Air conditioning system, control method and control device of air conditioning system and electronic equipment
By monitoring the bed temperature and humidity in real time in the air-conditioning system and automatically adjusting the air-conditioning parameters, the problem of the air-conditioning system being unable to adjust the temperature according to the user's feelings is solved, the sleep quality and energy efficiency are improved, and a personalized comfortable environment is provided.
Patent Information
- Application Number
- CN202410319147.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-20
- Publication Date
- 2025-09-23
AI Technical Summary
Existing air conditioning systems are unable to adjust the temperature according to different people's feelings, resulting in poor sleep quality, especially when the temperature remains unchanged after people fall asleep, making them prone to feeling cold or hot, affecting the user's comfort and health.
By installing temperature sensors and humidity sensors in the air-conditioning system, the temperature and humidity of the bed are monitored in real time, abnormal conditions of the user, such as kicking off the quilt or feeling overheated/overcold, are judged, and air-conditioning parameters are automatically adjusted, such as turning on the heating or cooling device, adjusting the wind direction and wind speed, to provide a personalized comfortable environment.
It can automatically adjust the air conditioning parameters according to the user's personalized needs, improve sleep quality, reduce the number of times you wake up due to discomfort, simplify the operating process, save energy and efficiency, reduce electricity bills, and prevent health problems caused by overheating or overcooling.
Smart Images

Figure CN120684782A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of electrical technology, and in particular to an air-conditioning system, a control method for the air-conditioning system, a control device and an electronic device. Background Art
[0002] In the related art, if the temperature remains unchanged after a person falls asleep, he or she may easily feel cold and catch a cold, or feel hot and suffer from poor sleep quality, thus tossing and turning and feeling restless. The temperature of the sleep mode of an ordinary air conditioner cannot be adjusted according to the feelings of different people, and often overheats, making some people feel uncomfortable and affecting their sleep quality. Summary of the Invention
[0003] The present invention provides an air-conditioning system, a control method, a control device, and an electronic device for the air-conditioning system, which are used to address the defects existing in the prior art and achieve the following technical effects: by continuously monitoring the temperature and humidity on the bed, the system can capture any abnormal conditions in real time, such as the user kicking off the quilt or feeling overheated / overcooled, so as to make quick adjustments and reduce the number of times the user wakes up due to discomfort.
[0004] An air conditioning system according to a first embodiment of the present invention includes:
[0005] An indoor unit and an outdoor unit, wherein a heating device is provided at the air outlet of the indoor unit;
[0006] a temperature sensor and a humidity sensor, for detecting a bed temperature and a bed humidity of a bed located indoors, respectively;
[0007] A control device is connected to the indoor unit, the outdoor unit, the temperature sensor, and the humidity sensor, respectively, and is used to:
[0008] Determining that there is someone on the bed, receiving the bed temperature detected by the temperature sensor and the bed humidity detected by the humidity sensor;
[0009] Based on the bed temperature and / or the bed humidity, it is determined whether an abnormal condition occurs to the user located on the bed, and when the abnormal condition occurs, the operating parameters of the air-conditioning system are controlled and adjusted.
[0010] According to a second embodiment of the present invention, a method for controlling an air-conditioning system based on the first embodiment of the present invention includes:
[0011] If it is determined that there is someone on the bed in the room, the bed temperature and bed humidity of the bed in the room are obtained;
[0012] Based on the bed temperature and / or the bed humidity, it is determined whether an abnormal situation occurs to the user located on the bed, and the operating parameters of the air-conditioning system are controlled and adjusted when the abnormal situation occurs.
[0013] According to one embodiment of the present invention, the step of determining whether an abnormal condition occurs to the user on the bed based on the bed temperature and / or the bed humidity, and controlling and adjusting the air conditioning system when the abnormal condition occurs, specifically includes:
[0014] determining whether an abnormal condition occurs to the user on the bed based on the bed temperature and / or the bed humidity, and determining the type of the abnormal condition if the abnormal condition occurs;
[0015] An operating parameter of the air conditioning system is controlled and adjusted according to at least one of the bed temperature and the bed humidity and the type of the abnormal situation.
[0016] According to one embodiment of the present invention, the step of determining whether an abnormal condition occurs to the user on the bed based on the bed temperature and / or the bed humidity, and determining the type of the abnormal condition if the abnormal condition occurs, specifically includes:
[0017] According to the increase in the bed temperature within the first set time period reaching or exceeding the first preset mutation value, it is determined that an abnormal situation has occurred, and it is determined that the current abnormal situation is the first abnormal situation in which the user's body surface changes from being wrapped to being exposed.
[0018] According to one embodiment of the present invention, the step of controlling and adjusting the operating parameters of the air conditioning system based on at least one of the bed temperature and the bed humidity and the type of the abnormal condition specifically includes:
[0019] According to the fact that the humidity on the bed is greater than or equal to the preset standard humidity and the abnormal situation is the first abnormal situation, the heating device is turned on to heat the outlet air flow, and the operation mode of the air guide plate of the indoor unit is adjusted to the swing mode.
[0020] According to one embodiment of the present invention, the control method of the air conditioning system further includes:
[0021] determining that the heating is continuously turned on for a second set time period and the air guide plate is continuously operated in an oscillating manner for the second set time period, and then obtaining the bed humidity again;
[0022] When the humidity on the bed is lower than the set standard humidity, the heating device is controlled to be turned off and the air guide plate is restored to the original operation mode.
[0023] According to one embodiment of the present invention, the step of determining whether an abnormal condition occurs to the user on the bed based on the bed temperature and / or the bed humidity, and determining the type of the abnormal condition if the abnormal condition occurs, specifically includes:
[0024] According to the fact that the decrease in the bed temperature within the first set time period exceeds the second preset mutation value, it is determined that an abnormal situation has occurred, and it is determined that the current abnormal situation is the second abnormal situation in which the user's body surface changes from being exposed to the outside to being covered.
[0025] According to one embodiment of the present invention, a cooling device is further provided at the air outlet of the indoor unit; and the step of controlling and adjusting the operating parameters of the air conditioning system based on at least one of the bed temperature and the bed humidity, and the type of the abnormal condition, specifically comprises:
[0026] Get the indoor ambient temperature;
[0027] According to the fact that the humidity on the bed is lower than the preset standard humidity, the indoor ambient temperature is higher than the standard indoor temperature, and the abnormal situation is the second abnormal situation, the cooling device is turned on to cool the outlet air flow after waiting for the third set time, and the operation mode of the air guide plate of the indoor unit is adjusted to the swinging type.
[0028] According to one embodiment of the present invention, the control method of the air conditioning system further includes:
[0029] If the indoor unit is not provided with a cooling device, determining that the heating device is turned off; or if the indoor unit is provided with a cooling device, determining that both the heating device and the cooling device are turned off;
[0030] The bed temperature is obtained, and based on a comparison result between the bed temperature and a preset standard temperature, the operating parameters of the indoor unit and / or the outdoor unit are controlled and adjusted to adjust the air outlet temperature.
[0031] According to one embodiment of the present invention, the step of controlling and adjusting the operating parameters of the indoor unit and / or the outdoor unit to adjust the air outlet temperature based on the comparison result of the bed temperature with the preset standard temperature specifically includes:
[0032] When the bed temperature is lower than the preset standard temperature, controlling the frequency of the compressor to increase so as to increase the air outlet temperature;
[0033] Alternatively, when the bed temperature is greater than the preset standard temperature, the frequency of the compressor is controlled to decrease to reduce the outlet air temperature.
[0034] According to a third aspect of the present invention, a control device for an air conditioning system based on the first aspect of the present invention includes:
[0035] An acquisition module is used to determine whether there is someone on the bed in the room, and then obtain the bed temperature and bed humidity of the bed in the room;
[0036] The control module is used to determine whether an abnormal situation occurs to the user on the bed based on the temperature and / or humidity on the bed, and to control and adjust the working parameters of the air-conditioning system when the abnormal situation occurs.
[0037] According to an embodiment of the fourth aspect of the present invention, an electronic device includes a memory, a processor, and a computer program stored in the memory and executable on the processor. When the processor executes the program, the control method for the air-conditioning system as described in the embodiment of the second aspect of the present invention is implemented.
[0038] The present invention provides an air conditioning system and a control method thereof, which have the following advantages:
[0039] (1) Personalized comfort adjustment: The system can intelligently determine the user's comfort level based on real-time bed temperature and humidity data, and automatically adjust air conditioning parameters according to the user's individual needs, providing a customized comfortable environment. In addition, this control method is applicable to different seasons and climate conditions, and can adapt to the user's different sleeping habits and preferences, showing good adaptability and flexibility.
[0040] (2) Timely handling of abnormal situations: By continuously monitoring the temperature and humidity of the bed, the system can capture any abnormal situations in real time, such as the user kicking off the quilt or feeling overheated / overcooled, so as to make quick adjustments and reduce the number of times the user wakes up due to discomfort.
[0041] (3) Improve sleep quality and reduce health risks: By maintaining a constant comfortable environment, the system helps users enter a deep sleep state faster, thereby improving overall sleep quality and mental state the next day. In addition, the system helps maintain the user's physical health by preventing health problems caused by overheating or overcooling, such as colds or other sleep-related illnesses.
[0042] (4) Simplified operation and energy-efficient: Users no longer need to manually set the air conditioner before bedtime. The system automatically adjusts according to environmental changes, simplifying the user's operation process and providing a more convenient user experience. In addition, the intelligent control method ensures that the air conditioner is adjusted only when necessary, avoiding unnecessary energy waste, improving energy efficiency, and reducing electricity costs. BRIEF DESCRIPTION OF THE DRAWINGS
[0043] 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.
[0044] Figure 1 It is a structural schematic diagram of the air-conditioning system provided by the present invention;
[0045] Figure 2 1 is a flow chart of a control method for an air-conditioning system provided by the present invention;
[0046] Figure 3 1 is a schematic structural diagram of a control device for an air-conditioning system provided by the present invention;
[0047] Figure 4 It is a structural schematic diagram of the electronic device provided by the present invention.
[0048] Reference numerals:
[0049] 1. Indoor unit; 11. Air outlet; 2. Outdoor unit; 3. Control device; 4. Heating device; 110. Acquisition module; 120. Control module. DETAILED DESCRIPTION
[0050] 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.
[0051] An air-conditioning system, a control method for the air-conditioning system, and a control device 3 provided by the present invention will be described below with reference to the accompanying drawings.
[0052] like Figure 1 As shown, the air conditioning system according to the first embodiment of the present invention includes an indoor unit 1, an outdoor unit 2, a heating device 4, a temperature sensor, a humidity sensor and a control device 3.
[0053] A heating device 4 is provided at the air outlet 11 of the indoor unit 1, wherein the heating device 4 is used to quickly increase the air temperature when needed.
[0054] The temperature sensor and the humidity sensor are used to detect the bed temperature and the bed humidity of the bed located indoors, respectively;
[0055] The control device 3 is connected to the indoor unit 1, the outdoor unit 2, the temperature sensor, and the humidity sensor. The control device 3 is the center of the system and is responsible for receiving data from the temperature sensor and the humidity sensor and performing analysis and judgment based on the data. Specifically, the control device 3 is used to:
[0056] If it is determined that there is someone on the bed, the bed temperature detected by the temperature sensor and the bed humidity detected by the humidity sensor are received;
[0057] Based on the bed temperature and / or bed humidity, it is determined whether an abnormal condition occurs to the user located on the bed, and the operating parameters of the air conditioning system are controlled and adjusted if an abnormal condition occurs.
[0058] The air conditioning system according to an embodiment of the present invention operates as follows: When a person is detected in bed, the temperature sensor and humidity sensor begin operating, collecting bed temperature and humidity data, respectively. Control device 3 receives this data and analyzes it based on preset comfortable temperature and humidity ranges. If the bed temperature or humidity exceeds the normal range, control device 3 determines that the user may be experiencing an abnormality, such as feeling overheated or cold, or that the temperature change may have occurred due to kicking off the blanket.
[0059] Once an abnormal situation is determined, the control device 3 will automatically adjust the working parameters of the air conditioner, such as adjusting the wind speed and wind direction of the indoor unit 1 or starting the heating device 4, to maintain a comfortable sleeping environment.
[0060] For example, when the system detects a sudden change in temperature and abnormal humidity caused by the user kicking off the quilt, the system will start heating and adjust the air outlet 11 to a swinging type to cover the user's sleeping area until the humidity returns to normal, and then adjust the air conditioning working status according to real-time data.
[0061] It is understood that the "abnormal conditions" in the above embodiments refer to temperature or humidity changes that are inconsistent with the user's normal sleep state. These changes may affect the user's sleep quality or cause discomfort. The following are some specific examples of abnormal conditions and their explanations:
[0062] (1) Kicking the quilt event: By analyzing data from temperature, humidity, and other sensors, the system can identify whether the user has kicked the quilt. In this case, the user's body may be suddenly exposed to a lower indoor temperature, and if the user does not adjust in time, they may catch a cold.
[0063] (2) The event of wrapping the quilt tightly: Through sensors such as temperature and humidity, the system can detect the behavior of the user wrapping the quilt tightly while sleeping. This means that the user begins to feel cold, so he wraps the quilt tightly to maintain body temperature. However, when the indoor temperature remains high, as the user wraps the quilt tightly for a longer period of time, the user will feel hot again. Therefore, it is necessary to cool the air outlet of the air conditioning system in time to ensure that the user will not feel hot even if he wraps the quilt tightly for a long time.
[0064] (3) Temperature is too high or too low: If the temperature sensor detects that the temperature on the bed is significantly higher or lower than the comfortable temperature range set by the user, this may mean that the user is feeling too hot or too cold. For example, if the user feels too hot at night in the summer, they may kick off the quilt; in the winter, they may wake up because they feel cold.
[0065] (4) Abnormal humidity: The humidity sensor detects a sudden increase in the humidity on the bed. This may be due to the user sweating or a sudden change in indoor humidity. High humidity may cause the user to feel hot and uncomfortable, while low humidity may make the air too dry, affecting the user's comfort.
[0066] (5) Restless sleep: If sensor data shows abnormal fluctuations in the user's heart rate or increased activity in bed, this may indicate that the user is experiencing restless sleep or multiple awakenings. This may be caused by unsuitable temperature or other environmental factors.
[0067] When the air conditioning system's control device 3 detects these abnormalities, it automatically adjusts operating parameters, such as adjusting the temperature setting, activating the heating device 4, and changing the airflow direction, to correct the discomfort and ensure the user can continue sleeping in a comfortable environment. For example, if the system detects that the temperature has dropped after the user kicks off the blanket, it may quickly raise the indoor temperature and temporarily change the airflow pattern to prevent the user from catching a cold.
[0068] The following describes the control method and control device 3 implemented based on the structure of the above air-conditioning system proposed by the present invention with reference to the accompanying drawings. Before describing the embodiment of the present invention in detail, the entire application scenario is first described. The control method, control device 3, electronic device and computer-readable storage medium of the air-conditioning system of the embodiment of the present invention can be applied to the air-conditioning system locally, can be applied to the cloud platform in the Internet field, or other types of cloud platforms in the Internet field, or can also be applied to third-party devices. Among them, third-party devices may include various types such as mobile phones, tablet computers, notebooks, car computers and other smart terminals.
[0069] The following description only takes the control method applicable to the air-conditioning system as an example. It should be understood that the control method of the embodiment of the present invention can also be applied to the cloud platform and third-party equipment.
[0070] like Figure 2 As shown, the control method of the air conditioning system according to the second embodiment of the present invention includes:
[0071] Step S1: Determine if there is someone on the bed in the room, and then obtain the bed temperature and bed humidity of the bed in the room;
[0072] Step S2: judging whether an abnormal situation occurs to the user on the bed based on the bed temperature and / or bed humidity, and controlling and adjusting the working parameters of the air-conditioning system if an abnormal situation occurs.
[0073] The air conditioning system control method according to the present invention operates as follows: When the system detects a person on a bed (this may be achieved through infrared sensors, pressure sensors, or other human detection technologies), it activates and begins monitoring. The system obtains real-time temperature and humidity data on the bed using temperature and humidity sensors installed in the room.
[0074] The control device 3 compares and analyzes the received temperature and humidity data with the preset comfort range: if the monitored data is within the normal range, the system will continue to monitor without making any adjustments; if the monitored data exceeds the comfort range or changes rapidly (such as a sharp drop in temperature or a sharp rise in humidity), the system will determine that the user may have an abnormal situation.
[0075] If an abnormality is detected, the system will adjust the air conditioner's operating parameters accordingly to correct the indoor environment and ensure user comfort. For example, if the bed temperature is too low, the system may increase the indoor temperature, adjust the fan speed, or activate the heating function; or if the bed humidity is too high, the system may activate the dehumidifier or increase air circulation; or if the bed temperature is too high, the system may lower the indoor temperature, activate the cooling device, and adjust the air deflector to optimize the distribution of cold air.
[0076] In the related art, if the temperature remains unchanged after a person falls asleep, he or she may easily feel cold and catch a cold, or feel hot and suffer from poor sleep quality, thus tossing and turning and feeling restless. The temperature of the sleep mode of an ordinary air conditioner cannot be adjusted according to the feelings of different people, and often overheats, making some people feel uncomfortable and affecting their sleep quality.
[0077] Therefore, in order to solve the technical defects existing in the above-mentioned related technologies, the present invention provides a control method for an air-conditioning system, which has the following advantages:
[0078] (1) Personalized comfort adjustment: The system can intelligently determine the user's comfort level based on real-time bed temperature and humidity data, and automatically adjust air conditioning parameters according to the user's individual needs, providing a customized comfortable environment. In addition, this control method is applicable to different seasons and climate conditions, and can adapt to the user's different sleeping habits and preferences, showing good adaptability and flexibility.
[0079] (2) Timely handling of abnormal situations: By continuously monitoring the temperature and humidity of the bed, the system can capture any abnormal situations in real time, such as the user kicking off the quilt or feeling overheated / overcooled, so as to make quick adjustments and reduce the number of times the user wakes up due to discomfort.
[0080] (3) Improve sleep quality and reduce health risks: By maintaining a constant comfortable environment, the system helps users enter a deep sleep state faster, thereby improving overall sleep quality and mental state the next day. In addition, the system helps maintain the user's physical health by preventing health problems caused by overheating or overcooling, such as colds or other sleep-related illnesses.
[0081] (4) Simplified operation and energy-efficient: Users no longer need to manually set the air conditioner before bedtime. The system automatically adjusts according to environmental changes, simplifying the user's operation process and providing a more convenient user experience. In addition, the intelligent control method ensures that the air conditioner is adjusted only when necessary, avoiding unnecessary energy waste, improving energy efficiency, and reducing electricity costs.
[0082] According to some embodiments of the present invention, the steps of determining whether an abnormal condition occurs to a user in bed based on bed temperature and / or bed humidity, and controlling and adjusting the air conditioning system when an abnormal condition occurs, specifically include:
[0083] determining whether an abnormal condition occurs to a user in the bed based on the bed temperature and / or bed humidity, and determining the type of abnormal condition if an abnormal condition occurs;
[0084] The operating parameters of the air conditioning system are controlled and adjusted according to at least one of the bed temperature and the bed humidity and the type of the abnormal situation.
[0085] In this embodiment, the system monitors the bed's environmental conditions in real time using temperature and humidity sensors installed indoors. The system then compares these temperature and humidity data with pre-set comfort ranges. If the data falls outside these ranges or changes rapidly, the system determines that the user may be experiencing an abnormal condition, such as overheating, overcooling, or humidity discomfort.
[0086] The system then identifies the type of anomaly based on the specific changes in temperature and humidity, such as whether the user kicked off the blanket or whether excessive sweating caused increased humidity. Furthermore, based on the identified anomaly type, the system automatically adjusts the air conditioner's operating parameters, such as temperature setting, wind speed, wind direction, and dehumidification or humidification functions. For example, if the system detects that the user is tightly wrapped in the blanket and the indoor temperature is high, it may lower the indoor temperature and activate the cooling function.
[0087] In this way, by collecting real-time bed temperature and humidity data, the system can identify the user's comfort level and quickly make adjustments if anomalies are detected. This approach utilizes sensor technology and intelligent algorithms to optimize the air conditioner's performance to adapt to the user's personal needs and changes in the indoor environment.
[0088] It should be pointed out that, since abnormal situations include many types, in order to avoid redundancy, the present invention will no longer explain the judgment methods and response measures for different types of abnormal situations one by one. The following will only introduce in detail the first abnormal situation in which the user kicks off the quilt and the second abnormal situation in which the user wraps the quilt tightly. It should be noted that the above two abnormal situations only serve as examples and do not constitute a specific limitation on the types of abnormal situations in the present invention. The judgment and response measures for other abnormal situations are also within the scope of protection of the present invention.
[0089] According to some embodiments of the present invention, the steps of determining whether an abnormal condition occurs to a user on the bed based on the bed temperature and / or bed humidity, and determining the type of abnormal condition if an abnormal condition occurs, specifically include:
[0090] If the increase in the bed temperature within the first set time period reaches or exceeds the first preset mutation value, it is determined that an abnormal situation has occurred, and the current abnormal situation is determined to be the first abnormal situation in which the user's body surface changes from being wrapped to being exposed.
[0091] In this embodiment, the first set time duration is a time window used by the system to monitor temperature changes, and the first preset mutation value is a threshold value pre-set by the system for determining whether the temperature change is significant.
[0092] If the bed temperature increases by a value that reaches or exceeds a first preset sudden change threshold within a first set time period, the system will deem this an abnormal condition. Furthermore, the system will interpret this significant temperature rise as a change from being covered (e.g., wrapped tightly in a blanket) to being exposed, which typically means the user may have kicked off or removed the blanket due to overheating.
[0093] Furthermore, the step of controlling and adjusting the operating parameters of the air conditioning system according to at least one of the bed temperature and the bed humidity and the type of the abnormal condition specifically includes:
[0094] According to the fact that the humidity on the bed is greater than or equal to the preset standard humidity and the abnormal situation is the first abnormal situation, the heating device 4 is turned on to heat the outlet air flow, and the operation mode of the air guide plate of the indoor unit 1 is adjusted to the swing mode.
[0095] It is understood that when the system detects that the user has kicked off the quilt, exposing the user's body surface, the system will activate the heating device 4 to heat the airflow to prevent the user from feeling cold due to the exposed body surface. This ensures that the air temperature output by the air conditioner is warmer, helping the user feel comfortable and avoiding catching a cold due to low temperature.
[0096] In addition, the system will also adjust the air guide plate of the indoor unit 1 to the swing mode. This mode can make the air output of the air conditioner more evenly distributed in the indoor space, especially the user's sleeping area, thereby providing a more comprehensive sense of comfort.
[0097] In this way, the system can prevent the risk of users catching cold due to inadvertent exposure to cold air during sleep, and by automatically adjusting the indoor temperature, the system helps maintain the user's comfort and reduce sleep interruptions caused by temperature discomfort.
[0098] Furthermore, after the steps of turning on the heating device 4 to heat the outlet airflow and adjusting the operation mode of the air guide plate of the indoor unit 1 to the swing mode, the control method of the air conditioning system further includes:
[0099] Determining that the heating is continuously turned on for the second set time period and the air guide plate is continuously operated in the swinging manner for the second set time period, obtaining the bed humidity again;
[0100] When the humidity on the bed is lower than the set standard humidity, the heating device 4 is controlled to be turned off and the air guide plate returns to the original operation mode.
[0101] In the above embodiment, upon determining that the user's body surface is exposed (the first abnormal condition), the system activates the heating device 4 to heat the outgoing airflow and simultaneously sets the air guide plate of the indoor unit 1 to an oscillating mode. These measures continue for a predetermined period of time (the second predetermined duration) to ensure that the user feels warm and gradually adapts to the indoor environment.
[0102] After the heating device 4 and the air deflector have been running for a second set time, the system will again obtain the humidity data on the bed. This step is to evaluate whether the previous adjustment measures are effective and whether the indoor environment has reached an appropriate humidity level.
[0103] If the bed humidity is again detected to be lower than the set standard humidity, the system will determine that the indoor environment is dry enough and no longer requires additional heating or swinging of the air deflector. Therefore, the system will control the heating device 4 to turn off and restore the air deflector to its original operating mode to maintain a stable and comfortable indoor environment.
[0104] In this way, by turning on the heating device 4 and swinging the wind deflector when necessary, and then turning off the heating device 4 after the humidity reaches a suitable level, the system avoids energy waste and ensures that the user is always in the best comfort state.
[0105] According to other embodiments of the present invention, the steps of determining whether an abnormal condition occurs to a user on the bed based on the bed temperature and / or bed humidity, and determining the type of abnormal condition if an abnormal condition occurs, specifically include:
[0106] If the decrease in the bed temperature within the first set time period exceeds a second preset mutation value, it is determined that an abnormal situation has occurred, and the current abnormal situation is determined to be the second abnormal situation in which the user's body surface changes from being exposed to the outside to being covered.
[0107] In this embodiment, the first set time duration is a time window used by the system to monitor temperature changes, and the second preset mutation value is a threshold value pre-set by the system for determining whether the temperature change is significant.
[0108] If the bed temperature decreases by more than a second preset sudden change value within the first set time period, the system will deem this an abnormal condition. The system interprets this significant temperature drop as a second abnormal condition, where the user's body has changed from being exposed to being covered. This typically means the user may have wrapped themselves tightly in a blanket or other covering due to feeling cold.
[0109] Furthermore, a cooling device is provided at the air outlet 11 of the indoor unit 1. The steps of controlling and adjusting the operating parameters of the air conditioning system according to at least one of the bed temperature and the bed humidity, and the type of abnormal situation, specifically include:
[0110] Get the indoor ambient temperature;
[0111] According to the fact that the humidity on the bed is lower than the preset standard humidity, the indoor ambient temperature is higher than the standard indoor temperature, and the abnormal situation is the second abnormal situation, after waiting for the third set time, the cooling device is turned on to cool the outlet air flow, and the operating mode of the air guide plate of the indoor unit 1 is adjusted to the swinging type.
[0112] In the above embodiment, through sensors such as temperature and humidity, the system can detect the second abnormal situation that the user wraps himself tightly in the quilt while sleeping, which means that the user begins to feel cold, so he wraps himself tightly in the quilt to maintain body temperature. However, when the indoor temperature remains high, as the duration of the user wrapping himself tightly in the quilt increases, the human body will continue to generate heat during sleep, especially in the deep sleep stage, when the metabolism is active and more heat is generated. When the user wraps himself tightly in the quilt, the thermal insulation performance of the quilt will hinder the dissipation of heat, causing heat to accumulate inside the quilt. Therefore, as the heat accumulates in the quilt, the user may gradually feel hot, especially when the quilt is wrapped tightly for a long time.
[0113] Therefore, when the second abnormality is detected and both the bed humidity and the indoor ambient temperature meet the set conditions, the air conditioning system will also set a third waiting time to confirm whether the user's behavior of wrapping up tightly in the quilt continues and whether the indoor temperature has increased as a result. If, after the third set time, the system determines that the user is still wrapped up tightly in the quilt and the indoor ambient temperature is above the comfort level, the system will activate the cooling device to cool the outgoing airflow to lower the indoor temperature, thereby alleviating the heat sensation caused by the user's prolonged wrapping and improving user comfort. At the same time, the system adjusts the air deflector to a swinging position to promote indoor air circulation and more evenly distribute the cool air, ensuring that the temperature throughout the room is effectively regulated.
[0114] In summary, the control method for the second abnormal situation takes into account the fact that users may feel hot after being wrapped tightly in a blanket for an extended period of time, as body heat cannot be effectively dissipated. By maintaining appropriate temperature and humidity, the system improves the user's sleeping comfort and helps prevent health problems caused by excessively low or high temperatures.
[0115] According to some embodiments of the present invention, the control method of the air conditioning system further includes:
[0116] In the case where the indoor unit 1 is not provided with a cooling device, the heating device 4 is determined to be turned off; or, in the case where the indoor unit 1 is provided with a cooling device, both the heating device 4 and the cooling device are determined to be turned off;
[0117] The bed temperature is obtained, and based on the comparison result between the bed temperature and the preset standard temperature, the operating parameters of the indoor unit 1 and / or the outdoor unit 2 are controlled and adjusted to adjust the air outlet temperature.
[0118] It can be understood that the above embodiment is a normal sleeping temperature adjustment process when there is no abnormal situation with the user in bed. In the above process, the air-conditioning system can adjust the indoor temperature according to the user's normal sleeping needs. In this way, it can ensure that the user can enjoy a constant and comfortable indoor environment during sleep.
[0119] In some specific embodiments, the step of controlling and adjusting the operating parameters of the indoor unit 1 and / or the outdoor unit 2 to adjust the air outlet temperature based on the comparison result between the bed temperature and the preset standard temperature specifically includes:
[0120] When the bed temperature is lower than the preset standard temperature, the frequency of the compressor is controlled to increase to increase the outlet air temperature;
[0121] Alternatively, when the bed temperature is greater than a preset standard temperature, the frequency of the compressor is controlled to decrease to lower the outlet air temperature.
[0122] In other embodiments, in addition to changing the air outlet temperature by adjusting the compressor frequency, the air conditioning system may also perform other adjustment operations to optimize the indoor environment and improve user comfort.
[0123] For example, the system can adjust the fan speed based on real-time data on indoor temperature and humidity. If the indoor temperature is high or the humidity is high, the system may increase the fan speed to speed up air circulation, improving cooling efficiency and indoor air quality.
[0124] For another example, by adjusting the air guide plate or wind direction setting of the indoor unit 1, the system can change the flow direction of hot and cold air to ensure uniform air distribution and avoid overcooling or overheating in local areas.
[0125] For example, if the indoor humidity is too high, the system can start the dehumidification mode to remove excess moisture from the air through condensation and evaporation processes while maintaining a stable indoor temperature.
[0126] For example, the system can set a timer to turn on and off the air conditioner according to the user's sleeping habits and daily activity patterns. It can automatically turn on the air conditioner before the user falls asleep and automatically turn it off after getting up to save energy and provide optimal comfort.
[0127] In addition, the air conditioning system can also be linked with other smart home devices, such as smart curtains and lighting systems, to create an ideal sleeping environment. For example, when the air conditioning is turned on, the lights will be automatically dimmed or the curtains will be closed.
[0128] The control device 3 of the air-conditioning system provided by the present invention is described below. The control device 3 of the air-conditioning system described below and the control method of the air-conditioning system described above can be referred to each other.
[0129] like Figure 3 As shown, the control device 3 of the air conditioning system according to the third embodiment of the present invention includes:
[0130] An acquisition module 110 is configured to determine that there is someone on the bed in the room, and then acquire the bed temperature and bed humidity of the bed in the room;
[0131] The control module 120 is used to determine whether an abnormal condition occurs to the user on the bed based on the bed temperature and / or bed humidity, and to control and adjust the operating parameters of the air-conditioning system when an abnormal condition occurs.
[0132] Figure 4 An example of a physical structure diagram of an electronic device is shown below. Figure 4As shown, the electronic device may include: a processor 810, a communications interface 820, a memory 830, and a communications bus 840. The processor 810, the communications interface 820, and the memory 830 communicate with each other via the communications bus 840. The processor 810 may invoke logic instructions in the memory 830 to execute a method for controlling an air conditioning system. The method includes: determining that a person is in a bed in a room, obtaining the bed temperature and bed humidity of the bed; determining whether an abnormal condition exists with the user in bed based on the bed temperature and / or bed humidity, and controlling and adjusting operating parameters of the air conditioning system if an abnormal condition exists.
[0133] In addition, the logic instructions in the above-mentioned memory 830 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 various embodiments 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.
[0134] 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 system control method provided by the above methods, which includes: determining that there is someone on the bed in the room, then obtaining the bed temperature and bed humidity of the bed in the room; judging whether the user on the bed has an abnormal situation based on the bed temperature and / or bed humidity, and controlling and adjusting the working parameters of the air-conditioning system when an abnormal situation occurs.
[0135] 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 control method of the air-conditioning system provided by the above-mentioned methods. The method includes: determining that there is someone on the bed in the room, obtaining the bed temperature and bed humidity of the bed in the room; judging whether the user on the bed has an abnormal situation based on the bed temperature and / or bed humidity, and controlling and adjusting the working parameters of the air-conditioning system when an abnormal situation occurs.
[0136] 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. That is, they may be located in one place 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.
[0137] 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 the 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 causing a computer device (which can be a personal computer, a server, or a network device, etc.) to execute the methods of each embodiment or certain parts of the embodiment.
[0138] 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 system, characterized in that: include: An indoor unit and an outdoor unit, wherein a heating device is provided at the air outlet of the indoor unit; a temperature sensor and a humidity sensor, for detecting a bed temperature and a bed humidity of a bed located indoors, respectively; A control device is connected to the indoor unit, the outdoor unit, the temperature sensor, and the humidity sensor, respectively, and is used to: Determining that there is someone on the bed, receiving the bed temperature detected by the temperature sensor and the bed humidity detected by the humidity sensor; Based on the bed temperature and / or the bed humidity, it is determined whether an abnormal condition occurs to the user located on the bed, and when the abnormal condition occurs, the operating parameters of the air-conditioning system are controlled and adjusted.
2. A control method for an air conditioning system according to claim 1, characterized in that: include: If it is determined that there is someone on the bed in the room, the bed temperature and bed humidity of the bed in the room are obtained; Based on the bed temperature and / or the bed humidity, it is determined whether an abnormal situation occurs to the user located on the bed, and the operating parameters of the air-conditioning system are controlled and adjusted when the abnormal situation occurs.
3. The control method of the air conditioning system according to claim 2, characterized in that: The step of determining whether an abnormal condition occurs to the user on the bed based on the bed temperature and / or the bed humidity, and controlling and adjusting the air conditioning system when the abnormal condition occurs, specifically includes: determining whether an abnormal condition occurs to the user on the bed based on the bed temperature and / or the bed humidity, and determining the type of the abnormal condition if the abnormal condition occurs; An operating parameter of the air conditioning system is controlled and adjusted according to at least one of the bed temperature and the bed humidity and the type of the abnormal situation.
4. The control method of the air conditioning system according to claim 3, characterized in that: The step of judging whether an abnormal situation occurs to the user on the bed based on the bed temperature and / or the bed humidity, and determining the type of the abnormal situation if the abnormal situation occurs, specifically includes: According to the increase in the bed temperature within the first set time period reaching or exceeding the first preset mutation value, it is determined that an abnormal situation has occurred, and it is determined that the current abnormal situation is the first abnormal situation in which the user's body surface changes from being wrapped to being exposed.
5. The control method of the air conditioning system according to claim 4, characterized in that: The step of controlling and adjusting the operating parameters of the air conditioning system according to at least one of the bed temperature and the bed humidity and the type of the abnormal situation specifically includes: According to the fact that the humidity on the bed is greater than or equal to the preset standard humidity and the abnormal situation is the first abnormal situation, the heating device is turned on to heat the outlet air flow, and the operation mode of the air guide plate of the indoor unit is adjusted to the swing mode.
6. The control method of the air conditioning system according to claim 5, characterized in that: Also includes: determining that the heating is continuously turned on for a second set time period and the air guide plate is continuously operated in an oscillating manner for the second set time period, and then obtaining the bed humidity again; When the humidity on the bed is lower than the set standard humidity, the heating device is controlled to be turned off and the air guide plate is restored to the original operation mode.
7. The control method of the air conditioning system according to claim 3, characterized in that: The step of judging whether an abnormal situation occurs to the user on the bed based on the bed temperature and / or the bed humidity, and determining the type of the abnormal situation if the abnormal situation occurs, specifically includes: According to the fact that the decrease in the bed temperature within the first set time period exceeds the second preset mutation value, it is determined that an abnormal situation has occurred, and it is determined that the current abnormal situation is the second abnormal situation in which the user's body surface changes from being exposed to the outside to being covered.
8. The control method of the air conditioning system according to claim 7, characterized in that: The air outlet of the indoor unit is further provided with a cooling device; the step of controlling and adjusting the operating parameters of the air conditioning system according to at least one of the temperature and humidity on the bed and the type of the abnormal condition specifically includes: Get the indoor ambient temperature; According to the fact that the humidity on the bed is lower than the preset standard humidity, the indoor ambient temperature is higher than the standard indoor temperature, and the abnormal situation is the second abnormal situation, the cooling device is turned on to cool the outlet air flow after waiting for the third set time, and the operation mode of the air guide plate of the indoor unit is adjusted to the swinging type.
9. The control method of the air conditioning system according to any one of claims 2 to 8, characterized in that: Also includes: If the indoor unit is not provided with a cooling device, determining that the heating device is turned off; Alternatively, if the indoor unit is provided with a cooling device, determining that both the heating device and the cooling device are turned off; The bed temperature is obtained, and based on a comparison result between the bed temperature and a preset standard temperature, the operating parameters of the indoor unit and / or the outdoor unit are controlled and adjusted to adjust the air outlet temperature.
10. The control method of the air conditioning system according to claim 9, characterized in that: The step of controlling and adjusting the operating parameters of the indoor unit and / or the outdoor unit to adjust the air outlet temperature based on the comparison result of the bed temperature with the preset standard temperature specifically includes: When the bed temperature is lower than the preset standard temperature, controlling the frequency of the compressor to increase so as to increase the air outlet temperature; Alternatively, when the bed temperature is greater than the preset standard temperature, the frequency of the compressor is controlled to decrease to reduce the outlet air temperature.
11. A control device for an air conditioning system according to claim 1, characterized in that: include: An acquisition module is used to determine whether there is someone on the bed in the room, and then obtain the bed temperature and bed humidity of the bed in the room; The control module is used to determine whether an abnormal situation occurs to the user on the bed based on the temperature and / or humidity on the bed, and to control and adjust the working parameters of the air-conditioning system when the abnormal situation occurs.
12. 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 control method of the air-conditioning system according to any one of claims 2 to 10 is implemented.
Citation Information
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