Air conditioner control method and device based on equipment operation state parameters
By acquiring the operating status parameters of the target device and combining them with environmental influencing factors, the air conditioner is intelligently adjusted, solving the problem of inaccurate control of intelligent air conditioners and achieving a more efficient user experience.
Patent Information
- Application Number
- CN202410637551.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-21
- Publication Date
- 2025-11-21
AI Technical Summary
In existing smart air conditioning control processes, the ambient temperature is easily disrupted by the operation of the equipment, leading to inaccurate control and affecting the user experience.
By acquiring the operating status parameters of the target device, it is determined whether the air conditioner needs to be subjected to matching control operations, including operating power, temperature, duration, and mode parameters. Combined with the influence of obstructions and factors such as changes in the object's temperature, humidity, and odor, the control parameters of the air conditioner are determined and corresponding operations are performed.
It improves the timeliness and reliability of air conditioning control, reduces control malfunctions, and enhances the user experience.
Smart Images

Figure CN120991429A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of intelligent air conditioning technology, and in particular to an air conditioning control method and device based on equipment operating status parameters. 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, greatly improving users' living environment and enhancing users' experience of using smart devices.
[0003] Currently, smart air conditioners can create a comfortable living environment in both winter and summer through cooling or heating modes, providing users with physiological and psychological comfort. Typically, when users need to adjust the mode of a smart air conditioner, they do so based on their own perception, repeatedly adjusting the temperature and / or setting through the user terminal or device control. However, environmental parameters are easily affected by various factors, such as the heat emitted by certain devices causing a sudden rise in ambient temperature. This can disrupt the user's control of the air conditioner, negatively impacting the user experience. Therefore, providing a method to improve the accuracy of air conditioner control is crucial. Summary of the Invention
[0004] This invention provides an air conditioning control method and device based on equipment operating status parameters, which not only simplifies the user's air conditioning control process and improves the timeliness of air conditioning control, but also improves the reliability and accuracy of air conditioning control, reduces the occurrence of air conditioning control disorder, and thus helps to improve 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 equipment operating status parameters, the method comprising:
[0006] The system acquires preset operating status parameters of the target device and determines whether a matching control operation needs to be performed on the air conditioner based on the operating status parameters of the target device. The operating status parameters include at least one of operating power parameters, operating temperature parameters, operating time parameters, and operating mode parameters.
[0007] When it is determined that a matching control operation needs to be performed on the air conditioner, the control parameters of the air conditioner are determined based on the operating status parameters of the target device, and a matching control operation is performed on the air conditioner according to the control parameters of the air conditioner.
[0008] As an optional implementation, in the first aspect of the present invention, the target device is determined by the following means:
[0009] The device parameters of the air conditioner and the device parameters of multiple devices within a preset area are obtained; the device parameters of the air conditioner include the functional parameters of the air conditioner and a first position parameter, and the device parameters of each device include the functional parameters of the device and a second position parameter;
[0010] Based on the first position parameter of the air conditioner and the second position parameter of each device, the target obstruction between the air conditioner and each of the devices is determined;
[0011] Determine the basic parameters of the target obstruction, and based on the basic parameters of the target obstruction, the equipment parameters of the air conditioner, and the equipment parameters of all the equipment, predict the impact between the air conditioner and each of the equipment; the basic parameters include at least one of obstruction type parameters, obstruction specification parameters, and obstruction location parameters, and the impact includes the scope of impact and / or the magnitude of impact;
[0012] Based on the influence degree parameter corresponding to the influence between the air conditioner and each of the devices, the device whose influence degree parameter is greater than or equal to the preset influence degree threshold is determined from all devices and is taken as the target device.
[0013] As an optional implementation, in the first aspect of the present invention, determining whether a matching control operation needs to be performed on the air conditioner based on the operating status parameters of the target device includes:
[0014] Based on the operating status parameters of the target device and the second location parameters, the temperature and humidity changes generated by the target device are determined; the temperature and humidity changes include the range of temperature and humidity changes and / or the magnitude of temperature and humidity changes.
[0015] Determine the object parameters of a preset first object; the first object includes at least one of a first human object, a first animal object, and a plant object, and the object parameters of the first object include the position parameters and temperature and humidity change tolerance parameters of the first object.
[0016] Based on the temperature and humidity changes and the object parameters of the first object, determine the temperature and humidity impact of the target device on the first object, and determine whether the temperature and humidity impact degree parameter corresponding to the temperature and humidity impact is greater than or equal to the preset temperature and humidity impact degree threshold.
[0017] When it is determined that the temperature and humidity influence parameter is greater than or equal to the temperature and humidity influence threshold, it is determined that a matching control operation needs to be performed on the air conditioner.
[0018] As an optional implementation, in the first aspect of the present invention, the step of determining whether a matching control operation needs to be performed on the air conditioner based on the operating status parameters of the target device further includes:
[0019] Based on the operating status parameters of the target device and the second location parameters, the odor changes generated by the target device are determined; the odor changes include at least one of the following: odor change range, odor change type, and odor change magnitude.
[0020] Determine the preset object parameters of the second object; the second object includes a second human object and / or a second animal object, and the object parameters of the second object include the location parameters of the second object and the odor change acceptance parameters, wherein the odor change acceptance parameters include at least one of the odor change acceptance type parameters, odor change acceptance concentration parameters, and odor change acceptance duration parameters.
[0021] Based on the odor change and the object parameters of the second object, determine the odor impact of the target device on the second object, and determine whether the odor impact degree parameter corresponding to the odor impact is greater than or equal to a preset odor impact degree threshold.
[0022] When it is determined that the odor impact level parameter is greater than or equal to the odor impact level threshold, it is determined that a matching control operation needs to be performed on the air conditioner.
[0023] As an optional implementation, in the first aspect of the present invention, the step of determining whether a matching control operation needs to be performed on the air conditioner based on the operating status parameters of the target device further includes:
[0024] The current operating parameters of the air conditioner are obtained, and based on the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameter of the target device, and the second position parameter, the working impact of the air conditioner on the target device is determined; the working impact includes positive working impact or negative working impact.
[0025] When the work impact situation includes the negative work impact situation, it is determined whether the absolute value of the negative impact degree parameter is greater than or equal to the preset work impact degree threshold based on the absolute value of the negative impact degree parameter corresponding to the negative work impact situation.
[0026] When it is determined that the work impact parameter is greater than or equal to the work impact threshold, it is determined that a matching control operation needs to be performed on the air conditioner.
[0027] As an optional implementation, in a first aspect of the invention, the target device includes a cleaning device; determining the operational impact of the air conditioner on the target device based on the current operating parameters of the air conditioner, a first position parameter of the air conditioner, operating status parameters of the target device, and a second position parameter includes:
[0028] Determine the object parameters of the target object to be cleaned corresponding to the cleaning equipment; the target object to be cleaned includes dust and / or target debris, and the object parameters of the target object to be cleaned include at least one of the object type parameter, object size parameter, and object weight parameter of the target object to be cleaned;
[0029] Based on the object parameters of the target object to be cleaned, the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameters of the cleaning equipment, and the second position parameter, the motion parameters of the target object to be cleaned are determined; the motion parameters include motion range parameters and / or motion speed parameters.
[0030] Based on the motion parameters of the target object to be removed, it is determined whether the parameters of the target object to be removed will cause contamination to a preset third object; the third object includes a third person object and / or an item object;
[0031] When it is determined that the parameters of the target object to be removed will cause the pollution impact, based on the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameters of the cleaning equipment, and the second position parameter, it is determined whether the pollution impact factor corresponding to the pollution impact includes the air conditioner. If so, it is determined that the working impact of the air conditioner on the cleaning equipment includes negative working impact.
[0032] As an optional implementation, in the first aspect of the present invention, determining the operational impact of the air conditioner on the target device based on the current operating parameters of the air conditioner, a first location parameter of the air conditioner, operating status parameters of the target device, and a second location parameter further includes:
[0033] Determine whether the cleaning equipment has a corresponding cleaning agent; if so, obtain the target parameters of the cleaning agent; the target parameters of the cleaning agent include the type parameter of the cleaning agent and / or the current usage status.
[0034] The evaporation rate parameter of the cleaning agent is determined based on the target parameters of the cleaning agent, the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameters of the cleaning equipment, and the second position parameter.
[0035] Determine whether the evaporation rate parameter of the cleaning agent is less than a preset evaporation rate threshold;
[0036] When it is determined that the evaporation rate parameter is less than the evaporation rate threshold, based on the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameter of the cleaning equipment, and the second position parameter, it is determined whether the evaporation rate influencing factor of the cleaning agent includes the air conditioner. If so, it is determined that the working impact of the air conditioner on the cleaning equipment includes negative working impact.
[0037] A second aspect of the present invention discloses an air conditioning control device based on equipment operating status parameters, the device comprising:
[0038] The acquisition module is used to acquire preset operating status parameters of the target device; the operating status parameters include at least one of operating power parameters, operating temperature parameters, operating duration parameters, and operating mode parameters;
[0039] The judgment module is used to determine whether a matching control operation needs to be performed on the air conditioner based on the operating status parameters of the target device.
[0040] The determining module is used to determine the control parameters of the air conditioner based on the operating status parameters of the target device when the judging module determines that a matching control operation needs to be performed on the air conditioner.
[0041] The control module is used to perform matching control operations on the air conditioner according to the control parameters of the air conditioner.
[0042] As an optional implementation, in the second aspect of the invention, the target device is determined by the following means:
[0043] The device parameters of the air conditioner and the device parameters of multiple devices within a preset area are obtained; the device parameters of the air conditioner include the functional parameters of the air conditioner and a first position parameter, and the device parameters of each device include the functional parameters of the device and a second position parameter;
[0044] Based on the first position parameter of the air conditioner and the second position parameter of each device, the target obstruction between the air conditioner and each of the devices is determined;
[0045] Determine the basic parameters of the target obstruction, and based on the basic parameters of the target obstruction, the equipment parameters of the air conditioner, and the equipment parameters of all the equipment, predict the impact between the air conditioner and each of the equipment; the basic parameters include at least one of obstruction type parameters, obstruction specification parameters, and obstruction location parameters, and the impact includes the scope of impact and / or the magnitude of impact;
[0046] Based on the influence degree parameter corresponding to the influence between the air conditioner and each of the devices, the device whose influence degree parameter is greater than or equal to the preset influence degree threshold is determined from all devices and is taken as the target device.
[0047] As an optional implementation, in the second aspect of the present invention, the method by which the determining module determines whether a matching control operation needs to be performed on the air conditioner based on the operating status parameters of the target device specifically includes:
[0048] Based on the operating status parameters of the target device and the second location parameters, the temperature and humidity changes generated by the target device are determined; the temperature and humidity changes include the range of temperature and humidity changes and / or the magnitude of temperature and humidity changes.
[0049] Determine the object parameters of a preset first object; the first object includes at least one of a first human object, a first animal object, and a plant object, and the object parameters of the first object include the position parameters and temperature and humidity change tolerance parameters of the first object.
[0050] Based on the temperature and humidity changes and the object parameters of the first object, determine the temperature and humidity impact of the target device on the first object, and determine whether the temperature and humidity impact degree parameter corresponding to the temperature and humidity impact is greater than or equal to the preset temperature and humidity impact degree threshold.
[0051] When it is determined that the temperature and humidity influence parameter is greater than or equal to the temperature and humidity influence threshold, it is determined that a matching control operation needs to be performed on the air conditioner.
[0052] As an optional implementation, in the second aspect of the present invention, the method by which the determining module determines whether a matching control operation needs to be performed on the air conditioner based on the operating status parameters of the target device further includes:
[0053] Based on the operating status parameters of the target device and the second location parameters, the odor changes generated by the target device are determined; the odor changes include at least one of the following: odor change range, odor change type, and odor change magnitude.
[0054] Determine the preset object parameters of the second object; the second object includes a second human object and / or a second animal object, and the object parameters of the second object include the location parameters of the second object and the odor change acceptance parameters, wherein the odor change acceptance parameters include at least one of the odor change acceptance type parameters, odor change acceptance concentration parameters, and odor change acceptance duration parameters.
[0055] Based on the odor change and the object parameters of the second object, determine the odor impact of the target device on the second object, and determine whether the odor impact degree parameter corresponding to the odor impact is greater than or equal to a preset odor impact degree threshold.
[0056] When it is determined that the odor impact level parameter is greater than or equal to the odor impact level threshold, it is determined that a matching control operation needs to be performed on the air conditioner.
[0057] As an optional implementation, in the second aspect of the present invention, the method by which the determining module determines whether a matching control operation needs to be performed on the air conditioner based on the operating status parameters of the target device further includes:
[0058] The current operating parameters of the air conditioner are obtained, and based on the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameter of the target device, and the second position parameter, the working impact of the air conditioner on the target device is determined; the working impact includes positive working impact or negative working impact.
[0059] When the work impact situation includes the negative work impact situation, it is determined whether the absolute value of the negative impact degree parameter is greater than or equal to the preset work impact degree threshold based on the absolute value of the negative impact degree parameter corresponding to the negative work impact situation.
[0060] When it is determined that the work impact parameter is greater than or equal to the work impact threshold, it is determined that a matching control operation needs to be performed on the air conditioner.
[0061] As an optional implementation, in a second aspect of the present invention, the target device includes a cleaning device; the method by which the determining module determines the operational impact of the air conditioner on the target device based on the current operating parameters of the air conditioner, a first position parameter of the air conditioner, operating status parameters of the target device, and a second position parameter specifically includes:
[0062] Determine the object parameters of the target object to be cleaned corresponding to the cleaning equipment; the target object to be cleaned includes dust and / or target debris, and the object parameters of the target object to be cleaned include at least one of the object type parameter, object size parameter, and object weight parameter of the target object to be cleaned;
[0063] Based on the object parameters of the target object to be cleaned, the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameters of the cleaning equipment, and the second position parameter, the motion parameters of the target object to be cleaned are determined; the motion parameters include motion range parameters and / or motion speed parameters.
[0064] Based on the motion parameters of the target object to be removed, it is determined whether the parameters of the target object to be removed will cause contamination to a preset third object; the third object includes a third person object and / or an item object;
[0065] When it is determined that the parameters of the target object to be removed will cause the pollution impact, based on the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameters of the cleaning equipment, and the second position parameter, it is determined whether the pollution impact factor corresponding to the pollution impact includes the air conditioner. If so, it is determined that the working impact of the air conditioner on the cleaning equipment includes negative working impact.
[0066] As an optional implementation, in a second aspect of the present invention, the method by which the determining module determines the operational impact of the air conditioner on the target device based on the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameter of the target device, and the second position parameter further includes:
[0067] Determine whether the cleaning equipment has a corresponding cleaning agent; if so, obtain the target parameters of the cleaning agent; the target parameters of the cleaning agent include the type parameter of the cleaning agent and / or the current usage status.
[0068] The evaporation rate parameter of the cleaning agent is determined based on the target parameters of the cleaning agent, the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameters of the cleaning equipment, and the second position parameter.
[0069] Determine whether the evaporation rate parameter of the cleaning agent is less than a preset evaporation rate threshold;
[0070] When it is determined that the evaporation rate parameter is less than the evaporation rate threshold, based on the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameter of the cleaning equipment, and the second position parameter, it is determined whether the evaporation rate influencing factor of the cleaning agent includes the air conditioner. If so, it is determined that the working impact of the air conditioner on the cleaning equipment includes negative working impact.
[0071] A third aspect of the present invention discloses another air conditioning control device based on equipment operating status parameters, the device comprising:
[0072] Memory containing executable program code;
[0073] A processor coupled to the memory;
[0074] The processor calls the executable program code stored in the memory to execute the air conditioning control method based on device operating status parameters disclosed in the first aspect of the present invention.
[0075] 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 device operating status parameters disclosed in the first aspect of the present invention.
[0076] Compared with the prior art, the embodiments of the present invention have the following beneficial effects:
[0077] In this embodiment of the invention, based on the acquired, preset operating status parameters of the target device, it is determined whether a matching control operation needs to be performed on the air conditioner. When the determination result is yes, the control parameters of the air conditioner are determined based on the operating status parameters of the target device, and a matching control operation is performed on the air conditioner according to the control parameters. It is evident that implementing this invention enables intelligent control of the air conditioner based on the operating status parameters of the target device. This not only simplifies the user's control process for the air conditioner and improves the timeliness of air conditioner control, but also enhances the reliability and accuracy of air conditioner control, reduces the occurrence of air conditioner control malfunctions, and thus improves the user's experience with the air conditioner. Attached Figure Description
[0078] 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.
[0079] Figure 1 This is a schematic diagram of an air conditioning control scenario based on equipment operating status parameters disclosed in an embodiment of the present invention;
[0080] Figure 2 This is a flowchart illustrating an air conditioning control method based on equipment operating status parameters disclosed in an embodiment of the present invention.
[0081] Figure 3 This is a flowchart illustrating another air conditioning control method based on equipment operating status parameters disclosed in an embodiment of the present invention;
[0082] Figure 4 This is a schematic diagram of the structure of an air conditioning control device based on equipment operating status parameters disclosed in an embodiment of the present invention;
[0083] Figure 5 This is a schematic diagram of another air conditioning control device based on equipment operating status parameters disclosed in an embodiment of the present invention. Detailed Implementation
[0084] 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.
[0085] 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.
[0086] 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.
[0087] This invention discloses an air conditioning control method and device based on equipment operating status parameters. It not only simplifies the user's air conditioning control process and improves the timeliness of air conditioning control, but also improves the reliability and accuracy of air conditioning control and reduces the occurrence of air conditioning control disorder, thereby enhancing the user's air conditioning experience.
[0088] Example 1
[0089] Please see Figure 2 , Figure 2 This is a flowchart illustrating an air conditioning control method based on equipment operating status parameters disclosed in an embodiment of the present invention. Figure 2The described air conditioning control method based on device operating status parameters can be applied to control air conditioning in various scenarios, such as home and office environments, based on the operating status parameters of the target device. This invention does not limit the scope of the method. Optionally, this method can be implemented by an air conditioning control device, which can be integrated into a smart air conditioner or used as a local server or cloud server to process the air conditioning control flow based on device operating status parameters. This invention does not limit the scope of the method. Figure 2 As shown, the air conditioning control method based on equipment operating status parameters may include the following operations:
[0090] 101. Obtain the preset operating status parameters of the target device, and determine whether it is necessary to perform matching control operations on the air conditioner based on the operating status parameters of the target device.
[0091] In this embodiment of the invention, optionally, the operating status parameters include at least one of the following: operating power parameters, operating temperature parameters, operating duration parameters, and operating mode parameters.
[0092] Furthermore, as an optional implementation, the target device is determined in the following manner:
[0093] Obtain the equipment parameters of the air conditioner and the equipment parameters of multiple devices within a preset area;
[0094] Based on the first position parameters of the air conditioner and the second position parameters of each device, determine the target obstruction between the air conditioner and each device;
[0095] Determine the basic parameters of the target obstruction, and based on the basic parameters of the target obstruction, the equipment parameters of the air conditioner, and the equipment parameters of all equipment, predict the impact between the air conditioner and each piece of equipment;
[0096] Based on the influence parameters corresponding to the interaction between the air conditioner and each device, the devices whose influence parameters are greater than or equal to the preset influence threshold are identified as the target devices.
[0097] In this optional embodiment, the air conditioner's device parameters include its functional parameters and a first position parameter, and the device parameters for each device include its functional parameters and a second position parameter. Optionally, the basic parameters include at least one of the obstruction type parameters, obstruction specification parameters, and obstruction position parameters, and the impact conditions include the impact range and / or impact magnitude (such as the impact magnitude of temperature and humidity on the target device, the impact range of odor, etc.).
[0098] For example, such as Figure 1 As shown, Figure 1This is a schematic diagram of an air conditioning control scenario based on device operating status parameters disclosed in an embodiment of the present invention. When the device parameters of a washing machine, kettle, and sweeper are obtained, and the target obstruction between the air conditioner and these devices is identified, based on the basic parameters of the target obstruction, the device parameters of the air conditioner, and the device parameters of the aforementioned three devices, it can be predicted that: 1. When the washing machine is running, it will not generate excessive heat, and the operation of the air conditioner will not affect the normal operation of the washing machine; 2. When the kettle is running, it will generate significant heat, affecting the air conditioner's adjustment of environmental parameters, therefore, the air conditioner's airflow control may require further adjustment; 3. When the sweeper is running, if the air conditioner's airflow is large and the airflow direction is unsuitable, it may affect the sweeper's cleaning efficiency of the floor dust, therefore, the air conditioner's airflow control may also require further adjustment. Therefore, comprehensive analysis shows that the influence degree parameter corresponding to the influence between the air conditioner, kettle, and sweeper is greater than the preset influence degree threshold, thus identifying the kettle and sweeper as target devices.
[0099] 102. When it is determined that a matching control operation needs to be performed on the air conditioner, the control parameters of the air conditioner are determined based on the operating status parameters of the target device, and the matching control operation is performed on the air conditioner according to the control parameters of the air conditioner.
[0100] In this embodiment of the invention, the control parameters may optionally include one or more of the following: air temperature control parameters, air volume control parameters, air direction control parameters, running time control parameters, etc.
[0101] As can be seen, implementing the embodiments of the present invention can realize the intelligent control process of the air conditioner based on the operating status parameters of the target device. This not only simplifies the user's control process of the air conditioner and improves the timeliness of the control, but also improves the reliability and accuracy of the control, reduces the occurrence of air conditioner control disorder, and thus helps to improve the user's air conditioner experience.
[0102] Example 2
[0103] Please see Figure 3 , Figure 3 This is a flowchart illustrating an air conditioning control method based on equipment operating status parameters disclosed in an embodiment of the present invention. Figure 3 The described air conditioning control method based on device operating status parameters can be applied to control air conditioning in various scenarios, such as home and office environments, based on the operating status parameters of the target device. This invention does not limit the scope of the method. Optionally, this method can be implemented by an air conditioning control device, which can be integrated into a smart air conditioner or used as a local server or cloud server to process the air conditioning control flow based on device operating status parameters. This invention does not limit the scope of the method. Figure 3 As shown, the air conditioning control method based on equipment operating status parameters may include the following operations:
[0104] 201. Obtain the preset operating status parameters of the target device.
[0105] 202. Based on the operating status parameters of the target equipment and the second position parameters, determine the temperature and humidity changes generated by the target equipment.
[0106] In this embodiment of the invention, the temperature and humidity changes may optionally include the range of temperature and humidity changes and / or the magnitude of temperature and humidity changes.
[0107] 203. Determine the object parameters of the preset first object.
[0108] In this embodiment of the invention, optionally, the first object includes at least one of a first human object, a first animal object, and a plant object. Further optionally, the object parameters of the first object include the position parameters of the first object and temperature and humidity change tolerance parameters, wherein the temperature and humidity change tolerance parameters include a temperature and humidity change tolerance magnitude parameter and / or a temperature and humidity change tolerance duration parameter.
[0109] 204. Based on the temperature and humidity changes and the object parameters of the first object, determine the temperature and humidity impact of the target device on the first object, and determine whether the temperature and humidity impact degree parameter corresponding to the temperature and humidity impact degree is greater than or equal to the preset temperature and humidity impact degree threshold.
[0110] In this embodiment of the invention, optionally, the temperature and humidity effects on the first object include one or more of the following: physiological effects on the first human object, physiological effects on the first animal object, and effects on the target action (such as effects on respiration or photosynthesis) on the plant object.
[0111] For example, if a kettle generates heat while running, causing the ambient temperature in its vicinity to rise by 2°C and remain elevated for about 10 minutes, then if we consider the temperature and humidity tolerance parameters of person A in that vicinity, such as being able to tolerate a temperature rise of 3°C for a short period (e.g., 15 minutes), we can determine that the degree of temperature and humidity impact is less than the preset threshold, and therefore it can be determined that the air conditioning does not need to be controlled temporarily. However, if we consider the temperature and humidity tolerance parameters of person B in that vicinity, such as being able to tolerate a temperature rise of 2°C for only 5 minutes (otherwise, person B will be sweating profusely), then we can determine that the degree of temperature and humidity impact is greater than the preset threshold, and therefore it can be determined that the air conditioning needs to be controlled, such as temporarily lowering the temperature for 10 minutes.
[0112] 205. When it is determined that the parameter of the degree of influence of temperature and humidity is greater than or equal to the threshold of the degree of influence of temperature and humidity, it is determined that the air conditioner needs to be subjected to matching control operations.
[0113] 206. When it is determined that a matching control operation needs to be performed on the air conditioner, the control parameters of the air conditioner are determined based on the operating status parameters of the target equipment, and the matching control operation is performed on the air conditioner according to the control parameters of the air conditioner.
[0114] In this embodiment of the invention, for other descriptions of steps 201 and 206, please refer to the detailed description of steps 101-102 in Embodiment 1. This embodiment of the invention will not repeat them.
[0115] As can be seen, by implementing the embodiments of the present invention, the temperature and humidity impact of the target device on the first object can be determined based on the operating status parameters of the target device, the second position parameters, and the object parameters of the first object. Then, it can be determined whether the air conditioner needs to be controlled. This can improve the reliability and accuracy of the analysis of the temperature and humidity impact on the first object, and further improve the reliability and accuracy of the execution of the air conditioner control demand determination operation. This allows the air conditioner to adjust the environmental parameters in a timely and accurate manner to ensure a high level of user comfort.
[0116] In an optional embodiment, the method further includes:
[0117] Based on the operating status parameters of the target device and the second location parameters, determine the changes in odor generated by the target device;
[0118] Determine the object parameters of the preset second object;
[0119] Based on the odor change and the object parameters of the second object, determine the odor impact of the target device on the second object, and determine whether the odor impact degree parameter corresponding to the odor impact is greater than or equal to the preset odor impact degree threshold.
[0120] When it is determined that the odor impact parameter is greater than or equal to the odor impact threshold, it is determined that the air conditioner needs to be subjected to matching control operations.
[0121] In this optional embodiment, the odor change situation may optionally include at least one of odor change range, odor change type, and odor change magnitude. Further optionally, the second object may include a second human object and / or a second animal object, wherein the object parameters of the second object include the location parameters of the second object and odor change acceptance parameters, and the odor change acceptance parameters include at least one of odor change acceptance type parameters, odor change acceptance concentration parameters, and odor change acceptance duration parameters. Still further optionally, the odor impact of the target device on the second object includes the physiological and / or psychological impacts of the odor generated by the target device on the second object.
[0122] For example, when an electric frying pan is running, it produces a strong smell of cooking oil in the surrounding area. If we combine this with the odor tolerance parameters of people in that area, such as if they can only tolerate a slight smell of cooking oil for 3 minutes, then based on the odor changes produced by the electric frying pan and the odor tolerance parameters of those people, we can determine that the odor produced by the electric frying pan will cause coughing, difficulty breathing, and other odor-related problems for them. Therefore, we can determine that the odor impact parameter corresponding to this odor impact is relatively large, and thus determine that the air conditioning needs to be controlled.
[0123] As can be seen, this optional embodiment can determine the odor impact of the target device on the second object based on the operating status parameters of the target device, the second position parameters, and the object parameters of the second object, and then determine whether the air conditioner needs to be controlled. This can improve the reliability and accuracy of the analysis of the odor impact on the second object, and further improve the reliability and accuracy of the execution of the air conditioner control demand determination operation, so that the air conditioner can remove odors in the environment in a timely and accurate manner.
[0124] In another alternative embodiment, the method further includes:
[0125] Obtain the current operating parameters of the air conditioner, and determine the impact of the air conditioner on the target equipment based on the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameter of the target equipment, and the second position parameter;
[0126] When the work impact includes negative work impact, the absolute value of the negative impact degree parameter corresponding to the negative work impact is used to determine whether the absolute value of the negative impact degree parameter is greater than or equal to the preset work impact degree threshold.
[0127] When it is determined that the work impact parameter is greater than or equal to the work impact threshold, it is determined that a matching control operation needs to be performed on the air conditioner.
[0128] In this optional embodiment, the operational impact situation includes either a positive operational impact situation or a negative operational impact situation. Furthermore, the method further includes: when the operational impact situation includes a positive operational impact situation, determining that no matching control operation needs to be performed on the air conditioner, and ending the subsequent process.
[0129] As can be seen, this optional embodiment can determine the impact of the air conditioner on the target device's operation based on the air conditioner's current operating parameters, the first position parameter, the target device's operating status parameters, and the second position parameter. Then, when the impact includes negative impact and the absolute value of the corresponding negative impact degree parameter is large, it is determined that the air conditioner needs to be controlled. This can improve the comprehensiveness of the analysis and the flexibility of the execution of the air conditioner control demand determination operation, thereby improving the reliability and accuracy of the subsequent air conditioner control operation, and thus ensuring the smooth operation of the target device.
[0130] In another optional embodiment, the target device includes a cleaning device; the step of determining the operational impact of the air conditioner on the target device based on the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameters of the target device, and the second position parameter includes:
[0131] Determine the object parameters of the target object to be cleaned by the cleaning equipment;
[0132] Based on the object parameters of the target object to be cleaned, the current operating parameters of the air conditioner, the first position parameters of the air conditioner, the operating status parameters of the cleaning equipment, and the second position parameters, determine the motion parameters of the target object to be cleaned.
[0133] Based on the motion parameters of the target object to be removed, determine whether the parameters of the target object to be removed will cause contamination to the preset third object;
[0134] When it is determined that the parameters of the target object to be cleaned will cause pollution impact, based on the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameter of the cleaning equipment, and the second position parameter, it is determined whether the pollution impact factor corresponding to the pollution impact includes the air conditioner. If so, it is determined that the working impact of the air conditioner on the cleaning equipment includes negative working impact.
[0135] In this optional embodiment, cleaning equipment, such as sweepers, mops, and window cleaners, generally needs to remove dust from the object being cleaned and perform other cleaning operations. Optionally, the target object to be cleaned includes dust and / or target debris (such as lint, paper towels, hair, and other lightweight debris), and the object parameters of the target object to be cleaned include at least one of the object type parameter, object size parameter, and object weight parameter. Further optionally, the motion parameters of the target object to be cleaned include motion range parameter and / or motion speed parameter. Still further optionally, the third object includes a third person object and / or an item object, and the contamination impact on the third object includes the physiological impact on the third person object and / or the decrease in cleanliness of the item object.
[0136] For example, such as Figure 1 As shown, when it is determined that the sweeper needs to clean the dust on the ground, based on the dust location, the amount of dust, the current operating parameters of the air conditioner, the first position parameter, the operating status parameters of the sweeper, and the second position parameter, it is determined that the dust on the ground will be stirred up, causing coughing of nearby people or dust covering objects. At this time, it is necessary to determine whether the air conditioner's air volume is too large or the airflow direction is unsuitable, causing the aforementioned pollution. If so, it can be determined that the air conditioner will have a negative impact on the cleaning equipment, and it may be necessary to adjust the air conditioner (such as changing the airflow direction or temporarily reducing the air volume).
[0137] As can be seen, this optional embodiment can determine the pollution impact of the target object on the third object based on the object parameters of the target object to be cleaned, the current operating parameters of the air conditioner, the first position parameter, the operating status parameters of the cleaning equipment, and the second position parameter. Then, it can determine whether the pollution impact factor corresponding to the pollution impact includes the air conditioner. If so, it can determine that the air conditioner will have a negative working impact on the cleaning equipment. In this way, the reliability and accuracy of determining the working impact of the air conditioner on the cleaning equipment are improved, thereby improving the execution accuracy of the air conditioner control demand determination operation, thus ensuring that the cleaning equipment can work normally and reducing the occurrence of the working efficiency being affected by the operation of the air conditioner.
[0138] In yet another optional embodiment, determining the operational impact of the air conditioner on the target device based on the air conditioner's current operating parameters, a first location parameter of the air conditioner, the target device's operating status parameters, and a second location parameter further includes:
[0139] Determine if the cleaning equipment has the corresponding cleaning agent; if so, obtain the target parameters of the cleaning agent.
[0140] The evaporation rate parameter of the cleaning agent is determined based on the target parameters of the cleaning agent, the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameters of the cleaning equipment, and the second position parameter.
[0141] Determine whether the evaporation rate parameter of the cleaning agent is less than the preset evaporation rate threshold;
[0142] When it is determined that the evaporation rate parameter is less than the evaporation rate threshold, based on the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameter of the cleaning equipment, and the second position parameter, it is determined whether the evaporation rate influencing factor of the cleaning agent includes the air conditioner. If so, it is determined whether the working impact of the air conditioner on the cleaning equipment includes negative working impact.
[0143] In this optional embodiment, the current operating status of the air conditioner may affect changes in ambient humidity, thereby affecting the evaporation rate of the cleaning agent used by the cleaning equipment. Optionally, the target parameters of the cleaning agent include the type of cleaning agent and / or current usage conditions, such as the cleaning equipment requiring a large amount of water or bleach as a cleaning agent. Furthermore, when it is determined that the target cleaning object parameters will not cause pollution impact and the evaporation rate parameter is greater than or equal to the evaporation rate threshold, the operational impact of the air conditioner on the cleaning equipment can be determined to include positive impacts.
[0144] As can be seen, this optional embodiment can determine the evaporation rate parameter of the cleaning agent based on the target parameters of the cleaning agent, the current operating parameters of the air conditioner, the first position parameter, the operating status parameters of the cleaning equipment, and the second position parameter. Then, if the evaporation rate parameter is too small, it is determined whether the evaporation rate influencing factor of the cleaning agent includes the air conditioner. If so, it is determined that the air conditioner will have a negative impact on the operation of the cleaning equipment. In this way, the reliability and accuracy of the analysis of the impact of the air conditioner on the operation of the cleaning equipment are further improved, and the execution accuracy of the air conditioner control demand determination operation is further improved, thereby ensuring that the cleaning agent used by the cleaning equipment is properly evaporated, which helps the cleaning work to proceed smoothly.
[0145] Example 3
[0146] Please see Figure 4 , Figure 4 This is a schematic diagram of the structure of an air conditioning control device based on equipment operating status parameters disclosed in an embodiment of the present invention. Figure 4 As shown, the air conditioning control device based on equipment operating status parameters may include:
[0147] The acquisition module 301 is used to acquire preset operating status parameters of the target device;
[0148] The judgment module 302 is used to determine whether a matching control operation needs to be performed on the air conditioner based on the operating status parameters of the target device.
[0149] The determining module 303 is used to determine the control parameters of the air conditioner based on the operating status parameters of the target device when the determining module 302 determines that a matching control operation needs to be performed on the air conditioner.
[0150] The control module 304 is used to perform matching control operations on the air conditioner according to the control parameters of the air conditioner.
[0151] In this embodiment of the invention, the operating status parameters include at least one of the following: operating power parameters, operating temperature parameters, operating duration parameters, and operating mode parameters.
[0152] Furthermore, as an optional implementation, the target device is determined in the following manner:
[0153] Obtain the equipment parameters of the air conditioner and the equipment parameters of multiple devices within a preset area;
[0154] Based on the first position parameters of the air conditioner and the second position parameters of each device, determine the target obstruction between the air conditioner and each device;
[0155] Determine the basic parameters of the target obstruction, and based on the basic parameters of the target obstruction, the equipment parameters of the air conditioner, and the equipment parameters of all equipment, predict the impact between the air conditioner and each piece of equipment;
[0156] Based on the influence parameters corresponding to the interaction between the air conditioner and each device, the devices whose influence parameters are greater than or equal to the preset influence threshold are identified as the target devices.
[0157] In this optional embodiment, the air conditioner's equipment parameters include the air conditioner's functional parameters and a first position parameter, and the equipment parameters of each device include the device's functional parameters and a second position parameter; the basic parameters include at least one of the obstruction type parameters, obstruction specification parameters, and obstruction position parameters, and the impact generation situation includes the impact generation range situation and / or the impact generation magnitude situation.
[0158] It is evident that implementation Figure 4 The described air conditioning control device based on equipment operating status parameters can realize the intelligent control process of air conditioning based on the operating status parameters of the target equipment. This not only simplifies the user's control process of air conditioning and improves the timeliness of air conditioning control, but also improves the reliability and accuracy of air conditioning control, reduces the occurrence of air conditioning control disorder, and thus helps to improve the user's air conditioning experience.
[0159] In an optional embodiment, the determination module 302 determines whether a matching control operation needs to be performed on the air conditioner based on the operating status parameters of the target device, specifically including:
[0160] Based on the operating status parameters of the target equipment and the second location parameters, determine the temperature and humidity changes generated by the target equipment;
[0161] Determine the object parameters of the preset first object;
[0162] Based on the temperature and humidity changes and the object parameters of the first object, determine the temperature and humidity impact of the target device on the first object, and determine whether the temperature and humidity impact degree parameter corresponding to the temperature and humidity impact degree is greater than or equal to the preset temperature and humidity impact degree threshold.
[0163] When it is determined that the parameter indicating the degree of influence of temperature and humidity is greater than or equal to the threshold of the degree of influence of temperature and humidity, it is determined that the air conditioner needs to be subjected to matching control operations.
[0164] In this optional embodiment, the temperature and humidity change situation includes the temperature and humidity change range and / or the temperature and humidity change magnitude; the first object includes at least one of a first human object, a first animal object, and a plant object, and the object parameters of the first object include the position parameters of the first object and the temperature and humidity change tolerance parameters.
[0165] It is evident that implementation Figure 4 The described air conditioning control device based on equipment operating status parameters can determine the temperature and humidity impact of the target device on the first object based on the operating status parameters of the target device, the second position parameters, and the object parameters of the first object. It can then determine whether the air conditioning needs to be controlled. This improves the reliability and accuracy of the analysis of the temperature and humidity impact on the first object, and further improves the reliability and accuracy of the execution of the air conditioning control demand determination operation. As a result, the air conditioning can adjust the environmental parameters in a timely and accurate manner to ensure a high level of user comfort.
[0166] In another optional embodiment, the method by which the determining module 302 determines whether a matching control operation needs to be performed on the air conditioner based on the operating status parameters of the target device further includes:
[0167] Based on the operating status parameters of the target device and the second location parameters, determine the changes in odor generated by the target device;
[0168] Determine the object parameters of the preset second object;
[0169] Based on the odor change and the object parameters of the second object, determine the odor impact of the target device on the second object, and determine whether the odor impact degree parameter corresponding to the odor impact is greater than or equal to the preset odor impact degree threshold.
[0170] When it is determined that the odor impact parameter is greater than or equal to the odor impact threshold, it is determined that the air conditioner needs to be subjected to matching control operations.
[0171] In this optional embodiment, the odor change situation includes at least one of the following: odor change range, odor change type, and odor change magnitude; the second object includes a second human object and / or a second animal object, and the object parameters of the second object include the location parameters of the second object and the odor change acceptance parameters, which include at least one of the following: odor change acceptance type parameters, odor change acceptance concentration parameters, and odor change acceptance duration parameters.
[0172] It is evident that implementation Figure 4 The described air conditioning control device based on equipment operating status parameters can determine the odor impact of the target device on the second object based on the operating status parameters of the target device, the second position parameters, and the object parameters of the second object. It can then determine whether the air conditioning needs to be controlled. This improves the reliability and accuracy of the analysis of the odor impact on the second object, and further improves the reliability and accuracy of the execution of the air conditioning control demand determination operation, so that the air conditioning can remove odors in the environment in a timely and accurate manner.
[0173] In yet another optional embodiment, the method by which the determining module 302 determines whether a matching control operation needs to be performed on the air conditioner based on the operating status parameters of the target device further includes:
[0174] Obtain the current operating parameters of the air conditioner, and determine the impact of the air conditioner on the target equipment based on the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameter of the target equipment, and the second position parameter;
[0175] When the work impact includes negative work impact, the absolute value of the negative impact degree parameter corresponding to the negative work impact is used to determine whether the absolute value of the negative impact degree parameter is greater than or equal to the preset work impact degree threshold.
[0176] When it is determined that the work impact parameter is greater than or equal to the work impact threshold, it is determined that a matching control operation needs to be performed on the air conditioner.
[0177] In this optional embodiment, the work impact includes either a positive work impact or a negative work impact.
[0178] It is evident that implementation Figure 4 The described air conditioning control device based on equipment operating status parameters can determine the impact of the air conditioner on the target equipment based on the air conditioner's current operating parameters, a first position parameter, the target equipment's operating status parameters, and a second position parameter. Then, when the impact includes negative impacts and the absolute value of the corresponding negative impact degree parameter is large, it determines that air conditioning control is necessary. This improves the comprehensiveness and flexibility of the analysis and execution of air conditioning control demand determination, thereby enhancing the reliability and accuracy of subsequent air conditioning control operations and ensuring the smooth operation of the target equipment.
[0179] In another optional embodiment, the target device includes a cleaning device; the determination module 302 determines the operational impact of the air conditioner on the target device based on the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameters of the target device, and the second position parameter, specifically including:
[0180] Determine the object parameters of the target object to be cleaned by the cleaning equipment;
[0181] Based on the object parameters of the target object to be cleaned, the current operating parameters of the air conditioner, the first position parameters of the air conditioner, the operating status parameters of the cleaning equipment, and the second position parameters, determine the motion parameters of the target object to be cleaned.
[0182] Based on the motion parameters of the target object to be removed, determine whether the parameters of the target object to be removed will cause contamination to the preset third object;
[0183] When it is determined that the parameters of the target object to be cleaned will cause pollution impact, based on the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameter of the cleaning equipment, and the second position parameter, it is determined whether the pollution impact factor corresponding to the pollution impact includes the air conditioner. If so, it is determined that the working impact of the air conditioner on the cleaning equipment includes negative working impact.
[0184] In this optional embodiment, the target removal object includes dust and / or target waste, and the object parameters of the target removal object include at least one of the object type parameter, object size parameter, and object weight parameter; the motion parameters include motion range parameter and / or motion speed parameter; the third object includes a third person object and / or an item object.
[0185] It is evident that implementation Figure 4The described air conditioning control device based on equipment operating status parameters can determine the pollution impact of the target cleaning object on a third object based on the object parameters of the target cleaning object corresponding to the cleaning equipment, the current operating parameters of the air conditioner, the first position parameter, the operating status parameters of the cleaning equipment, and the second position parameter. Then, it determines whether the pollution impact factor corresponding to the pollution impact includes the air conditioner. If so, it determines that the air conditioner will have a negative working impact on the cleaning equipment. This improves the reliability and accuracy of determining the working impact of the air conditioner on the cleaning equipment, thereby improving the execution accuracy of the air conditioning control demand determination operation, ensuring that the cleaning equipment can work normally, and reducing the occurrence of the working efficiency being affected by the operation of the air conditioner.
[0186] In yet another optional embodiment, the method by which the determining module 302 determines the operational impact of the air conditioner on the target device based on the air conditioner's current operating parameters, the air conditioner's first position parameters, the target device's operating status parameters, and the second position parameters further includes:
[0187] Determine if the cleaning equipment has the corresponding cleaning agent; if so, obtain the target parameters of the cleaning agent.
[0188] The evaporation rate parameter of the cleaning agent is determined based on the target parameters of the cleaning agent, the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameters of the cleaning equipment, and the second position parameter.
[0189] Determine whether the evaporation rate parameter of the cleaning agent is less than the preset evaporation rate threshold;
[0190] When it is determined that the evaporation rate parameter is less than the evaporation rate threshold, based on the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameter of the cleaning equipment, and the second position parameter, it is determined whether the evaporation rate influencing factor of the cleaning agent includes the air conditioner. If so, it is determined whether the working impact of the air conditioner on the cleaning equipment includes negative working impact.
[0191] In this optional embodiment, the target parameters of the cleaning agent include the type parameter of the cleaning agent and / or the current usage.
[0192] It is evident that implementation Figure 4The described air conditioning control device based on equipment operating status parameters can determine the evaporation rate parameter of the cleaning agent according to the target parameters of the cleaning agent, the current operating parameters of the air conditioner, the first position parameter, the operating status parameters of the cleaning equipment, and the second position parameter. Then, if the evaporation rate parameter is too small, it determines whether the air conditioner is included as an influencing factor of the cleaning agent's evaporation rate. If so, it determines that the air conditioner will have a negative impact on the operation of the cleaning equipment. This further improves the reliability and accuracy of the analysis of the impact of the air conditioner on the operation of the cleaning equipment, and further improves the execution accuracy of the air conditioning control demand determination operation, thereby ensuring that the cleaning agent used by the cleaning equipment is properly evaporated, which helps the cleaning work to proceed smoothly.
[0193] Example 4
[0194] Please see Figure 5 , Figure 5 This is a schematic diagram of another air conditioning control device based on equipment operating status parameters disclosed in an embodiment of the present invention. Figure 5 As shown, the air conditioning control device based on equipment operating status parameters may include:
[0195] Memory 401 storing executable program code;
[0196] Processor 402 coupled to memory 401;
[0197] 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 device operating status parameters described in Embodiment 1 or Embodiment 2 of the present invention.
[0198] Example 5
[0199] 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 device operating status parameters described in Embodiment 1 or Embodiment 2 of this invention.
[0200] Example 6
[0201] 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 device operating state parameters described in Embodiment 1 or Embodiment 2.
[0202] 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.
[0203] 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.
[0204] Finally, it should be noted that the air conditioning control method and device based on equipment operating status parameters disclosed in the embodiments of the present invention are merely preferred embodiments of the present invention and are only used to illustrate the technical solutions of the present invention, not to limit it. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. An air conditioning control method based on equipment operating status parameters, characterized in that, The method includes: The system acquires preset operating status parameters of the target device and determines whether a matching control operation needs to be performed on the air conditioner based on the operating status parameters of the target device. The operating status parameters include at least one of operating power parameters, operating temperature parameters, operating time parameters, and operating mode parameters. When it is determined that a matching control operation needs to be performed on the air conditioner, the control parameters of the air conditioner are determined based on the operating status parameters of the target device, and a matching control operation is performed on the air conditioner according to the control parameters of the air conditioner.
2. The air conditioning control method based on equipment operating status parameters according to claim 1, characterized in that, The target device was determined in the following way: The device parameters of the air conditioner and the device parameters of multiple devices within a preset area are obtained; the device parameters of the air conditioner include the functional parameters of the air conditioner and a first position parameter, and the device parameters of each device include the functional parameters of the device and a second position parameter; Based on the first position parameter of the air conditioner and the second position parameter of each device, the target obstruction between the air conditioner and each of the devices is determined; Determine the basic parameters of the target obstruction, and based on the basic parameters of the target obstruction, the equipment parameters of the air conditioner, and the equipment parameters of all the equipment, predict the impact between the air conditioner and each of the equipment; the basic parameters include at least one of obstruction type parameters, obstruction specification parameters, and obstruction location parameters, and the impact includes the scope of impact and / or the magnitude of impact; Based on the influence degree parameter corresponding to the influence between the air conditioner and each of the devices, the device whose influence degree parameter is greater than or equal to the preset influence degree threshold is determined from all devices and is taken as the target device.
3. The air conditioning control method based on equipment operating status parameters according to claim 2, characterized in that, The step of determining whether a matching control operation needs to be performed on the air conditioner based on the operating status parameters of the target device includes: Based on the operating status parameters of the target device and the second location parameters, the temperature and humidity changes generated by the target device are determined; the temperature and humidity changes include the range of temperature and humidity changes and / or the magnitude of temperature and humidity changes. Determine the object parameters of a preset first object; the first object includes at least one of a first human object, a first animal object, and a plant object, and the object parameters of the first object include the position parameters and temperature and humidity change tolerance parameters of the first object. Based on the temperature and humidity changes and the object parameters of the first object, determine the temperature and humidity impact of the target device on the first object, and determine whether the temperature and humidity impact degree parameter corresponding to the temperature and humidity impact is greater than or equal to the preset temperature and humidity impact degree threshold. When it is determined that the temperature and humidity influence parameter is greater than or equal to the temperature and humidity influence threshold, it is determined that a matching control operation needs to be performed on the air conditioner.
4. The air conditioning control method based on equipment operating status parameters according to claim 3, characterized in that, The step of determining whether a matching control operation needs to be performed on the air conditioner based on the operating status parameters of the target device further includes: Based on the operating status parameters of the target device and the second location parameters, the odor changes generated by the target device are determined; the odor changes include at least one of the following: odor change range, odor change type, and odor change magnitude. Determine the preset object parameters of the second object; the second object includes a second human object and / or a second animal object, and the object parameters of the second object include the location parameters of the second object and the odor change acceptance parameters, wherein the odor change acceptance parameters include at least one of the odor change acceptance type parameters, odor change acceptance concentration parameters, and odor change acceptance duration parameters. Based on the odor change and the object parameters of the second object, determine the odor impact of the target device on the second object, and determine whether the odor impact degree parameter corresponding to the odor impact is greater than or equal to a preset odor impact degree threshold. When it is determined that the odor impact level parameter is greater than or equal to the odor impact level threshold, it is determined that a matching control operation needs to be performed on the air conditioner.
5. The air conditioning control method based on equipment operating status parameters according to any one of claims 2-4, characterized in that, The step of determining whether a matching control operation needs to be performed on the air conditioner based on the operating status parameters of the target device further includes: The current operating parameters of the air conditioner are obtained, and based on the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameter of the target device, and the second position parameter, the working impact of the air conditioner on the target device is determined; the working impact includes positive working impact or negative working impact. When the work impact situation includes the negative work impact situation, it is determined whether the absolute value of the negative impact degree parameter is greater than or equal to the preset work impact degree threshold based on the absolute value of the negative impact degree parameter corresponding to the negative work impact situation. When it is determined that the work impact parameter is greater than or equal to the work impact threshold, it is determined that a matching control operation needs to be performed on the air conditioner.
6. The air conditioning control method based on equipment operating status parameters according to claim 5, characterized in that, The target equipment includes cleaning equipment; determining the operational impact of the air conditioner on the target equipment based on the current operating parameters of the air conditioner, a first position parameter of the air conditioner, operating status parameters of the target equipment, and a second position parameter includes: Determine the object parameters of the target object to be cleaned corresponding to the cleaning equipment; the target object to be cleaned includes dust and / or target debris, and the object parameters of the target object to be cleaned include at least one of the object type parameter, object size parameter, and object weight parameter of the target object to be cleaned; Based on the object parameters of the target object to be cleaned, the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameters of the cleaning equipment, and the second position parameter, the motion parameters of the target object to be cleaned are determined; the motion parameters include motion range parameters and / or motion speed parameters. Based on the motion parameters of the target object to be removed, it is determined whether the parameters of the target object to be removed will cause contamination to a preset third object; the third object includes a third person object and / or an item object; When it is determined that the parameters of the target object to be removed will cause the pollution impact, based on the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameters of the cleaning equipment, and the second position parameter, it is determined whether the pollution impact factor corresponding to the pollution impact includes the air conditioner. If so, it is determined that the working impact of the air conditioner on the cleaning equipment includes negative working impact.
7. The air conditioning control method based on equipment operating status parameters according to claim 6, characterized in that, The step of determining the operational impact of the air conditioner on the target device based on the air conditioner's current operating parameters, the air conditioner's first position parameters, the target device's operating status parameters, and the second position parameters further includes: Determine whether the cleaning equipment has a corresponding cleaning agent; if so, obtain the target parameters of the cleaning agent; the target parameters of the cleaning agent include the type parameter of the cleaning agent and / or the current usage status. The evaporation rate parameter of the cleaning agent is determined based on the target parameters of the cleaning agent, the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameters of the cleaning equipment, and the second position parameter. Determine whether the evaporation rate parameter of the cleaning agent is less than a preset evaporation rate threshold; When it is determined that the evaporation rate parameter is less than the evaporation rate threshold, based on the current operating parameters of the air conditioner, the first position parameter of the air conditioner, the operating status parameter of the cleaning equipment, and the second position parameter, it is determined whether the evaporation rate influencing factor of the cleaning agent includes the air conditioner. If so, it is determined that the working impact of the air conditioner on the cleaning equipment includes negative working impact.
8. An air conditioning control device based on equipment operating status parameters, characterized in that, The device includes: The acquisition module is used to acquire preset operating status parameters of the target device; the operating status parameters include at least one of operating power parameters, operating temperature parameters, operating duration parameters, and operating mode parameters; The judgment module is used to determine whether a matching control operation needs to be performed on the air conditioner based on the operating status parameters of the target device. The determining module is used to determine the control parameters of the air conditioner based on the operating status parameters of the target device when the judging module determines that a matching control operation needs to be performed on the air conditioner. The control module is used to perform matching control operations on the air conditioner according to the control parameters of the air conditioner.
9. An air conditioning control device based on equipment operating status parameters, characterized in that, The device includes: Memory containing executable program code; A processor coupled to the memory; The processor calls the executable program code stored in the memory to execute the air conditioning control method based on device operating status parameters as described in any one of claims 1-7.
10. 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 equipment operating status parameters as described in any one of claims 1-7.