 2 is a schematic structural diagram of another air conditioning control method based on the air flow diffusion distribution consistency effect disclosed in an embodiment of the present invention;
[0069] Figure 4 1 is a schematic structural diagram of an air conditioning control device based on the air flow diffusion distribution consistency effect disclosed in an embodiment of the present invention;
[0070] Figure 5 This is a structural schematic diagram of another air conditioning control device based on the air flow diffusion distribution consistency effect disclosed in an embodiment of the present invention. DETAILED DESCRIPTION
[0071] In order to enable those skilled in the art to better understand the solutions of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.
[0072] The terms "first," "second," and so on, in the description and claims of the present invention and the accompanying drawings are used to distinguish between different items, not to describe a specific order. Furthermore, the terms "including," "having," and any variations thereof, are intended to cover non-exclusive inclusions. For example, a process, method, apparatus, product, or end comprising a series of steps or elements is not limited to the listed steps or elements but may optionally include steps or elements not listed therein, or may optionally include other steps or elements inherent to such process, method, product, or end.
[0073] References herein to "embodiments" mean that a particular feature, structure, or characteristic described in connection with the embodiments may be included in at least one embodiment of the present invention. The appearance of this phrase in various places in the specification does not necessarily refer to the same embodiment, nor does it constitute a separate or alternative embodiment that is mutually exclusive of other embodiments. It is understood, both explicitly and implicitly, by those skilled in the art that the embodiments described herein may be combined with other embodiments.
[0074] The present invention discloses an air conditioning control method and device based on the consistency effect of air flow diffusion distribution, which can improve the reliability and accuracy of air conditioning air flow control, and further achieve the effect of average air flow distribution in the scene, thereby improving the user's air conditioning experience.
[0075] Example 1
[0076] See also Figure 2 , Figure 2 This is a flow chart of an air conditioning control method based on the air flow diffusion distribution consistency effect disclosed in an embodiment of the present invention. Figure 2 The described air conditioning control method based on the air flow diffusion distribution consistency effect can be applied to air conditioning control in various scenarios, such as home scenarios, office scenarios, entertainment scenarios, etc., and the embodiments of the present invention do not limit this. Optionally, the method can be implemented by an air conditioning control device, which can be integrated into a smart air conditioner, or a local server or cloud server for processing the air conditioning control process, and the embodiments of the present invention do not limit this. Figure 2As shown, the air conditioning control method based on the air flow diffusion distribution consistency effect may include the following operations:
[0077] 101. Obtain spatial information of the scene where the target air conditioner is located.
[0078] In the embodiment of the present invention, the space information includes space layout information and space area information.
[0079] 102. Determine airflow output parameters of the air outlet of the target air conditioner, and determine multiple target areas in the scene where airflow needs to be transported based on the spatial information of the scene and the airflow output parameters.
[0080] In the embodiment of the present invention, optionally, the airflow output parameter includes at least one of an airflow output volume parameter, an airflow output range parameter, and an airflow output path parameter.
[0081] 103. According to all target areas, control the target air conditioner to perform corresponding air flow delivery operations so that the air flow diffusion distribution conditions of all target areas match.
[0082] In an embodiment of the present invention, the airflow diffusion distribution conditions of all target areas match, which can be understood as the airflow diffusion distribution conditions of all target areas are equal, or the airflow diffusion distribution difference parameter between each target area and its adjacent target area is less than a preset difference parameter threshold.
[0083] For example, if Figure 1 As shown, Figure 1 This is a schematic diagram of an air conditioning control scenario based on the air flow diffusion distribution consistency effect disclosed in an embodiment of the present invention. When the spatial information of the target air conditioner scene is obtained, it shows that there is a window on the left and a door on the right, and the space area is 25m 2 , and then obtain the current output air volume of the target air conditioner outlet as am 3 When the transmission path is from b to c, it can be determined that the target areas that need airflow delivery in the scene include d and e, thereby realizing the airflow delivery operation of the target air conditioner, making the airflow diffusion distribution of the target areas d and e equal, and improving the user's air conditioning experience.
[0084] Furthermore, the target air conditioner can integrate advanced Wi-Fi and voice modules, providing users with an unprecedented intelligent experience. Specifically, the target air conditioner is embedded with a high-performance wireless communication module—a Wi-Fi module that not only supports the latest wireless communication technology standards but also boasts powerful data processing capabilities. Through the Wi-Fi module, the target air conditioner can easily connect to a home or business wireless network, enabling real-time data exchange with cloud servers and remote control. Whether adjusting the temperature or fan speed remotely via a mobile app or receiving commands from a smart home system, the Wi-Fi module ensures fast and stable data transmission, significantly enhancing the target air conditioner's intelligence and user convenience. Furthermore, the integrated voice module utilizes advanced voice recognition and processing technology, enabling natural and smooth voice interaction with the user. Users can simply speak simple voice commands, such as "adjust the temperature to 25 degrees" or "reduce the airflow above my head," and the air conditioner will instantly respond and execute the corresponding action. The addition of the voice module not only greatly simplifies the interaction process between the user and the target air conditioner, but also gives the air conditioning system more user-friendly features, making smart home life more intimate and convenient.
[0085] To sum up, through the deep integration of the WIFI module and the voice module, this AI+ new technology air-conditioning system not only realizes efficient network communication and remote control functions, but also provides users with a more intuitive and convenient voice interaction method, comprehensively improving the intelligent experience and market competitiveness of air-conditioning products.
[0086] It can be seen that the implementation of the embodiment of the present invention can determine multiple target areas where airflow needs to be transported based on the spatial information of the scene in which the target air conditioner is located and the airflow output parameters of the air outlet, thereby realizing the airflow delivery control of the target air conditioner. In this way, the reliability and accuracy of the air conditioning airflow delivery control can be improved, and then the average distribution effect of airflow in the scene can be achieved, thereby improving the user's air conditioning usage experience.
[0087] Example 2
[0088] See also Figure 3 , Figure 3 This is a flow chart of another air conditioning control method based on the air flow diffusion distribution consistency effect disclosed in an embodiment of the present invention. Figure 3The described air conditioning control method based on the air flow diffusion distribution consistency effect can be applied to air conditioning control in various scenarios, such as home scenarios, office scenarios, entertainment scenarios, etc., and the embodiments of the present invention do not limit this. Optionally, the method can be implemented by an air conditioning control device, which can be integrated into a smart air conditioner, or a local server or cloud server for processing the air conditioning control process, and the embodiments of the present invention do not limit this. Figure 3 As shown, the air conditioning control method based on the air flow diffusion distribution consistency effect may include the following operations:
[0089] 201. Obtain spatial information of the scene where the target air conditioner is located.
[0090] 202. Determine airflow output parameters of an air outlet of a target air conditioner.
[0091] 203. Determine object parameters of a target object in the scene, and determine blockage information of the output airflow of the target air conditioner based on the spatial information of the scene, the airflow output parameters, and the object parameters.
[0092] In an embodiment of the present invention, the object parameters optionally include at least one of an object type parameter, an object placement parameter, and an object permeability parameter. Sensors (such as infrared sensors, lidars, cameras, etc.) and image recognition technology can be introduced to acquire the aforementioned object parameters of the target object and spatial information of the scene in real time.
[0093] 204. Determine first airflow diffusion phenomenon information of the target air conditioner based on the output airflow obstruction information.
[0094] In an embodiment of the present invention, optionally, the first airflow diffusion phenomenon information includes at least one of first airflow diffusion position information, first airflow diffusion density information, and first airflow diffusion speed information.
[0095] 205. Determine multiple target areas in the scene where airflow needs to be transported based on the first airflow diffusion phenomenon information.
[0096] 206. According to all target areas, control the target air conditioner to perform corresponding air flow delivery operations to match the air flow diffusion distribution conditions of all target areas.
[0097] In an embodiment of the present invention, an airflow priority parameter for each target area can be determined based on factors such as the temperature difference in each target area and user comfort requirements. Based on the airflow priority parameter for each target area, the target air conditioner is then controlled to perform a corresponding airflow operation to ensure that the airflow diffusion distribution in all target areas matches. Optionally, the airflow operation includes control operations for wind speed, wind direction, wind temperature, and the like.
[0098] In the embodiment of the present invention, for other descriptions of step 201, step 202 and step 206, please refer to the detailed description of step 101 to step 103 in the first embodiment, and the embodiment of the present invention will not be repeated.
[0099] It can be seen that the implementation of the embodiment of the present invention can obtain scene space information, target object parameters and air-conditioning airflow output parameters in real time and accurately, and then accurately calculate the blocking information and diffusion phenomenon of the output airflow. In this way, the accuracy and pertinence of the air-conditioning airflow delivery are ensured, and the occurrence of uneven airflow distribution and uneven cooling and heating that are common in traditional air-conditioning is reduced; in addition, by precisely controlling airflow delivery, the present invention can minimize unnecessary energy consumption while meeting user comfort requirements.
[0100] In an optional embodiment, before determining the plurality of target areas in the scene requiring airflow transport based on the first airflow diffusion phenomenon information in step 205, the method further includes:
[0101] Determine the regional location information of multiple preset areas in the scene, and analyze the basic airflow information of each preset area based on the regional location information of all the preset areas and the spatial information of the scene;
[0102] Determine the output airflow change information of the target air conditioner based on the basic airflow information and airflow output parameters of all preset areas;
[0103] Determining second airflow diffusion phenomenon information of the target air conditioner based on the output airflow change information;
[0104] According to the first airflow diffusion phenomenon information, multiple target areas in the scene requiring airflow transportation are determined, including:
[0105] According to the first airflow diffusion phenomenon information and the second airflow diffusion phenomenon information, a plurality of target areas in the scene requiring airflow transportation are determined.
[0106] In this optional embodiment, the basic airflow information of each preset area optionally includes at least one of basic airflow direction information, basic airflow density information, and basic airflow position information of the preset area. Further optionally, the output airflow change information includes output airflow intensity change information and / or direction change information. Still further optionally, the second airflow diffusion phenomenon information includes at least one of second airflow diffusion position information, second airflow diffusion density information, and second airflow diffusion speed information. In particular, all target areas can be determined from all preset areas according to the aforementioned analysis process, and can also include areas that are not preset areas.
[0107] Furthermore, the output airflow change information of the target air conditioner can be determined through a data fusion algorithm based on the basic airflow information and airflow output parameters of all preset areas, combined with real-time environmental data (such as temperature, humidity, air pressure, etc.) and user behavior data (such as personnel movement, door and window openings, etc.).
[0108] It can be seen that this optional embodiment can determine multiple target areas in the scene where airflow needs to be delivered by analyzing the first airflow diffusion phenomenon information and the second airflow diffusion phenomenon information of the target air conditioner. In this way, the airflow diffusion phenomenon can be accurately evaluated and analyzed, and dynamic adjustments can be made according to the specific needs of the user and environmental changes, thereby achieving more personalized airflow control and improving user comfort and satisfaction.
[0109] In another optional embodiment, the step 206 of controlling the target air conditioner to perform corresponding airflow delivery operations according to all target areas includes:
[0110] predicting the airflow storage parameters corresponding to each target area based on the first airflow diffusion phenomenon information and the second airflow diffusion phenomenon information;
[0111] According to the airflow storage parameters corresponding to each target area, the airflow delivery control parameters corresponding to each target area are determined, and according to the airflow delivery control parameters corresponding to all target areas, the target air conditioner is controlled to perform the corresponding airflow delivery operation.
[0112] In this optional embodiment, the airflow storage parameter optionally includes at least one of an airflow storage duration parameter, an airflow storage position parameter, and an airflow storage volume parameter. Further optionally, the airflow delivery control parameter corresponding to each target area includes at least one of an airflow delivery temperature control parameter, an airflow delivery position control parameter, an airflow delivery volume control parameter, an airflow delivery direction control parameter, and an airflow delivery duration control parameter corresponding to the target area.
[0113] It can be seen that this optional embodiment can predict the airflow storage parameters corresponding to each target area based on the first airflow diffusion phenomenon information and the second airflow diffusion phenomenon information, and then determine the airflow delivery control parameters corresponding to each target area, thereby realizing the airflow delivery control operation of the target air conditioner. In this way, by predicting the airflow storage parameters of each target area and adjusting the airflow delivery control parameters accordingly, the airflow delivery of the target air conditioner can be accurately controlled, meeting the personalized needs of different areas, and introducing real-time monitoring, dynamic adjustment, intelligent learning and other mechanisms, so that the air-conditioning control system can automatically adapt to environmental changes and user needs, reduce manual intervention, and improve the intelligence and automation level of the air-conditioning control system.
[0114] In yet another optional embodiment, the above step of determining the airflow delivery control parameter corresponding to each target area according to the airflow storage parameter corresponding to each target area includes:
[0115] Determine target parameters of users of the target air conditioner;
[0116] According to the user's target parameters, determine the airflow storage demand parameters corresponding to each target area matching the user;
[0117] The airflow delivery control parameters corresponding to each target area are determined according to the airflow storage parameters corresponding to each target area and the corresponding airflow storage demand parameters.
[0118] In this optional embodiment, the target parameter optionally includes at least one of an activity type parameter, an activity duration parameter, an activity location parameter, a clothing parameter, and a user type parameter.
[0119] Furthermore, as an optional implementation, determining the airflow storage requirement parameter corresponding to each target area matching the user according to the user's target parameters includes:
[0120] Determine the scene's air parameters;
[0121] Determine the user's sensitive parameters based on the scene's air parameters;
[0122] According to the user's target parameters and the user's sensitive parameters, the airflow storage requirement parameters corresponding to each target area matching the user are determined.
[0123] In this optional embodiment, the air parameter optionally includes at least one of an air particle type parameter, an air particle concentration parameter, an air gas type parameter, and an air gas concentration parameter. Further optionally, the user sensitivity parameter includes a sensitivity parameter and / or a sensitivity type parameter. Still further optionally, the airflow storage requirement parameter includes at least one of an airflow storage duration requirement parameter, an airflow storage location requirement parameter, and an airflow storage volume requirement parameter.
[0124] It can be seen that this optional embodiment can determine the user's sensitive parameters based on the air parameters of the scene, and then combine the user's target parameters to determine the airflow storage demand parameters corresponding to each target area matching the user, thereby determining the airflow delivery control parameters corresponding to each target area. In this way, the personalized customization capability and comfort level of the indoor environment can be greatly improved. By carefully analyzing the user's activity type, duration, location, clothing, type and other target parameters, combined with the specific air parameters in the scene and the user's sensitive parameters, the airflow storage demand required for each target area can be accurately calculated, ensuring the user's comfort level in different activity states, and fully considering the user's sensitivity to specific air components, effectively reducing the occurrence of user discomfort or health problems caused by air quality problems.
[0125] Example 3
[0126] See also Figure 3 , Figure 3 This is a structural diagram of an air conditioning control device based on the air flow diffusion distribution consistency effect disclosed in an embodiment of the present invention. Figure 3 As shown, the air conditioning control device based on the air flow diffusion distribution consistency effect may include:
[0127] An acquisition module 301 is used to acquire spatial information of a scene where a target air conditioner is located;
[0128] A first determining module 302 is configured to determine an airflow output parameter of an air outlet of a target air conditioner;
[0129] The second determination module 303 is used to determine multiple target areas in the scene that require airflow transportation based on the spatial information of the scene and the airflow output parameters;
[0130] The control module 304 is used to control the target air conditioner to perform corresponding air flow delivery operations according to all target areas, so that the air flow diffusion distribution conditions of all target areas are matched.
[0131] In an embodiment of the present invention, the spatial information includes spatial layout information and spatial area information; and the airflow output parameter includes at least one of an airflow output volume parameter, an airflow output range parameter, and an airflow output path parameter.
[0132] It can be seen that implementation Figure 3 The described air-conditioning control device based on the consistency effect of air flow diffusion distribution can determine multiple target areas where air flow needs to be delivered according to the spatial information of the scene in which the target air-conditioner is located and the air flow output parameters of the air outlet, thereby realizing the air flow delivery control of the target air-conditioner. In this way, the reliability and accuracy of the air-conditioning air flow delivery control can be improved, and the average distribution effect of air flow in the scene can be achieved, thereby improving the user's air-conditioning experience.
[0133] In an optional embodiment, the second determining module 303 determines the multiple target areas in the scene that require airflow delivery based on the spatial information of the scene and the airflow output parameters, specifically by:
[0134] Determine object parameters of a target object in the scene, and determine blockage information of the output airflow of the target air conditioner based on the spatial information of the scene, the airflow output parameters, and the object parameters;
[0135] determining first airflow diffusion phenomenon information of the target air conditioner based on the output airflow obstruction information;
[0136] Based on the first airflow diffusion phenomenon information, multiple target areas in the scene requiring airflow transportation are determined.
[0137] In this optional embodiment, the object parameters include at least one of object type parameters, object placement position parameters, and object permeability parameters; the first airflow diffusion phenomenon information includes at least one of first airflow diffusion position information, first airflow diffusion density information, and first airflow diffusion speed information.
[0138] It can be seen that implementation Figure 4 The described air-conditioning control device based on the consistency effect of air flow diffusion distribution can obtain scene space information, target object parameters and air-conditioning air flow output parameters in real time and accurately, and then accurately calculate the blocking information and diffusion phenomenon of the output air flow. In this way, the accuracy and pertinence of the air-conditioning air flow delivery are ensured, and the occurrence of uneven air flow distribution and uneven cooling and heating that are common in traditional air-conditioning is reduced; in addition, by precisely controlling air flow delivery, the present invention can minimize unnecessary energy consumption while meeting user comfort requirements.
[0139] In another optional embodiment, the second determining module 303 determines the multiple target areas in the scene that require airflow delivery based on the spatial information of the scene and the airflow output parameters, and specifically includes:
[0140] Before determining multiple target areas in the scene that require airflow delivery based on the first airflow diffusion phenomenon information, determining regional position information of multiple preset areas in the scene, and analyzing basic airflow information of each preset area based on the regional position information of all the preset areas and the spatial information of the scene;
[0141] Determine the output airflow change information of the target air conditioner based on the basic airflow information and airflow output parameters of all preset areas;
[0142] Determining second airflow diffusion phenomenon information of the target air conditioner based on the output airflow change information;
[0143] The second determining module 303 determines the multiple target areas in the scene that require airflow delivery based on the spatial information of the scene and the airflow output parameters, specifically in the following manner:
[0144] According to the first airflow diffusion phenomenon information and the second airflow diffusion phenomenon information, a plurality of target areas in the scene requiring airflow transportation are determined.
[0145] In this optional embodiment, the basic airflow information of each preset area includes at least one of the basic airflow direction information, basic airflow density information, and basic airflow position information of the preset area; the output airflow change information includes the output airflow intensity change information and / or direction change information; the second airflow diffusion phenomenon information includes at least one of the second airflow diffusion position information, second airflow diffusion density information, and second airflow diffusion speed information.
[0146] It can be seen that implementation Figure 4 The described air-conditioning control device based on the consistency effect of airflow diffusion distribution can determine multiple target areas in the scene where airflow needs to be delivered by analyzing the first airflow diffusion phenomenon information and the second airflow diffusion phenomenon information of the target air-conditioning. In this way, the airflow diffusion phenomenon can be accurately evaluated and analyzed, and dynamic adjustments can be made according to the specific needs of the user and environmental changes, thereby achieving more personalized airflow control and improving the user's comfort and satisfaction.
[0147] In another optional embodiment, the control module 304 controls the target air conditioner to perform corresponding air flow delivery operations according to all target areas, specifically including:
[0148] predicting the airflow storage parameters corresponding to each target area based on the first airflow diffusion phenomenon information and the second airflow diffusion phenomenon information;
[0149] According to the airflow storage parameters corresponding to each target area, the airflow delivery control parameters corresponding to each target area are determined, and according to the airflow delivery control parameters corresponding to all target areas, the target air conditioner is controlled to perform the corresponding airflow delivery operation.
[0150] In this optional embodiment, the airflow storage parameters include at least one of an airflow storage duration parameter, an airflow storage position parameter, and an airflow storage quantity parameter; the airflow delivery control parameters corresponding to each target area include at least one of an airflow delivery temperature control parameter, an airflow delivery position control parameter, an airflow delivery quantity control parameter, an airflow delivery direction control parameter, and an airflow delivery duration control parameter corresponding to the target area.
[0151] It can be seen that implementation Figure 4The described air-conditioning control device based on the consistency effect of air flow diffusion distribution can predict the air flow storage parameters corresponding to each target area according to the first air flow diffusion phenomenon information and the second air flow diffusion phenomenon information, and then determine the air flow delivery control parameters corresponding to each target area, thereby realizing the air flow delivery control operation of the target air conditioner. In this way, by predicting the air flow storage parameters of each target area and adjusting the air flow delivery control parameters accordingly, the air flow delivery of the target air conditioner can be accurately controlled, meeting the personalized needs of different areas, and introducing real-time monitoring, dynamic adjustment, intelligent learning and other mechanisms, so that the air-conditioning control system can automatically adapt to environmental changes and user needs, reduce manual intervention, and improve the intelligence and automation level of the air-conditioning control system.
[0152] In another optional embodiment, the control module 304 determines the airflow delivery control parameter corresponding to each target area according to the airflow storage parameter corresponding to each target area in a manner specifically including:
[0153] Determine target parameters of users of the target air conditioner;
[0154] According to the user's target parameters, determine the airflow storage demand parameters corresponding to each target area matching the user;
[0155] The airflow delivery control parameters corresponding to each target area are determined according to the airflow storage parameters corresponding to each target area and the corresponding airflow storage demand parameters.
[0156] In this optional embodiment, the target parameter includes at least one of an activity type parameter, an activity duration parameter, an activity location parameter, a clothing parameter, and a user type parameter.
[0157] Furthermore, as an optional embodiment, the control module 304 determines the airflow storage requirement parameter corresponding to each target area matching the user according to the user's target parameters in the following manner:
[0158] Determine the scene's air parameters;
[0159] Determine the user's sensitive parameters based on the scene's air parameters;
[0160] According to the user's target parameters and the user's sensitive parameters, the airflow storage requirement parameters corresponding to each target area matching the user are determined.
[0161] In this optional embodiment, the air parameter includes at least one of an air particle type parameter, an air particle concentration parameter, an air gas type parameter, and an air gas concentration parameter.
[0162] It can be seen that implementation Figure 4The described air conditioning control device based on the consistency effect of air flow diffusion distribution can determine the user's sensitive parameters according to the air parameters of the scene, and then combine the user's target parameters to determine the air flow storage demand parameters corresponding to each target area matching the user, thereby determining the air flow delivery control parameters corresponding to each target area. In this way, the personalized customization capability and comfort level of the indoor environment can be greatly improved. By carefully analyzing the user's activity type, duration, location, clothing, and type and other target parameters, combined with the specific air parameters in the scene and the user's sensitive parameters, the air flow storage requirements required for each target area can be accurately calculated, ensuring the user's comfort level in different activity states, and fully considering the user's sensitivity to specific air components, effectively reducing the occurrence of user discomfort or health problems caused by air quality problems.
[0163] Example 4
[0164] See also Figure 5 , Figure 5 This is a structural diagram of another air conditioning control device based on the air flow diffusion distribution consistency effect disclosed in an embodiment of the present invention. Figure 5 As shown, the air conditioning control device based on the air flow diffusion distribution consistency effect may include:
[0165] A memory 401 storing executable program code;
[0166] a processor 402 coupled to the memory 401;
[0167] The processor 402 calls the executable program code stored in the memory 401 to execute the steps of the air conditioning control method based on the air flow diffusion distribution consistency effect described in the first embodiment of the present invention or the second embodiment of the present invention.
[0168] Example 5
[0169] An embodiment of the present invention discloses a computer storage medium, which stores computer instructions. When the computer instructions are called, they are used to execute the steps of the air conditioning control method based on the consistency effect of air flow diffusion distribution described in Example 1 or Example 2 of the present invention.
[0170] Example 6
[0171] An embodiment of the present invention discloses a computer program product, which includes a non-transitory computer-readable storage medium storing a computer program, and the computer program is operable to enable a computer to execute the steps of the air conditioning control method based on the consistency effect of air flow diffusion distribution described in Example 1 or Example 2.
[0172] The device embodiments described above are merely illustrative, wherein 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, i.e., they may be located in one place or distributed across multiple network modules. Some or all of the modules may be selected based on actual needs to achieve the objectives of the present embodiment. Those skilled in the art can understand and implement the present invention without inventive effort.
[0173] Through the detailed description of the above embodiments, those skilled in the art can clearly understand that each embodiment can be implemented by means of software plus the necessary general hardware platform, or of course, by means of hardware. Based on this understanding, the above technical solution, in essence, or the portion that contributes to the prior art, can be embodied in the form of a software product, which can be stored in a computer-readable storage medium, including 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 electronically erasable programmable read-only memory (EEPROM), a compact disc read-only memory (CD-ROM) or other optical disc storage, magnetic disk storage, magnetic tape storage, or any other computer-readable medium capable of carrying or storing data.
[0174] Finally, it should be noted that the air-conditioning control method and device based on the air flow diffusion distribution consistency effect disclosed in the embodiment of the present invention are only preferred embodiments of the present invention, and are only used to illustrate the technical solution of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, ordinary technicians in this field should understand that it is still possible to modify the technical solutions recorded in the aforementioned embodiments, or to make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present invention.
Claims
1. An air conditioning control method based on the consistency effect of air flow diffusion distribution, characterized in that: The method comprises: Acquire spatial information of a scene where a target air conditioner is located; the spatial information includes spatial layout information and spatial area information; Determining an airflow output parameter of an air outlet of the target air conditioner; the airflow output parameter includes at least one of an airflow output volume parameter, an airflow output range parameter, and an airflow output path parameter; determining object parameters of a target object in the scene, and determining blockage information of the output airflow of the target air conditioner based on spatial information of the scene, the airflow output parameters, and the object parameters; the object parameters including at least one of an object type parameter, an object placement position parameter, and an object air permeability parameter; determining first airflow diffusion phenomenon information of the target air conditioner based on the output airflow obstruction information; the first airflow diffusion phenomenon information including at least one of first airflow diffusion position information, first airflow diffusion density information, and first airflow diffusion speed information; determining, based on the first airflow diffusion phenomenon information, a plurality of target areas in the scene where airflow delivery is required; According to all the target areas, the target air conditioner is controlled to perform corresponding airflow delivery operations so that the airflow diffusion distribution conditions of all the target areas match.
2. The air conditioning control method based on the air flow diffusion distribution consistency effect according to claim 1, characterized in that: Before determining, based on the first airflow diffusion phenomenon information, a plurality of target areas in the scene requiring airflow transportation, the method further includes: Determining regional position information of a plurality of preset areas in the scene, and analyzing basic airflow information of each preset area based on the regional position information of all the preset areas and the spatial information of the scene; the basic airflow information of each preset area includes at least one of basic airflow direction information, basic airflow density information, and basic airflow position information of the preset area; Determining change information of the output airflow of the target air conditioner based on the basic airflow information of all the preset areas and the airflow output parameters; the change information of the output airflow includes intensity change information and / or direction change information of the output airflow; determining second airflow diffusion phenomenon information of the target air conditioner based on the change information of the output airflow; wherein the second airflow diffusion phenomenon information includes at least one of second airflow diffusion position information, second airflow diffusion density information, and second airflow diffusion speed information; The step of determining, based on the first airflow diffusion phenomenon information, a plurality of target areas in the scene requiring airflow transportation includes: According to the first airflow diffusion phenomenon information and the second airflow diffusion phenomenon information, a plurality of target areas in the scene requiring airflow transportation are determined.
3. The air conditioning control method based on the air flow diffusion distribution consistency effect according to claim 2, characterized in that: The step of controlling the target air conditioner to perform corresponding airflow delivery operations according to all the target areas includes: predicting an airflow storage parameter corresponding to each of the target areas based on the first airflow diffusion phenomenon information and the second airflow diffusion phenomenon information; the airflow storage parameter including at least one of an airflow storage duration parameter, an airflow storage location parameter, and an airflow storage amount parameter; According to the airflow storage parameters corresponding to each of the target areas, the airflow delivery control parameters corresponding to each of the target areas are determined, and according to the airflow delivery control parameters corresponding to all of the target areas, the target air conditioner is controlled to perform the corresponding airflow delivery operation; the airflow delivery control parameters corresponding to each of the target areas include at least one of the airflow delivery temperature control parameters, airflow delivery position control parameters, airflow delivery volume control parameters, airflow delivery direction control parameters and airflow delivery duration control parameters corresponding to the target area.
4. The air conditioning control method based on the air flow diffusion distribution consistency effect according to claim 3, characterized in that: The determining of the airflow delivery control parameters corresponding to each target area according to the airflow storage parameters corresponding to each target area includes: determining target parameters of a user of the target air conditioner; determining, according to the user's target parameters, an airflow storage requirement parameter corresponding to each target area matching the user; The airflow delivery control parameter corresponding to each target area is determined according to the airflow storage parameter and the corresponding airflow storage demand parameter corresponding to each target area.
5. The air conditioning control method based on the air flow diffusion distribution consistency effect according to claim 4, characterized in that: The step of determining, based on the user's target parameters, the airflow storage requirement parameters corresponding to each target area that matches the user includes: determining air parameters of the scene; Determining the user's sensitive parameters according to the air parameters of the scene; The airflow storage requirement parameter corresponding to each target area matching the user is determined according to the user's target parameter and the user's sensitive parameter.
6. The air conditioning control method based on the air flow diffusion distribution consistency effect according to claim 5, characterized in that: The target parameters include at least one of an activity type parameter, an activity duration parameter, an activity location parameter, a clothing parameter, and a user type parameter; the air parameters include at least one of an air particle type parameter, an air particle concentration parameter, an air gas type parameter, and an air gas concentration parameter.
7. An air conditioning control device based on the air flow diffusion distribution consistency effect, characterized in that: The device is used to execute the air conditioning control method based on the air flow diffusion distribution consistency effect according to any one of claims 1 to 6, and the device includes: An acquisition module, configured to acquire spatial information of a scene where a target air conditioner is located; the spatial information includes spatial layout information and spatial area information; A first determining module, configured to determine an airflow output parameter of an air outlet of the target air conditioner; a second determining module, configured to determine a plurality of target areas in the scene requiring airflow delivery based on the spatial information of the scene and the airflow output parameters, wherein the airflow output parameters include at least one of an airflow output volume parameter, an airflow output range parameter, and an airflow output path parameter; The control module is used to control the target air conditioner to perform corresponding air flow delivery operations according to all the target areas, so that the air flow diffusion distribution conditions of all the target areas are matched.
8. An air conditioning control device based on the air flow diffusion distribution consistency effect, characterized in that: The device comprises: a memory storing executable program code; a processor coupled to the memory; The processor calls the executable program code stored in the memory to execute the air conditioning control method based on the air flow diffusion distribution consistency effect as described in any one of claims 1-6.
9. A computer storage medium, characterized in that The computer storage medium stores computer instructions, and when the computer instructions are called, they are used to execute the air conditioning control method based on the air flow diffusion distribution consistency effect as described in any one of claims 1 to 6.
Citation Information
Patent Citations
Air conditioner control method and device
CN108731221A
Method and device for intelligently adjusting environment based on user distribution condition
CN116792880A