Air conditioner control method and device based on consistency effect of far and near wind speeds
By acquiring and analyzing air conditioning output information, the system can determine the air supply area and uncovered areas, adjust the fan speed control parameters, solve the problem of lagging fan speed regulation in smart air conditioners, and improve the user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- FOSHAN VIOMI ELECTRICAL TECH
- Filing Date
- 2024-10-15
- Publication Date
- 2026-07-24
AI Technical Summary
Current smart air conditioners require the remote control device to be constantly near the user to adjust the fan speed, resulting in delayed airflow and making it difficult to improve the user experience.
By obtaining the current air outlet information of the target air conditioner, the actual air outlet area and the uncovered area are determined. Based on the information of the uncovered area, the wind speed control parameters are adjusted to achieve precise wind speed control.
It improves the matching degree of wind speed control between the actual air outlet area and the uncovered area, enhances the reliability and accuracy of air conditioner wind speed control, and improves the user experience.
Smart Images

Figure CN119063222B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of air conditioning control technology, and in particular to an air conditioning control method and device based on the effect of consistent wind speed at near and far distances. Background Technology
[0002] With the rapid development of science and technology, more and more smart devices, such as smart air conditioners, are entering users' lives, making users increasingly feel the convenience and comfort brought by smart devices. This has greatly improved users' living environment and enhanced their user experience of smart devices.
[0003] Currently, users typically adjust the fan speed of smart air conditioners via remote control to experience the comfort of the airflow. However, this control method requires the remote control to be readily available to the user, and it suffers from airflow lag, which hinders the proper airflow and ultimately diminishes the user experience. Therefore, providing a method to improve the accuracy of fan speed control in smart air conditioners is crucial. Summary of the Invention
[0004] This invention provides an air conditioning control method and device based on the consistency of wind speed at near and far distances. It can improve the matching degree of wind speed control between the actual air outlet area and the area not covered by the air outlet, thereby improving the reliability and accuracy of air conditioning wind speed control and thus enhancing the user's air conditioning experience.
[0005] To address the aforementioned technical problems, the first aspect of this invention discloses an air conditioning control method based on the consistency of wind speeds at near and far distances, the method comprising:
[0006] Obtain the current air outlet information of the target air conditioner; the current air outlet information includes at least one of the following: current air outlet path information, current air outlet range information, and current air outlet speed information;
[0007] Based on the current air outlet information, determine the actual air outlet area information corresponding to the target air conditioner, and based on the actual air outlet area information, determine the area information not covered by the air outlet of the target air conditioner;
[0008] Based on the information of the area not covered by the air outlet, the wind speed control parameters of the target air conditioner are determined, and the target air conditioner is controlled to perform air outlet operation according to the wind speed control parameters.
[0009] As an optional implementation, in the first aspect of the present invention, the actual air outlet area information includes actual air outlet area location information and actual air outlet area wind speed information, and the air outlet uncovered area information includes air outlet uncovered area location information and air outlet uncovered area wind speed demand information.
[0010] The step of determining the actual air outlet area information corresponding to the target air conditioner based on the current air outlet information includes:
[0011] Determine the air movement information of the scene where the target air conditioner is located;
[0012] Based on the current air outlet information and the air movement status information, the wind transmission impact information on the target air conditioner is determined; the wind transmission impact information includes wind transmission impact type information and wind transmission impact magnitude information.
[0013] Based on the wind transmission impact information, the actual air outlet area information corresponding to the target air conditioner is determined.
[0014] As an optional implementation, in the first aspect of the present invention, determining the wind transmission impact information on the target air conditioner based on the current air outlet information and the air movement status information includes:
[0015] Based on the current air outlet information and the air movement information, the actual air transmission direction of the target air conditioner is determined;
[0016] Obtain the expected air transmission direction of the target air conditioner, and determine whether the actual air transmission direction is consistent with the expected air transmission direction based on the actual air transmission direction and the expected air transmission direction.
[0017] When it is determined that the actual wind transmission direction is consistent with the expected wind transmission direction, the wind transmission impact type information of the target air conditioner is determined to include the positive wind transmission impact type.
[0018] When it is determined that the actual wind transmission direction is inconsistent with the expected wind transmission direction, the wind transmission influence type information of the target air conditioner is determined to include the reverse wind transmission influence type.
[0019] As an optional implementation, in the first aspect of the present invention, determining the actual air transmission direction of the target air conditioner based on the current air outlet information and the air movement status information includes:
[0020] Obtain information about obstructing objects in the scene where the target air conditioner is located; the obstructing object information includes at least one of obstructing object type information, obstructing object location information, and obstructing object placement orientation information;
[0021] Based on the current airflow information, the air movement information, and the obstruction information, the actual airflow direction of the target air conditioner is determined.
[0022] As an optional implementation, in the first aspect of the present invention, determining the uncovered area information of the target air conditioner based on the actual air outlet area information includes:
[0023] Determine the target activity information of the user of the target air conditioner;
[0024] Based on the target activity information, determine the air outlet demand area information of the target air conditioner;
[0025] Based on the actual air outlet area information and the air outlet demand area information, determine the area information not covered by the target air conditioner's air outlet.
[0026] As an optional implementation, in the first aspect of the present invention, determining the uncovered area information of the target air conditioner based on the actual air outlet area information and the air outlet demand area information includes:
[0027] Determine whether a target operating device exists in the scene where the target air conditioner is located;
[0028] When it is determined that the target operating device does not exist, the area information not covered by the target air conditioner is determined based on the actual air outlet area information and the air outlet demand area information.
[0029] When the existence of the target operating device is determined, the target operating device's corresponding object information is determined, and based on the object information, the impact of the airflow on the target operating device's corresponding object is determined; the object information includes at least one of object type information, object location information, and object weight information;
[0030] Based on the impact of the airflow on the target object, the actual airflow area information, and the airflow demand area information, the airflow coverage area information of the target air conditioner is determined.
[0031] As an optional implementation, in the first aspect of the present invention, the method further includes:
[0032] During the process of controlling the target air conditioner to perform air outlet operation, the area not covered by the air outlet corresponding to the target air conditioner is divided into multiple sub-areas not covered by the air outlet, and the air outlet receiving information corresponding to each sub-area not covered by the air outlet is determined.
[0033] Based on the actual air outlet area information corresponding to the target air conditioner and the air outlet reception information corresponding to all the air outlet uncovered sub-areas, determine the sub-areas to be adjusted from all the air outlet uncovered sub-areas where the air outlet reception information does not match the actual air outlet area information;
[0034] The wind speed control parameters are adjusted according to the region to be adjusted.
[0035] A second aspect of this invention discloses an air conditioning control device based on the consistency of wind speeds at near and far distances, the device comprising:
[0036] The acquisition module is used to acquire the current air outlet information of the target air conditioner; the current air outlet information includes at least one of the following: current air outlet path information, current air outlet range information, and current air outlet speed information.
[0037] The first determining module is used to determine the actual air outlet area information corresponding to the target air conditioner based on the current air outlet information;
[0038] The second determining module is used to determine the air outlet uncovered area information of the target air conditioner based on the actual air outlet area information; and to determine the wind speed control parameters of the target air conditioner based on the air outlet uncovered area information.
[0039] The control module is used to control the target air conditioner to perform air output operation according to the wind speed control parameters.
[0040] As an optional implementation, in the second aspect of the present invention, the actual air outlet area information includes actual air outlet area location information and actual air outlet area wind speed information, and the air outlet uncovered area information includes air outlet uncovered area location information and air outlet uncovered area wind speed demand information.
[0041] Specifically, the method by which the first determining module determines the actual air outlet area information corresponding to the target air conditioner based on the current air outlet information includes:
[0042] Determine the air movement information of the scene where the target air conditioner is located;
[0043] Based on the current air outlet information and the air movement status information, the wind transmission impact information on the target air conditioner is determined; the wind transmission impact information includes wind transmission impact type information and wind transmission impact magnitude information.
[0044] Based on the wind transmission impact information, the actual air outlet area information corresponding to the target air conditioner is determined.
[0045] As an optional implementation, in a second aspect of the present invention, the method by which the first determining module determines the wind transmission impact information of the target air conditioner based on the current air outlet information and the air movement status information specifically includes:
[0046] Based on the current air outlet information and the air movement information, the actual air transmission direction of the target air conditioner is determined;
[0047] Obtain the expected air transmission direction of the target air conditioner, and determine whether the actual air transmission direction is consistent with the expected air transmission direction based on the actual air transmission direction and the expected air transmission direction.
[0048] When it is determined that the actual wind transmission direction is consistent with the expected wind transmission direction, the wind transmission impact type information of the target air conditioner is determined to include the positive wind transmission impact type.
[0049] When it is determined that the actual wind transmission direction is inconsistent with the expected wind transmission direction, the wind transmission influence type information of the target air conditioner is determined to include the reverse wind transmission influence type.
[0050] As an optional implementation, in a second aspect of the present invention, the method by which the first determining module determines the actual air transmission direction of the target air conditioner based on the current air outlet information and the air movement status information specifically includes:
[0051] Obtain information about obstructing objects in the scene where the target air conditioner is located; the obstructing object information includes at least one of obstructing object type information, obstructing object location information, and obstructing object placement orientation information;
[0052] Based on the current airflow information, the air movement information, and the obstruction information, the actual airflow direction of the target air conditioner is determined.
[0053] As an optional implementation, in a second aspect of the present invention, the method by which the second determining module determines the information of the uncovered area of the target air conditioner based on the actual air outlet area information specifically includes:
[0054] Determine the target activity information of the user of the target air conditioner;
[0055] Based on the target activity information, determine the air outlet demand area information of the target air conditioner;
[0056] Based on the actual air outlet area information and the air outlet demand area information, determine the area information not covered by the target air conditioner's air outlet.
[0057] As an optional implementation, in a second aspect of the present invention, the method by which the second determining module determines the air outlet uncovered area information of the target air conditioner based on the actual air outlet area information and the air outlet demand area information specifically includes:
[0058] Determine whether a target operating device exists in the scene where the target air conditioner is located;
[0059] When it is determined that the target operating device does not exist, the area information not covered by the target air conditioner is determined based on the actual air outlet area information and the air outlet demand area information.
[0060] When the existence of the target operating device is determined, the target operating device's corresponding object information is determined, and based on the object information, the impact of the airflow on the target operating device's corresponding object is determined; the object information includes at least one of object type information, object location information, and object weight information;
[0061] Based on the impact of the airflow on the target object, the actual airflow area information, and the airflow demand area information, the airflow coverage area information of the target air conditioner is determined.
[0062] As an optional implementation, in a second aspect of the invention, the apparatus further includes:
[0063] The partitioning module is used to partition the area of the target air conditioner that is not covered by the air outlet during the process of controlling the target air conditioner to perform air outlet operation, so as to obtain multiple sub-areas of the air outlet that are not covered by the air outlet.
[0064] The third determining module is used to determine the air supply reception information corresponding to each of the air supply uncovered sub-areas; based on the actual air supply area information corresponding to the target air conditioner and the air supply reception information corresponding to all the air supply uncovered sub-areas, it determines the sub-areas to be adjusted from all the air supply uncovered sub-areas where the air supply reception information does not match the actual air supply area information.
[0065] The adjustment module is used to adjust the wind speed control parameters according to the sub-region to be adjusted.
[0066] A third aspect of the present invention discloses another air conditioning control device based on the consistency effect of near and far wind speeds, the device comprising:
[0067] Memory containing executable program code;
[0068] A processor coupled to the memory;
[0069] The processor calls the executable program code stored in the memory to execute the air conditioning control method based on the consistency effect of near and far wind speeds disclosed in the first aspect of the present invention.
[0070] 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 control method based on the consistency effect of near and far wind speeds disclosed in the first aspect of the present invention.
[0071] Compared with the prior art, the embodiments of the present invention have the following beneficial effects:
[0072] In this embodiment of the invention, the current airflow information of the target air conditioner's vent is obtained; based on the current airflow information, the actual airflow area information corresponding to the target air conditioner is determined, and based on the actual airflow area information, the information of the area not covered by the target air conditioner's airflow is determined; based on the information of the area not covered by the airflow, the wind speed control parameters of the target air conditioner are determined, and based on the wind speed control parameters, the target air conditioner is controlled to perform airflow operation. It is evident that implementing this invention can determine the area not covered by the target air conditioner's airflow based on the current airflow information of the target air conditioner's vent, and then control the target air conditioner to perform airflow operation. This improves the wind speed control matching degree between the actual airflow area and the area not covered by the airflow, thereby improving the reliability and accuracy of the air conditioner's wind speed control, and ultimately enhancing the user's air conditioning experience. Attached Figure Description
[0073] 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.
[0074] Figure 1 This is a schematic diagram of an air conditioning control scenario based on the consistency effect of near and far wind speeds disclosed in an embodiment of the present invention;
[0075] Figure 2 This is a flowchart illustrating an air conditioning control method based on the consistency effect of near and far wind speeds disclosed in an embodiment of the present invention.
[0076] Figure 3 This is a flowchart illustrating another air conditioning control method based on the consistency effect of near and far wind speeds disclosed in an embodiment of the present invention.
[0077] Figure 4 This is a schematic diagram of the structure of an air conditioning control device based on the consistency effect of near and far wind speeds disclosed in an embodiment of the present invention;
[0078] Figure 5This is a schematic diagram of another air conditioning control device based on the consistency effect of near and far wind speeds disclosed in an embodiment of the present invention;
[0079] Figure 6 This is a schematic diagram of another air conditioning control device based on the consistency effect of wind speed at near and far distances, as disclosed in an embodiment of the present invention. Detailed Implementation
[0080] 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.
[0081] 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.
[0082] 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.
[0083] This invention discloses an air conditioning control method and device based on the consistency of wind speed at near and far distances. It can improve the matching degree of wind speed control between the actual air outlet area and the area not covered by the air outlet, thereby improving the reliability and accuracy of air conditioning wind speed control and thus enhancing the user's air conditioning experience.
[0084] Example 1
[0085] Please see Figure 2 , Figure 2 This is a flowchart illustrating an air conditioning control method based on the consistency of wind speeds at near and far distances, as disclosed in an embodiment of the present invention. Figure 2The described air conditioning control method based on the consistency of wind speeds at varying distances can be applied to air conditioning control processes in various scenarios, such as home, office, and entertainment environments, etc., and this embodiment of the invention is not limited thereto. Optionally, this method can be implemented by an air conditioning control device, which can be integrated into a smart air conditioner, or it can be a local server or cloud server used to process the air conditioning control process, etc., and this embodiment of the invention is not limited thereto. Figure 2 As shown, the air conditioning control method based on the consistency of wind speeds at near and far distances can include the following operations:
[0086] 101. Obtain the current airflow information from the air outlet of the target air conditioner.
[0087] In this embodiment of the invention, optionally, the current air outlet information includes at least one of the following: current air outlet path information, current air outlet range information, and current air outlet wind speed information.
[0088] 102. Based on the current air outlet information, determine the actual air outlet area information corresponding to the target air conditioner, and based on the actual air outlet area information, determine the area information not covered by the air outlet of the target air conditioner.
[0089] In an embodiment of the present invention, optionally, the actual air outlet area information includes the actual air outlet area location information and the actual air outlet area wind speed information, and the air outlet uncovered area information includes the air outlet uncovered area location information and the air outlet uncovered area wind speed requirement information.
[0090] 103. Based on the information of the area not covered by the air outlet, determine the wind speed control parameters of the target air conditioner, and control the target air conditioner to perform air outlet operation according to the wind speed control parameters.
[0091] In embodiments of the present invention, for example, such as Figure 1 As shown, Figure 1 This is a flowchart illustrating an air conditioning control method based on the consistency of wind speed between near and far distances, as disclosed in an embodiment of the present invention. When the current wind speed at the outlet of the target air conditioner is obtained as am / s and the current airflow path is from b to c, the actual airflow area of the air conditioner can be determined as region d, and the actual received airflow speed is zm / s. Subsequently, the area not covered by the target air conditioner's airflow can be determined as region e, and its corresponding wind speed requirement information can be analyzed. This allows for the determination of the wind speed control parameters for the target air conditioner, thereby achieving airflow control of the target air conditioner and achieving wind speed consistency between the uncovered area and the actual airflow area.
[0092] In addition, the target air conditioner can integrate an advanced WIFI module and a voice module, bringing an unprecedented intelligent experience to users. Specifically, a high-performance wireless communication module - the WIFI module can be embedded inside the target air conditioner. This WIFI module not only supports the latest wireless communication technology standards but also has powerful data processing capabilities. Through the WIFI module, the air conditioning system can easily access the wireless network of a home or enterprise, achieving real-time data synchronization and remote intelligent control with the cloud server. Whether it is remotely adjusting the temperature and wind speed through a mobile phone APP or receiving linkage instructions from a smart home system, the WIFI module can ensure smooth and stable data transmission, elevating the intelligent level of the air conditioning system to a new height and bringing unprecedented convenience and comfort to users. On the other hand, a voice module can also be integrated. This voice module adopts advanced voice recognition and processing technologies, enabling the target air conditioner to conduct natural and smooth voice interactions with users. Users only need to give simple voice commands, such as "Reduce the wind speed 3 meters ahead" or "Lower the temperature to 26°C", and the air conditioner can immediately respond and execute the corresponding operations. The addition of the voice module not only greatly simplifies the interaction process between users and the target air conditioner but also endows the air conditioning system with more user-friendly features, making smart home life more considerate and convenient.
[0093] In summary, through the deep integration of the WIFI module and the voice module, this AI + new technology air conditioning system not only achieves efficient network communication and remote control functions but also provides users with a more intuitive and convenient voice interaction method, comprehensively enhancing the intelligent experience and market competitiveness of air conditioning products.
[0094] It can be seen that implementing the embodiment of the present invention can determine the area not covered by the air output of the target air conditioner according to the current air output information of the air outlet of the target air conditioner, and then control the target air conditioner to perform an air output operation. In this way, the matching degree of wind speed control between the actual air output area and the area not covered by the air output can be improved, and further, the reliability and accuracy of the wind speed control of the air conditioner can be enhanced, thereby improving the user experience of using the air conditioner.
[0095] In an optional embodiment, determining the actual air output area information corresponding to the target air conditioner according to the current air output information in step 102 above includes:
[0096] Determining the air movement condition information of the scene where the target air conditioner is located;
[0097] According to the current air output information and the air movement condition information, determining the wind transmission influence information received by the target air conditioner;
[0098] According to the wind transmission influence information, determining the actual air output area information corresponding to the target air conditioner.
[0099] In this optional embodiment, the wind transmission impact information includes wind transmission impact type information and wind transmission impact magnitude information. Optionally, the air movement condition information includes one or more of the following: air movement direction information, air movement speed information, and air movement formation type information (such as air convection caused by a gust of wind blowing in from a window, or air movement caused by the operation of a blower).
[0100] Furthermore, based on the current airflow information and air movement conditions, the impact of wind transmission on the target air conditioner is determined, including:
[0101] Based on the current air supply information and air movement information, determine the actual air transmission direction of the target air conditioner;
[0102] Obtain the expected air transmission direction of the target air conditioner, and determine whether the actual air transmission direction is consistent with the expected air transmission direction based on the actual air transmission direction and the expected air transmission direction.
[0103] When it is determined that the actual wind transmission direction is consistent with the expected wind transmission direction, the wind transmission impact type information of the target air conditioner is determined, including the positive wind transmission impact type.
[0104] When it is determined that the actual wind transmission direction is inconsistent with the expected wind transmission direction, the wind transmission impact type information of the target air conditioner is determined, including the reverse wind transmission impact type.
[0105] In this optional embodiment, further, determining the wind transmission impact information on the target air conditioner based on the current air outlet information and air movement status information also includes:
[0106] Based on the current air outlet information and air movement information, determine the air outlet change range parameter of the target air conditioner, and based on the air outlet change range parameter of the target air conditioner, determine the air transmission influence range information of the target air conditioner.
[0107] As can be seen, this optional embodiment can analyze the type and magnitude of wind transmission impact on the target air conditioner based on current air outlet information and air movement conditions, thereby determining the actual air outlet area of the target air conditioner. This allows the target air conditioner to automatically adjust its air outlet strategy according to different environmental conditions, such as indoor layout, door and window opening status, and external wind direction and speed, ensuring efficient and stable operation in various usage scenarios. Furthermore, it improves the reliability and accuracy of subsequent wind direction and speed control, reducing ineffective and unnecessary wind energy waste, thereby improving indoor temperature uniformity and comfort, and ultimately enhancing user satisfaction with the target air conditioner.
[0108] In another optional embodiment, the actual air transmission direction of the target air conditioner is determined based on the current air outlet information and air movement information, including:
[0109] Obtain information about obstructing objects in the scene where the target air conditioner is located;
[0110] Based on the current airflow information, air movement information, and obstruction information, determine the actual airflow direction of the target air conditioner.
[0111] In this embodiment of the invention, optionally, the obstruction object information includes at least one of obstruction object type information, obstruction object location information, and obstruction object placement orientation information. Further, computational fluid dynamics (CFD) or other airflow simulation techniques can be used to combine current airflow information, air movement status information, and obstruction object information to perform three-dimensional airflow simulation, thereby determining the actual airflow direction of the target air conditioner. It should be noted that machine learning algorithms can be used to analyze and learn from a large amount of historical data, enabling the air conditioning control system to automatically identify and adapt to the airflow characteristics under different scenarios. Over time, the system will become more intelligent and efficient, providing users with a more personalized comfort experience.
[0112] As can be seen, by implementing the embodiments of the present invention, the actual air transmission direction of the target air conditioner can be determined by the current air outlet information, air movement information, and obstruction object information. In this way, highly accurate prediction and control of the actual air transmission direction of the target air conditioner can be achieved, ensuring that the air outlet of the target air conditioner can be accurately delivered to the area that needs adjustment, and greatly reducing unnecessary energy consumption and user experience degradation caused by wind direction deviation.
[0113] Example 2
[0114] Please see Figure 3 , Figure 3 This is a flowchart illustrating another air conditioning control method based on the consistency of wind speeds at near and far distances, as disclosed in an embodiment of the present invention. Figure 3 The described air conditioning control method based on the consistency of wind speeds at varying distances can be applied to air conditioning control processes in various scenarios, such as home, office, and entertainment environments, etc., and this embodiment of the invention is not limited thereto. Optionally, this method can be implemented by an air conditioning control device, which can be integrated into a smart air conditioner, or it can be a local server or cloud server used to process the air conditioning control process, etc., and this embodiment of the invention is not limited thereto. Figure 3 As shown, the air conditioning control method based on the consistency of wind speeds at near and far distances can include the following operations:
[0115] 201. Obtain the current airflow information from the air outlet of the target air conditioner.
[0116] 202. Based on the current air outlet information, determine the actual air outlet area information corresponding to the target air conditioner.
[0117] 203. Determine the target activity information of the target air conditioner user.
[0118] In this embodiment of the invention, the target activity information may optionally include one or more of the following: activity type information, activity location information, activity time information, etc.
[0119] 204. Based on the target activity information, determine the air supply demand area information of the target air conditioner.
[0120] In this embodiment of the invention, optionally, the air outlet demand area information includes air outlet demand area location information and air outlet demand area wind speed demand information. Furthermore, the air outlet demand area information of the target air conditioner can be determined by combining the user's comfort temperature demand parameters, comfort wind speed demand parameters, comfort airflow position demand parameters, health status parameters, etc., such as if the user is currently experiencing a cold, the target air conditioner needs to avoid blowing air from the user's head area, etc.
[0121] 205. Based on the actual air outlet area information and the air outlet demand area information, determine the area information not covered by the target air conditioner's air outlet.
[0122] 206. Based on the information of the area not covered by the air outlet, determine the wind speed control parameters of the target air conditioner, and control the target air conditioner to perform air outlet operation according to the wind speed control parameters.
[0123] In this embodiment of the invention, for other descriptions of steps 205 and 206, please refer to the detailed description of steps 102 and 103 in Embodiment 1. These descriptions will not be repeated in this embodiment of the invention.
[0124] As can be seen, implementing the embodiments of the present invention can determine the air supply demand area of the target air conditioner based on the user's target activity information, and then determine the area not covered by the air supply of the target air conditioner by combining the actual air supply area information. In this way, the air supply demand area can be accurately determined, and the air supply mode and wind speed of the air conditioner can be dynamically adjusted to ensure the user's comfort within the activity area, thereby significantly improving the user experience. In addition, by identifying the area not covered by the air supply and controlling the wind speed accordingly, unnecessary energy waste can be reduced, the energy efficiency ratio of the air conditioner can be improved, and the goal of energy conservation and emission reduction can be achieved.
[0125] In an optional embodiment, step 205 above, determining the area not covered by the target air conditioner's air outlet based on the actual air outlet area information and the air outlet demand area information, includes:
[0126] Determine whether the target operating equipment exists in the scene where the target air conditioner is located;
[0127] When it is determined that there is no target operating equipment, the area not covered by the target air conditioner is determined based on the actual air outlet area information and the air outlet demand area information.
[0128] When a target operating device is identified, the information of the target operating device and the impact of the airflow on the target operating device are determined.
[0129] Based on the impact of the air supply on the target object, the actual air supply area information, and the air supply demand area information, determine the area information not covered by the target air conditioner's air supply.
[0130] In this optional embodiment, the target information may optionally include at least one of the target type information, target location information, and target weight information.
[0131] For example, if a vacuum cleaner is present in the scene and its target is debris and dust on the ground, then we can analyze how the debris and dust on the ground are affected by the airflow when the target air conditioner is in the airflow operation state, such as dust flying and debris floating. In this way, the working area of the vacuum cleaner can be appropriately excluded from the area not covered by the airflow of the target air conditioner that needs to be determined later, or the impact of the airflow on the working area of the vacuum cleaner can be reduced later.
[0132] As can be seen, this optional embodiment can determine the impact of airflow on the target operating device based on the target operating device and its corresponding object information in the scenario. Then, by combining the actual airflow area information and the airflow demand area information, it can determine the area not covered by the target air conditioner. In this way, unnecessary airflow coverage areas can be reduced or the wind speed can be adjusted to reduce interference with the operating area of the target operating device. The air conditioning control system can reduce energy consumption while ensuring user comfort and may indirectly improve the cleaning efficiency of devices such as vacuum cleaners. At the same time, by introducing the identification and evaluation of the target operating device in the scenario, the system can more comprehensively understand the dynamics of the indoor environment and more accurately determine the area not covered by the air conditioner's airflow. Thus, even in different usage scenarios, the air conditioning system can provide the optimal airflow strategy.
[0133] In another alternative embodiment, the method further includes:
[0134] During the process of controlling the target air conditioner to perform air outlet operation, the area not covered by the air outlet of the target air conditioner is divided into multiple sub-areas not covered by air outlet, and the air outlet reception information corresponding to each sub-area not covered by air outlet is determined.
[0135] Based on the actual air outlet area information corresponding to the target air conditioner and the air outlet reception information corresponding to all air outlet uncovered sub-areas, identify the sub-areas to be adjusted from all air outlet uncovered sub-areas where the air outlet reception information does not match the actual air outlet area information.
[0136] Adjust the wind speed control parameters according to the area to be adjusted.
[0137] In this optional embodiment, when there are multiple sub-regions to be adjusted, the adjustment priority parameter corresponding to each sub-region to be adjusted can be determined by combining the user's preference settings and / or activity changes, and then the wind speed control parameter can be adjusted according to the adjustment priority parameter corresponding to each sub-region to be adjusted.
[0138] As can be seen, this optional embodiment can identify, in real time, sub-regions whose air supply reception information does not match the actual air supply area information based on the air supply reception information corresponding to the sub-regions not covered by the air supply. Furthermore, it can determine the adjustment priority parameters corresponding to the sub-regions to be adjusted by combining user preference settings and / or activity changes, thereby enabling the adjustment of wind speed control parameters. In this way, areas that have the greatest impact on users or require the most urgent adjustment can be prioritized, thus achieving efficient and accurate wind speed control, reducing the ineffective allocation of resources, and improving the efficiency of the entire adjustment process.
[0139] Example 3
[0140] Please see Figure 4 , Figure 4 This is a schematic diagram of an air conditioning control device based on the consistency of wind speed at near and far distances, as disclosed in an embodiment of the present invention. Figure 4 As shown, the air conditioning control device based on the consistency of wind speed at near and far distances may include:
[0141] The acquisition module 301 is used to acquire the current air outlet information of the target air conditioner.
[0142] The first determining module 302 is used to determine the actual air outlet area information corresponding to the target air conditioner based on the current air outlet information;
[0143] The second determining module 303 is used to determine the air outlet coverage area information of the target air conditioner based on the actual air outlet area information; and to determine the air speed control parameters of the target air conditioner based on the air outlet coverage area information.
[0144] The control module 304 is used to control the target air conditioner to perform air output operation according to the wind speed control parameters.
[0145] In this embodiment of the invention, the current air outlet information includes at least one of the following: current air outlet path information, current air outlet range information, and current air outlet wind speed information.
[0146] It is evident that implementation Figure 4 The air conditioning control device described is based on the consistency of wind speed between near and far. It can determine the area not covered by the air outlet of the target air conditioner according to the current air outlet information of the target air conditioner, and then control the target air conditioner to perform air outlet operation. In this way, the matching degree of wind speed control between the actual air outlet area and the area not covered by the air outlet can be improved, thereby improving the reliability and accuracy of the air conditioner's wind speed control, and thus improving the user's air conditioning experience.
[0147] In an optional embodiment, the actual air outlet area information includes the actual air outlet area location information and the actual air outlet area wind speed information, and the air outlet uncovered area information includes the air outlet uncovered area location information and the air outlet uncovered area wind speed demand information.
[0148] Specifically, the method by which the first determining module 302 determines the actual air outlet area information corresponding to the target air conditioner based on the current air outlet information includes:
[0149] Determine the air movement information of the scene where the target air conditioner is located;
[0150] Based on the current air supply information and air movement information, determine the impact of air transmission on the target air conditioner;
[0151] Based on the wind transmission impact information, determine the actual air outlet area information corresponding to the target air conditioner.
[0152] In this optional embodiment, the wind transmission impact information includes wind transmission impact type information and wind transmission impact magnitude information.
[0153] Furthermore, as an optional implementation, the first determining module 302 determines the wind transmission impact information on the target air conditioner based on the current air outlet information and air movement status information in the following specific ways:
[0154] Based on the current air supply information and air movement information, determine the actual air transmission direction of the target air conditioner;
[0155] Obtain the expected air transmission direction of the target air conditioner, and determine whether the actual air transmission direction is consistent with the expected air transmission direction based on the actual air transmission direction and the expected air transmission direction.
[0156] When it is determined that the actual wind transmission direction is consistent with the expected wind transmission direction, the wind transmission impact type information of the target air conditioner is determined, including the positive wind transmission impact type.
[0157] When it is determined that the actual wind transmission direction is inconsistent with the expected wind transmission direction, the wind transmission impact type information of the target air conditioner is determined, including the reverse wind transmission impact type.
[0158] It is evident that implementation Figure 5 The described air conditioning control device based on the consistency of wind speed at varying distances can analyze the type and magnitude of wind transmission impact on the target air conditioner based on current airflow information and air movement conditions. This allows it to determine the actual airflow area corresponding to the target air conditioner. By considering air movement conditions in different scenarios, such as indoor layout, window and door opening status, and external wind direction and speed, the target air conditioner can automatically adjust its airflow strategy according to different environmental conditions, ensuring efficient and stable operation in various usage scenarios. Furthermore, it improves the reliability and accuracy of subsequent wind direction and speed control, reduces ineffective and unnecessary wind energy waste, and thus improves indoor temperature uniformity and comfort, ultimately enhancing user satisfaction with the target air conditioner.
[0159] In another optional embodiment, the method by which the first determining module 302 determines the actual air transmission direction of the target air conditioner based on the current air outlet information and air movement information specifically includes:
[0160] Obtain information about obstructing objects in the scene where the target air conditioner is located;
[0161] Based on the current airflow information, air movement information, and obstruction information, determine the actual airflow direction of the target air conditioner.
[0162] In this optional embodiment, the obstructing object information includes at least one of obstructing object type information, obstructing object location information, and obstructing object placement orientation information.
[0163] It is evident that implementation Figure 5 The air conditioning control device described is based on the consistency of wind speed at near and far distances. It can determine the actual air transmission direction of the target air conditioner by using the current air outlet information, air movement information, and obstruction object information. In this way, it can achieve highly accurate prediction and control of the actual air transmission direction of the target air conditioner, ensuring that the air outlet of the target air conditioner can be accurately delivered to the area that needs to be adjusted. It also greatly reduces unnecessary energy consumption and user experience degradation caused by wind direction deviation.
[0164] In yet another optional embodiment, the second determining module 303 determines the information of the area not covered by the target air conditioner's air outlet based on the actual air outlet area information in the following specific ways:
[0165] Determine the target activity information of the users of the target air conditioner;
[0166] Based on the target activity information, determine the air outlet demand area information of the target air conditioner;
[0167] Based on the actual air outlet area information and the air outlet demand area information, determine the area information not covered by the target air conditioner's air outlet.
[0168] It is evident that implementation Figure 5 The described air conditioning control device based on the consistency of wind speed at varying distances can determine the target air conditioning air outlet demand area based on the user's target activity information. Then, by combining this information with the actual air outlet area information, it can determine the area not covered by the target air conditioning air outlet. This allows for precise identification of the air outlet demand area and dynamic adjustment of the air conditioning's air outlet mode and fan speed, ensuring maximum user comfort within the activity area and significantly improving the user experience. Furthermore, by identifying areas not covered by the air outlet and implementing targeted fan speed control, unnecessary energy waste can be reduced, improving the air conditioning's energy efficiency ratio and achieving energy conservation and emission reduction goals.
[0169] In another optional embodiment, the second determining module 303 determines the area information not covered by the target air conditioner's air outlet based on the actual air outlet area information and the air outlet demand area information, specifically including:
[0170] Determine whether the target operating equipment exists in the scene where the target air conditioner is located;
[0171] When it is determined that there is no target operating equipment, the area not covered by the target air conditioner is determined based on the actual air outlet area information and the air outlet demand area information.
[0172] When a target operating device is identified, the information of the target operating device and the impact of the airflow on the target operating device are determined.
[0173] Based on the impact of the air supply on the target object, the actual air supply area information, and the air supply demand area information, determine the area information not covered by the target air conditioner's air supply.
[0174] In this optional embodiment, the target information includes at least one of the target type information, target location information, and target weight information.
[0175] It is evident that implementation Figure 5The described air conditioning control device based on the consistency of near and far wind speeds can determine the impact of airflow on the target operating equipment and its corresponding object based on the information of the target operating equipment in the scene. Then, by combining the actual airflow area information and the airflow demand area information, it can determine the area not covered by the target air conditioner. In this way, unnecessary airflow coverage areas can be reduced or the wind speed can be adjusted to reduce interference with the operating area of the target operating equipment. The air conditioning control system can reduce energy consumption while ensuring user comfort and may indirectly improve the cleaning efficiency of equipment such as vacuum cleaners. At the same time, by introducing the identification and evaluation of the target operating equipment in the scene, the system can more comprehensively understand the dynamics of the indoor environment and more accurately determine the area not covered by the air conditioner's airflow. Thus, even in different usage scenarios, the air conditioning system can provide the optimal airflow strategy.
[0176] In yet another optional embodiment, the apparatus further includes:
[0177] The partitioning module 305 is used to partition the area not covered by the air outlet of the target air conditioner during the process of controlling the target air conditioner to perform air outlet operation, and obtain multiple sub-areas not covered by the air outlet.
[0178] The third determining module 306 is used to determine the air supply reception information corresponding to each air supply uncovered sub-area; based on the actual air supply area information corresponding to the target air conditioner and the air supply reception information corresponding to all air supply uncovered sub-areas, it determines the sub-areas to be adjusted from all air supply uncovered sub-areas where the air supply reception information does not match the actual air supply area information.
[0179] The adjustment module 307 is used to adjust the wind speed control parameters according to the sub-area to be adjusted.
[0180] It is evident that implementation Figure 5 The described air conditioning control device based on the consistency of wind speed between near and far distances can identify, in real time, sub-regions whose air supply reception information does not match the actual air supply area information from the sub-regions not covered by the air supply. It can also determine the adjustment priority parameters for the sub-regions to be adjusted by combining user preference settings and / or activity changes, thereby enabling the adjustment of wind speed control parameters. In this way, it can prioritize the areas that have the greatest impact on users or are most in urgent need of adjustment, thus achieving efficient and accurate wind speed control, reducing the ineffective allocation of resources, and improving the efficiency of the entire adjustment process.
[0181] Example 4
[0182] Please see Figure 6 , Figure 6This is a schematic diagram of another air conditioning control device based on the consistency effect of near and far wind speeds disclosed in an embodiment of the present invention. Figure 6 As shown, the air conditioning control device based on the consistency of wind speed at near and far distances may include:
[0183] Memory 401 storing executable program code;
[0184] Processor 402 coupled to memory 401;
[0185] The processor 402 calls the executable program code stored in the memory 401 to execute the steps in the air conditioning control method based on the consistency effect of near and far wind speeds as described in Embodiment 1 or Embodiment 2 of the present invention.
[0186] Example 5
[0187] 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 control method based on the consistency effect of near and far wind speeds as described in Embodiment 1 or Embodiment 2 of this invention.
[0188] Example 6
[0189] This 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 cause a computer to perform the steps in the air conditioning control method based on the consistency effect of near and far wind speeds described in Embodiment 1 or Embodiment 2.
[0190] The device embodiments described above are merely illustrative. The modules described as separate components may or may not be physically separate. 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.
[0191] 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-readable 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.
[0192] Finally, it should be noted that the air conditioning control method and device based on the consistency effect of near and far wind speed disclosed in the embodiments of the present invention are only preferred embodiments of the present invention, and are only used to illustrate the technical solutions of the present invention, and 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; and these 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. An air conditioning control method based on the consistency of wind speed at near and far distances, characterized in that, The method includes: Obtain the current air outlet information of the target air conditioner; the current air outlet information includes at least one of the following: current air outlet path information, current air outlet range information, and current air outlet speed information; Based on the current air outlet information, the actual air outlet area information corresponding to the target air conditioner is determined, and the target activity information of the user of the target air conditioner is determined; the target activity information includes at least one of activity type information, activity location information, and activity time information; Based on the target activity information, the air outlet demand area information of the target air conditioner is determined, and based on the actual air outlet area information and the air outlet demand area information, the air outlet uncovered area information of the target air conditioner is determined; the air outlet demand area information includes the location information of the air outlet demand area and the air speed demand information of the air outlet demand area. Based on the information of the area not covered by the air outlet, the wind speed control parameters of the target air conditioner are determined, and the target air conditioner is controlled to perform air outlet operation based on the wind speed control parameters. The step of determining the area not covered by the target air conditioner's air outlet based on the actual air outlet area information and the air outlet demand area information includes: Determine whether a target operating device exists in the scene where the target air conditioner is located; If not, then based on the actual air outlet area information and the air outlet demand area information, determine the air outlet uncovered area information of the target air conditioner; If so, then determine the target operating device's corresponding object information, and based on the object information, determine the impact of the airflow on the target operating device's corresponding object; the object information includes at least one of object type information, object location information, and object weight information; Based on the impact of the airflow on the target object, the actual airflow area information, and the airflow demand area information, the airflow coverage area information of the target air conditioner is determined.
2. The air conditioning control method based on the consistency of wind speed at near and far distances according to claim 1, characterized in that, The actual air outlet area information includes the actual air outlet area location information and the actual air outlet area wind speed information; the air outlet uncovered area information includes the air outlet uncovered area location information and the air outlet uncovered area wind speed requirement information. The step of determining the actual air outlet area information corresponding to the target air conditioner based on the current air outlet information includes: Determine the air movement information of the scene where the target air conditioner is located; Based on the current air outlet information and the air movement status information, the wind transmission impact information on the target air conditioner is determined; the wind transmission impact information includes wind transmission impact type information and wind transmission impact magnitude information. Based on the wind transmission impact information, the actual air outlet area information corresponding to the target air conditioner is determined.
3. The air conditioning control method based on the consistency of wind speed at near and far distances according to claim 2, characterized in that, The step of determining the wind transmission impact information on the target air conditioner based on the current air outlet information and the air movement status information includes: Based on the current air outlet information and the air movement information, the actual air transmission direction of the target air conditioner is determined; Obtain the expected air transmission direction of the target air conditioner, and determine whether the actual air transmission direction is consistent with the expected air transmission direction based on the actual air transmission direction and the expected air transmission direction. When it is determined that the actual wind transmission direction is consistent with the expected wind transmission direction, the wind transmission impact type information of the target air conditioner is determined to include the positive wind transmission impact type. When it is determined that the actual wind transmission direction is inconsistent with the expected wind transmission direction, the wind transmission influence type information of the target air conditioner is determined to include the reverse wind transmission influence type.
4. The air conditioning control method based on the consistency of wind speed at near and far distances according to claim 3, characterized in that, Determining the actual air transmission direction of the target air conditioner based on the current air outlet information and the air movement status information includes: Obtain information about obstructing objects in the scene where the target air conditioner is located; the obstructing object information includes at least one of obstructing object type information, obstructing object location information, and obstructing object placement orientation information; Based on the current airflow information, the air movement information, and the obstruction information, the actual airflow direction of the target air conditioner is determined.
5. The air conditioning control method based on the consistency effect of near and far wind speeds according to any one of claims 1-4, characterized in that, The method further includes: During the process of controlling the target air conditioner to perform air outlet operation, the area not covered by the air outlet corresponding to the target air conditioner is divided into multiple sub-areas not covered by the air outlet, and the air outlet receiving information corresponding to each sub-area not covered by the air outlet is determined. Based on the actual air outlet area information corresponding to the target air conditioner and the air outlet reception information corresponding to all the air outlet uncovered sub-areas, determine the sub-areas to be adjusted from all the air outlet uncovered sub-areas where the air outlet reception information does not match the actual air outlet area information; The wind speed control parameters are adjusted according to the region to be adjusted.
6. An air conditioning control device based on the consistency of wind speed at near and far distances, characterized in that, The device is used to perform the air conditioning control method based on the consistency effect of near and far wind speeds as described in any one of claims 1-5, and the device comprises: The acquisition module is used to acquire the current air outlet information of the target air conditioner; the current air outlet information includes at least one of the following: current air outlet path information, current air outlet range information, and current air outlet speed information. The first determining module is used to determine the actual air outlet area information corresponding to the target air conditioner based on the current air outlet information; The second determining module is used to determine the air outlet uncovered area information of the target air conditioner based on the actual air outlet area information; and to determine the wind speed control parameters of the target air conditioner based on the air outlet uncovered area information. The control module is used to control the target air conditioner to perform air output operation according to the wind speed control parameters.
7. An air conditioning control device based on the consistency of wind speed at near and far distances, characterized in that, The device includes: Memory containing executable program code; A processor coupled to the memory; The processor calls the executable program code stored in the memory to execute the air conditioning control method based on the consistency effect of near and far wind speeds as described in any one of claims 1-5.
8. A computer storage medium, characterized in that, The computer storage medium stores computer instructions, which, when invoked, are used to execute the air conditioning control method based on the consistency effect of near and far wind speeds as described in any one of claims 1-5.