Intelligent control method and device of air conditioning equipment, air conditioning equipment

By collecting light intensity information through the photosensitive sensor module of the air conditioner, the voice wake-up method is determined, which solves the problem of false wake-up of the air conditioner and improves the reliability of voice interaction and user experience.

CN115789851BActive Publication Date: 2026-03-27GUANGZHOU LINKAGE ALL THINGS TECH CO LTD
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Patent Information

Application Number
CN202111062798.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-09-10
Publication Date
2026-03-27
Estimated Expiration
2041-09-10

AI Technical Summary

Technical Problem

Existing air conditioning equipment is prone to accidentally waking up the voice module under environmental interference, leading to erroneous control and affecting users' lives and work.

Method used

By acquiring the light intensity information collected by the photosensitive sensor module of the air conditioning equipment, a matching voice wake-up method is determined, and the voice device is woken up according to the method to detect the user's voice control information.

Benefits of technology

It reduces the occurrence of accidental wake-up of the air conditioning unit's voice module, improves the flexibility and accuracy of voice interaction, enhances the user experience, and in particular reduces the phenomenon of accidental wake-up at night affecting users' sleep.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses an intelligent control method and device of air conditioning equipment and air conditioning equipment, and the method comprises the following steps: acquiring light brightness information collected by a photosensitive sensing module corresponding to the air conditioning equipment in a current scene; determining a voice wake-up mode according to the light brightness information; and performing a wake-up operation on a voice device of the air conditioning equipment according to the voice wake-up mode, so that the voice device detects voice control information triggered by a person in the current scene for the air conditioning equipment. It can be seen that the application can reduce the occurrence of false wake-up of the voice module of the air conditioning equipment in the case of ensuring the recognition rate of the voice, thereby reducing the occurrence of the influence of the user's life and work caused by false control of the air conditioning equipment, such as reducing the occurrence of the influence of the user's sleep caused by false wake-up of the air conditioning equipment at night.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of air conditioning equipment control, and particularly relates to an intelligent control method and device of air conditioning equipment and air conditioning equipment. BACKGROUND

[0002] With the rapid development of air conditioning technology and voice recognition technology, more and more air conditioning equipment has voice control function, and users can control the air conditioning equipment through voice, such as voice control of air conditioning equipment start or stop, voice control of air conditioning equipment wind speed, etc.

[0003] However, it is found in practice that due to environmental interference, such as interference of television playing audio and video, in the process of controlling the air conditioning equipment, the occurrence of miswaking the voice module of the air conditioning equipment often occurs, thereby causing the occurrence of miscontrolling the air conditioning equipment, and further affecting the user's life, work and rest, such as affecting the user's night sleep. Therefore, it is particularly important to propose a scheme for reducing the occurrence of miswaking the voice module of the air conditioning equipment. SUMMARY

[0004] The technical problem to be solved by the present application is to provide an intelligent control method and device of air conditioning equipment and air conditioning equipment, which can reduce the occurrence of miswaking the voice module of the air conditioning equipment while ensuring the recognition rate of voice.

[0005] In order to solve the above technical problems, the first aspect of the present application discloses an intelligent control method of air conditioning equipment, which comprises:

[0006] obtaining light brightness information of a current scene collected by a photosensitive sensing module corresponding to an air conditioning equipment of the current scene;

[0007] determining a voice wake-up mode matched with the light brightness information of the current scene according to the light brightness information of the current scene;

[0008] performing a wake-up operation on a voice device of the air conditioning equipment according to the voice wake-up mode, so that the voice device detects voice control information triggered by a person in the current scene for the air conditioning equipment.

[0009] As an optional implementation manner, in the first aspect of the present application, the determination of the voice wake-up mode matched with the light brightness information of the current scene according to the light brightness information of the current scene comprises:

[0010] determining a target time type matched with the light brightness information of the current scene according to the light brightness information of the current scene, the target time type comprising a daytime time type or a night time type;

[0011] According to the target time type, analyze the voice wake-up mode matched with the light brightness information of the current scene;

[0012] According to the light brightness information of the current scene, determine the target time type matched with the light brightness information of the current scene, which includes:

[0013] According to the light brightness information of the current scene, determine the current time of the current scene, and according to the current time of the current scene, determine the time type matched with the current time of the current scene as the target time type matched with the light brightness information of the current scene.

[0014] As an optional implementation, in the first aspect of the present application, before the method of analyzing the voice wake-up mode matched with the light brightness information of the current scene according to the target time type, the method further includes:

[0015] Collect the working condition of the device capable of emitting light in the current scene, and according to the working condition of the device, determine the light brightness of the device;

[0016] According to the light brightness of the device, correct the target time type to obtain the corrected target time type;

[0017] According to the target time type, analyze the voice wake-up mode matched with the light brightness information of the current scene, which includes:

[0018] According to the corrected target time type, analyze the voice wake-up mode matched with the light brightness information of the current scene.

[0019] As an optional implementation, in the first aspect of the present application, the method further includes:

[0020] Obtain the information corresponding to the current scene, which includes the weather forecast information of the day and the current solar term information;

[0021] According to the light brightness of the device, correct the target time type to obtain the corrected target time type, which includes:

[0022] According to the light brightness of the device and the information corresponding to the current scene, correct the target time type to obtain the corrected target time type.

[0023] As an optional implementation, in the first aspect of the present application, before the operation of performing the wake-up operation on the voice device of the air conditioning equipment according to the voice wake-up mode so that the voice device detects the voice control information triggered by the personnel in the current scene for the air conditioning equipment, the method further comprises:

[0024] determining the number of times that the light brightness information of the current scene collected by the light-sensitive sensing module corresponding to the air conditioning equipment is acquired within a first preset time period, the starting time of the first preset time period being the time when the light brightness information of the current scene corresponding to the time type of night time type is first acquired on the same day;

[0025] determining whether the number of times is greater than or equal to the determined number of times threshold, and when it is determined that it is greater than or equal to the number of times threshold, performing the operation of performing the wake-up operation on the voice device of the air conditioning equipment according to the voice wake-up mode so that the voice device detects the voice control information triggered by the personnel in the current scene for the air conditioning equipment.

[0026] As an optional implementation, in the first aspect of the present application, the method further comprises:

[0027] when it is determined that it is less than the number of times threshold, collecting information of the personnel in the area where the air conditioning equipment is located in the current scene, the information of the personnel including the body temperature of the personnel and the duration that the personnel stays in the area where the air conditioning equipment is located;

[0028] determining whether the duration that the personnel stays in the area where the air conditioning equipment is located is greater than or equal to the determined duration threshold, and when it is determined that it is greater than or equal to the duration threshold, determining the collection time of the information of the personnel;

[0029] acquiring a historical time period matching the collection time, the historical time period matching the collection time being determined based on the same time as the collection time on each day in the preset days before the same day;

[0030] determining the historical body temperature of the personnel in the historical time period, and determining whether the body temperature of the personnel and the historical body temperature of the personnel match, and when it is determined that they do not match, performing the operation of performing the wake-up operation on the voice device of the air conditioning equipment according to the voice wake-up mode so that the voice device detects the voice control information triggered by the personnel in the current scene for the air conditioning equipment.

[0031] As an optional implementation, in the first aspect of the present application, before the operation of performing the wake-up operation on the voice device of the air conditioning equipment according to the voice wake-up mode so that the voice device detects the voice control information triggered by the personnel in the current scene for the air conditioning equipment, the method further comprises:

[0032] detecting whether a voice control instruction triggered for the air conditioning equipment is received, when the detection result is yes, determining a number of the voice control instructions received within a second preset time period, and judging whether the number of the voice control instructions received is greater than or equal to a determined instruction number threshold, a starting time of the second preset time period being a time when the voice wake-up mode matching the light brightness information of the current scene is determined;

[0033] when the judgment result is yes, performing the wake-up operation on the voice device of the air conditioning equipment according to the voice wake-up mode, so that the voice device detects the voice control information triggered by the personnel in the current scene for the air conditioning equipment.

[0034] The second aspect of the present application discloses an intelligent control device of an air conditioning equipment, the device comprising:

[0035] an acquisition module, configured to acquire light brightness information of a current scene collected by a photosensitive sensing module corresponding to an air conditioning equipment of the current scene;

[0036] a first determination module, configured to determine a voice wake-up mode matching the light brightness information of the current scene according to the light brightness information of the current scene;

[0037] a control module, configured to perform a wake-up operation on a voice device of the air conditioning equipment according to the voice wake-up mode, so that the voice device detects voice control information triggered by personnel in the current scene for the air conditioning equipment.

[0038] As an optional implementation, in the second aspect of the present application, the first determination module comprises:

[0039] a determination sub-module, configured to determine a target time type matching the light brightness information of the current scene according to the light brightness information of the current scene, the target time type comprising a daytime time type or a nighttime time type;

[0040] an analysis sub-module, configured to analyze the voice wake-up mode matching the light brightness information of the current scene according to the target time type;

[0041] wherein the determination sub-module determines the target time type matching the light brightness information of the current scene according to the light brightness information of the current scene in the following manner:

[0042] According to the light brightness information of the current scene of Soso, a current time of the current scene is determined, and according to the current time of the current scene of Soso, a time type matched with the current time of the current scene is determined as a target time type matched with the light brightness information of the current scene.

[0043] As an optional implementation, in the second aspect of the present application, the first determining module further comprises:

[0044] The acquisition sub-module is configured to acquire the working condition of the device capable of emitting light in the current scene before the analysis sub-module analyzes the voice wake-up mode matched with the light brightness information of the current scene according to the target time type.

[0045] The determining sub-module is configured to determine the light emission brightness of the device according to the working condition of the device.

[0046] The correction sub-module is configured to correct the target time type according to the light emission brightness of the device to obtain a corrected target time type.

[0047] The analysis sub-module analyzes the voice wake-up mode matched with the light brightness information of the current scene according to the target time type in the following manner:

[0048] The voice wake-up mode matched with the light brightness information of the current scene is analyzed according to the corrected target time type.

[0049] As an optional implementation, in the second aspect of the present application, the first determining module further comprises:

[0050] The acquisition sub-module is configured to acquire information corresponding to the current scene, wherein the information corresponding to the current scene comprises weather forecast information of the day and current solar term information.

[0051] The correction sub-module corrects the target time type according to the light emission brightness of the device to obtain a corrected target time type in the following manner:

[0052] The target time type is corrected according to the light emission brightness of the device and the information corresponding to the current scene to obtain a corrected target time type.

[0053] As an optional implementation, in the second aspect of the present application, the device further comprises:

[0054] The second determining module is configured to determine a number of times that the light brightness information of the current scene collected by the light-sensitive sensing module corresponding to the air conditioning device is acquired within a first preset time period before the control module performs the wake-up operation on the voice device of the air conditioning device according to the voice wake-up manner so that the voice device detects the voice control information triggered by the person in the current scene for the air conditioning device, and a starting moment of the first preset time period is a moment when the light brightness information of the current scene corresponding to a time type of night time type is acquired for the first time on the current day.

[0055] The determining module is configured to determine whether the number of times is greater than or equal to a determined number of times threshold, and trigger the control module to perform the wake-up operation on the voice device of the air conditioning device according to the voice wake-up manner so that the voice device detects the voice control information triggered by the person in the current scene for the air conditioning device when it is determined that the number of times is greater than or equal to the number of times threshold.

[0056] As an optional implementation, in the second aspect of the present application, the device further comprises:

[0057] The collecting module is configured to collect information of a person in the area where the air conditioning device is located in the current scene when the determining module determines that the number of times is less than the number of times threshold, and the information of the person includes a body temperature of the person and a duration that the person stays in the area where the air conditioning device is located.

[0058] The determining module is further configured to determine whether the duration that the person stays in the area where the air conditioning device is located is greater than or equal to a determined duration threshold.

[0059] The second determining module is further configured to determine a collection moment of the information of the person when the determining module determines that the duration is greater than or equal to the duration threshold.

[0060] The acquiring module is further configured to acquire a historical time period matching the collection moment, and the historical time period matching the collection moment is determined based on a same moment as the collection moment in each day of a preset day before the current day.

[0061] The second determining module is further configured to determine a historical body temperature of the person within the historical time period.

[0062] The determining module is further configured to determine whether the body temperature of the person and the historical body temperature of the person match, and trigger the control module to perform the wake-up operation on the voice device of the air conditioning device according to the voice wake-up manner so that the voice device detects the voice control information triggered by the person in the current scene for the air conditioning device when it is determined that the body temperature of the person and the historical body temperature of the person do not match.

[0063] As an optional implementation, in the second aspect of the present application, the device further comprises:

[0064] a detection module, configured to detect whether a voice control instruction triggered for the air conditioning equipment is received before the control module performs the wake-up operation on the voice device of the air conditioning equipment according to the voice wake-up mode, so that the voice device detects voice control information triggered by a person in the current scene for the air conditioning equipment;

[0065] a third determination module, configured to determine a number of the voice control instructions received in a second preset time period when the detection result is yes;

[0066] The detection module is further configured to determine whether the number of the voice control instructions received is greater than or equal to a determined instruction number threshold, and a starting time of the second preset time period is a time when the voice wake-up mode matching the light brightness information of the current scene is determined; when the determination result is yes, the control module is triggered to perform the wake-up operation on the voice device of the air conditioning equipment according to the voice wake-up mode, so that the voice device detects voice control information triggered by a person in the current scene for the air conditioning equipment.

[0067] The third aspect of the present application discloses another intelligent control device of an air conditioning equipment, and the device comprises:

[0068] a memory storing executable program codes;

[0069] a processor coupled with the memory;

[0070] The processor invokes the executable program codes stored in the memory to execute part or all steps of the intelligent control method of the air conditioning equipment disclosed in the first aspect of the present application.

[0071] The fourth aspect of the present application discloses a computer storage medium storing computer instructions, and the computer instructions are used to execute part or all steps of the intelligent control method of the air conditioning equipment disclosed in the first aspect of the present application when invoked.

[0072] Compared with the prior art, the embodiments of the present application have the following beneficial effects:

[0073] In the embodiment of the present application, the light intensity information of the current scene collected by the photosensitive sensing module corresponding to the air conditioning equipment of the current scene is acquired; the voice wake-up mode matched with the light intensity information of the current scene is determined according to the light intensity information of the current scene; and the voice device of the air conditioning equipment is executed to wake up according to the voice wake-up mode, so that the voice device detects the voice control information triggered by the personnel of the current scene for the air conditioning equipment. It can be seen that, by automatically determining the voice wake-up mode corresponding to the light intensity information collected by the photosensitive sensing module corresponding to the air conditioning equipment of the current scene, the voice device of the air conditioning equipment is executed to wake up, the occurrence of false wake-up of the voice module of the air conditioning equipment can be reduced under the condition of ensuring the recognition rate of the voice, thereby reducing the occurrence of the influence on the life and work of the user caused by the false control of the air conditioning equipment, improving the reliability of the intelligent control device, and being conducive to improving the flexibility and accuracy of the voice interaction between the user and the air conditioning equipment, and improving the experience of the user using the air conditioning equipment, such as reducing the occurrence of the influence on the sleep of the user caused by the false wake-up of the air conditioning equipment at night. BRIEF DESCRIPTION OF DRAWINGS

[0074] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0075] Figure 1 is a schematic diagram of the architecture of the intelligent control of the air conditioning equipment disclosed by the embodiment of the present application;

[0076] Figure 2 is a flowchart of the intelligent control method of the air conditioning equipment disclosed by the embodiment of the present application;

[0077] Figure 3 is a flowchart of another intelligent control method of the air conditioning equipment disclosed by the embodiment of the present application;

[0078] Figure 4 is a structural schematic diagram of the intelligent control device of the air conditioning equipment disclosed by the embodiment of the present application;

[0079] Figure 5 is a structural schematic diagram of another intelligent control device of the air conditioning equipment disclosed by the embodiment of the present application;

[0080] Figure 6 is a structural schematic diagram of another intelligent control device of the air conditioning equipment disclosed by the embodiment of the present application;

[0081] Figure 7 is a structural schematic diagram of the air conditioning equipment disclosed by the embodiment of the present application. DETAILED DESCRIPTION

[0082] In order to better understand the technical scheme of the present application, the technical scheme in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative efforts belong to the scope of protection of the present application.

[0083] The terms "first", "second", etc. in the specification and claims of the present application and the above-described drawings are used to distinguish different objects, rather than to describe a specific order. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, device, product or end including a series of steps or units is not limited to the listed steps or units, but can optionally include steps or units not listed, or can optionally include other steps or units inherent to the process, method, product or end.

[0084] Reference herein to "an embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the application. The appearance of the phrase in various places in the specification does not necessarily all refer to the same embodiment, nor is it necessarily mutually exclusive of other embodiments. It is explicitly and implicitly understood that the embodiments described herein can be combined with other embodiments.

[0085] The present application discloses an intelligent control method and device of an air conditioning equipment, and an air conditioning equipment, which can automatically determine a voice wake-up mode corresponding to light brightness information collected by a photosensitive sensing module corresponding to the air conditioning equipment in a current scene, perform a wake-up operation on a voice device of the air conditioning equipment, reduce the occurrence of false wake-up of the voice module of the air conditioning equipment under the condition of ensuring the recognition rate of the voice, thereby reducing the occurrence of the impact on the life and work of the user caused by false control of the air conditioning equipment, improving the reliability of the intelligent control device, and being beneficial to improving the flexibility and accuracy of voice interaction between the user and the air conditioning equipment, and improving the experience of the user using the air conditioning equipment, such as reducing the occurrence of false wake-up of the air conditioning equipment at night affecting the sleep of the user. The following will be described in detail.

[0086] In order to better understand the intelligent control method of the air conditioning equipment described in the present application, the application architecture of the intelligent control method of the air conditioning equipment will be described first. Specifically, the application architecture of the intelligent control method of the air conditioning equipment can be as shown in Figure 1 Figure 1 ​is a schematic diagram of an application architecture of intelligent control of an air conditioning equipment according to an embodiment of the present application. As shown in Figure 1 , the architecture scenario can include an intelligent control device (such as an air conditioner master control MCU), a photosensitive sensing module, and a voice device, wherein the voice device includes a voice module and a voice module load (such as a loudspeaker). The intelligent control device and the photosensitive sensing module are communicatively connected through a network. As shown in Figure 1 , the photosensitive sensing module collects light brightness information of the current scene, determines a current time of the current scene according to the collected light brightness information, and reports the determined current time of the current scene to the intelligent control device. The intelligent control device receives the current time of the current scene reported by the photosensitive sensing module, determines a time type of the current time according to the current time, wherein the time type of the current time includes a daytime time type or a nighttime time type, determines a corresponding voice wake-up mode according to the time type, wherein the voice wake-up mode includes a voice wake-up control instruction, and conveys the voice wake-up mode to the voice module to trigger the voice module to control the voice module load to turn on, i.e., to wake up the voice module load, according to the voice wake-up control instruction included in the voice wake-up mode. It should be noted that the photosensitive sensing module can directly report the light brightness information of the current scene to the intelligent control device, and then the intelligent control device determines the current time of the current scene according to the obtained light brightness information of the current scene, and determines the time type corresponding to the current time.

[0087] The application architecture of intelligent control of the air conditioning equipment is described above, and the process of intelligent control of the air conditioning equipment is described in detail below.

[0088] Embodiment one

[0089] Please refer to Figure 2 , Figure 2 is a flowchart of an intelligent control method of an air conditioning equipment according to an embodiment of the present application. The method described in Figure 2 can be applied to an intelligent control device, wherein the intelligent control device includes any one of an air conditioning equipment, a cloud server of the air conditioning equipment, and a platform of the air conditioning equipment, wherein the intelligent control device can be communicatively connected with other intelligent devices (such as a smart sweeper, a smart lamp, etc.) of the current scene and a user terminal. As shown in Figure 2 , the intelligent control method of the air conditioning equipment can include the following operations:

[0090] 201. Obtain light brightness information of a current scene collected by a photosensitive sensing module corresponding to an air conditioning equipment of the current scene.

[0091] In the embodiment of the present application, optionally, the photosensitive sensing module corresponding to the air conditioning equipment includes a photosensitive sensing module arranged on the air conditioning equipment and / or a photosensitive sensing module arranged in the area where the air conditioning equipment is located but not arranged on the air conditioning equipment, such as a smart sweeper arranged in the area where the air conditioning equipment is located, and the number of photosensitive sensors included in the photosensitive sensing module is greater than or equal to 1. Further, the light brightness information of the current scene collected by the photosensitive sensing module can be collected in real time, or collected at intervals of equal interval time, or collected at intervals of non-equal interval time, or collected when it is detected that the light brightness and / or light direction of the current scene changes. Further, when the photosensitive sensing module collects the light brightness information of the current scene, the current network time can be determined automatically.

[0092] 202. Determine a voice wake-up mode matched with the light brightness information of the current scene according to the light brightness information of the current scene.

[0093] In the embodiment of the present application, the light brightness information of the current scene includes a light brightness value of the current scene, and further, the light brightness information of the current scene also includes a light direction of the current scene.

[0094] In the embodiment of the present application, the voice wake-up mode matched with the light brightness information of the current scene includes a voice wake-up control instruction.

[0095] 203. Perform a wake-up operation on the voice device of the air conditioning equipment according to the voice wake-up mode, so that the voice device detects voice control information triggered by a person in the current scene for the air conditioning equipment.

[0096] In the embodiment of the present application, the voice device of the air conditioning equipment includes a voice speaker or a voice microphone and the like capable of recognizing voice.

[0097] It can be seen that the implementation Figure 2 The described method can determine the voice wake-up mode corresponding to the light brightness information collected by the photosensitive sensing module corresponding to the air conditioning equipment in the current scene by automatically determining the light brightness information collected by the photosensitive sensing module corresponding to the air conditioning equipment in the current scene, perform a wake-up operation on the voice device of the air conditioning equipment, and reduce the occurrence of false wake-up of the voice module of the air conditioning equipment in the case of ensuring the recognition rate of voice, thereby reducing the occurrence of affecting the user's life and work due to false control of the air conditioning equipment, such as reducing the occurrence of affecting the user's sleep due to false wake-up of the air conditioning equipment at night, improving the reliability of the intelligent control device, and being conducive to improving the flexibility and accuracy of voice interaction between the user and the air conditioning equipment, and improving the user's experience of using the air conditioning equipment.

[0098] In an optional embodiment, determining a voice wake-up mode matched with the light brightness information of the current scene according to the light brightness information of the current scene includes:

[0099] According to the light brightness information of the current scene, a target time type matching the light brightness information of the current scene is determined, the target time type including a daytime time type or a nighttime time type;

[0100] According to the target time type, a voice wake-up mode matching the light brightness information of the current scene is determined.

[0101] According to the light brightness information of the current scene, a target time type matching the light brightness information of the current scene is determined, including:

[0102] According to the light brightness information of the current scene, a current time of the current scene is determined, and according to the current time of the current scene, a time type matching the current time of the current scene is determined as the target time type matching the light brightness information of the current scene.

[0103] In the optional embodiment, different target time types correspond to different voice wake-up modes.

[0104] In the optional embodiment, the target time type matching the light brightness information of the current scene can be obtained by the light-sensitive sensing module analyzing the light brightness information of the current scene collected by the light-sensitive sensing module, and then sent to the intelligent control device, or determined by the intelligent control device analyzing the light brightness information reported by the light-sensitive sensing module. The optional embodiment is not limited.

[0105] In the optional embodiment, the length of the daytime time and the length of the nighttime time are different in different solar terms or seasons, for example, in summer, the length of the daytime time is from 7:00 to 18:00, and the length of the nighttime time is from 18:30 to 04:00 of the next day; in winter, the length of the daytime time is from 8:00 to 17:00, and the length of the nighttime time is from 17:30 to 03:00 of the next day.

[0106] It can be seen that, by determining the time type corresponding to the light brightness information of the current scene first, and then determining the matching voice wake-up mode according to the time type, the determination accuracy and reliability of the voice wake-up mode can be improved.

[0107] In another optional embodiment, before determining the voice wake-up mode matching the light brightness information of the current scene according to the target time type, the method can further include the following operations:

[0108] The working condition of the device capable of emitting light in the current scene is collected, and the light brightness of the device is determined according to the working condition of the device;

[0109] According to the light brightness of the device, the target time type is corrected to obtain a corrected target time type.

[0110] In the optional embodiment, according to the target time type, the voice wake-up mode matched with the light brightness information of the current scene is determined, comprising:

[0111] According to the corrected target time type, the voice wake-up mode matched with the light brightness information of the current scene is determined.

[0112] In the optional embodiment, optionally, the device capable of emitting light includes smart lamps and / or smart televisions and other devices in the current scene.

[0113] In the optional embodiment, the working condition of the device includes the working power and the working current of the device.

[0114] It can be seen that the optional embodiment can correct the time type in combination with the light brightness of the device capable of emitting light in the current scene, can reduce the occurrence of mistakenly considering it as daytime due to the fact that the current time is actually nighttime but the light brightness in the room is too high, improves the determination accuracy of the time type, and further improves the determination accuracy and reliability of the voice wake-up mode of the air conditioning device corresponding to the current scene.

[0115] In yet another optional embodiment, the method can further include the following steps:

[0116] Obtaining information corresponding to the current scene, the information corresponding to the current scene including weather forecast information of the day and current solar term information;

[0117] In the optional embodiment, according to the light brightness of the device, the target time type is corrected to obtain the corrected target time type, comprising:

[0118] According to the light brightness of the device and the information corresponding to the current scene, the target time type is corrected to obtain the corrected target time type.

[0119] It can be seen that the optional embodiment can further correct the time type by the current solar term information, the weather forecast information of the day and the light brightness of the device, can reduce the occurrence of mistakenly considering it as nighttime due to the fact that the daytime may be a rainy day, further improves the determination accuracy and reliability of the time type, and further improves the determination accuracy and reliability of the voice wake-up mode of the air conditioning device.

[0120] In yet another optional embodiment, according to the voice wake-up mode, the voice device of the air conditioning device is executed to wake up, so that before the voice device detects the voice control information triggered by the personnel in the current scene for the air conditioning device, the method can further include the following operations:

[0121] determine whether the voice information of the person in the current scene is collected, and when the determination result is yes, determine whether voice control information matched with the determined air conditioning device exists in the voice information;

[0122] When the determination result is yes, determine whether the person is in the area where the determined air conditioning device is located according to the position of the person and the position of the air conditioning device, and when the determination result is yes, perform the wake-up operation on the voice device of the air conditioning device according to the voice wake-up mode to enable the voice device to detect the voice control information triggered by the person in the current scene for the air conditioning device.

[0123] It can be seen that, in the optional embodiment, after the voice wake-up mode matched with the current time is determined, the wake-up operation on the voice device of the air conditioning device is performed only when it is determined that the voice control information of the person in the current scene for the air conditioning device is collected and the person is in the area where the air conditioning device is located, which can improve the accuracy and reliability of the wake-up operation on the voice device of the air conditioning device and reduce the power consumption of the air conditioning device.

[0124] In yet another optional embodiment, the method can further include the following operations:

[0125] When it is determined that the person is in the area where the determined air conditioning device is located, determine the orientation information of the person, and determine whether the person is facing the location where the air conditioning device is located according to the orientation information of the person;

[0126] When it is determined that the person is facing the location where the air conditioning device is located, determine whether the eyes of the person are watching the air conditioning device, and when the determination result is yes, determine the angle of elevation of the chin of the person;

[0127] Determine whether the angle of elevation of the chin of the person is in the determined angle of elevation range, and when the determination result is yes, perform the wake-up operation on the voice device of the air conditioning device according to the voice wake-up mode to enable the voice device to detect the voice control information triggered by the person in the current scene for the air conditioning device.

[0128] It can be seen that, in the optional embodiment, when it is determined that the person is in the area where the air conditioning device is located, the wake-up operation on the voice device of the air conditioning device is performed only when it is determined that the person is facing the location where the air conditioning device is located, the eyes of the person are watching the air conditioning device, and the angle of elevation of the chin of the person is in the specified range, which can improve the accuracy and reliability of the wake-up operation on the voice device of the air conditioning device and enrich the intelligent function of the intelligent control device.

[0129] Embodiment Two

[0130] Please refer to Figure 3 , Figure 3 is a flow diagram of another intelligent control method of an air conditioning device disclosed by the embodiments of the present application.Figure 3 The described method can be applied to a smart control device, wherein the smart control device includes any one of an air conditioning device, a cloud server of the air conditioning device, a platform of the air conditioning device, wherein the smart control device can be in communication connection with other smart devices (such as a smart sweeper, a smart lamp, etc.) of the current scene, a user terminal. Figure 3 As shown, the smart control method of the air conditioning device can include the following operations:

[0131] 301, obtaining light brightness information of a current scene collected by a photosensitive sensing module corresponding to an air conditioning device of the current scene.

[0132] 302, determining a voice wake-up mode matched with the light brightness information of the current scene according to the light brightness information of the current scene.

[0133] 303, determining the number of times of obtaining the light brightness information of the current scene collected by the photosensitive sensing module corresponding to the air conditioning device within a first preset time period, and the starting time of the first preset time period is the time when the light brightness information of the current scene corresponding to the first time type of the evening time type is obtained for the first time.

[0134] 304, determining whether the number of times is greater than or equal to the determined number of times threshold, when it is determined that the number of times is greater than or equal to the number of times threshold, step 305 is triggered; when it is determined that the number of times is less than the number of times threshold, the current process is ended.

[0135] In the embodiment of the application, optionally, when it is determined that the number of times is less than the number of times threshold, the wake-up icon of the voice device is turned on to prompt the personnel of the current scene to prepare to wake up the voice device.

[0136] 305, performing a wake-up operation on the voice device of the air conditioning device according to the voice wake-up mode, so that the voice device detects voice control information triggered by the personnel of the current scene for the air conditioning device.

[0137] In the embodiment of the application, it should be noted that the related description of steps 301, 302 and 305 can refer to the detailed description of steps 201-203 in Embodiment I, and the embodiment of the application will not be repeated.

[0138] It can be seen that the embodiment of the application can also perform a wake-up operation on the voice device of the air conditioning device when the light brightness information of the current scene collected by the photosensitive sensing module is obtained multiple times at night, which can improve the accuracy and reliability of the wake-up operation on the voice device of the air conditioning device, further reduce the occurrence of false wake-up of the air conditioning device or false control of the air conditioning device caused by false wake-up of the voice device of the air conditioning device, and further reduce the occurrence of false control of the air conditioning device affecting the user, such as: affecting the sleep of the user.

[0139] It can be seen that the implementation Figure 2 The described method can determine the voice wake-up mode corresponding to the light brightness information collected by the light-sensitive sensing module corresponding to the air conditioning device in the current scene, perform wake-up operation on the voice device of the air conditioning device, reduce the occurrence of false wake-up of the voice module of the air conditioning device, and reduce the occurrence of affecting the user's life and work caused by false control of the air conditioning device, such as reducing the occurrence of affecting the user's sleep caused by false wake-up of the air conditioning device at night, improving the reliability of the intelligent control device, and facilitating the flexibility and accuracy of voice interaction between the user and the air conditioning device, and improving the user's experience of using the air conditioning device. In addition, it can also improve the accuracy and reliability of the wake-up operation of the voice device of the air conditioning device, further reduce the occurrence of false wake-up of the air conditioning device or false control of the air conditioning device caused by false wake-up of the voice device of the air conditioning device, and further reduce the occurrence of false control of the air conditioning device caused by false wake-up of the air conditioning device.

[0140] In an optional embodiment, the method can further include the following steps:

[0141] When it is determined that the number of times is less than the threshold value, the information of the person in the area where the air conditioning device is located in the current scene is collected, and the information of the person includes the body temperature of the person and the duration of the person in the area where the air conditioning device is located.

[0142] It is determined whether the duration of the person in the area where the air conditioning device is located is greater than or equal to the determined duration threshold value, and when it is determined that the duration threshold value is greater than or equal to the duration threshold value, the collection time of the information of the person is determined.

[0143] A historical time period matching the collection time is obtained, and the historical time period matching the collection time is determined based on the same time as the collection time in each day in the preset days before the current day, such as 7:30-8:30 in the evening yesterday or the day before yesterday.

[0144] The historical body temperature of the person in the historical time period is determined, and it is determined whether the body temperature of the person and the historical body temperature of the person match (such as a difference of 2℃, which means that they do not match), and when it is determined that they do not match, the wake-up operation of the voice device of the air conditioning device according to the voice wake-up mode is performed to enable the voice device to detect the voice control information triggered by the person in the current scene for the air conditioning device.

[0145] It can be seen that the optional embodiment can adaptively perform the wake-up operation on the voice device of the air conditioning equipment when it is judged that the number of times of obtaining the light brightness information of the current scene collected by the photosensitive sensing module is less at night, and when it is judged that the person stays in the area where the air conditioning equipment is located for a long time and the current body temperature of the person is greatly different from the historical body temperature at the same time. The voice device can be conveniently interacted with the air conditioning equipment, thereby improving the control flexibility of the air conditioning equipment, enriching the intelligent function of the intelligent control device, and improving the experience of the user.

[0146] In another optional embodiment, before the voice device detects the voice control information triggered by the person in the current scene for the air conditioning equipment, the method can further include the following steps:

[0147] Detecting whether a voice control instruction triggered for the air conditioning equipment is received, when the detection result is yes, determining the number of times of the voice control instruction received in the second preset time period, and judging whether the number of times of the received voice control instruction is greater than or equal to the determined instruction number threshold (such as 2 times). The starting time of the second preset time period is the time when the voice wake-up mode matching the light brightness information of the current scene is determined.

[0148] When the judgment result is yes, the operation of performing the wake-up operation on the voice device of the air conditioning equipment according to the voice wake-up mode is performed, so that the voice device detects the voice control information triggered by the person in the current scene for the air conditioning equipment.

[0149] In the optional embodiment, when it is judged that the number of times of the received voice control instruction is less than the instruction number threshold, the wake-up icon of the voice device is turned on to prompt the person in the current scene to wake up the voice device.

[0150] It can be seen that after the voice wake-up mode matching the current time is determined, the voice device of the air conditioning equipment is further woken up after the voice control instruction triggered for the air conditioning equipment is received multiple times. The accuracy and reliability of the wake-up operation on the voice device of the air conditioning equipment can be improved, the person can conveniently control the air conditioning equipment through the voice device, and the power consumption of the air conditioning equipment can be reduced.

[0151] Embodiment three

[0152] Please refer to Figure 4 , Figure 4This is a schematic diagram of the structure of an intelligent control device for an air conditioning unit disclosed in an embodiment of the present invention. The intelligent control device includes any one of the following: the air conditioning unit, a cloud server for the air conditioning unit, and a platform for the air conditioning unit. The intelligent control device can communicate with other intelligent devices in the current scenario (such as intelligent robotic vacuum cleaners, intelligent lighting fixtures, etc.) and user terminals. Figure 4 As shown, the intelligent control device for this air conditioning equipment may include:

[0153] The acquisition module 401 is used to acquire the light brightness information of the current scene collected by the photosensitive sensing module corresponding to the air conditioning equipment in the current scene.

[0154] The first determining module 402 is used to determine a voice wake-up method that matches the current scene's light brightness information based on the current scene's light brightness information.

[0155] The control module 403 is used to perform a wake-up operation on the voice device of the air conditioner according to the voice wake-up method, so that the voice device can detect the voice control information triggered by the person in the current scene for the air conditioner.

[0156] It is evident that implementation Figure 4 The described intelligent control device can automatically determine the voice wake-up mode corresponding to the light brightness information collected by the photosensitive sensing module of the air conditioner in the current scene, and perform a wake-up operation on the voice device of the air conditioner. It can reduce the occurrence of accidental wake-up of the voice module of the air conditioner while ensuring the voice recognition rate, thereby reducing the occurrence of the impact on users' life and work caused by accidental control of the air conditioner, such as reducing the occurrence of accidental wake-up of the air conditioner at night affecting users' sleep. It improves the reliability of the intelligent control device and helps to improve the flexibility and accuracy of voice interaction between users and the air conditioner, thus improving the user experience of using the air conditioner.

[0157] In an optional embodiment, such as Figure 5 As shown, the first determining module 402 includes:

[0158] The determination submodule 4021 is used to determine the target time type that matches the current scene's light brightness information based on the current scene's light brightness information. The target time type includes either daytime or nighttime.

[0159] The analysis submodule 4022 is used to determine the voice wake-up method that matches the light brightness information of the current scene based on the target time type.

[0160] Specifically, the method by which the determining submodule 4021 determines the target time type that matches the current scene's light intensity information is as follows:

[0161] According to the light brightness information of the current scene, a current time of the current scene is determined, and according to the current time of the current scene, a time type matched with the current time of the current scene is determined as a target time type matched with the light brightness information of the current scene.

[0162] It can be seen that the described intelligent control device can first determine the time type corresponding to the light brightness information of the current scene, and then determine the matched voice wake-up mode according to the time type, thereby improving the determination accuracy and reliability of the voice wake-up mode. Figure 5 The described intelligent control device can first determine the time type corresponding to the light brightness information of the current scene, and then determine the matched voice wake-up mode according to the time type, thereby improving the determination accuracy and reliability of the voice wake-up mode.

[0163] In another optional embodiment, as shown in Figure 5 The first determination module 402 further includes:

[0164] The acquisition sub-module 4023 is configured to acquire the working condition of the device capable of emitting light in the current scene before the analysis sub-module 4022 determines the voice wake-up mode matched with the light brightness information of the current scene according to the target time type.

[0165] The determination sub-module 4021 is configured to determine the light emission brightness of the device according to the working condition of the device.

[0166] The correction sub-module 4024 is configured to correct the target time type according to the light emission brightness of the device to obtain a corrected target time type.

[0167] The analysis sub-module 4022 determines the voice wake-up mode matched with the light brightness information of the current scene according to the target time type in the following manner:

[0168] The analysis sub-module 4022 determines the voice wake-up mode matched with the light brightness information of the current scene according to the corrected target time type.

[0169] It can be seen that the described intelligent control device can first determine the time type corresponding to the light brightness information of the current scene, and then determine the matched voice wake-up mode according to the time type, thereby improving the determination accuracy and reliability of the voice wake-up mode. Figure 5 The described intelligent control device can further correct the time type in combination with the light emission brightness of the device capable of emitting light in the current scene, thereby improving the determination accuracy of the time type and further improving the determination accuracy and reliability of the voice wake-up mode of the air conditioning device in the current scene.

[0170] In yet another optional embodiment, as shown in Figure 5 The first determination module 402 further includes:

[0171] The acquisition sub-module 4025 is configured to acquire information corresponding to the current scene, and the information corresponding to the current scene includes weather forecast information of the day and current solar term information.

[0172] The correction submodule 4024 corrects the target time type according to the light-emitting brightness of the device, and the manner of obtaining the corrected target time type is specifically as follows:

[0173] The target time type is corrected according to the light-emitting brightness of the device and the information corresponding to the current scene, and the corrected target time type is obtained.

[0174] It can be seen that the implementation Figure 5 The described intelligent control device can further correct the current solar term information, the weather forecast information of the day, and the light-emitting brightness of the device to the time type, which can further improve the determination accuracy and reliability of the time type, and further improve the determination accuracy and reliability of the voice wake-up manner of the air conditioning device.

[0175] In another optional embodiment, as Figure 5 shown, the device further includes:

[0176] The second determination module 404 is configured to determine the number of times that the light brightness information of the current scene collected by the photosensitive sensing module corresponding to the air conditioning device is acquired within a first preset time period before the control module 403 performs the wake-up operation on the voice device of the air conditioning device according to the voice wake-up manner, so that the voice device detects the voice control information triggered by the personnel in the current scene for the air conditioning device, and the starting time of the first preset time period is the time when the light brightness information of the current scene corresponding to the time type of the night time type is first acquired on the current day.

[0177] The judgment module 405 is configured to determine whether the number of times is greater than or equal to the determined number of times threshold, and when it is determined that the number of times is greater than or equal to the number of times threshold, the control module 403 is triggered to perform the wake-up operation on the voice device of the air conditioning device according to the voice wake-up manner, so that the voice device detects the voice control information triggered by the personnel in the current scene for the air conditioning device.

[0178] It can be seen that the implementation Figure 5 The described intelligent control device can perform the wake-up operation on the voice device of the air conditioning device when the light brightness information of the current scene collected by the photosensitive sensing module is acquired multiple times at night, which can improve the accuracy and reliability of the wake-up operation on the voice device of the air conditioning device, further reduce the occurrence of false wake-up of the voice device of the air conditioning device or false control of the air conditioning device caused by false wake-up of the voice device of the air conditioning device, and further reduce the occurrence of false control of the air conditioning device that affects the user, such as affecting the sleep of the user.

[0179] In another optional embodiment, as Figure 5 shown, the device further includes:

[0180] The collection module 406 is configured to collect information of the person in the area of the air conditioning device in the current scene when the judgment module 405 judges that the number of times is less than the threshold value, and the information of the person includes the body temperature of the person and the duration of the person in the area of the air conditioning device.

[0181] The judgment module 405 is further configured to judge whether the duration of the person in the area of the air conditioning device is greater than or equal to the determined duration threshold value.

[0182] The second determination module 404 is further configured to determine the collection time of the information of the person when the judgment module 405 judges that the duration is greater than or equal to the duration threshold value.

[0183] The acquisition module 401 is further configured to acquire a historical time period matching the collection time, and the historical time period matching the collection time is determined based on the same time of each day in the preset days before the current day.

[0184] The second determination module 404 is further configured to determine the historical body temperature of the person in the historical time period.

[0185] The judgment module 405 is further configured to judge whether the body temperature of the person and the historical body temperature of the person match, and when it is judged that the body temperature of the person and the historical body temperature of the person do not match, trigger the control module 403 to perform the wake-up operation on the voice device of the air conditioning device according to the voice wake-up mode, so that the voice device detects the voice control information triggered by the person in the current scene for the air conditioning device.

[0186] It can be seen that the implementation Figure 5 The described intelligent control device can also adaptively perform the wake-up operation on the voice device of the air conditioning device when it is judged that the number of times of acquiring the light brightness information of the current scene collected by the photosensitive sensing module in the evening is small, and when it is judged that the duration of the person staying in the area of the air conditioning device is long and the current body temperature of the person is greatly different from the historical body temperature at the same time, which can facilitate the person to interact with the air conditioning device through the voice device, thereby improving the control flexibility of the air conditioning device, enriching the intelligent function of the intelligent control device, and improving the experience of the user.

[0187] In another optional embodiment, as Figure 5 shown, the device further comprises:

[0188] The detection module 407 is configured to detect whether a voice control instruction triggered for the air conditioning device is received before the control module 403 performs the wake-up operation on the voice device of the air conditioning device according to the voice wake-up mode, so that the voice device detects the voice control information triggered by the person in the current scene for the air conditioning device.

[0189] The third determination module 408 is configured to determine the number of voice control instructions received in the second preset time period when the detection result is yes.

[0190] The detection module 407 is further configured to determine whether the number of received voice control instructions is greater than or equal to the determined instruction number threshold, and the start time of the second preset time period is the time when the voice wake-up mode matching the light brightness information of the current scene is determined; when the determination result is yes, the control module 403 is triggered to perform the wake-up operation on the voice device of the air conditioning equipment according to the voice wake-up mode, so as to enable the voice device to detect the voice control information triggered by the personnel for the air conditioning equipment in the current scene.

[0191] It can be seen that the implementation Figure 6 The described intelligent control device can further perform the wake-up operation on the voice device of the air conditioning equipment after determining the voice wake-up mode matching the current time, and after receiving the voice control instructions triggered for the air conditioning equipment multiple times, which can improve the accuracy and reliability of the wake-up operation on the voice device of the air conditioning equipment, facilitate the personnel to control the air conditioning equipment through the voice device, and reduce the power consumption of the air conditioning equipment.

[0192] Embodiment four

[0193] Please refer to Figure 6 , Figure 6 is another structure schematic diagram of the intelligent control device of the air conditioning equipment disclosed by the embodiment of the application. The control device includes any one of the air conditioning equipment, the cloud server of the air conditioning equipment, and the platform of the air conditioning equipment. The intelligent control device can be in communication connection with other smart devices (such as a smart sweeper, a smart lamp, etc.) in the current scene and a user terminal. As Figure 7 indicated, the device can include:

[0194] a memory 601 storing executable program codes;

[0195] a processor 602 coupled with the memory 601;

[0196] Further, it can further include an input interface 603 and an output interface 604 coupled with the processor 602;

[0197] The processor 602 calls the executable program codes stored in the memory 601 to execute part or all of the steps of the intelligent control method of the air conditioning equipment disclosed in the embodiment one or the embodiment two.

[0198] Embodiment five

[0199] The embodiment of the present application discloses a computer storage medium, which stores computer instructions, and when the computer instructions are invoked, part or all of the steps of the intelligent control method of the air conditioning equipment disclosed in the embodiment one or the embodiment two are executed.

[0200] Embodiment six

[0201] Please refer to Figure 7 , Figure 7 is a structural schematic diagram of the air conditioning equipment disclosed by the embodiment of the present application. As shown in Figures 4-6 , the air conditioning equipment can include ​ the intelligent control device of the air conditioning equipment described in any one of the embodiments, and the air conditioning equipment is used to execute part or all of the steps of the intelligent control method of the air conditioning equipment disclosed in the embodiment one or the embodiment two.

[0202] The device embodiments described above are only schematic, wherein the modules described as separate components can or can not be physically separated, and the components displayed as modules can or can not be physical modules, that is, they can be located in one place or distributed on multiple network modules. Part or all of the modules can be selected to achieve the purpose of the embodiment scheme according to actual needs. Those skilled in the art can understand and implement without creative labor.

[0203] Those skilled in the art can clearly understand the implementation of the various embodiments by means of software and necessary general hardware platforms through the above specific description of the embodiments, and of course, the embodiments can also be implemented by hardware. Based on such understanding, the above technical solutions, essentially or in other words, the part of the prior art that contributes to the present application can be embodied in the form of a software product. The computer software product can be stored in a computer readable storage medium, including a read-only memory (ROM), a random access memory (RAM), a programmable read-only memory (PROM), an erasable programmable read-only memory (EPROM), a one-time programmable read-only memory (OTPROM), an electrically erasable programmable read-only memory (EEPROM), a compact disc read-only memory (CD-ROM) or other optical disk storage, a magnetic disk storage, a magnetic tape storage, or any other medium that can be used to carry or store data in a computer readable manner.

[0204] Finally, it should be noted that: the intelligent control method and device of the air conditioning equipment and the air conditioning equipment disclosed by the embodiments of the present application are only the preferred embodiments of the present application, and are used to illustrate the technical solutions of the present application, but not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that; the technical solutions recorded in the foregoing embodiments can still be modified, or some technical features can be replaced by equivalents; and these modifications or replacements do not make the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. A method for intelligent control of an air conditioning device, characterized in that, The method includes: Obtain the light brightness information of the current scene collected by the photosensitive sensing module corresponding to the air conditioning equipment in the current scene; Based on the light intensity information of the current scene, determine a voice wake-up method that matches the light intensity information of the current scene; According to the voice wake-up method, the voice device of the air conditioner is woken up so that the voice device can detect the voice control information triggered by the person in the current scene for the air conditioner. Before the voice device of the air conditioner is woken up according to the voice wake-up method, so that the voice device detects voice control information triggered by a person in the current scene for the air conditioner, the method further includes: The number of times the light brightness information of the current scene collected by the photosensitive sensing module corresponding to the air conditioning device is obtained within the first preset time period is determined. The start time of the first preset time period is the moment when the light brightness information of the current scene with the corresponding time type of night is first obtained on the same day. Determine whether the number of times is greater than or equal to a determined number of times threshold. When it is determined that the number of times is greater than or equal to the number of times threshold, perform the wake-up operation on the voice device of the air conditioner according to the voice wake-up method, so that the voice device can detect the operation of the voice control information triggered by the person in the current scene on the air conditioner. When it is determined that the number of occurrences is less than the threshold, information about the people in the current scene who are in the area where the air conditioning equipment is located is collected. The information about the people includes their body temperature and the duration of their presence in the area where the air conditioning equipment is located. Determine whether the duration of the person's stay in the area where the air conditioning equipment is located is greater than or equal to a determined duration threshold. If it is determined that the duration is greater than or equal to the duration threshold, determine the time when the person's information is collected. Obtain the historical time period that matches the collection time. The historical time period that matches the collection time is determined based on the same time as the collection time in each of the preset days before the current day. Determine the historical body temperature of the person within the historical time period, and determine whether the person's current body temperature matches the person's historical body temperature. If a mismatch is found, execute the wake-up operation on the voice device of the air conditioning equipment according to the voice wake-up method, so that the voice device can detect the voice control information triggered by the person in the current scene for the air conditioning equipment.

2. The intelligent control method for air conditioning equipment according to claim 1, characterized in that, The step of determining a voice wake-up method that matches the current scene's light intensity information includes: Based on the light intensity information of the current scene, a target time type that matches the light intensity information of the current scene is determined, and the target time type includes daytime type or nighttime type; Based on the target time type, analyze the voice wake-up method that matches the light brightness information of the current scene; The step of determining the target time type that matches the current scene's light intensity information based on the current scene's light intensity information includes: Based on the light intensity information of the current scene, the current time of the current scene is determined, and based on the current time of the current scene, a time type that matches the current time of the current scene is determined as the target time type that matches the light intensity information of the current scene.

3. The intelligent control method for air conditioning equipment according to claim 2, characterized in that, Before analyzing the voice wake-up method that matches the light brightness information of the current scene based on the target time type, the method further includes: The system collects information on the operation of devices capable of emitting light in the current scene, and determines the luminous intensity of the devices based on their operation. Based on the luminance of the device, the target time type is corrected to obtain the corrected target time type; The step of analyzing the voice wake-up method that matches the light brightness information of the current scene based on the target time type includes: Based on the corrected target time type, analyze the voice wake-up method that matches the light brightness information of the current scene.

4. The intelligent control method for air conditioning equipment according to claim 3, characterized in that, The method further includes: Obtain information corresponding to the current scene, including the weather forecast for the day and the current solar term information; The step of correcting the target time type based on the luminance of the device to obtain the corrected target time type includes: Based on the luminance of the device and the information corresponding to the current scene, the target time type is corrected to obtain the corrected target time type.

5. The intelligent control method for air conditioning equipment according to claim 1, characterized in that, Before the voice device of the air conditioner is woken up according to the voice wake-up method, so that the voice device detects voice control information triggered by a person in the current scene for the air conditioner, the method further includes: Detect whether a voice control command triggered for the air conditioning device is received. When the detection result is yes, determine the number of times the voice control command is received within the second preset time period, and determine whether the number of times the voice control command is received is greater than or equal to the determined command count threshold. The start time of the second preset time period is the time when the voice wake-up method that matches the light brightness information of the current scene is determined. When the judgment result is yes, the voice device of the air conditioner is woken up according to the voice wake-up method, so that the voice device can detect the voice control information triggered by the person in the current scene for the air conditioner.

6. An intelligent control device for an air conditioning unit, characterized in that, The device is used to implement the intelligent control method for air conditioning equipment as described in any one of claims 1-5, and the device comprises: The acquisition module is used to acquire the light brightness information of the current scene collected by the photosensitive sensing module corresponding to the air conditioning equipment in the current scene; The first determining module is used to determine a voice wake-up method that matches the light brightness information of the current scene based on the light brightness information of the current scene. The control module is used to perform a wake-up operation on the voice device of the air conditioner according to the voice wake-up method, so that the voice device can detect the voice control information triggered by the person in the current scene for the air conditioner.

7. An air conditioning device, characterized in that, The air conditioning equipment is used to perform the intelligent control method for the air conditioning equipment as described in any one of claims 1-5.

8. An intelligent control device for an air conditioning unit, 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 intelligent control method for the air conditioning equipment as described in any one of claims 1-5.

Citation Information

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