Control method and control device for a mobile air conditioner, mobile air conditioner
By acquiring the user's body surface temperature and location, the portable air conditioner autonomously adjusts its cooling capacity and airflow parameters, solving the problem in existing technologies that cannot adjust the airflow range according to user needs and improving the user experience.
Patent Information
- Application Number
- CN202110656346.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-06-11
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2041-06-11
AI Technical Summary
Existing portable air conditioners cannot automatically adjust the airflow range according to user needs, resulting in a reduced user experience.
By acquiring the user's body surface temperature and current location, the cooling capacity, air output parameters, and motion parameters of the portable air conditioner are adjusted to precisely control the air output range and relative distance, thereby meeting the user's needs.
This technology enables portable air conditioners to autonomously adjust airflow parameters and movement based on changes in the user's body temperature and position, thereby improving user comfort and experience.
Smart Images

Figure CN113251645B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of intelligent household appliances, for example to a control method and control device for a mobile air conditioner and a mobile air conditioner. BACKGROUND
[0002] At present, mobile air conditioners are widely used in machine rooms, temporary office sites, kitchens and the like because of their fast cooling in a small or local range and the fact that they do not need to be installed and can be moved in different spaces. The existing mobile air conditioners mainly have front air outlet, oblique air outlet, side air outlet and the like. In use, different air outlet ranges are selected according to user needs. Once the user needs change, the mobile air conditioner cannot autonomously follow the user needs to adjust and control, reducing user experience.
[0003] Therefore, how to provide a mobile air conditioner with autonomous adjustment function for users is a technical problem to be solved. SUMMARY
[0004] The following presents a simplified summary of some aspects of the disclosed embodiments in order to provide a basic understanding of such embodiments. This summary is not an extensive overview of the embodiments described in detail in the following detailed description, and is intended neither to identify key or critical elements nor to delineate the scope of such embodiments. Rather, the sole purpose of this summary is to present some aspects of the embodiments in a simplified form as a prelude to the more detailed description that is presented later.
[0005] The embodiments of the present disclosure provide a control method and control device for a mobile air conditioner and a mobile air conditioner to solve the technical problem that the mobile air conditioner cannot autonomously adjust according to user needs.
[0006] In some embodiments, the mobile air conditioner comprises a first air outlet and a second air outlet, and the method comprises: acquiring a body surface temperature of a user; determining a refrigeration capacity of the mobile air conditioner and air outlet parameters of the first air outlet and the second air outlet in a case where the body surface temperature of the user is inconsistent with a preset temperature; acquiring a current position of the user; determining a movement parameter of the mobile air conditioner according to the refrigeration capacity of the mobile air conditioner and a relationship between the current position of the user and a current position of the mobile air conditioner, to adjust a relative distance between the user and the mobile air conditioner; and controlling the mobile air conditioner to adjust the refrigeration capacity and operate according to the air outlet parameters and the movement parameter.
[0007] In some embodiments, the device comprises: a first determining module configured to determine the cooling capacity of the mobile air conditioner and the air outlet parameters of the first air outlet and the second air outlet when the body surface temperature of the user is inconsistent with the preset temperature; a second obtaining module configured to obtain the current location of the user; a second determining module configured to determine the motion parameters of the mobile air conditioner according to the cooling capacity of the mobile air conditioner and the relationship between the current location of the user and the current location of the mobile air conditioner, so as to adjust the relative distance between the user and the mobile air conditioner; and a control module configured to control the mobile air conditioner to operate according to the cooling capacity, the air outlet parameters and the motion parameters.
[0008] In some embodiments, the mobile air conditioner comprises the above-mentioned control device for a mobile air conditioner.
[0009] The control method and device for a mobile air conditioner and the mobile air conditioner provided by the embodiments of the present disclosure can achieve the following technical effects:
[0010] In the embodiments of the present disclosure, the mobile air conditioner is provided with a first air outlet and a second air outlet. During use of the mobile air conditioner, the cooling capacity of the mobile air conditioner and the air outlet parameters of the first air outlet and the second air outlet are determined according to the body surface temperature of the user. Then, the motion parameters of the mobile air conditioner are determined according to the cooling capacity of the mobile air conditioner and the relationship between the current location of the user and the current location of the mobile air conditioner, so as to adjust the relative distance between the user and the mobile air conditioner. The mobile air conditioner is controlled to adjust the cooling capacity and operate according to the air outlet parameters and the motion parameters. In this way, the corresponding parameters and relative positions of the mobile air conditioner can be accurately controlled according to the body surface temperature of the user and the location of the user, so as to meet the needs of the user.
[0011] The foregoing general description and the following description are only exemplary and explanatory, and are not intended to limit the present application. BRIEF DESCRIPTION OF DRAWINGS
[0012] One or more embodiments are exemplarily illustrated by corresponding drawings, which do not constitute a limitation on the embodiments, elements with the same reference numerals in the drawings are shown as similar elements, the drawings do not constitute a proportional limitation, and wherein:
[0013] Figure 1 is a schematic diagram of a control method for a mobile air conditioner provided by the embodiments of the present disclosure;
[0014] Figure 2 is a schematic diagram of a control device for a mobile air conditioner provided by the embodiments of the present disclosure;
[0015] Figure 3is another schematic view of a control device for a mobile air conditioner provided by the embodiments of the present disclosure. DETAILED DESCRIPTION
[0016] In order to enable a more detailed understanding of the features and technical contents of the embodiments of the present disclosure, the implementation of the embodiments of the present disclosure is described in detail below with reference to the accompanying drawings, which are only used for reference and do not limit the embodiments of the present disclosure. In the following technical description, in order to facilitate explanation, a plurality of details are provided to provide a full understanding of the disclosed embodiments. However, one or more embodiments can still be implemented without these details. In other cases, well-known structures and devices can be simplified to facilitate the drawings.
[0017] The terms "first", "second", and the like in the specification and claims of the embodiments of the present disclosure and the above-described drawings are used to distinguish similar objects, and do not necessarily have to describe a specific order or sequence. It should be understood that the data thus used can be interchanged under appropriate circumstances, so that the embodiments of the present disclosure described herein can be implemented. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion.
[0018] Unless otherwise specified, the term "a plurality of" means two or more.
[0019] In the embodiments of the present disclosure, the character " / " represents an "or" relationship between the objects before and after it. For example, A / B represents: A or B.
[0020] The term "and / or" is a description of the association relationship between objects, which means that there can be three relationships. For example, A and / or B means: A or B, or, A and B, the three relationships.
[0021] In the embodiments of the present disclosure, the mobile air conditioner includes a first air outlet and a second air outlet, the first air outlet is arranged at the top of the mobile air conditioner, and the second air outlet is arranged at the front of the mobile air conditioner. The opening angle range of the air deflector of the first air outlet can be 0°-60°, and the opening angle thereof can be set to multiple gears, for example, it can be two gears, one gear is closed, and the other gear is the maximum opening angle; or it can be three gears, one gear is closed, two gears are middle opening angles, and three gears are maximum opening angles. The air deflector of the second air outlet can also be opened at multiple angles, i.e. opened at multiple gears, and usually, it can be set to upper air outlet, front air outlet and lower air outlet, the upper air outlet means that the air deflector is upward and forms a certain angle with the horizontal plane, the lower air outlet means that the air deflector is downward and forms a certain angle with the horizontal plane, and the front air outlet means that the air deflector is parallel to the horizontal plane, one gear or multiple gears can be set for the upper and lower air outlets, so that the smaller the angle between the air deflector and the horizontal plane, the larger the air volume, and through the multiple gear setting, the adjustment of different air volumes is realized. In addition, the second air outlet can also be arranged on the two side walls of the mobile air conditioner, or arranged on the side and the front, so that a larger air outlet range can be covered.
[0022] In combination Figure 1 As shown in the embodiments of the present disclosure, a control method for a mobile air conditioner is provided, the mobile air conditioner comprising a first air outlet and a second air outlet, the control method comprising:
[0023] S01, the control device of the air conditioner acquires the body surface temperature of the user.
[0024] In this embodiment, the body surface temperature of the user represents the average temperature of the human skin; the body surface temperature of the user can be detected by an infrared temperature measuring device, or a thermal imaging temperature measuring device, etc., and the detection result is sent to the control device of the mobile air conditioner. The temperature measuring device can be installed on the mobile air conditioner, or it can be installed in the space where the user is located. In addition, the body surface temperature of the user can also be detected by a wearable device such as a smart bracelet or a smart watch worn by the user, and the wearable device can send the detection result to the server of the mobile air conditioner, and the control device acquires the body surface temperature of the user from the server of the mobile air conditioner; in this way, it is helpful to accurately acquire the body surface temperature of the user.
[0025] S02, the control device determines the refrigerating capacity of the mobile air conditioner and the air outlet parameters of the first air outlet and the second air outlet when the body surface temperature of the user is inconsistent with the preset temperature.
[0026] In this embodiment, if the body surface temperature of the user is inconsistent with the preset temperature, that is, the body surface temperature of the user is higher or lower than the preset temperature, the refrigerating capacity of the mobile air conditioner and the air outlet parameters of the first air outlet and the second air outlet are adjusted; the air outlet parameters include the opening angle of the air outlet deflector, the air outlet speed, etc.; the preset temperature can be in the range of 33-34.5℃, and the preset temperature can be any value in the range. Specifically, when the body surface temperature of the user is lower than the preset temperature, it indicates that the user may feel cold, at this time, the refrigerating capacity of the mobile air conditioner needs to be reduced, and at the same time, the air outlet parameters of the air outlet are adjusted to reduce the air outlet amount so that the air outlet temperature meets the user's demand; similarly, when the body surface temperature of the user is higher than the preset temperature, it indicates that the user may feel hot, and the refrigerating capacity of the mobile air conditioner needs to be increased, and the air outlet amount of the air outlet needs to be increased.
[0027] As an example, the refrigerating capacity of the mobile air conditioner and the air outlet parameters of the first air outlet and the second air outlet can be determined according to the difference between the body surface temperature of the user and the preset temperature; for example, the body surface temperature of the user is lower than the preset temperature, and the temperature difference is 2℃, which indicates that the user feels cold, and the refrigerating capacity of the mobile air conditioner needs to be reduced, and the air outlet amount needs to be reduced, that is, the opening angle of the deflector of the air outlet is adjusted to be small, the air outlet speed is adjusted to be small, etc. In this way, the refrigerating capacity of the mobile air conditioner and the air outlet parameters can be adjusted according to the body surface temperature of the user to provide the most comfortable environment temperature for the user.
[0028] S03, the control device acquires the current position of the user.
[0029] In this embodiment, a ranging device, such as an ultrasonic ranging sensor, a laser ranging sensor, etc., can be arranged on the mobile air conditioner to obtain the distance between the user and the mobile air conditioner, and further obtain the current position of the user. In addition, the current position of the user can also be obtained through a smart wearable device with positioning function worn by the user, or a smart phone of the user, etc. The mobile air conditioner server obtains the current position information of the user through the smart device for subsequent information processing. In this way, the current position of the user can be accurately obtained.
[0030] S04, the control device determines the motion parameter of the mobile air conditioner according to the refrigerating capacity of the mobile air conditioner and the relationship between the current position of the user and the current position of the mobile air conditioner, to adjust the relative distance between the user and the mobile air conditioner.
[0031] In this embodiment, after obtaining the current position information of the user, the positional relationship between the user and the mobile air conditioner is further determined, and the motion parameter of the air conditioner is determined in combination with the refrigerating capacity of the mobile air conditioner, so as to adjust the relative positional relationship between the user and the mobile air conditioner to meet the user's demand for the ambient temperature.
[0032] Specifically, as an example, when the refrigerating capacity of the mobile air conditioner is increased, if the relationship between the current position of the user and the current position of the mobile air conditioner indicates that the distance between the user and the mobile air conditioner is far, and the mobile air conditioner cannot efficiently cool the user, it can be determined that the mobile air conditioner moves to the position of the user, so that the distance between the mobile air conditioner and the user is as small as possible, so as to quickly and efficiently provide cold capacity for the user. Similarly, when the refrigerating capacity of the mobile air conditioner is reduced, if the relationship between the current position of the user and the current position of the mobile air conditioner indicates that the distance between the user and the mobile air conditioner is close, and the user feels cold, it can be determined that the mobile air conditioner moves away from the position of the user, so as to increase the distance between the mobile air conditioner and the user. In this way, the outlet of the mobile air conditioner is prevented from being too close to the user, causing discomfort to the user.
[0033] As another example, the relationship between the current position of the user and the current position of the mobile air conditioner refers to whether the current position of the user is within the air outlet range of the mobile air conditioner. As a preferred solution, the relationship between the two refers to whether the current position of the user is within the central region of the air outlet range of the mobile air conditioner. When the refrigerating capacity of the mobile air conditioner is increased, it is determined that the mobile air conditioner moves to the position of the user, so that the user is close to the central region of the air outlet range of the mobile air conditioner. When the refrigerating capacity of the mobile air conditioner is reduced, it is determined that the mobile air conditioner moves away from the position of the user, so that the user is close to the non-central region of the air outlet range of the mobile air conditioner, or close to the edge of the air outlet range of the mobile air conditioner. In this way, the movement of the mobile air conditioner can be more accurately controlled according to the user's demand for temperature, so as to adjust the relative distance between the mobile air conditioner and the user.
[0034] S05, the control device controls the mobile air conditioner to adjust the refrigerating capacity and operate according to the air outlet parameter and the motion parameter.
[0035] In this embodiment, according to the temperature requirement of the user and the relative distance relationship between the user and the mobile air conditioner, the refrigerating capacity, the air outlet parameter and the motion parameter of the mobile air conditioner are determined, and then the air conditioner is controlled to operate under the above control conditions, so as to improve the comfort of the user.
[0036] By using the control method for the mobile air conditioner provided in the embodiments of the present disclosure, the refrigerating capacity, the air outlet parameter and the motion parameter of the mobile air conditioner can be adjusted according to the temperature requirement of the user and the relative distance relationship between the position of the user and the position of the mobile air conditioner, so as to accurately control the corresponding parameters and the relative position of the mobile air conditioner, and meet the requirement of the user.
[0037] Optionally, in step 04, the determination of the relationship between the current position of the user and the current position of the mobile air conditioner comprises: determining the relationship between the current position of the user and the air outlet area of the current position of the mobile air conditioner according to the air outlet parameters of the first air outlet and the second air outlet.
[0038] In this embodiment, the air outlet area of the current position of the mobile air conditioner is determined according to the air outlet parameters of the first air outlet and the second air outlet, and then the relationship between the current position of the user and the air outlet area of the current position of the mobile air conditioner is determined. In this way, the air outlet area of the current position of the mobile air conditioner can be more accurately obtained, so as to adjust the relative distance between the mobile air conditioner and the user.
[0039] Optionally, in step 04, the control device determines the motion parameter of the mobile air conditioner according to the refrigerating capacity of the mobile air conditioner and the relationship between the current position of the user and the current position of the mobile air conditioner, comprising:
[0040] In the case that the refrigerating capacity of the mobile air conditioner is increased, if the current position of the user deviates from the center area of the air outlet area of the current position of the mobile air conditioner, then the motion distance and the motion direction of the mobile air conditioner are determined according to the relationship between the current position of the user and the center area of the air outlet area of the current position of the mobile air conditioner, so as to make the user close to the center area of the air outlet area of the mobile air conditioner.
[0041] In this embodiment, the movement parameters of the mobile air conditioner are adjusted according to the cooling capacity of the mobile air conditioner and the relationship between the current position of the user and the air outlet area of the current position of the mobile air conditioner. Specifically, when the cooling capacity of the mobile air conditioner is increased, if the user is not in the central area of the air outlet area of the current position of the mobile air conditioner, the running distance and the movement direction of the mobile air conditioner are determined according to the relationship between the current position of the user and the current position of the mobile air conditioner; wherein the central area of the air outlet area can be set as the area within a preset distance from the air outlet in the center, and the preset distance can be any distance in the range of 0.5-1.5 meters, which can be set according to user demand. For example, if the user is on the left side of the air outlet area of the current position of the mobile air conditioner and is far away from the central area, the movement direction of the mobile air conditioner is rotated by a certain angle towards the left side of the current air outlet area, and the movement distance is the distance between the user and the center of the central area of the air outlet area. Here, it should be noted that the movement range of the mobile air conditioner is limited, so the movement distance of the mobile air conditioner is adjusted within the movement range of the mobile air conditioner.
[0042] Optionally, step 04, the control device determines the movement parameters of the mobile air conditioner according to the cooling capacity of the mobile air conditioner and the relationship between the current position of the user and the current position of the mobile air conditioner, including:
[0043] In the case where the cooling capacity of the mobile air conditioner is reduced, if the current position of the user is in the central area of the air outlet area of the current position of the mobile air conditioner, the movement distance and the movement direction of the mobile air conditioner are determined according to the relationship between the current position of the user and the non-central area of the air outlet area of the current position of the mobile air conditioner, so that the user is close to the non-central area of the air outlet area of the mobile air conditioner.
[0044] In this embodiment, when the cooling capacity of the mobile air conditioner is reduced, if the user is in the central area of the air outlet area of the current position of the mobile air conditioner, the movement distance and the running direction of the mobile air conditioner are determined according to the relative position of the user and the mobile air conditioner, so that the user deviates from the central area of the air outlet area; for example, if the user is in the central area of the air outlet area, the mobile air conditioner can be adjusted to deflect to the left or to the right by a certain angle, so that the user is in the edge position of the air outlet area, and at the same time, the mobile air conditioner can be correspondingly lengthened to the distance from the user, so that the user at the position will not feel strong cold wind, and the mobile air conditioner can continue to provide cooling for the user after the body surface temperature of the user rises, avoiding the user feeling hot and cold, causing poor experience.
[0045] Optionally, step 02, the control device determines the air outlet parameters of the first air outlet and the second air outlet when the body surface temperature of the user is inconsistent with the preset temperature, including:
[0046] The posture of the user is obtained; the air outlet parameters of the first air outlet and the second air outlet are determined according to the posture of the user.
[0047] In this embodiment, when the body surface temperature of the user is inconsistent with the preset temperature, the air outlet parameters of the two air outlets can be determined according to the posture of the user. The posture of the user can be obtained by setting an image acquisition sensor on the mobile air conditioner and obtaining the posture of the user through image analysis, or the monitoring image of the monitoring system in the space where the user is located can be obtained to further obtain the posture of the user. According to the posture of the user, the air outlet parameters of the first air outlet and the second air outlet are determined; for example, when the user is in a standing posture, the first air outlet and the second air outlet are both determined to be in an open state; when the user is in a sitting or lying posture, the second air outlet is determined to be in an open state, and the first air outlet can be opened or closed, which can be set according to the needs of the user. In addition, the air volume of the first air outlet and the second air outlet can be set according to the body surface temperature of the user. In this way, the air outlet parameters of the two air outlets are accurately controlled according to the body surface temperature and the posture of the user, so as to improve the user experience.
[0048] Optionally, the control device determines the air outlet parameters of the first air outlet and the second air outlet according to the posture of the user, comprising:
[0049] In the case of increasing the refrigerating capacity of the mobile air conditioner, if the user is in a standing posture, the opening angle of the deflector of the first air outlet and the second air outlet is determined to be the maximum, and the air speed is the maximum air speed; if the user is in a sitting or lying posture, the deflector of the first air outlet is opened at the minimum angle, the deflector of the second air outlet is opened at the maximum angle, and the air speed of the first air outlet and the second air outlet is the maximum air speed.
[0050] In this embodiment, the air outlet parameters of the air outlet are determined according to the posture of the user and the refrigerating capacity of the mobile air conditioner; specifically, the increase of the refrigerating capacity of the mobile air conditioner indicates that the user feels hot, at this time, it is necessary to increase the air volume as much as possible; if the user is in a standing posture, the opening angle of the deflector of the first air outlet and the second air outlet is kept maximum, so that the air outlet range is maximum, which helps the user standing to cool down quickly; if the user is in a sitting or lying posture, the opening angle of the deflector of the second air outlet is kept maximum, and the opening angle of the deflector of the first air outlet is kept minimum; in this way, it is helpful to concentrate the air outlet range in a local area, so that the user in a sitting or lying posture can quickly cool down in the local area. In addition, when the refrigerating capacity of the mobile air conditioner increases, the air speed of the air outlet can be kept at the maximum air speed to meet the needs of the user.
[0051] Optionally, the control device determines the air outlet parameters of the first air outlet and the second air outlet according to the posture of the user, further comprising:
[0052] In the case that the cooling capacity of the mobile air conditioner is reduced, if the user is in a standing position, it is determined that the air deflector of the first air outlet is opened at a minimum angle and the air volume speed is the minimum air volume speed, and the second air outlet is closed; if the user is in a sitting position or a lying position, it is determined that the first air outlet is closed, the air deflector of the second air outlet is opened at a minimum angle and the air volume speed is the minimum air volume speed.
[0053] In the embodiment, when the cooling capacity of the mobile air conditioner is reduced, the air volume of the air outlet can be appropriately reduced; if the user is in a standing position, the second air outlet can be closed and the air volume of the first air outlet is kept minimum, so that the mobile air conditioner reduces the air volume and the first air outlet, i.e. the top air outlet, blows air, and when the air volume is reduced, appropriate air volume is still provided for the user to avoid the user feeling hot and cold alternately and reduce the experience. Similarly, if the user is in a sitting position or a lying position, the first air outlet, i.e. the top air outlet, is closed and the air volume of the second air outlet, i.e. the front air outlet, is kept minimum to meet the user's demand.
[0054] In combination with Figure 3 As shown in the figure, the embodiment of the present disclosure provides a control device for a mobile air conditioner, which comprises a first acquisition module 21, a first determination module 22, a second acquisition module 23, a second determination module 24 and a control module 25. The first acquisition module 21 is configured to acquire the body surface temperature of the user; the first determination module 22 is configured to determine the cooling capacity of the mobile air conditioner and the air outlet parameters of the first air outlet and the second air outlet in the case that the body surface temperature of the user is inconsistent with the preset temperature; the second acquisition module 23 is configured to acquire the current position of the user; the second determination module 24 is configured to determine the motion parameters of the mobile air conditioner according to the cooling capacity of the mobile air conditioner and the relationship between the current position of the user and the current position of the mobile air conditioner, so as to adjust the relative distance between the user and the mobile air conditioner; and the control module 25 is configured to control the mobile air conditioner to operate according to the cooling capacity, the air outlet parameters and the motion parameters.
[0055] The control device for a mobile air conditioner provided by the embodiment of the present disclosure is beneficial to adjusting the cooling capacity, the air outlet parameters and the motion parameters of the mobile air conditioner according to the temperature demand of the user and the relative distance relationship between the position of the user and the position of the mobile air conditioner, so as to accurately control the corresponding parameters and the relative position of the mobile air conditioner to meet the demand of the user.
[0056] In combination with Figure 3As shown, the embodiment of the present disclosure provides a control device for a mobile air conditioner, which comprises a processor 100 and a memory 101. Optionally, the device can further comprise a communication interface 102 and a bus 103. The processor 100, the communication interface 102 and the memory 101 can communicate with each other through the bus 103. The communication interface 102 can be used for information transmission. The processor 100 can call the logical instructions in the memory 101 to execute the control method for the mobile air conditioner in the above-mentioned embodiment.
[0057] In addition, the logical instructions in the memory 101 described above can be realized in the form of a software functional unit and sold or used as an independent product, which can be stored in a computer readable storage medium.
[0058] The memory 101 as a computer readable storage medium can be used to store software programs, computer executable programs, such as program instructions / modules corresponding to the method in the embodiment of the present disclosure. The processor 100 executes the program instructions / modules stored in the memory 101, thereby executing the function application and data processing, i.e. realizing the control method for the mobile air conditioner in the above-mentioned embodiment.
[0059] The memory 101 can include a program storage area and a data storage area, wherein the program storage area can store an operating system and at least one application program required by a function; the data storage area can store data created according to the use of the terminal device, etc. In addition, the memory 101 can include a high-speed random access memory, and can also include a non-volatile memory.
[0060] The embodiment of the present disclosure provides a mobile air conditioner comprising the control device for the mobile air conditioner described above.
[0061] The embodiment of the present disclosure provides a computer readable storage medium, which stores computer executable instructions, and the computer executable instructions are set to execute the control method for the mobile air conditioner described above.
[0062] The embodiment of the present disclosure provides a computer program product, which comprises a computer program stored on a computer readable storage medium, and the computer program comprises program instructions, when the program instructions are executed by a computer, the computer executes the control method for the mobile air conditioner described above.
[0063] The computer readable storage medium described above can be a transitory computer readable storage medium or a non-transitory computer readable storage medium.
[0064] The technical solutions of the embodiments of the present disclosure can be embodied in the form of a software product. The computer software product is stored in a storage medium and includes one or more instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the method disclosed in the embodiments of the present disclosure. The aforementioned storage medium can be a non-transitory storage medium, including: a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk, and various media that can store program codes, and can also be a transitory storage medium.
[0065] The above description and drawings sufficiently illustrate the embodiments of the present disclosure to enable one skilled in the art to practice them. Other embodiments can include structural, logical, electrical, process, and other changes. The embodiments represent only a few of the possible variations. Individual components and functions are optional unless explicitly required, and the order of operations can be changed. Parts and features of some embodiments can be included in or replace parts and features of other embodiments. Also, the words used in this application are used only to describe the embodiments and not to limit the claims. As used in the description of the embodiments and the claims, unless the context clearly requires otherwise, the singular forms "a," "an," and "the" are intended to include the plural forms as well. Similarly, the term "and / or" as used in this application refers to any and all possible combinations of one or more associated listed items. In addition, when used in this application, the term "comprise" and its variations "comprises" and / or comprises" and the like mean the presence of the stated features, integers, steps, operations, elements, and / or components, but do not exclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and / or groups thereof. Without more limitations, the element defined by the phrase "comprising a" does not exclude the presence of additional identical elements in the process, method, or device including the stated element. In this document, each embodiment focuses on the differences from other embodiments, and the same or similar parts between embodiments can be referred to each other. For the method, product, etc. disclosed in the embodiments, if it corresponds to the method part disclosed in the embodiments, the relevant part can be referred to the description of the method part.
[0066] Those skilled in the art can understand that the units and algorithm steps of each example described in combination with the embodiments disclosed herein can be realized by electronic hardware or a combination of computer software and electronic hardware. Whether the functions are realized in hardware or software depends on the specific application and design constraints of the technical solution. The skilled person can use different methods for each specific application to realize the described functions, but such implementation should not be considered beyond the scope of the embodiments of the present disclosure. The skilled person can clearly understand that, for the convenience and brevity of description, the specific working processes of the above-described system, device and unit can refer to the corresponding processes in the foregoing method embodiments, which will not be repeated here.
[0067] In the embodiments disclosed herein, the disclosed methods, products (including but not limited to devices, equipment, etc.) can be implemented in other ways. For example, the above-described device embodiments are only schematic, for example, the division of the units can only be a logical function division, and actual implementation can have another division manner, for example, a plurality of units or components can be combined or integrated into another system, or some features can be ignored or not executed. In addition, the coupling or direct coupling or communication connection between the units shown or discussed can be indirect coupling or communication connection through some interface, device or unit, and can be electrical, mechanical or other forms. The units described as separate components can or can not be physically separate, and the components shown as units can or can not be physical units, that is, they can be located in one place, or can be distributed on a plurality of network units. Part or all of the units can be selected according to actual needs to implement the embodiments. In addition, each functional unit in the embodiments of the present disclosure can be integrated in one processing unit, or each unit can be a physically independent unit, or two or more units can be integrated in one unit.
[0068] The computer program instructions can also be loaded onto a computer, other programmable data processing apparatus, or other processing device to cause a series of operational steps to be performed on the computer, other programmable apparatus or other processing device to produce a computer implemented process such that the instructions which execute on the computer or other programmable apparatus provide processes for implementing the functions / acts specified in the flowchart and / or block diagram block or blocks.
Claims
1. A control method for a portable air conditioner, characterized in that, The portable air conditioner includes a first air outlet and a second air outlet, and the method includes: Obtain the user's body surface temperature; If the user's body surface temperature is inconsistent with the preset temperature, determine the cooling capacity of the portable air conditioner, and obtain the user's posture. Based on the user's posture, determine the air outlet parameters of the first air outlet and the second air outlet. Based on the air outlet parameters of the first air outlet and the second air outlet, determine the air outlet area of the portable air conditioner at its current location. Specifically, when the cooling capacity of the portable air conditioner increases, if the user is standing, the air guides of the first and second air outlets are opened at their maximum angles and the airflow is at its maximum speed; if the user is sitting or lying down, the air guide of the first air outlet is opened at its minimum angle, the air guide of the second air outlet is opened at its maximum angle, and the airflow of both the first and second air outlets is at its maximum speed. Alternatively, when the cooling capacity of the portable air conditioner decreases, if the user is standing, the air guide of the first air outlet is opened at its minimum angle and the airflow is at its minimum speed, while the second air outlet is closed; if the user is sitting or lying down, the first air outlet is closed, the air guide of the second air outlet is opened at its minimum angle, and the airflow is at its minimum speed. Obtain the user's current location; Based on the cooling capacity of the portable air conditioner and the relationship between the user's current location and the air outlet area of the portable air conditioner, the motion parameters of the portable air conditioner are determined to adjust the relative distance between the user and the portable air conditioner. The portable air conditioner is controlled to adjust the cooling capacity and operate according to the air outlet parameters and the motion parameters.
2. The method according to claim 1, characterized in that, Determining the relationship between the user's current location and the air outlet area of the portable air conditioner's current location includes: Based on the air outlet parameters of the first and second air outlets, the relationship between the user's current location and the air outlet area of the portable air conditioner's current location is determined.
3. The method according to claim 2, characterized in that, The step of determining the motion parameters of the portable air conditioner based on its cooling capacity and the relationship between the user's current location and the air outlet area of the portable air conditioner includes: When the cooling capacity of the portable air conditioner increases, if the user's current position deviates from the center of the air outlet area of the portable air conditioner, the movement distance and direction of the portable air conditioner are determined based on the relationship between the user's current position and the center of the air outlet area of the portable air conditioner, so as to bring the user closer to the center of the air outlet area of the portable air conditioner.
4. The method according to claim 2, characterized in that, The step of determining the motion parameters of the portable air conditioner based on its cooling capacity and the relationship between the user's current location and the air outlet area of the portable air conditioner includes: When the cooling capacity of the portable air conditioner decreases, if the user's current position is located in the center of the air outlet area of the portable air conditioner, the movement distance and direction of the portable air conditioner are determined based on the relationship between the user's current position and the non-center area of the air outlet area of the portable air conditioner, so as to bring the user closer to the non-center area of the air outlet area of the portable air conditioner.
5. A control device for a portable air conditioner, characterized in that, include: The first acquisition module is configured to acquire the user's body surface temperature; The first determining module is configured to, when the user's body surface temperature is inconsistent with a preset temperature, determine the cooling capacity of the portable air conditioner, acquire the user's posture, and determine the air outlet parameters of the first and second air outlets based on the user's posture; and determine the air outlet area of the portable air conditioner at its current location based on the air outlet parameters of the first and second air outlets; wherein, when the cooling capacity of the portable air conditioner increases, if the user is standing, the module determines that the air guides of the first and second air outlets are opened at their maximum angle and the wind speed is at its maximum setting; if the user is standing... If the user is in a sitting or lying position, the air guide plate of the first air outlet is opened at its minimum angle, the air guide plate of the second air outlet is opened at its maximum angle, and the air speed of both the first and second air outlets is at its maximum setting. Alternatively, if the user is standing and the cooling capacity of the portable air conditioner is reduced, the air guide plate of the first air outlet is opened at its minimum angle and the air speed is at its minimum setting, while the second air outlet is closed. If the user is sitting or lying down, the first air outlet is closed, the air guide plate of the second air outlet is opened at its minimum angle, and the air speed is at its minimum setting. The second acquisition module is configured to acquire the user's current location; The second determining module is configured to determine the motion parameters of the portable air conditioner based on the cooling capacity of the portable air conditioner and the relationship between the user's current location and the air outlet area of the portable air conditioner's current location, so as to adjust the relative distance between the user and the portable air conditioner. The control module is configured to control the portable air conditioner to adjust the cooling capacity and operate according to the air outlet parameters and the motion parameters.
6. A control device for a portable air conditioner, comprising a processor and a memory storing program instructions, characterized in that, The processor is configured to execute the control method for a portable air conditioner as described in any one of claims 1 to 4 when running the program instructions.
7. A portable air conditioner, characterized in that, Includes the control device for portable air conditioners as described in claim 5 or 6.
Citation Information
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