Control method of air treatment equipment, air treatment equipment and readable storage medium

By obtaining the properties and operating condition information of the air handling equipment, the equipment is automatically selected to perform the air purification task, which solves the tedious problem of users manually specifying the equipment and achieves the effect of simplifying the operation.

CN115540165BActive Publication Date: 2025-09-30FOSHAN SHUNDE MIDEA ELECTRONICS TECH CO LTD +1
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Patent Information

Application Number
CN202110740032.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-06-29
Publication Date
2025-09-30
Estimated Expiration
2041-06-29

AI Technical Summary

Technical Problem

In an environment with multiple air handling equipment slave units, users need to manually specify air purification tasks, which makes the operation cumbersome.

Method used

The attribute information of the target air purification task and the working condition information of the equipment to be scheduled are obtained through the air handling equipment. Based on this information, the appropriate equipment is automatically selected to perform the task, avoiding manual settings.

Benefits of technology

It simplifies the operation process of air purification tasks, automatically selects appropriate equipment to perform tasks, and avoids the tedious process of manual selection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a control method for air treatment equipment, air treatment equipment, and a readable storage medium. The control method for air treatment equipment includes: a first air treatment equipment obtaining attribute information of a target air purification task and operating condition information of an air treatment equipment to be scheduled; selecting a target air treatment equipment from the air treatment equipment to be scheduled based on the attribute information and the operating condition information; and scheduling the target air treatment equipment to perform the target air purification task. The present invention can automatically select a target air treatment equipment to perform the target air purification task, eliminating the need for manual setting of the air treatment equipment to perform the air purification task, and is simple to operate.
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Description

Technical Field

[0001] The present invention relates to the technical field of air treatment equipment, and in particular to a control method for air treatment equipment, air treatment equipment, and a readable storage medium. Background Art

[0002] With the development of air purification equipment, an air purification system including an air treatment equipment sub-unit and an air treatment equipment mother unit has emerged. The air treatment equipment mother unit can be an air conditioning cabinet unit, and one air conditioning cabinet unit is equipped with an air treatment equipment sub-unit. In actual use, if the user has more rooms in his home, multiple air treatment equipment sub-units may be configured separately, and each air treatment equipment sub-unit is controlled by the mother unit to perform the target air purification task. Among them, since there are multiple air treatment equipment sub-units, after the user actually issues an instruction to perform a certain target air purification task, the air treatment equipment mother unit cannot determine which air treatment equipment sub-unit to perform the air purification task. The user is often required to specify the air treatment equipment sub-unit to perform the task. The user often needs to operate directly through a mobile phone, and the process is relatively cumbersome. Therefore, this method has at least the following technical problems: the process of manually setting the air treatment equipment that needs to perform the target air purification task is relatively cumbersome. Summary of the Invention

[0003] The main purpose of the present invention is to provide a control method for air treatment equipment, air treatment equipment and readable storage medium, aiming to solve the technical problem that the process of manually setting up an air treatment equipment sub-unit that needs to perform a target air purification task is relatively cumbersome.

[0004] To achieve the above object, the present invention provides a control method for air treatment equipment, the control method for air treatment equipment comprising:

[0005] The first air treatment device obtains attribute information of the target air purification task and operating condition information of the air treatment device to be scheduled;

[0006] Selecting a target air treatment device from the air treatment devices to be scheduled according to the attribute information and the operating condition information;

[0007] The target air treatment equipment is scheduled to perform the target air purification task.

[0008] Optionally, the step of selecting a target air treatment equipment from the air treatment equipment to be scheduled according to the attribute information and the operating condition information includes:

[0009] Determining a target score value for each of the air treatment equipment to be scheduled based on the attribute information and the operating condition information of each of the air treatment equipment to be scheduled;

[0010] The target air treatment equipment is selected from the air treatment equipment to be scheduled according to the target score value.

[0011] Optionally, the step of determining a target score value of each of the air treatment equipment to be scheduled based on the attribute information and the operating condition information of each of the air treatment equipment to be scheduled includes:

[0012] Determining, based on the attribute information and the operating condition information of each of the air treatment equipment to be scheduled, a parameter value corresponding to a scoring parameter, the scoring parameter including at least two of a distance between the air treatment equipment to be scheduled and an area where the target air purification task is located, hardware loss of the air treatment equipment to be scheduled, and a type of interference of the scheduled task of the air treatment equipment to be scheduled on the target air purification task;

[0013] Determining the scoring value corresponding to the scoring parameter according to the parameter value of each scoring parameter;

[0014] The target score value is determined according to the score value corresponding to each score parameter of each of the air treatment equipment to be scheduled.

[0015] Optionally, the step of selecting a target air treatment equipment from the air treatment equipment to be scheduled according to the attribute information and the operating condition information includes:

[0016] Determine the duration of the target air purification task according to the attribute information;

[0017] Determining the available time of the air treatment equipment to be scheduled according to the remaining power information in the working condition information;

[0018] The target air treatment equipment is selected from the air treatment equipment to be scheduled whose available time is greater than or equal to the time consumption time.

[0019] Optionally, the air treatment equipment to be scheduled includes the first air treatment equipment and the second air treatment equipment, and the control method of the air treatment equipment further includes:

[0020] upon detecting a voice command, determining a type of the first air handling device;

[0021] When the type of the first air treatment device is the first type, performing a step of the first air treatment device acquiring attribute information of the target air purification task and operating condition information of the second air treatment device;

[0022] When the type of the first air treatment device is the second type, the target air purification task sent by the second air treatment device is received.

[0023] Optionally, the step of determining the type of the first air treatment device includes:

[0024] Determine a first sound source distance between the first air treatment device and a sound source, and obtain a second sound source distance sent by a second air treatment device associated with the same household identifier, where the second sound source distance is the distance between the second air treatment device and the sound source;

[0025] When the first sound source distance is less than the second sound source distance, determining that the type of the first air treatment device is the first type;

[0026] When the first sound source distance is greater than the second sound source distance, the type of the first air treatment device is determined to be the second type.

[0027] Optionally, the step of obtaining a second sound source distance sent by a second air treatment device associated with the same home identifier includes:

[0028] Obtaining address information of the second air treatment device associated with the same home identifier from the server, where the address information is network path information or device identification information;

[0029] Sending a sound source distance acquisition request to the second air treatment device corresponding to the address information;

[0030] Receive the second sound source distance returned by the second air treatment device in response to the sound source distance acquisition request.

[0031] Optionally, the step of determining the type of the first air treatment device includes:

[0032] Obtaining setting information corresponding to the first air treatment device, where the setting information is the first type of setting information or the second type of setting information, and the setting information is sent to the first treatment device by the terminal device after detecting a type setting instruction input by a user;

[0033] determining, according to the setting information of the first type, that the type of the first air treatment device is the first type;

[0034] Alternatively, the type of the first air treatment device is determined to be the second type according to the setting information of the second type.

[0035] Optionally, the control method of the air treatment equipment further includes:

[0036] When an execution instruction of the target air purification task is detected, detecting whether an air purification task different from the target air purification task is currently being executed;

[0037] When an air purification task different from the target air purification task is not currently being executed, executing a step in which the first air treatment equipment obtains attribute information of the target air purification task and operating condition information of the air treatment equipment to be scheduled;

[0038] When an air purification task different from the target air purification task is currently being executed, interrupting the currently executed air purification task and executing a step in which the first air treatment device obtains attribute information of the target air purification task and operating condition information of the air treatment device to be scheduled;

[0039] After the target air purification task is completed, the interrupted air purification task is continued.

[0040] In addition, to achieve the above-mentioned purpose, the present invention also provides an air treatment device, which includes a memory, a processor, and a control program for the air treatment device stored on the memory and runnable on the processor. When the control program of the air treatment device is executed by the processor, the steps of the control method of the air treatment device described in any one of the above items are implemented.

[0041] Optionally, the air handling equipment includes a sub-machine and a main machine, the main machine is provided with a sub-machine cabin, the sub-machine cabin is used to place the sub-machine, and the processor and the memory are located in the sub-machine or the main machine.

[0042] In addition, to achieve the above-mentioned purpose, the present invention also provides a computer-readable storage medium, on which a control program of an air treatment equipment is stored. When the control program of the air treatment equipment is executed by a processor, the steps of the control method of the air treatment equipment described in any one of the above items are implemented.

[0043] An embodiment of the present invention proposes a control method for air treatment equipment, air treatment equipment and a readable storage medium. The method obtains attribute information of a target air purification task and operating condition information of an air treatment equipment to be scheduled through a first air treatment equipment, selects a target air treatment equipment from the air treatment equipment to be scheduled according to the operating condition information and the attribute information, and schedules the target air treatment equipment to perform the target air purification task. The method can automatically select a suitable target air treatment equipment to perform the target air purification task based on the attribute information of the target air purification task and the operating condition information of the air treatment equipment to be scheduled. There is no need to manually set the air treatment equipment to perform the air purification task, the operation is simple, and the problem of the cumbersome process of manually setting the air treatment equipment to perform the air purification task is avoided. BRIEF DESCRIPTION OF THE DRAWINGS

[0044] Figure 1 Schematic diagram of the hardware structure of the air treatment equipment involved in the embodiment of the present invention;

[0045] Figure 2 This is a flow chart of an embodiment of a control method for air treatment equipment according to the present invention;

[0046] Figure 3 A flow chart of another embodiment of a method for controlling an air treatment device according to the present invention;

[0047] Figure 4 A flow chart of another embodiment of a method for controlling an air treatment device according to the present invention;

[0048] Figure 5 This is a flow chart of another embodiment of a control method for air treatment equipment according to the present invention.

[0049] The purpose, features and advantages of the present invention will be further described with reference to the accompanying drawings and in conjunction with the embodiments. DETAILED DESCRIPTION

[0050] It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0051] As an implementation method, the hardware environment architecture involved in the control method of the air treatment equipment can be as follows: Figure 1 shown.

[0052] Specifically, the air handling device includes: a processor 101, such as a CPU, a memory 102, and a communication bus 103. The communication bus 103 is used to implement communication between these components. The processor 102 is used to call an application to execute control of the air handling device.

[0053] The memory 102 may be a high-speed RAM memory or a non-volatile memory, such as a disk memory.

[0054] It is understood that, in one embodiment, the control program for implementing the control of the air treatment device is stored in the memory 102 of the air treatment device. When the processor 101 calls the control program from the memory 102, it performs the following operations:

[0055] The first air treatment device obtains attribute information of the target air purification task and operating condition information of the air treatment device to be scheduled;

[0056] Selecting a target air treatment device from the air treatment devices to be scheduled according to the attribute information and the operating condition information;

[0057] The target air treatment equipment is scheduled to perform the target air purification task.

[0058] Alternatively, in another embodiment, a control program for implementing the air treatment equipment control process is stored in a computer-readable storage medium. During the process of controlling the air treatment equipment, the processor 101 of the air treatment equipment can call the control program from the computer-readable storage medium to perform the above operations.

[0059] Based on the hardware architecture of the air treatment equipment described above, various embodiments of the control method of the air treatment equipment of the present invention are proposed to respectively implement the control of the air treatment equipment.

[0060] In one embodiment, please refer to Figure 2 , the control method of the air treatment equipment proposed in this embodiment includes the following steps:

[0061] Step S10: The first air treatment device obtains attribute information of the target air purification task and operating condition information of the air treatment device to be scheduled;

[0062] Step S20, selecting a target air treatment equipment from the air treatment equipment to be scheduled according to the attribute information and the operating condition information;

[0063] Step S30: scheduling the target air treatment equipment to perform the target air purification task.

[0064] In this embodiment, the execution subject is the air treatment equipment, specifically the first air treatment equipment; wherein, the air treatment equipment may only have the air purification function, or may also have the cooling and heating function, or may also have other functions, and this embodiment is not limited. The air treatment equipment may be a sub-unit or a mother unit. The functions of the mother unit and the sub-unit may be the same or different. The mother unit is, for example, an air conditioner cabinet unit, which may have cooling and heating functions as well as air purification functions, and the sub-unit is an air purifier sub-unit, which may only have the air purification function; the first air treatment equipment may be any air treatment equipment, such as any air treatment equipment sub-unit or any air treatment equipment mother unit. Any air treatment equipment may be set as the first air treatment equipment by default in advance, such as setting a certain air treatment equipment mother unit as the first air treatment equipment by default, or setting a certain air treatment equipment sub-unit as the first Air treatment equipment, or a specific first air treatment equipment can be set based on the detected user instructions, such as the user's voice instructions or the instructions issued by the user based on the terminal device. In addition, the first air treatment equipment can be set based on the status of each air treatment equipment. For example, if multiple air treatment equipment simultaneously receive instructions to perform air purification tasks, the air treatment equipment with the largest remaining power can be selected as the first air treatment equipment to ensure the normal execution of the control program and avoid interruptions caused by insufficient power. Alternatively, other methods can be used to set the first air treatment equipment; in addition, the air treatment equipment mother machine, such as a cabinet machine, is generally placed in a fixed area and cannot move independently. The air treatment equipment sub-machine is provided with a mobile module. The air treatment equipment sub-machine can move in space to change its position by controlling the mobile module and perform air purification tasks in different areas.

[0065] The target air purification task is the air purification task that needs to be performed. The air purification task is also called the air purification mode. It can be regarded as the function provided by the air treatment equipment to process the air in a specific space to change its state. The target air purification task is, for example, formaldehyde removal, humidification, dehumidification, sterilization, virus removal or particulate matter removal, etc., but is not limited to the above tasks. It can also be other tasks that change a certain state of the air. The number of target air purification tasks can be one or more; the attribute information of the target air purification task is information that describes the attributes of the air treatment equipment. The attribute information includes but is not limited to the execution area corresponding to the target air purification task, the execution trigger time, the execution time, and at least one of the types of the target air purification task, namely formaldehyde removal, humidification, dehumidification, sterilization, virus removal or particulate matter removal, etc. The attribute information can reflect the characteristics of the target air purification task.

[0066] The air treatment equipment to be scheduled is an air treatment equipment that can be scheduled by the first air treatment equipment; in actual applications, the air treatment equipment that can be scheduled by the first air treatment equipment is generally an air treatment equipment in the same household.

[0067] Based on user operations, the air treatment devices in the same household can be networked and associated with the same household identification information. The first air treatment device obtains the air treatment device associated with the same household identification information as the air treatment device to be scheduled. In addition, the first air treatment device itself can also be the air treatment device to be scheduled, and air treatment devices other than the first air treatment device can also be the air treatment device to be scheduled.

[0068] The air treatment equipment to be scheduled is not necessarily limited to the air treatment equipment associated with the same household identification information. Other air treatment equipment can also be used as the air treatment equipment to be scheduled, as long as they can be scheduled by the first air treatment equipment.

[0069] The operating condition information is information that describes the operating status or state of the air treatment equipment to be scheduled. The operating condition information includes but is not limited to at least one of the location information, power information, hardware loss information, and task execution status of the air treatment equipment to be scheduled. The operating condition information can reflect the working status of the air treatment equipment to be scheduled.

[0070] The first air treatment device acquires the attribute information in the following ways, but is not limited to:

[0071] By acquiring the attribute information of the target air purification task sent by the terminal device, the communication method adopted may be network communication or short-range wireless communication. The terminal device acquires the attribute information of the target air purification task based on the user's operation and sends it to the first air treatment device. The first air treatment device receives the attribute information. For example, after the user sets the type and execution area of ​​the target air purification task through the terminal device, the terminal device sends the type and execution area of ​​the target air purification task to the first air treatment device.

[0072] By detecting the voice command, the attribute information of the target air purification task in the voice command is extracted. For example, if the user issues the voice command "humidify in the living room", the first air treatment device extracts the keywords "living room" and "humidification", and uses "humidification" as the type of the target air purification task and the living room as the execution area of ​​the target air purification task, thereby obtaining attribute information including the humidification type and the living room area.

[0073] Based on the type of the detected target air purification task, the attribute information corresponding to the type is determined. For example, based on the type of the target air purification task, the corresponding task duration is determined. The first air treatment device is preset with a correspondence between the type of the target air purification task and the task duration.

[0074] The manner in which the first air treatment device obtains the operating condition information of the air treatment device to be scheduled includes but is not limited to the following manner: when the first air treatment device itself serves as the air treatment device to be scheduled, the first air treatment device directly obtains its own operating condition information; for air treatment devices to be scheduled other than the first air treatment device, the first air treatment device can communicate with each air treatment device to be scheduled through short-range wireless communication technology or network communication, and obtain the operating condition information of each air treatment device to be scheduled.

[0075] After obtaining the operating condition information and the attribute information, the first air treatment device selects a target air treatment device from the air treatment devices to be scheduled based on the operating condition information and the attribute information. The target air treatment device is an air treatment device that performs a target air purification task.

[0076] When selecting the target air handling equipment, you can select based on different strategies, such as:

[0077] Based on the area information of the target air purification task in the attribute information and the location information of the air treatment equipment to be scheduled in the working condition information, the air treatment equipment to be scheduled closest to the area of ​​the target air purification task is selected as the target air treatment equipment, so that the target air purification task can be performed quickly and conveniently through the target air treatment equipment.

[0078] Alternatively, based on the execution trigger time in the attribute information and the information on the subsequent tasks to be performed by the air treatment equipment to be scheduled in the working condition information, the air treatment equipment to be scheduled that has not performed any air purification tasks at the execution trigger time can be determined as the target air treatment equipment, thereby avoiding interference with the execution of the original air purification tasks of the air treatment equipment to be scheduled when the target air purification tasks are executed.

[0079] Alternatively, the first air treatment device can also determine the air treatment device to be scheduled that can fully perform the target air purification task based on the type of the target air purification task in the attribute information and the remaining power information in the operating condition information, and further select the target air treatment device from the air treatment devices to be scheduled, wherein the first air treatment device can determine the time required for the task corresponding to the type of the target air purification task based on the type of the target air purification task, and the correspondence between the type and the time required can be determined in advance.

[0080] The first air treatment device can also obtain the available time of the air treatment device to be scheduled based on the remaining power information in the operating condition information, wherein the energy consumption of the air treatment device to be scheduled per unit time can be determined first, and the time for which it can continue to operate can be calculated in combination with the remaining power to obtain the available time. The air treatment device to be scheduled whose available time is greater than or equal to the consumed time can normally maintain the complete operation process of the air purification task. On this basis, the target air treatment device is selected from the air treatment devices to be scheduled whose available time is greater than or equal to the consumed time. If there is only one air treatment device to be scheduled that meets the condition, the air treatment device to be scheduled is used as the target treatment device. If there are more than two air treatment devices to be scheduled that meet the condition, the target air treatment device is selected from the more than two air treatment devices to be scheduled that meet the condition. The target air treatment device can still be selected based on the operating condition information and attribute information during selection, so as to ensure that the selected target air treatment device has sufficient power to perform the target air purification task.

[0081] In addition, since the main air handling equipment unit is generally a cabinet unit and needs to be connected to a power supply for use, there is no problem of insufficient power. Therefore, based on the type of the target air handling equipment in the attribute information and the remaining power information in the working condition information, when determining the air handling equipment to be scheduled whose available time is greater than or equal to the time consumption, the air handling equipment to be scheduled is the air handling equipment sub-unit, and the air handling equipment sub-unit can move in space. The structure of the air handling equipment sub-unit can also include a laser radar unit and a path planning unit, and the air handling equipment sub-unit moves based on the laser radar unit and the path planning unit.

[0082] After the target air treatment equipment is selected, the target air treatment equipment is scheduled to perform the target air purification task. The target air treatment equipment may be a target air treatment equipment slave unit or a target air treatment equipment master unit. There are the following situations:

[0083] If the target air treatment equipment is a target air treatment equipment sub-unit, and the area corresponding to the target air purification task does not match the current position of the target air treatment equipment sub-unit, the target air treatment equipment sub-unit can be moved to the area corresponding to the target air purification task to perform the target air purification task.

[0084] If the area corresponding to the target air purification task matches the current position of the target air treatment device sub-unit, the target air treatment device sub-unit can be enabled to perform the target air purification task at its current position. The area corresponding to the target air purification task matches the position of the target air treatment device sub-unit, which means that the target air treatment device can perform the function corresponding to the air purification task in the area at that position. For example:

[0085] The target air purification task is humidification, and the corresponding area is the bedroom area. The target air treatment equipment can be located in or near the bedroom to achieve the effect of humidification in the bedroom.

[0086] If the target air handling equipment is a master air handling equipment, the master air handling equipment performs the target air purification task at its current location because the master air handling equipment cannot be moved.

[0087] In order to avoid the problem that when the selected target air treatment equipment is an air treatment equipment master machine, the air treatment equipment master machine cannot be moved, resulting in the inability to perform the task in the area corresponding to the target air purification task, when selecting the target air treatment equipment, it is also necessary to combine the type of the air treatment equipment to be scheduled to be a slave type or a master type. When the type of the air treatment equipment to be scheduled is a master type, it is necessary to determine whether the area corresponding to the target air purification task matches the air treatment equipment to be scheduled of the master type. If they do not match, the target air treatment equipment is selected from other matching slave types of air treatment equipment to be scheduled.

[0088] In addition, the target air treatment device may be the first air treatment device itself, and in this case the first air treatment device performs the target air purification task.

[0089] When scheduling the target air treatment equipment, the initial position of the target air treatment equipment can be any position, for example, the initial position of the target air treatment equipment is in the sub-cabin of the air treatment equipment mother machine, or at any position in the home; the target air treatment equipment calculates the sequence points or curves of the starting position and the end position based on its initial position and the area of ​​the target air purification task. The sequence points or curves are called paths, and the strategy for constituting the path is path planning. The target air treatment equipment moves by performing path planning, wherein the target air treatment equipment is based on laser navigation technology, and uses the collimation and non-divergence of the laser for positioning, and determines the position and direction by emitting laser beams to surrounding objects and collecting laser beams reflected back by surrounding objects; technicians in this field can understand that what is given here is only one way to move the air treatment equipment sub-machine, and other ways can also be used to achieve movement.

[0090] In addition, the air handling equipment sub-units and air handling equipment main units mentioned above all include algorithm units, and each air handling equipment sub-unit or each air handling equipment main unit is an independent computing center, which can achieve decentralization. Various data and status can be synchronized between each air handling equipment sub-unit, and data and status can also be synchronized between the air purification sub-unit and the air handling equipment main unit.

[0091] In this embodiment, the operating condition information corresponding to the air treatment equipment to be scheduled and the attribute information corresponding to the target air purification task are obtained through the first air treatment equipment, and the target air treatment equipment is selected from the air treatment equipment to be scheduled according to the operating condition information and the attribute information, and the target air treatment equipment is scheduled to perform the target air purification task. Based on the operating condition information of the air treatment equipment to be scheduled and the attribute information of the target air purification task, a suitable target air treatment equipment can be automatically selected to perform the target air purification task. There is no need to manually set the air treatment equipment to perform the air purification task. The operation is simple, and the cumbersome process of manually setting the air treatment equipment to perform the air purification task is avoided.

[0092] In another embodiment, please refer to Figure 3 , based on the above Figure 2 In this embodiment, step S20 includes:

[0093] Step S21, determining a target score value for each of the air treatment equipment to be scheduled based on the attribute information and the operating condition information of each of the air treatment equipment to be scheduled;

[0094] Step S22: selecting the target air treatment equipment from the air treatment equipment to be scheduled according to the target score value.

[0095] In order to select a reasonable target air treatment equipment, in this embodiment, based on the operating condition information and attribute information corresponding to each air treatment equipment to be scheduled, the target score value of each air treatment equipment to be scheduled is determined, and the target air treatment equipment is selected based on the target score value, so that the target air treatment equipment can be selected in a quantitative manner. When there are at least two air treatment equipment to be scheduled, a reasonable target air treatment equipment can be accurately selected; wherein, the target score value is data in numerical form.

[0096] In the process of determining the target score value based on the operating condition information and attribute information of each air treatment device to be scheduled, the air treatment devices to be scheduled whose remaining power is sufficient to last until the target air purification task is completed can be first determined based on the operating condition information and attribute information, and then, among the air treatment devices to be scheduled whose remaining power is sufficient to last until the target air purification task is completed, the score value can be determined based on the operating condition information and attribute information; alternatively, the air treatment devices to be scheduled whose remaining power is sufficient to last until the target air purification task is completed can be directly determined based on the operating condition information and attribute information without identifying the air treatment devices to be scheduled whose remaining power is sufficient to last until the target air purification task is completed;

[0097] In the process of determining, based on the working condition information and the attribute information, the air treatment equipment to be scheduled whose remaining power is sufficient to last until the target air purification task is completed, the consumed time corresponding to the type of the target air purification task in the attribute information can be determined, and the available time corresponding to the air treatment equipment to be scheduled can be determined based on the remaining power in the working condition information. Further, based on the attribute information and the working condition information of each air treatment equipment to be scheduled whose available time is greater than or equal to the consumed time, the parameter value corresponding to the scoring parameter is obtained, the scoring value of the scoring parameter is further obtained based on the parameter value of each scoring parameter, and the target scoring value is obtained based on the parameter value of each scoring parameter.

[0098] The scoring parameters include at least two of the hardware loss of the air treatment equipment to be scheduled, the type of interference of the scheduled task of the air treatment equipment to be scheduled on the target air purification task, and the distance between the air treatment equipment to be scheduled and the area where the target air purification task is located, wherein the hardware loss includes filter element loss, sensor loss, etc., and the degree of hardware loss can be quantified. The air purification task is executed when the scheduled task is specified, and the scheduled task is set by the user. The interference type includes the type with interference and the type without interference. The existence of interference means that during the execution of the target air purification task, the execution of the scheduled task causes the execution process of the target air purification task to be interrupted, thereby interfering with it. The absence of interference means that during the execution of the target air purification task, there is no scheduled task interrupting the execution of its normal task;

[0099] The parameter value of each scoring parameter is associated with a specific scoring value. Therefore, the scoring value corresponding to the scoring parameter can be determined based on the parameter value of each scoring parameter, and the target scoring value can be further determined based on the scoring value corresponding to each scoring parameter. The scoring values ​​corresponding to each scoring parameter can be summed to obtain the target scoring value, or the average of all scoring values ​​can be calculated to obtain the target scoring value, or corresponding weights can be set for different scoring parameters respectively, and the target scoring value can be obtained by combining the weight of each scoring parameter and the parameter value of each scoring parameter. The corresponding target scoring value is calculated for each air treatment equipment to be scheduled.

[0100] After obtaining the target score, the air treatment equipment to be scheduled with the largest target score can be used as the target air treatment equipment. In addition, if there are more than two air treatment equipment to be scheduled with the largest target score, the air treatment equipment to be scheduled that is closest to the target air treatment equipment can be further selected as the target air treatment equipment.

[0101] On the other hand, in addition to selecting one air treatment device to be scheduled as the target air treatment device in the aforementioned manner, more than two air treatment devices to be scheduled can also be selected as target air treatment devices. The reason is that in actual application scenarios, the area where the target air purification task to be executed is located may be relatively large, and it is slow to use only one target air treatment device to execute the target air purification task. Therefore, multiple target air treatment devices may be required to execute the target air purification task. In this case, the first air treatment device can detect the size of the area corresponding to the target air purification task, and when the area is large, select multiple target air treatment devices to execute the target air purification task to improve efficiency.

[0102] In this embodiment, the target score value of each air treatment equipment to be scheduled is determined based on the operating condition information and attribute information of each air treatment equipment to be scheduled, and the target air treatment equipment is selected from the air treatment equipment to be scheduled based on the target score value, so that the target air treatment equipment can be selected based on a quantitative method. When there are at least two air treatment equipment to be scheduled, a reasonable target air treatment equipment can be accurately selected.

[0103] In another embodiment, please refer to Figure 4 Based on any of the above embodiments, the control method of the air treatment equipment further includes:

[0104] Step S40, when a voice command is detected, determining the type of the first air treatment device;

[0105] Step S50, when the type of the first air treatment device is the first type, executing the step of the first air treatment device acquiring attribute information of the target air purification task and operating condition information of the second air treatment device;

[0106] Step S60: When the type of the first air treatment equipment is the second type, receiving the target air purification task sent by the second air treatment equipment.

[0107] When the first air treatment device detects a voice command, it extracts information about the target air purification task in the voice command, such as the type of the target air purification task and the area of ​​the target air purification task. When the first air treatment device detects that the target air purification task is triggered based on the extracted information about the target air purification task, the first air treatment device determines its own type, which includes a first type and a second type. The first type is a type that requires selecting and scheduling a target air treatment device based on operating condition information and attribute information, and the second type is a type that requires obtaining and executing the target air purification task sent by the second air treatment device;

[0108] The reason for distinguishing between the first type and the second type is that when the user issues a voice command, it is possible that multiple air treatment devices may receive the voice command at the same time. Since the process of selecting the target air treatment device can be implemented by one air treatment device, it is not necessary for each air treatment device to perform the target air treatment device selection process. If each air treatment device performs the selection process, conflicts may occur and it is more power-consuming. Therefore, it is necessary to distinguish the first type or the second type of the first air treatment device. When determining the first type or the second type, the first air treatment device can communicate with the second air treatment device and obtain the status of the second air treatment device to further determine whether it is the first type or the second type.

[0109] When the first air handling device determines whether its type is the first type or the second type, the methods used include but are not limited to the following methods:

[0110] The determination is made based on the distance between the first air treatment device and the sound source and the distance between the second air treatment device and the sound source; specifically, the first air treatment device determines the first sound source distance between itself and the sound source, and obtains the second sound source distance sent by the second air treatment device associated with the same family identifier, the second sound source distance being the distance between the second air treatment device and the sound source, and compares the first sound source distance with the second sound source distance. When the first sound source distance is less than the second sound source distance, the first air treatment device is determined to be of the first type. When the first sound source distance is greater than the second sound source distance, the first air treatment device is determined to be of the second type, thereby making the air treatment device closest to the sound source an air treatment device of the first type;

[0111] Among them, the first air treatment device can obtain the second sound source distance in the following way: the first air treatment device obtains the address information of the second air treatment device associated with the same family identifier in the server, the address information is network path information or device identification information, the network path information is such as the Internet Protocol Address (IP Address), the device identification information is such as the Universally Unique Identifier (UUID), and the UUID can be used to find the corresponding air treatment device when transmitting information based on Bluetooth; a sound source distance acquisition request is sent to the second air treatment device corresponding to the address information; and the second sound source distance returned by the second air treatment device based on the sound source distance acquisition request.

[0112] The first type or the second type is set based on the setting information of the terminal device. Specifically, the first air treatment device obtains the setting information corresponding to the first air treatment device sent by the terminal device. The setting information is generated after the terminal device detects the type setting instruction input by the user. The setting information is the setting information of the first type or the setting information of the second type. The first air treatment device determines that the type of the first air treatment device is the first type based on the setting information of the first type, or determines that the type of the first air treatment device is the second type based on the setting information of the second type.

[0113] In addition, the first air treatment device and the second air treatment device need to be networked in advance. The network configuration process can be implemented by the terminal device based on the user's operation. The terminal device determines the first air treatment device and the second air treatment device corresponding to the selection operation based on the user's selection operation, and connects the first air treatment device and the second air treatment device to the Internet, and associates the first air treatment device and the second air treatment device with the same family identifier to add them to the same family. In addition, the terminal device can also set specific names for the first air treatment device and the second air treatment device based on the user's input operation to distinguish them.

[0114] In this embodiment, when a voice command is detected, the type of the first air treatment device is determined. When the type of the first air treatment device is the first type, the first air treatment device obtains the operating condition information of the second air treatment device and the attribute information of the target air purification task. When the type of the first air treatment device is the second type, the target air purification task sent by the second air treatment device is received. Therefore, when the target air purification task needs to be executed, the user only needs to issue a voice command, and the air treatment device can select the target air treatment device from the air treatment devices to be scheduled to execute the target air purification task. The operation is relatively simple.

[0115] In another embodiment, please refer to Figure 5 ,based on Figure 2 In an embodiment, the control method of the air treatment equipment further includes:

[0116] Step S70, when an execution instruction of the target air purification task is detected, detecting whether an air purification task different from the target air purification task is currently being executed;

[0117] Step S80, when an air purification task different from the target air purification task is not currently being executed, executing a step of causing the first air treatment device to obtain attribute information of the target air purification task and operating condition information of the air treatment device to be scheduled;

[0118] Step S90, when an air purification task different from the target air purification task is currently being executed, interrupting the currently executed air purification task, and executing a step in which the first air treatment device obtains attribute information of the target air purification task and operating condition information of the air treatment device to be scheduled;

[0119] Step S100: After the target air purification task is completed, the interrupted air purification task is continued.

[0120] The execution instruction of the target air purification task can be an execution instruction sent by the terminal device, or it can be a detected voice instruction; when the execution instruction of the target air purification task is detected, the first air treatment device may have different task execution states at this time, that is, the first air treatment device may be executing a task different from the target air purification task, or it may not be executing a task different from the target air purification task. When a task different from the target air purification task is not currently being executed, the first air treatment device obtains operating condition information and attribute information, and selects a target air treatment device from the air treatment devices to be scheduled to execute the target air purification task based on the operating condition information and attribute information. When a task different from the target air purification task is currently being executed, the currently executed air purification task is interrupted, and the target air treatment device is selected to execute the target air purification task based on the operating condition information and attribute information. After the execution of the target air purification task is completed, the interrupted target air purification task is continued.

[0121] In addition, after the first air treatment device receives the instruction to execute the target air purification task, when it is executing an air purification task different from the target air purification task, it can also select the target air treatment device based on the attribute information of the target air purification task and the operating condition information of the air treatment device to be scheduled. When the selected target air treatment device is itself, the currently executing air purification task is interrupted and the target air purification task is executed. When the selected target air treatment device is the second air treatment device, the target air purification task is sent to the second air treatment device, and the current air purification task continues to be executed.

[0122] In this embodiment, after detecting the execution instruction of the target air purification task, it is detected whether an air purification task different from the target air purification task is currently being executed. When an air purification task different from the target air purification task is not currently being executed, the step of the first air treatment device obtaining the attribute information of the target air purification task and the operating condition information of the air treatment device to be scheduled is executed. When an air purification task different from the target air purification task is currently being executed, the currently executed air purification task is interrupted, and the step of the first air treatment device obtaining the attribute information of the target air purification task and the operating condition information of the air treatment device to be scheduled is executed. After the execution of the target air purification task is completed, the interrupted air purification task is continued to be executed to avoid interference of the currently executed air purification task with the normal execution of the target air purification task.

[0123] It should be noted that, in this document, the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, article, or system comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or system. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of other identical elements in the process, method, article, or system comprising the element.

[0124] The serial numbers of the above embodiments of the present invention are for description only and do not represent the advantages or disadvantages of the embodiments.

[0125] Through the description of the above embodiments, those skilled in the art can clearly understand that the above-mentioned embodiment methods can be implemented by means of software plus the necessary general hardware platform. Of course, hardware can also be used, but in many cases the former is a more preferred embodiment. Based on this understanding, the technical solution of the present invention, or the part that contributes to the prior art, can be embodied in the form of a software product. This computer software product is stored in a storage medium (such as ROM / RAM, magnetic disk, optical disk) as described above and includes a number of instructions for causing an air treatment device to execute the methods described in various embodiments of the present invention.

[0126] The above are only preferred embodiments of the present invention and are not intended to limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made using the contents of the present invention description and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. A control method for air handling equipment, characterized in that: The control method of the air treatment equipment includes: The first air treatment device obtains attribute information of the target air purification task and operating condition information of the air treatment device to be scheduled, wherein the attribute information includes the execution area and the type of the target air purification task, and the operating condition information includes the location information, hardware loss information, and execution task of the air treatment device to be scheduled; Selecting a target air treatment device from the air treatment devices to be scheduled according to the attribute information and the operating condition information; Dispatching the target air treatment equipment to perform the target air purification task; The step of selecting a target air treatment equipment from the air treatment equipment to be scheduled according to the attribute information and the operating condition information includes: Determining, based on the attribute information and the operating condition information of each of the air treatment equipment to be scheduled, parameter values ​​corresponding to scoring parameters, the scoring parameters including a distance between the air treatment equipment to be scheduled and an area where the target air purification task is located, hardware loss of the air treatment equipment to be scheduled, and a type of interference of the scheduled task of the air treatment equipment to be scheduled on the target air purification task; Determining the scoring value corresponding to the scoring parameter according to the parameter value of each scoring parameter; Determining a target score value for each of the air treatment equipment to be scheduled according to the score values ​​corresponding to the respective score parameters of each of the air treatment equipment to be scheduled; The target air treatment equipment is selected from the air treatment equipment to be scheduled according to the target score value.

2. The control method for air handling equipment according to claim 1, wherein: The attribute information further includes an execution trigger time and an execution time consumption, and the operating condition information further includes power information; and the step of selecting a target air treatment device from the air treatment devices to be scheduled based on the attribute information and the operating condition information includes: Determine the duration of the target air purification task according to the attribute information; Determining the available time of the air treatment equipment to be scheduled according to the remaining power information in the working condition information; The target air treatment equipment is selected from the air treatment equipment to be scheduled whose available time is greater than or equal to the time consumption time.

3. The control method for air handling equipment according to claim 1, wherein: The air treatment equipment to be scheduled includes the first air treatment equipment and the second air treatment equipment, and the control method of the air treatment equipment further includes: upon detecting a voice command, determining a type of the first air handling device; When the type of the first air treatment device is the first type, performing a step of the first air treatment device acquiring attribute information of the target air purification task and operating condition information of the second air treatment device; When the type of the first air treatment device is the second type, the target air purification task sent by the second air treatment device is received.

4. The control method for air handling equipment according to claim 3, wherein: The step of determining the type of the first air handling device comprises: Determine a first sound source distance between the first air treatment device and a sound source, and obtain a second sound source distance sent by a second air treatment device associated with the same household identifier, where the second sound source distance is the distance between the second air treatment device and the sound source; When the first sound source distance is less than the second sound source distance, determining that the type of the first air treatment device is the first type; When the first sound source distance is greater than the second sound source distance, the type of the first air treatment device is determined to be the second type.

5. The control method for air handling equipment according to claim 4, wherein: The step of obtaining a second sound source distance sent by a second air treatment device associated with the same home identifier includes: Obtaining address information of the second air treatment device associated with the same home identifier from the server, where the address information is network path information or device identification information; Sending a sound source distance acquisition request to the second air treatment device corresponding to the address information; Receive the second sound source distance returned by the second air treatment device in response to the sound source distance acquisition request.

6. The control method for air handling equipment according to claim 3, wherein: The step of determining the type of the first air handling device comprises: Obtaining setting information corresponding to the first air treatment device, where the setting information is the first type of setting information or the second type of setting information, and the setting information is sent to the first air treatment device after the terminal device detects a type setting instruction input by a user; determining, according to the setting information of the first type, that the type of the first air treatment device is the first type; Alternatively, the type of the first air treatment device is determined to be the second type according to the setting information of the second type.

7. The control method for air handling equipment according to claim 1, wherein: The control method of the air treatment equipment further includes: When an execution instruction of the target air purification task is detected, detecting whether an air purification task different from the target air purification task is currently being executed; When an air purification task different from the target air purification task is not currently being executed, executing a step in which the first air treatment equipment obtains attribute information of the target air purification task and operating condition information of the air treatment equipment to be scheduled; When an air purification task different from the target air purification task is currently being executed, interrupting the currently executed air purification task and executing a step in which the first air treatment device obtains attribute information of the target air purification task and operating condition information of the air treatment device to be scheduled; After the target air purification task is completed, the interrupted air purification task is continued.

8. An air treatment device, characterized in that: The air treatment equipment includes a memory, a processor, and a control program for the air treatment equipment stored in the memory and executable on the processor. When the control program for the air treatment equipment is executed by the processor, the steps of the control method for the air treatment equipment according to any one of claims 1 to 7 are implemented.

9. The air treatment equipment according to claim 8, wherein The air handling equipment includes a sub-machine and a main machine. The main machine is provided with a sub-machine cabin, and the sub-machine cabin is used to place the sub-machine. The processor and the memory are located in the sub-machine or the main machine.

10. A computer-readable storage medium, characterized in that The computer-readable storage medium stores a control program for an air treatment device, and when the control program for the air treatment device is executed by a processor, the steps of the method for controlling an air treatment device according to any one of claims 1 to 7 are implemented.

Citation Information

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