Air conditioning operation control method, device, electronic device and storage medium

The air conditioning equipment automatically adjusts the operating mode according to the user's position, which solves the problem of users frequently adjusting the air conditioner and improves the user experience and satisfaction.

CN115264894BActive Publication Date: 2025-08-19QINGDAO HAIER AIR CONDITIONER GENERAL CORP LTD
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Patent Information

Application Number
CN202210865528.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-07-21
Publication Date
2025-08-19
Estimated Expiration
2042-07-21

AI Technical Summary

Technical Problem

Users need to frequently adjust the operating mode of the air conditioner at the placement of the air conditioner equipment to affect the user experience.

Method used

The air-conditioning equipment automatically adjusts the operating mode according to the target position of the user, including determining the position relationship and wind speed, swinging method of swaying blades, swinging method of vertical swinging blades and operating temperature, obtaining the user's position through the camera and acquisition device or infrared detection module, and using a thermal sensing device to monitor the body surface temperature to adjust the temperature in real time.

Benefits of technology

It avoids users from frequently adjusting the air conditioning mode, and improves users' experience and satisfaction in any location.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides an air conditioner operation control method, device, electronic device, and storage medium. The air conditioner operation control method is applied to an air conditioner and includes: obtaining at least one target location of a user, when the air conditioner is installed in a preset location; and automatically adjusting the operating mode of the air conditioner based on the target location. The air conditioner operation control method provided by the present invention can automatically adjust the operating mode of the air conditioner based on the user's target location, eliminating the need for the user to frequently adjust the operating mode of the air conditioner at the location where the air conditioner is installed, thereby ensuring a good user experience regardless of the user's location.
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Description

Technical Field

[0001] The present invention relates to the technical field of air conditioning equipment, and in particular to an air conditioning operation control method, device, electronic equipment and storage medium. Background Art

[0002] With the improvement of people's living standards and the continuous development of science and technology, air conditioning equipment has emerged as an electrical appliance that can regulate indoor temperature. In hot or cold weather, air conditioning equipment can adjust the room temperature and improve the user's living experience.

[0003] For a home, users often choose a single air conditioner to meet their entire home's cooling or heating needs. However, the user's location relative to the unit during operation can affect their experience of adjusting the indoor temperature. To meet their needs, users must frequently visit the unit's location to adjust its operating mode. Summary of the Invention

[0004] The present invention provides an air-conditioning operation control method, device, electronic device and storage medium, which realize intelligent adjustment of the operation mode of the air-conditioning equipment according to the user's target location, avoiding the user from frequently adjusting the operation mode of the air-conditioning equipment at the placement location, so that the user can have a good experience in any location.

[0005] The present invention provides an air-conditioning operation control method, which is applied to air-conditioning equipment. The method includes: when the air-conditioning equipment is installed in a preset position, obtaining at least one target position of a user; and automatically adjusting the operation mode of the air-conditioning equipment based on the target position.

[0006] According to an air-conditioning operation control method provided by the present invention, the operation mode of the air-conditioning device is automatically adjusted based on the target position, specifically including: when it is determined that the air-conditioning device and the user are in the same space based on the target position, determining a first positional relationship between the target position and the preset position in the same space; and automatically adjusting the operation mode of the air-conditioning device based on the first positional relationship.

[0007] According to an air-conditioning operation control method provided by the present invention, the operation mode of the air-conditioning equipment is automatically adjusted based on the first position relationship, specifically including: determining the first target orientation of the target position relative to the preset position based on the first position relationship; when the target position is located at the first target orientation of the preset position, automatically operating the air-conditioning equipment according to one or more of a first wind speed, a first horizontal blade swing mode, a first vertical blade swing mode and a first operating temperature, wherein the first vertical blade swing mode includes a first vertical blade swing direction, and the first vertical blade swing direction is opposite to the first target orientation.

[0008] According to an air conditioning operation control method provided by the present invention, the air conditioning equipment also includes a thermal sensing device; the first operating temperature is determined by: real-time monitoring of the user's body surface temperature based on the thermal sensing device; and real-time adjustment of the first operating temperature based on the user's body surface temperature.

[0009] According to an air-conditioning operation control method provided by the present invention, the operation mode of the air-conditioning device is automatically adjusted based on the target position, specifically including: when it is determined based on the target position that the air-conditioning device and the user are not in the same space, determining a second positional relationship between the target position and the preset position when they are not in the same space; and automatically adjusting the operation mode of the air-conditioning device based on the second positional relationship.

[0010] According to an air-conditioning operation control method provided by the present invention, the operation mode of the air-conditioning equipment is automatically adjusted based on the second position relationship, specifically including: determining the second target orientation of the target position relative to the preset position based on the second position relationship; when the target position is located at the second target orientation of the preset position, automatically operating the air-conditioning equipment according to one or more of a second wind speed, a second horizontal blade swinging mode, a second vertical blade swinging mode and a second operating temperature, wherein the second vertical blade swinging mode includes a second vertical blade swinging direction, and the second vertical blade swinging direction is the same as the second target orientation.

[0011] According to an air-conditioning operation control method provided by the present invention, the operation mode of the air-conditioning equipment is automatically adjusted based on the target position, specifically including: when it is determined that the air-conditioning equipment and some users are in the same space based on the target position, the air-conditioning equipment is automatically operated according to one or more of a third wind speed, a third horizontal swing blade swing mode, a third vertical swing blade swing mode and a third operating temperature.

[0012] The present invention also provides an air-conditioning operation control device, which is applied to air-conditioning equipment. The device includes: an acquisition module, which is used to obtain at least one target position of the user when the air-conditioning equipment is installed in a preset position; and an adjustment module, which is used to automatically adjust the operation mode of the air-conditioning equipment based on the target position.

[0013] The present invention also provides an electronic device, comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein when the processor executes the program, the air conditioning operation control method as described above is implemented.

[0014] The present invention also provides a non-transitory computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements any of the above-described air-conditioning operation control methods.

[0015] The present invention also provides a computer program product, comprising a computer program, wherein when the computer program is executed by a processor, the air conditioning operation control method as described above is implemented.

[0016] The air conditioning operation control method, device, electronic device and storage medium provided by the present invention can automatically adjust the operation mode of the air conditioning device according to the user's target position when the air conditioning device is installed at a preset position, thereby avoiding the user from frequently adjusting the operation mode of the air conditioning at the placement location of the air conditioning device, so that the user can have a good experience in any position. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] In order to more clearly illustrate the technical solutions in the present invention or the prior art, a brief introduction is given below to the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0018] Figure 1 This is one of the flow charts of the air conditioning operation control method provided by the present invention;

[0019] Figure 2 This is one of the flow charts for automatically adjusting the operating mode of an air-conditioning device based on a target position provided by the present invention;

[0020] Figure 3 It is a schematic diagram of a process for automatically adjusting the operating mode of an air-conditioning device based on a first position relationship provided by the present invention;

[0021] Figure 4 is a schematic diagram of a process for determining a first operating temperature provided by the present invention;

[0022] Figure 5 This is the second flow chart of the air conditioning operation control method provided by the present invention;

[0023] Figure 6 It is a schematic diagram of a process for automatically adjusting the operating mode of the air-conditioning device based on the second position relationship provided by the present invention;

[0024] Figure 7 This is the third flow chart of the air conditioning operation control method provided by the present invention;

[0025] Figure 8 It is a structural diagram of the air-conditioning operation control device provided by the present invention;

[0026] Figure 9 It is a structural schematic diagram of the electronic device provided by the present invention. DETAILED DESCRIPTION

[0027] To make the objectives, technical solutions, and advantages of the present invention more clear, the technical solutions of the present invention will be clearly and completely described below in conjunction with the accompanying drawings. Obviously, the embodiments described are only some of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts shall fall within the scope of protection of the present invention.

[0028] The air conditioning operation control method provided by the present invention can be applied to air conditioning equipment, where the air conditioning equipment can be wall-mounted or cabinet-type. This embodiment does not specifically limit the air conditioning equipment. It is understood that the air conditioning equipment can be intelligently networked, and the air conditioning operation control method provided by the present invention can be implemented based on an application connected to the air conditioning equipment to improve user experience and satisfaction.

[0029] Figure 1 This is one of the flow charts of the air conditioning operation control method provided by the present invention.

[0030] In an exemplary embodiment of the present invention, Figure 1 It can be seen that the air-conditioning operation control method may include step 110 and step 120, and each step will be introduced below.

[0031] In step 110 , when the air conditioning equipment is installed at a preset location, at least one target location of the user is obtained.

[0032] In one embodiment, the air conditioning device may further include a video capture device. During use, the user's target location may be obtained based on the video capture device. In another embodiment, the air conditioning device may further include an infrared detection module. During use, the user's target location may also be obtained based on the infrared detection module.

[0033] In step 120 , the operating mode of the air conditioning device is automatically adjusted based on the target location.

[0034] In one embodiment, when the air-conditioning equipment is installed at a fixed location, when the user is at one or more target locations, it is necessary to automatically adjust the operating mode of the air-conditioning equipment in combination with the target locations, thereby avoiding the user from frequently adjusting the operating mode of the air-conditioning equipment at the placement location, so that the user can have a good experience at any location.

[0035] It should be noted that the preset location can be determined based on actual circumstances and is not specifically limited in this embodiment. In one example, for a house, the air conditioner may be installed in the living room. The user can rest in the bedroom or the living room, meaning the user's target location can be either the bedroom or the living room.

[0036] Continuing with the example of the embodiment described above, in the scenario of using air-conditioning equipment, if you frequently go to the placement location of the air-conditioning equipment to manually adjust the operating mode of the air-conditioning equipment, it will bring a bad experience to the user. For example, in a night scenario, when the air-conditioning equipment is placed in the living room and the user lives in the bedroom (corresponding to the user's target location in the bedroom), that is, in the scenario where the bedroom is cooled by the air-conditioning equipment in the living room, due to the large spatial span, if the air-conditioning operating mode cannot be adjusted automatically, the user needs to frequently go to the living room to adjust the operating mode of the air-conditioning equipment, which in turn brings a bad experience to the user. In another example, when the air-conditioning equipment is placed in the living room and the user lives in the living room (corresponding to the user's target location in the living room), that is, in the scenario where the living room is cooled by the air-conditioning equipment in the living room, if you frequently get up to adjust the operating mode of the air-conditioning equipment, it will also bring a bad experience to the user.

[0037] The air-conditioning operation control method provided by the present invention can automatically adjust the operation mode of the air-conditioning device according to the user's target position when the air-conditioning device is installed in a preset position, thereby avoiding the user from frequently going to the placement location of the air-conditioning device to adjust the operation mode of the air-conditioning, so that the user can have a good experience in any position.

[0038] Figure 2 This is one of the flow charts for automatically adjusting the operating mode of an air-conditioning device based on a target position provided by the present invention.

[0039] The following will be combined Figure 2 The process of the air-conditioning operation control method provided by the present invention is described.

[0040] In an exemplary embodiment of the present invention, Figure 2It can be seen that automatically adjusting the operating mode of the air-conditioning device based on the target position may include step 210 and step 220, and each step will be described below.

[0041] In step 210 , when it is determined based on the target position that the air-conditioning device and the user are in the same space, a first positional relationship between the target position and the preset position in the same space is determined.

[0042] In step 220 , the operating mode of the air conditioning device is automatically adjusted based on the first positional relationship.

[0043] In one embodiment, the positional relationship between the user and the air-conditioning device can be determined based on the target position and the preset position of the air-conditioning device. In one example, when the air-conditioning device and the user are determined to be in the same space based on the target position, for example, the air-conditioning device and the user are both in the living room, a first positional relationship between the target position and the preset position in the same space can be further determined. Furthermore, the operating mode of the air-conditioning device can be automatically adjusted based on the first positional relationship so that the operating mode of the air-conditioning device meets the needs of the user, avoiding the user from frequently going to the location where the air-conditioning device is placed to adjust the operating mode of the air-conditioning device, thereby improving the user experience and satisfaction.

[0044] In order to further introduce the air conditioning operation control method provided by the present invention, the following Figure 3 Provide explanation.

[0045] Figure 3 It is a flow chart of automatically adjusting the operating mode of the air-conditioning equipment based on the first position relationship provided by the present invention.

[0046] In an exemplary embodiment of the present invention, Figure 3 It can be seen that based on the first position relationship, automatically adjusting the operating mode of the air-conditioning device may include step 310 and step 320, and each step will be described below.

[0047] In step 310 , a first target orientation of the target position relative to the preset position is determined based on the first position relationship.

[0048] In one example, continuing with the previously described embodiment where both the air conditioner and the user are located in the living room, when it is determined that both the air conditioner and the user are located in the living room, the positional relationship between the user and the air conditioner in the living room (corresponding to a first positional relationship) can be further determined based on the target position. Based on the first positional relationship, a first target orientation of the target position relative to the preset position can be determined. For example, the user and the air conditioner are both in the living room, and the user is located to the left or right of the air conditioner.

[0049] In step 320, when the target position is located at the first target orientation of the preset position, the air-conditioning equipment is automatically operated according to one or more of the first wind speed, the first horizontal blade swing mode, the first vertical blade swing mode and the first operating temperature, wherein the first vertical blade swing mode includes a first vertical blade swing direction, and the first vertical blade swing direction is opposite to the first target orientation.

[0050] The first wind speed, the first swing blade swing mode, and the first operating temperature can be preset. It is understandable that the first wind speed, the first swing blade swing mode, and the first operating temperature can also be adjusted according to actual conditions and are not specifically limited in this embodiment.

[0051] It should be noted that when the user and the air-conditioning equipment are in the same space, for example, both are in the living room, in order to ensure that the wind discharged by the air-conditioning equipment does not blow directly onto the user, the swing direction of the first vertical swing blade can be set to be opposite to the first target direction.

[0052] In one example, when it is determined that the user's target position is located to the left of the preset position of the air-conditioning device, the swing direction of the first vertical swing blade of the air-conditioning device can be automatically adjusted to swing to the right.

[0053] In another example, if the user's target location is determined to be to the right of the air conditioner's preset position, the air conditioner's first vertical swing blade can be automatically adjusted to swing leftward. This effectively prevents the air from being blown directly onto the user, thereby preventing a negative user experience.

[0054] In another embodiment, the first wind speed, the first transverse blade swinging mode, the first vertical blade swinging mode and the first operating temperature can all be set in a gradient according to the operating time of the air-conditioning equipment.

[0055] In one example, since the period between 10:00 and 12:00 PM is a light sleep phase, the human body requires an environment that quickly meets cooling needs. Therefore, the goal during this phase is to quickly cool down the body. In one example, the first wind speed can be set to medium wind, and the first horizontal blade swing mode can be set to horizontal blowing.

[0056] In another example, between midnight and 2 a.m., the human body enters a rest and detoxification period. Therefore, the temperature should not be too high or too low, and the wind speed should not be too high, prioritizing stable operation. In one example, the first wind speed can be set to low, and the first horizontal blade swing mode can be set to flat blowing.

[0057] In another example, since the human immune system is at its lowest between 2 a.m. and 4 a.m., people are more susceptible to colds and are more sensitive to temperature and sound, the system is operated at a relatively high temperature and low speed. In one example, the first wind speed can be set to low, the first horizontal blade swing mode can be set to top blowing (to prevent direct blowing), and the first vertical blade swing mode can be set to automatic swing.

[0058] In another example, 4:00 AM to 6:00 AM is the pre-wake-up period. Therefore, temperature control is primarily used. In another example, the first wind speed can be set to medium wind, the first horizontal blade swing mode can be set to flat blowing, and the first vertical blade swing mode can be set to automatic swing.

[0059] Figure 4 It is a schematic diagram of a flow chart for determining the first operating temperature provided by the present invention.

[0060] In an exemplary embodiment of the present invention, the air conditioning device may further include a thermal sensing device. Figure 4 It can be seen that the process of determining the first operating temperature may include steps 410 and 420, and each step will be described below.

[0061] In step 410 , the user's body surface temperature is monitored in real time based on a thermal sensing device.

[0062] In step 420 , the first operating temperature is adjusted in real time based on the user's body surface temperature.

[0063] In one embodiment, when the user's body surface temperature is low, the user requires the operating temperature of the air-conditioning device (corresponding to the first operating temperature) to be relatively high. When the user's body surface temperature is high, the user requires the operating temperature of the air-conditioning device (corresponding to the first operating temperature) to be relatively low. During application, the user's body surface temperature can be monitored in real time based on the thermal sensing device, and the first operating temperature of the air-conditioning device can be adjusted in real time based on the user's body surface temperature, so that the operating mode of the air-conditioning device meets the user's physiological needs and improves the user experience.

[0064] In another example, other temperature acquisition modules may be provided in the air-conditioning device, and the user's body surface temperature may be acquired in real time through the temperature acquisition module, and then the first operating temperature may be adjusted in real time based on the user's body surface temperature.

[0065] It should be noted that, for the air-conditioning equipment, the air-conditioning equipment can automatically memorize the first wind speed, the first horizontal swing blade swing mode, the first vertical swing blade swing mode and the first operating temperature adjusted by the user for the last time.

[0066] Through the above-mentioned embodiments, the first wind speed, the first horizontal swing blade swing mode, the first vertical swing blade swing mode and the first operating temperature can be set in a gradient according to the operating time of the air-conditioning equipment, and then the operating mode of the air conditioner can be set from multiple modes, so that the operating mode of the air conditioner can better meet the physiological needs of the user, thereby improving the user experience and satisfaction.

[0067] In order to further introduce the air conditioning operation control method provided by the present invention, the following Figure 5 Provide explanation.

[0068] In an exemplary embodiment of the present invention, Figure 5 It can be seen that the air conditioning operation control method may include steps 510 to 560, wherein step 510 is the same as or similar to step 110, and steps 520 to 530 are the same as or similar to steps 210 to 230. For its specific implementation and beneficial effects, please refer to the previous description, which will not be repeated in this embodiment. Steps 540 to 560 will be introduced separately below.

[0069] In step 540 , when it is determined based on the target position that the air conditioning device and the user are not in the same space, a second positional relationship between the target position and the preset position when they are not in the same space is determined.

[0070] In step 550 , the operating mode of the air conditioning device is automatically adjusted based on the second positional relationship.

[0071] In one embodiment, the positional relationship between the user and the air-conditioning device can be determined based on the target position and the preset position of the air-conditioning device. In one example, when it is determined based on the target position that the air-conditioning device and the user are not in the same space, a second positional relationship between the target position and the preset position when they are not in the same space can be further determined. Furthermore, based on the second positional relationship, the operating mode of the air-conditioning device can be automatically adjusted to meet the user's needs, thereby avoiding the user having to frequently go to the location of the air-conditioning device to adjust the operating mode, thereby improving the user's experience and satisfaction.

[0072] Figure 6 It is a flow chart of automatically adjusting the operating mode of the air-conditioning equipment based on the second position relationship provided by the present invention.

[0073] The following will be combined Figure 6 The process of automatically adjusting the operating mode of the air-conditioning device based on the second positional relationship is described.

[0074] In an exemplary embodiment of the present invention, Figure 6 It can be seen that based on the second positional relationship, automatically adjusting the operating mode of the air-conditioning device may include step 610 and step 620, and each step will be described below.

[0075] In step 610 , based on the second position relationship, a second target orientation of the target position relative to the preset position is determined.

[0076] In one example, when it is determined that the air conditioner and the user are not in the same space, for example, the air conditioner is set up in the living room and the user is in the bedroom (corresponding to the target position), the positional relationship between the user and the air conditioner when they are not in the same space (corresponding to a second positional relationship) can be further determined based on the target position. Based on the second positional relationship, a second target orientation of the target position relative to the preset position can be determined. For example, the user is in the bedroom and the air conditioner is in the living room, and the user is located to the left or right of the air conditioner.

[0077] In step 620, when the target position is at the second target orientation of the preset position, the air-conditioning equipment is automatically operated according to one or more of the second wind speed, the second horizontal blade swing mode, the second vertical blade swing mode and the second operating temperature, wherein the second vertical blade swing mode includes a second vertical blade swing direction, and the second vertical blade swing direction is the same as the second target orientation.

[0078] It should be noted that the second wind speed, the second transverse blade swing mode, the second vertical blade swing mode, and the second operating temperature can be preset. It is understood that the second wind speed, the second transverse blade swing mode, the second vertical blade swing mode, and the second operating temperature can also be adjusted according to actual conditions and are not specifically limited in this embodiment.

[0079] Since the bedroom temperature will be regulated by the air conditioner located in the living room, the swing direction of the second vertical blade in the second vertical blade swing mode will be adjusted based on the positional relationship between the preset position of the air conditioner and the user's target position (corresponding to the bedroom position described above), for example, if the bedroom is located on the left or right side of the air conditioner. During the application process, the swing direction of the second vertical blade can be set to the same as the target position, thereby better achieving the air guide effect and quickly lowering the bedroom temperature.

[0080] In one embodiment, the second wind speed, the second transverse blade swinging mode, the second vertical blade swinging mode and the second operating temperature can all be set in a gradient according to the operating time of the air-conditioning equipment.

[0081] During application, the operating mode of the air-conditioning equipment can be controlled in different time periods.

[0082] In one example, since the period between 10:00 and 12:00 PM is a light sleep phase, the human body requires an environment that quickly meets cooling needs. Therefore, the goal during this phase is to quickly cool down the body. In one example, the second wind speed can be set to strong wind, and the second horizontal blade swing mode can be set to flat blowing.

[0083] In another example, between midnight and 2 a.m., the human body enters a rest and detoxification period. Therefore, the temperature should not be too high or too low, and the wind speed should not be too high, prioritizing stable operation. In another example, the second wind speed can be set to medium wind, and the second horizontal blade swing mode can be set to flat blowing.

[0084] In another example, since the human immune system is at its lowest between 2 a.m. and 4 a.m., making people more susceptible to colds and more sensitive to temperature and sound, the fan is operated at a relatively high temperature and low speed. In another example, the second wind speed can be set to low, the second horizontal blade swing mode can be set to top blow, and the second vertical blade swing mode can be set to automatic swing.

[0085] In another example, 4:00 AM to 6:00 AM is the pre-wake-up period. Therefore, temperature control is primarily used. In another example, the second wind speed can be set to medium wind, the second horizontal blade swing mode can be set to flat blowing, and the second vertical blade swing mode can be set to automatic swing.

[0086] In another embodiment, the second operating temperature can also be determined based on the target temperature set by the user. In the application process, since the air-conditioning equipment and the user are not in the same space, for example, the air-conditioning equipment in the living room is used to cool the bedroom, the space span is relatively large. For the cooling scenario, if the user sets the target temperature to T 目标 , then the actual operating temperature of the air-conditioning equipment is T 实际 (corresponding to the second operating temperature) will be lower than T 目标 For heating scenarios, if the user sets the target temperature to T 目标 , then the actual operating temperature of the air-conditioning equipment is T 实际 (corresponding to the second operating temperature) will be higher than T 目标 .

[0087] It is understandable that the second operating temperature (corresponding to T 实际 ) will also be controlled in different time periods. When the human body enters the rest and detoxification time or the human body's immunity is at its lowest time period, the second operating temperature will be automatically increased.

[0088] Through the above-mentioned embodiments, the second wind speed, the second horizontal swing blade swing mode, the second vertical swing blade swing mode and the second operating temperature can be set in a gradient according to the operating time of the air-conditioning equipment, ensuring that the operating mode of the air-conditioning can be set from multiple modes, so that the operating mode of the air-conditioning can better meet the physiological needs of the user, thereby improving the user experience and satisfaction.

[0089] In step 560, when it is determined based on the target position that the air-conditioning equipment and some users are in the same space, the air-conditioning equipment is automatically operated according to one or more of the third wind speed, the third horizontal blade swing mode, the third vertical blade swing mode and the third operating temperature.

[0090] Since the target position includes at least one, we continue to use the example of the air-conditioning equipment being set in the living room. When there are users resting in the living room and the bedroom, that is, the air-conditioning equipment and the users are in the same space and not in the same space at the same time (corresponding to the air-conditioning equipment and some users being in the same space), the air-conditioning equipment can be automatically operated according to one or more of the third wind speed, the third horizontal swing blade swing mode, the third vertical swing blade swing mode and the third operating temperature.

[0091] It should be noted that the third wind speed, the third transverse blade swing mode, the third vertical blade swing mode, and the third operating temperature can be preset. It is understood that the third wind speed, the third transverse blade swing mode, the third vertical blade swing mode, and the third operating temperature can be adjusted according to actual conditions and are not specifically limited in this embodiment.

[0092] In one embodiment, the third wind speed, the third transverse blade swing mode, the third vertical blade swing mode and the third operating temperature can all be set in a gradient according to the operating time of the air-conditioning equipment.

[0093] During application, the operating mode of the air-conditioning equipment can be controlled in different time periods.

[0094] In one example, the period between 10:00 and 12:00 PM is a light sleep phase, during which the human body requires an environment that quickly cools down. Therefore, the goal during this phase is to achieve rapid cooling. In one example, the third wind speed can be set to strong wind, and the third horizontal blade swing mode can be set to flat blowing.

[0095] In another example, between midnight and 2 a.m., the human body enters a rest and detoxification period. Therefore, the temperature should not be too high or too low, and the wind speed should not be too high, prioritizing stable operation. In one example, the third wind speed can be set to medium wind, and the third horizontal blade swing mode can be set to flat blowing.

[0096] In another example, since the human immune system is at its lowest between 2 a.m. and 4 a.m., people are more susceptible to colds and are more sensitive to temperature and sound, the fan is operated at a relatively high temperature and low speed. In one example, the third wind speed can be set to low, the third horizontal blade swing mode can be set to top blowing, and the third vertical blade swing mode can be set to automatic swing.

[0097] In another example, 4:00 AM to 6:00 AM is the pre-wake-up period. Therefore, temperature control is the primary focus. In another example, the third wind speed can be set to medium wind, the third horizontal blade swing mode can be set to flat blowing, and the third vertical blade swing mode can be set to automatic swing.

[0098] Through the above-mentioned embodiments, the third wind speed, the third horizontal swing blade swing mode, the third vertical swing blade swing mode and the third operating temperature can be set in a gradient according to the operating time of the air-conditioning equipment, ensuring that the operating mode of the air-conditioning can be set from multiple modes, so that the operating mode of the air-conditioning can better meet the physiological needs of the user, thereby improving the user experience and satisfaction.

[0099] In order to further introduce the air conditioning operation control method provided by the present invention, the following Figure 7 Provide explanation.

[0100] Figure 7 This is the third flow chart of the air conditioning operation control method provided by the present invention.

[0101] In an exemplary embodiment of the present invention, a living room device is installed in a living room. Furthermore, in this scenario, the user is resting on a sofa. In this application, the positional relationship between the air conditioner and the sofa can be used to determine the positional relationship between the air conditioner and the user.

[0102] Combine Figure 7 It can be seen that the air conditioner operation control method may include steps 701 to 710, and each step will be introduced below.

[0103] In step 701, when the air-conditioning equipment is installed in the living room, at least one target location of the user is obtained.

[0104] In step 702 , when the user is in the living room, the positional relationship between the sofa and the air conditioner is determined.

[0105] In step 703 , the sofa is located on the left side of the air conditioner.

[0106] In step 704 , the sofa is located on the right side of the air conditioning device.

[0107] In step 705 , the air conditioning system is operated according to logic 1 .

[0108] In step 706 , the air conditioning device is operated according to logic 2 .

[0109] Among them, operation logic 1 to logic 3 respectively set the wind speed, horizontal blade swing mode, vertical blade swing mode and operation temperature modes. Please see Table 1 for details.

[0110] In one embodiment, if the air conditioner is installed in the living room and the user is in the living room, that is, if the air conditioner and the user are in the same space, the target position of the sofa (corresponding to the target position) relative to the air conditioner (corresponding to the preset position) can be determined by determining the positional relationship between the sofa and the air conditioner. The operating mode of the air conditioner can then be automatically adjusted based on the target position.

[0111] In one example, if the sofa is determined to be on the left side of the air conditioner, the air conditioner will be operated according to Logic 2. In another example, if the sofa is determined to be on the right side of the air conditioner, the air conditioner will be operated according to Logic 1. In this embodiment, operating the air conditioner according to Logic 1 or Logic 2 can make the vertical swing blade swing in the opposite direction of the target direction. This can effectively prevent the air exhaust from the air conditioner from directly blowing on the user if the user and the air conditioner are in the same space, thereby avoiding a negative user experience.

[0112] In step 707, when the user is in the room, the positional relationship between the room and the air-conditioning device is determined.

[0113] In step 708, the room is located to the left of the air conditioning unit.

[0114] In step 709, the room is located to the right of the air conditioning unit.

[0115] In one embodiment, if the air conditioner is installed in the living room and the user is in the room, that is, if the air conditioner and the user are not in the same space, the target orientation of the room (corresponding to the target position) relative to the air conditioner (corresponding to the preset position) can be determined by determining the positional relationship between the room and the air conditioner. The operating mode of the air conditioner can then be automatically adjusted based on the target orientation.

[0116] In one example, if the room is determined to be to the left of the air conditioner, the air conditioner will be operated according to logic 1. In another example, if the room is determined to be to the right of the air conditioner, the air conditioner will be operated according to logic 2. In this embodiment, operating the air conditioner according to logic 1 or logic 2 can ensure that the swing direction of the vertical swing blade is consistent with the target orientation. This can better achieve the air guidance effect in scenarios where the user and the air conditioner are not in the same room, and thus quickly reduce the room temperature through the air conditioner in the living room.

[0117] In step 710 , when the user is in the living room and the room at the same time, the air conditioning device is operated according to logic 3 .

[0118] Since the target location can include at least one, let's continue with the example of an air conditioner installed in the living room. When users are resting in both the living room and the bedroom, that is, when the air conditioner and the user are both in the same space or not, the air conditioner can automatically operate according to Logic 3. The specific settings of Logic 1 to Logic 3 can be found in Table 1.

[0119] Table 1 Air conditioning equipment settings under different operating logics

[0120]

[0121] It should be noted that, during the application process, the operating mode of the air-conditioning equipment can be controlled in different time periods.

[0122] In one example, the light sleep phase between 10:00 and 12:00 PM requires a quick cooling environment. Therefore, the goal during this phase is to achieve rapid cooling. In one example, the wind speed can be set to strong and the horizontal blade swing mode can be set to flat.

[0123] In another example, between midnight and 2 a.m., the human body enters a resting and detoxifying period. Therefore, the temperature should not be too high or too low, and the wind speed should not be too high, prioritizing stable operation. In one example, the wind speed can be set to medium wind, and the horizontal blade swing mode can be set to flat blowing.

[0124] In another example, between 2 a.m. and 4 a.m., the human body's immunity is at its lowest, making it easy to catch a cold and sensitive to temperature and sound. Therefore, the air-conditioning equipment runs at a relatively high temperature and low speed.

[0125] In one example, the wind speed may be set to low wind, the horizontal blade swing mode may be set to top blow, and the vertical blade swing mode may be set to automatic swing.

[0126] In another example, 4:00 AM to 6:00 AM is the pre-wake-up period. Therefore, temperature control is the primary focus. In another example, the wind speed can be set to medium wind, the horizontal blade swing mode can be set to flat blow, and the vertical blade swing mode can be set to automatic swing.

[0127] According to the above description, the air-conditioning operation control method provided by the present invention can automatically adjust the operation mode of the air-conditioning equipment according to the target position of the user when the air-conditioning equipment is installed in a preset position, thereby avoiding the user from frequently adjusting the operation mode of the air-conditioning equipment at the placement location, so that the user can have a good experience in any position.

[0128] Based on the same concept, the present invention also provides an air-conditioning operation control device.

[0129] The air conditioning operation control device provided by the present invention is described below. The air conditioning operation control device described below and the air conditioning operation control method described above can be referenced to each other.

[0130] Figure 8 It is a structural schematic diagram of the air-conditioning operation control device provided by the present invention.

[0131] In an exemplary embodiment of the present invention, the air conditioning operation control device can be applied to air conditioning equipment. Figure 8 It can be seen that the air-conditioning operation control device may include an acquisition module 810 and an adjustment module 820 , and each module will be introduced below.

[0132] The acquisition module 810 may be configured to acquire at least one target location where the user is located when the air conditioning device is installed at a preset location.

[0133] The adjustment module 820 may be configured to automatically adjust the operating mode of the air conditioning device based on the target location.

[0134] In an exemplary embodiment of the present invention, the adjustment module 820 may automatically adjust the operating mode of the air conditioning device based on the target location in the following manner:

[0135] When it is determined based on the target position that the air conditioner and the user are in the same space, determining a first positional relationship between the target position and the preset position in the same space;

[0136] Based on the first position relationship, the operating mode of the air-conditioning equipment is automatically adjusted.

[0137] In an exemplary embodiment of the present invention, the adjustment module 820 may automatically adjust the operating mode of the air-conditioning device based on the first position relationship in the following manner:

[0138] Determining a first target orientation of the target position relative to the preset position based on the first position relationship;

[0139] When the target position is at the first target orientation of the preset position, the air-conditioning equipment is automatically operated according to one or more of the first wind speed, the first horizontal blade swing mode, the first vertical blade swing mode and the first operating temperature, wherein the first vertical blade swing mode includes a first vertical blade swing direction, and the first vertical blade swing direction is opposite to the first target orientation.

[0140] In an exemplary embodiment of the present invention, the air conditioning apparatus may further include a thermal sensing device;

[0141] The adjustment module 820 may determine the first operating temperature in the following manner:

[0142] Real-time monitoring of the user's body surface temperature based on a thermal sensing device;

[0143] The first operating temperature is adjusted in real time based on the user's body surface temperature.

[0144] In an exemplary embodiment of the present invention, the adjustment module 820 may automatically adjust the operating mode of the air conditioning device based on the target location in the following manner:

[0145] When it is determined based on the target position that the air conditioner and the user are not in the same space, determining a second positional relationship between the target position and the preset position when they are not in the same space;

[0146] Based on the second positional relationship, the operating mode of the air-conditioning equipment is automatically adjusted.

[0147] In an exemplary embodiment of the present invention, the adjustment module 820 may automatically adjust the operating mode of the air-conditioning device based on the second position relationship in the following manner:

[0148] determining a second target orientation of the target position relative to the preset position based on the second position relationship;

[0149] When the target position is at the second target orientation of the preset position, the air-conditioning equipment is automatically operated according to one or more of the second wind speed, the second horizontal blade swing mode, the second vertical blade swing mode and the second operating temperature, wherein the second vertical blade swing mode includes a second vertical blade swing direction, and the second vertical blade swing direction is the same as the second target orientation.

[0150] In an exemplary embodiment of the present invention, the adjustment module 820 may automatically adjust the operating mode of the air conditioning device based on the target location in the following manner:

[0151] When it is determined based on the target position that the air-conditioning equipment is in the same space as some users, the air-conditioning equipment is automatically operated according to one or more of the third wind speed, the third horizontal blade swing mode, the third vertical blade swing mode and the third operating temperature.

[0152] Figure 9 An example of a physical structure diagram of an electronic device is shown below. Figure 9As shown, the electronic device may include: a processor 910, a communication interface 920, a memory 930, and a communication bus 940, wherein the processor 910, the communication interface 920, and the memory 930 communicate with each other via the communication bus 940. The processor 910 may call logic instructions in the memory 930 to execute an air conditioning operation control method, which is applied to an air conditioning device and includes: obtaining at least one target location of a user when the air conditioning device is installed in a preset location; and automatically adjusting the operating mode of the air conditioning device based on the target location.

[0153] In addition, the logic instructions in the above-mentioned memory 930 can be implemented in the form of a software functional unit and can be stored in a computer-readable storage medium when sold or used as an independent product. Based on this understanding, the technical solution of the present invention, or the part that contributes to the prior art, or the part of the technical solution, can be embodied in the form of a software product. The computer software product is stored in a storage medium and includes several instructions for enabling a computer device (which can be a personal computer, a server, or a network device, etc.) to perform all or part of the steps of the method described in each embodiment of the present invention. The aforementioned storage medium includes: various media that can store program codes, such as a USB flash drive, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk.

[0154] On the other hand, the present invention also provides a computer program product, which includes a computer program. The computer program can be stored on a non-transitory computer-readable storage medium. When the computer program is executed by a processor, the computer can execute the air-conditioning operation control method provided by the above methods. The method is applied to air-conditioning equipment. The method includes: when the air-conditioning equipment is installed in a preset position, obtaining at least one target position of the user; based on the target position, automatically adjusting the operation mode of the air-conditioning equipment.

[0155] On the other hand, the present invention also provides a non-transitory computer-readable storage medium having a computer program stored thereon. When the computer program is executed by a processor, it is implemented to execute the air-conditioning operation control method provided by the above-mentioned methods. The method is applied to air-conditioning equipment. The method includes: when the air-conditioning equipment is installed in a preset position, obtaining at least one target position of the user; based on the target position, automatically adjusting the operation mode of the air-conditioning equipment.

[0156] The device embodiments described above are merely illustrative. The units described as separate components may or may not be physically separate, and the components shown as units may or may not be physical units, i.e., they may be located in one location or distributed across multiple network units. Some or all of the modules may be selected based on actual needs to achieve the objectives of the present embodiment. Persons of ordinary skill in the art will be able to understand and implement the present invention without inventive effort.

[0157] Through the description of the above embodiments, those skilled in the art can clearly understand that each embodiment can be implemented by means of software plus a necessary general hardware platform, or of course, by hardware. Based on this understanding, the essence of the above technical solution or the part that contributes to the existing technology can be embodied in the form of a software product. The computer software product can be stored in a computer-readable storage medium, such as ROM / RAM, a magnetic disk, an optical disk, etc., and includes a number of instructions for enabling a computer device (which can be a personal computer, a server, or a network device, etc.) to execute the methods described in each embodiment or certain parts of the embodiments.

[0158] It should be further understood that, although operations are described in a particular order in the accompanying drawings in the embodiments of the present invention, this should not be construed as requiring that the operations be performed in the particular order shown or in a serial order, or that all of the operations shown be performed to obtain the desired results. In certain circumstances, multitasking and parallel processing may be advantageous.

[0159] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present invention.

Claims

1. An air conditioning operation control method, characterized in that: The method is applied to air conditioning equipment, and the method comprises: When the air conditioning device is installed at a preset position, obtaining at least one target position where the user is located; Automatically adjusting the operating mode of the air-conditioning device based on the target position, wherein automatically adjusting the operating mode of the air-conditioning device based on the target position specifically includes: When it is determined that the air conditioner and the user are in the same space based on the target position, determining a first positional relationship between the target position and the preset position in the same space; Automatically adjusting the operating mode of the air-conditioning device based on the first position relationship; wherein automatically adjusting the operating mode of the air-conditioning device based on the first position relationship specifically includes: determining a first target orientation of the target position relative to the preset position based on the first position relationship; When the target position is located at the first target orientation of the preset position, the air-conditioning device is automatically operated according to one or more of a first wind speed, a first horizontal blade swing mode, a first vertical blade swing mode, and a first operating temperature, wherein the first vertical blade swing mode includes a first vertical blade swing direction, and the first vertical blade swing direction is opposite to the first target orientation, and the first wind speed, the first horizontal blade swing mode, the first vertical blade swing mode, and the first operating temperature are all set in a gradient according to the operating time of the air-conditioning device; wherein, The automatically adjusting the operating mode of the air-conditioning device based on the target position specifically includes: If it is determined based on the target position that the air conditioner and the user are not in the same space, determining a second positional relationship between the target position and the preset position when they are not in the same space; Automatically adjusting the operating mode of the air-conditioning device based on the second positional relationship, wherein automatically adjusting the operating mode of the air-conditioning device based on the second positional relationship specifically includes: determining a second target orientation of the target position relative to the preset position based on the second position relationship; When the target position is at the second target orientation of the preset position, the air-conditioning equipment is automatically operated according to one or more of the second wind speed, the second horizontal blade swing mode, the second vertical blade swing mode and the second operating temperature, wherein the second vertical blade swing mode includes a second vertical blade swing direction, and the second vertical blade swing direction is the same as the second target orientation, and the second wind speed, the second horizontal blade swing mode, the second vertical blade swing mode and the second operating temperature are all gradiently set according to the operating time of the air-conditioning equipment.

2. The air conditioning operation control method according to claim 1, characterized in that: The air conditioning equipment also includes a thermal sensing device; The first operating temperature is determined in the following manner: Real-time monitoring of the user's body surface temperature based on the thermal sensing device; The first operating temperature is adjusted in real time based on the user's body surface temperature.

3. The air conditioning operation control method according to claim 1, characterized in that: The automatically adjusting the operating mode of the air-conditioning device based on the target position specifically includes: When it is determined based on the target position that the air-conditioning equipment is in the same space as some users, the air-conditioning equipment is automatically operated according to one or more of a third wind speed, a third horizontal blade swing mode, a third vertical blade swing mode and a third operating temperature.

4. An air conditioning operation control device, characterized in that: The device is applied to air-conditioning equipment, and is used to implement the air-conditioning operation control method according to any one of claims 1 to 3, and the device includes: an acquisition module, configured to acquire at least one target location of a user when the air conditioning device is installed at a preset location; An adjustment module is used to automatically adjust the operating mode of the air-conditioning equipment based on the target position.

5. An electronic device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein: When the processor executes the program, the air conditioning operation control method according to any one of claims 1 to 3 is implemented.

6. A non-transitory computer-readable storage medium having a computer program stored thereon, characterized in that: When the computer program is executed by a processor, the air conditioning operation control method according to any one of claims 1 to 3 is implemented.

7. A computer program product comprising a computer program, characterized in that When the computer program is executed by a processor, the air conditioning operation control method according to any one of claims 1 to 3 is implemented.

Citation Information

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