A tent air conditioner and a control method, device, storage medium and program product thereof

By incorporating a flexible air storage bladder and air delivery duct assembly into the tent air conditioner, and using an air intake control valve to regulate the air intake volume and rhythm, combined with ambient temperature and human posture, the problem of excessive noise in tent air conditioners has been solved, thus improving the user's rest experience.

CN119022429BActive Publication Date: 2025-11-07ZHUHAI GREE REFRIGERATION TECH CENT OF ENERGY SAVING & ENVIRONMENTAL PROTECTION
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Patent Information

Application Number
CN202411284802.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-13
Publication Date
2025-11-07
Estimated Expiration
2044-09-13

AI Technical Summary

Technical Problem

The air vents of outdoor tent air conditioners are noisy, which affects the user's rest experience.

Method used

By incorporating flexible air storage bags and air supply components into the tent's air conditioning system, and utilizing an air intake control valve to regulate the air intake volume and rhythm, quiet operation can be achieved by considering the ambient temperature inside the tent, human posture, and noise levels.

Benefits of technology

This reduces the noise of the tent's air conditioner, improving user comfort and rest quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a tent air conditioner and a control method, device, storage medium and computer program product thereof. The method comprises the following steps: acquiring the indoor environment temperature of the tent when the tent air conditioner is running and the mute adjustment mode of the tent air conditioner is turned on; acquiring the human body posture and vital signs of the user in the tent, and acquiring the indoor environment noise of the tent; based on the indoor environment temperature of the tent, combining the human body posture of the user, the human body vital signs of the user and the indoor environment noise of the tent, controlling at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed, so as to control the air inlet amount and air inlet rhythm of the flexible gas storage bag when air is sent to the tent through the air supply tube. According to the scheme, different air inlet amounts and air inlet rhythms of the tent air conditioner are controlled by combining the flexible gas storage bag, the noise is reduced, and the comfort is improved.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of air conditioners, and particularly relates to a control method and device of a tent air conditioner, the tent air conditioner, a storage medium and a computer program product, and more particularly to a control method and device of a mute adjustment system applied to a tent air conditioner, the tent air conditioner, a storage medium and a computer program product. BACKGROUND

[0002] At present, more and more people like to be close to nature, and the outdoor camping industry is being pursued by people. The necessary equipment for outdoor camping is a tent. Therefore, tent air conditioners applied to outdoor tents are also quietly emerging.

[0003] The consumer currently has a pain point when using a tent and a tent air conditioner for outdoor camping. When resting and falling asleep in the tent at night, the consumer hopes to enjoy a quiet rest time, but is often affected by the noise of the air outlet of the tent air conditioner.

[0004] The above content is only used to assist in understanding the technical solutions of the present application and does not represent the acknowledgement of the above content as prior art. SUMMARY

[0005] The purpose of the present application is to provide a control method and device of a tent air conditioner, the tent air conditioner, a storage medium and a computer program product, to solve the problem of large noise of the air outlet of the tent air conditioner, and to improve the user experience. The effect of reducing noise and improving comfort is achieved by controlling the different air intake and air intake rhythm of the tent air conditioner through the combination of a flexible gas storage bag.

[0006] The present application provides a control method of a tent air conditioner, the tent air conditioner having an air conditioner body, a air supply tube assembly and a flexible gas storage bag, the air supply tube assembly having an air supply tube and an air intake control valve; the air outlet of the air conditioner body can directly supply air to the tent, and can also indirectly supply air to the tent through the flexible gas storage bag and the air supply tube; the air intake control valve is used to control the air intake and / or air intake rhythm when the flexible gas storage bag supplies air to the tent through the air supply tube; the control method of the tent air conditioner, comprising: acquiring the indoor environmental temperature of the tent when the tent air conditioner is running and the mute adjustment mode of the tent air conditioner is turned on; acquiring the human body posture and human body vital signs of the user in the tent, and acquiring the indoor environmental noise of the tent; based on the indoor environmental temperature of the tent, in combination with the human body posture of the user, the human body vital signs of the user, and the indoor environmental noise of the tent, at least one of the opening and closing of the air intake control valve, the opening size and opening time when the air intake control valve is opened, and the closing time when the air intake control valve is closed is controlled, to realize the control of the air intake and / or air intake rhythm when the flexible gas storage bag supplies air to the tent through the air supply tube.

[0007] In some embodiments, based on the indoor environment temperature of the tent, in combination with the human posture of the user, the human vital signs of the user, and the indoor environment noise of the tent, controlling at least one of the opening and closing of the air intake control valve, the opening size and opening time of the air intake control valve when opened, and the closing time of the air intake control valve when closed, comprises: determining the size relationship between the indoor environment temperature of the tent and the set temperature; if it is determined that the indoor environment temperature of the tent is less than or equal to the set temperature, controlling the air conditioner body to run in a preset cooling mode, and making the silent adjustment mode of the tent air conditioner standby; if it is determined that the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and a preset threshold value, controlling at least one of the opening and closing of the air intake control valve, the opening size and opening time of the air intake control valve when opened, and the closing time of the air intake control valve when closed according to the human posture of the user and the indoor environment noise of the tent; if it is determined that the indoor environment temperature of the tent is greater than the sum of the set temperature and the preset threshold value, controlling at least one of the opening and closing of the air intake control valve, the opening size and opening time of the air intake control valve when opened, and the closing time of the air intake control valve when closed according to the human posture of the user, the human vital signs of the user, and the indoor environment noise of the tent.

[0008] In some embodiments, the human posture of the user includes: the posture of the user in a lying rest or sleep state, or the posture of the user in a standing or sitting state; and controlling at least one of the opening and closing of the air intake control valve, the opening size and opening time of the air intake control valve when opened, and the closing time of the air intake control valve when closed according to the human posture of the user and the indoor environment noise of the tent comprises: determining whether the user is in a lying rest or sleep state according to the human posture of the user; if it is determined that the user is not in a lying rest or sleep state, controlling the air conditioner body to run in a preset cooling mode, and making the silent adjustment mode of the tent air conditioner standby; if it is determined that the user is in a lying rest or sleep state, controlling the air intake control valve to be closed, making the air outlet of the air conditioner body inflate the flexible air storage bag until the flexible air storage bag is fully inflated, and executing the silent adjustment mode of the tent air conditioner: controlling the air conditioner body to stop directly sending air to the tent; and controlling at least one of the opening and closing of the air intake control valve, the opening size and opening time of the air intake control valve when opened, and the closing time of the air intake control valve when closed according to the indoor environment noise of the tent.

[0009] In some embodiments, the controlling of at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when opened, and the closing time of the air inlet control valve when closed, according to the indoor ambient noise of the tent, comprises: determining whether the indoor ambient noise of the tent is periodic noise; if it is determined that the indoor ambient noise of the tent is not periodic noise, determining whether the indoor ambient noise of the tent is less than or equal to a preset first noise threshold; if it is determined that the indoor ambient noise of the tent is less than or equal to the preset first noise threshold, controlling the air inlet control valve to open at a preset first speed until the indoor ambient noise of the tent rises to a preset second noise threshold, keeping the opening of the air inlet control valve at this time to indirectly supply air to the tent, and then controlling the air inlet control valve to close after the flexible gas storage bag is exhausted; wherein the preset second noise threshold is greater than the preset first noise threshold; if it is determined that the indoor ambient noise of the tent is greater than the preset first noise threshold, controlling the air inlet control valve to open at a preset first speed until the indoor ambient noise of the tent increases by a preset third noise threshold, keeping the opening of the air inlet control valve at this time to indirectly supply air to the tent, and then controlling the air inlet control valve to close after the flexible gas storage bag is exhausted; wherein the preset third noise threshold is less than the preset first noise threshold.

[0010] In some embodiments, the controlling of at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when opened, and the closing time of the air inlet control valve when closed, according to the indoor ambient noise of the tent, further comprises: if it is determined that the indoor ambient noise of the tent is periodic noise, determining the occurrence frequency, duration and pause time of the indoor ambient noise of the tent according to the indoor ambient noise of the tent, denoted as a first noise occurrence frequency, a first noise duration and a first noise pause time; according to the first noise occurrence frequency, controlling the air inlet control valve to open at a preset second speed and for a duration of the first noise duration when the indoor ambient noise of the tent occurs, and then controlling the air inlet control valve to close after the flexible gas storage bag is exhausted; wherein the preset second speed is greater than the preset first speed; according to the first noise occurrence frequency, controlling the air inlet control valve to close and for a duration of the first noise pause time when the indoor ambient noise of the tent stops.

[0011] In some embodiments, the human posture of the user includes a lying posture of the user in a resting or sleeping state, or a standing posture or a sitting posture of the user; and the control of at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when opened, and the closing time of the air inlet control valve when closed, according to the human posture of the user, the human vital signs of the user, and the indoor environmental noise of the tent, includes: determining whether the user is in a lying posture in a resting or sleeping state according to the human posture of the user; if it is determined that the user is not in a lying posture in a resting or sleeping state, controlling the air conditioner body to run in a preset cooling mode, and making the silent adjustment mode of the tent air conditioner standby; if it is determined that the user is in a lying posture in a resting or sleeping state, controlling the air inlet control valve to be closed, making the air outlet of the air conditioner body inflate the flexible gas storage bag until the flexible gas storage bag is fully inflated, and executing the silent adjustment mode of the tent air conditioner: controlling the air conditioner body to stop directly supplying air to the tent; and controlling at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when opened, and the closing time of the air inlet control valve when closed, according to the human posture of the user, the human vital signs of the user, and the indoor environmental noise of the tent.

[0012] In some embodiments, the control of at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when opened, and the closing time of the air inlet control valve when closed, according to the human posture of the user, the human vital signs of the user, and the indoor environmental noise of the tent, includes: determining whether the indoor environmental noise of the tent is periodic noise; if it is determined that the indoor environmental noise of the tent is not periodic noise, determining the human respiratory frequency, human exhalation time and human inhalation time according to the human vital signs of the user; according to the human respiratory frequency, controlling the air inlet control valve to be opened at a preset third speed in the case of human exhalation, and the duration is the human exhalation time, and controlling the air inlet control valve to be closed after the flexible gas storage bag is fully exhausted; wherein the preset third speed is greater than the preset second speed; according to the human respiratory frequency, controlling the air inlet control valve to be closed in the case of human inhalation, and the duration is the human inhalation time.

[0013] In some embodiments, the control of at least one of the opening and closing of the air intake control valve, the opening size and opening time of the air intake control valve when opened, and the closing time of the air intake control valve when closed, according to the human body posture of the user, the human body vital signs of the user, and the indoor ambient noise of the tent, further comprises: if it is determined that the indoor ambient noise of the tent is periodic noise, then determining the occurrence frequency, duration and pause time of the indoor ambient noise of the tent according to the indoor ambient noise of the tent, denoted as a second noise occurrence frequency, a second noise duration and a second noise pause time; according to the second noise occurrence frequency, when the indoor ambient noise of the tent occurs, controlling the air intake control valve to open at a preset third speed and for a duration of the second noise duration until the flexible air storage bag is exhausted and the air intake control valve is closed; according to the second noise occurrence frequency, when the indoor ambient noise of the tent stops, controlling the air intake control valve to close for a duration of the second noise pause time.

[0014] To match the above method, another aspect of the present application provides a control device of a tent air conditioner, the tent air conditioner having an air conditioner body, a supply duct assembly and a flexible air storage bag, the supply duct assembly having a supply duct and an air intake control valve; the air outlet of the air conditioner body can directly supply air to the tent, and can also indirectly supply air to the tent through the flexible air storage bag and the supply duct; the air intake control valve is used to control the air intake amount and / or air intake rhythm when the flexible air storage bag supplies air to the tent through the supply duct; the control device of the tent air conditioner comprises: an acquisition unit configured to acquire the indoor ambient temperature of the tent when the tent air conditioner is running and the silent mode of the tent air conditioner is turned on; acquire the human body posture and human body vital signs of the user in the tent, and acquire the indoor ambient noise of the tent; a control unit configured to control at least one of the opening and closing of the air intake control valve, the opening size and opening time of the air intake control valve when opened, and the closing time of the air intake control valve when closed, based on the indoor ambient temperature of the tent, in combination with the human body posture of the user, the human body vital signs of the user, and the indoor ambient noise of the tent, to achieve control of the air intake amount and / or air intake rhythm when the flexible air storage bag supplies air to the tent through the supply duct.

[0015] In some embodiments, the control unit controls at least one of the opening and closing of the air intake control valve, the opening size and opening time of the air intake control valve when opened, and the closing time of the air intake control valve when closed, based on the indoor environment temperature of the tent, in combination with the human posture of the user, the human vital signs of the user, and the indoor environment noise of the tent, including: determining the size relationship between the indoor environment temperature of the tent and the set temperature; if it is determined that the indoor environment temperature of the tent is less than or equal to the set temperature, controlling the air conditioner body to run in a preset cooling mode, and making the silent adjustment mode of the tent air conditioner standby; if it is determined that the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and a preset threshold value, controlling at least one of the opening and closing of the air intake control valve, the opening size and opening time of the air intake control valve when opened, and the closing time of the air intake control valve when closed, according to the human posture of the user and the indoor environment noise of the tent; if it is determined that the indoor environment temperature of the tent is greater than the sum of the set temperature and the preset threshold value, controlling at least one of the opening and closing of the air intake control valve, the opening size and opening time of the air intake control valve when opened, and the closing time of the air intake control valve when closed, according to the human posture of the user, the human vital signs of the user, and the indoor environment noise of the tent.

[0016] In some embodiments, the human posture of the user includes the posture of the user in a lying rest or sleep state, or the posture of the user in a standing or sitting state; and the control unit controls at least one of the opening and closing of the air intake control valve, the opening size and opening time of the air intake control valve when opened, and the closing time of the air intake control valve when closed, according to the human posture of the user and the indoor environment noise of the tent, including: determining whether the user is in the posture of the lying rest or sleep state according to the human posture of the user; if it is determined that the user is not in the posture of the lying rest or sleep state, controlling the air conditioner body to run in a preset cooling mode, and making the silent adjustment mode of the tent air conditioner standby; if it is determined that the user is in the posture of the lying rest or sleep state, controlling the air intake control valve to be closed, making the air outlet of the air conditioner body inflate the flexible air storage bag until the flexible air storage bag is fully inflated, and executing the silent adjustment mode of the tent air conditioner: controlling the air conditioner body to stop directly sending air to the tent; and controlling at least one of the opening and closing of the air intake control valve, the opening size and opening time of the air intake control valve when opened, and the closing time of the air intake control valve when closed, according to the indoor environment noise of the tent.

[0017] In some embodiments, the control unit controls at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when it is open, and the closing time of the air inlet control valve when it is closed according to the indoor ambient noise of the tent, including: determining whether the indoor ambient noise of the tent is periodic noise; if it is determined that the indoor ambient noise of the tent is not periodic noise, determining whether the indoor ambient noise of the tent is less than or equal to a preset first noise threshold; if it is determined that the indoor ambient noise of the tent is less than or equal to the preset first noise threshold, controlling the air inlet control valve to open at a preset first speed until the indoor ambient noise of the tent rises to a preset second noise threshold, keeping the opening of the air inlet control valve at this time to indirectly supply air to the tent, and then controlling the air inlet control valve to close after the flexible gas storage bag is exhausted; wherein the preset second noise threshold is greater than the preset first noise threshold; if it is determined that the indoor ambient noise of the tent is greater than the preset first noise threshold, controlling the air inlet control valve to open at a preset first speed until the indoor ambient noise of the tent increases by a preset third noise threshold, keeping the opening of the air inlet control valve at this time to indirectly supply air to the tent, and then controlling the air inlet control valve to close after the flexible gas storage bag is exhausted; wherein the preset third noise threshold is less than the preset first noise threshold.

[0018] In some embodiments, the control unit controls at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when it is open, and the closing time of the air inlet control valve when it is closed according to the indoor ambient noise of the tent, further including: if it is determined that the indoor ambient noise of the tent is periodic noise, determining the occurrence frequency, duration and pause time of the indoor ambient noise of the tent according to the indoor ambient noise of the tent, denoted as the first noise occurrence frequency, the first noise duration and the first noise pause time; according to the first noise occurrence frequency, controlling the air inlet control valve to open at a preset second speed and for a duration of the first noise duration when the indoor ambient noise of the tent occurs, and then controlling the air inlet control valve to close after the flexible gas storage bag is exhausted; wherein the preset second speed is greater than the preset first speed; according to the first noise occurrence frequency, controlling the air inlet control valve to close and for a duration of the first noise pause time when the indoor ambient noise of the tent stops.

[0019] In some embodiments, the human posture of the user includes a lying posture or a standing posture; the control unit controls at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when opened, and the closing time of the air inlet control valve when closed according to the human posture of the user, the human vital signs of the user, and the indoor ambient noise of the tent, including: determining whether the user is in a lying posture or a standing posture according to the human posture of the user; if it is determined that the user is not in a lying posture or a standing posture, controlling the air conditioner body to run in a preset cooling mode, and making the silent adjustment mode of the tent air conditioner standby; if it is determined that the user is in a lying posture or a standing posture, controlling the air inlet control valve to be closed, making the air outlet of the air conditioner body inflate the flexible gas storage bag until the flexible gas storage bag is fully inflated, and executing the silent adjustment mode of the tent air conditioner; controlling the air conditioner body to stop directly supplying air to the tent; and controlling at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when opened, and the closing time of the air inlet control valve when closed according to the human posture of the user, the human vital signs of the user, and the indoor ambient noise of the tent.

[0020] In some embodiments, the human vital signs of the user include at least one of the following: human respiratory frequency, human exhalation time, and human inhalation time; the control unit controls at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when opened, and the closing time of the air inlet control valve when closed according to the human posture of the user, the human vital signs of the user, and the indoor ambient noise of the tent, including: determining whether the indoor ambient noise of the tent is periodic noise; if it is determined that the indoor ambient noise of the tent is not periodic noise, determining the human respiratory frequency, the human exhalation time, and the human inhalation time according to the human vital signs of the user; according to the human respiratory frequency, controlling the air inlet control valve to be opened at a preset third speed in the case of human exhalation, and the duration is the human exhalation time, and controlling the air inlet control valve to be closed after the flexible gas storage bag is fully exhausted; wherein the preset third speed is greater than the preset second speed; according to the human respiratory frequency, controlling the air inlet control valve to be closed in the case of human inhalation, and the duration is the human inhalation time.

[0021] In some embodiments, the control unit, according to the human body posture of the user, the human body vital signs of the user, and the indoor environmental noise of the tent, controls at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed, further comprising: if it is determined that the indoor environmental noise of the tent is periodic noise, according to the indoor environmental noise of the tent, determining the occurrence frequency, duration and pause time of the indoor environmental noise of the tent, denoted as a second noise occurrence frequency, a second noise duration and a second noise pause time; according to the second noise occurrence frequency, when the indoor environmental noise of the tent occurs, controlling the air inlet control valve to open at a preset third speed and for a duration of the second noise duration until the flexible gas storage bag is exhausted, and then controlling the air inlet control valve to close; according to the second noise occurrence frequency, when the indoor environmental noise of the tent stops, controlling the air inlet control valve to close for a duration of the second noise pause time.

[0022] In another aspect, the present application provides a tent air conditioner, which is matched with the above-mentioned device, comprising the control device of the tent air conditioner.

[0023] In another aspect, the present application provides a storage medium, which comprises a stored program, wherein when the program is executed, the device where the storage medium is located performs the steps of the control method of the tent air conditioner.

[0024] In another aspect, the present application provides a computer program product, which comprises a computer program, and when the computer program is executed by a processor, the steps of the control method of the tent air conditioner are realized.

[0025] Thus, the scheme of the present application, by setting the flexible gas storage bag and the air supply tube assembly for the tent air conditioner arranged outside the tent, the air inlet of the flexible gas storage bag is connected with the air outlet of the tent air conditioner, the air outlet of the tent air conditioner can be out of the air to the tent through the first channel, and also can be out of the air to the flexible gas storage bag through the second channel; the air supply tube assembly has an air supply tube and an air inlet control valve; the part of the air supply tube located outside the tent has an air inlet, the air inlet is connected with the flexible gas storage bag, and the air inlet control valve is arranged at the air inlet of the air supply tube; the part of the air supply tube located inside the tent has an air outlet, the air outlet of the air supply tube is located inside the tent, and a sensor assembly (such as a millimeter wave radar device, a sound pickup MIC, and an environmental temperature sensor) can be arranged at the part of the air supply tube located inside the tent to obtain the human body posture and the human body life characteristics, the environmental noise and the environmental temperature in the tent; based on different intervals of the environmental temperature, the opening and closing of the air inlet control valve, the opening size and time when the air inlet control valve is opened, and the closing time when the air inlet control valve is closed are controlled in combination with the human body posture, the human body life characteristics and the environmental noise, so as to realize the control of different air inlet quantity and air inlet rhythm; thereby, by combining the flexible gas storage bag, the different air inlet quantity and air inlet rhythm of the tent air conditioner are controlled, the noise is reduced, and the comfort is improved.

[0026] Other features and advantages of the present application will be set forth in the following description, and in part will become apparent to those skilled in the art from the description, or can be learned by practice of the present application.

[0027] The technical scheme of the present application will be further described in detail below with the aid of drawings and examples. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 Flowchart for an embodiment of the control method of the tent air conditioner of the present application;

[0029] Figure 2 Flowchart for an embodiment of at least one of the opening and closing of the air inlet control valve, the opening size and opening time when the air inlet control valve is opened, and the closing time when the air inlet control valve is closed in the method of the present application based on the indoor environmental temperature of the tent, in combination with the human body posture of the user, the human body vital signs of the user, and the indoor environmental noise of the tent;

[0030] Figure 3 Flowchart for an embodiment of at least one of the opening and closing of the air inlet control valve, the opening size and opening time when the air inlet control valve is opened, and the closing time when the air inlet control valve is closed in the method of the present application according to the human body posture of the user and the indoor environmental noise of the tent;

[0031] Figure 4Flowchart of an embodiment of the method of the present application for controlling the air intake control valve in the case where the indoor environmental temperature of the tent is determined to be greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, under non-periodic noise;

[0032] Figure 5 Flowchart of an embodiment of the method of the present application for controlling the air intake control valve in the case where the indoor environmental temperature of the tent is determined to be greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, under periodic noise;

[0033] Figure 6 Flowchart of an embodiment of the method of the present application for controlling at least one of the opening and closing of the air intake control valve, the opening size and opening time of the air intake control valve when opened, and the closing time of the air intake control valve when closed, according to the human posture of the user, the human vital signs of the user, and the indoor environmental noise of the tent;

[0034] Figure 7 Flowchart of an embodiment of the method of the present application for controlling the air intake control valve in the case where the indoor environmental temperature of the tent is determined to be greater than the sum of the set temperature and the preset threshold value, under non-periodic noise;

[0035] Figure 8 Flowchart of an embodiment of the method of the present application for controlling the air intake control valve in the case where the indoor environmental temperature of the tent is determined to be greater than the sum of the set temperature and the preset threshold value, under non-periodic noise;

[0036] Figure 9 Structural diagram of an embodiment of the control device of the tent air conditioner of the present application;

[0037] Figure 10 Flowchart of a control method for a silent adjustment system applied to a tent air conditioner Figure 1 ;

[0038] Figure 11 Flowchart of a control method for a silent adjustment system applied to a tent air conditioner Figure 2 .

[0039] In the embodiments of the present application, the reference signs in the drawings are as follows in combination with the drawings:

[0040] 102 - acquisition unit; 104 - control unit. DETAILED DESCRIPTION

[0041] To make the objectives, technical solutions, and advantages of this invention clearer, the technical solutions of this invention will be clearly and completely described below in conjunction with specific embodiments and corresponding drawings. Obviously, the described embodiments are only a part of the embodiments of this invention, and not all of them. Based on the embodiments of this invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this invention.

[0042] To meet the need for quiet operation of tent air conditioners in special scenarios such as nighttime, this invention proposes a control method for tent air conditioners. Specifically, it is a control method for a quiet adjustment system applied to tent air conditioners. The method aims to achieve a quiet adjustment mode for tent air conditioners by setting up a flexible air storage bladder and an air intake control valve. A millimeter-wave radar device detects the physiological indicators and rest / sleep status of the human body inside the tent. Combined with ambient temperature data collected by an ambient temperature sensor, under different temperature conditions, when the user is detected to be in rest or sleep mode, the flexible air storage bladder is inflated. Different air delivery cooling modes are then used to achieve the quiet adjustment function.

[0043] According to an embodiment of the present invention, a control method for a tent air conditioner is provided, such as... Figure 1 The diagram shows a flowchart of an embodiment of the method of the present invention. The tent air conditioner includes an air conditioner body, an air supply duct assembly, and a flexible air reservoir. The air supply duct assembly includes an air supply duct and an air intake control valve; preferably, the air supply duct assembly includes an air supply duct, a sensor device, and an air intake control valve. The air outlet of the air conditioner body can directly supply air to the tent, or indirectly supply air to the tent through the flexible air reservoir and the air supply duct. For example, the air outlet of the air conditioner body leads to the interior of the tent and the air inlet of the flexible air reservoir, respectively. Specifically, the air outlet of the air conditioner body leads to the interior of the tent through a preset first channel and to the air inlet of the flexible air reservoir through a preset second channel; the air supply duct is equipped with... The flexible air reservoir is positioned between the flexible air reservoir and the tent. Specifically, the flexible air reservoir can supply air to the air supply duct, such as the exhaust port of the flexible air reservoir being connected to the air inlet of the air supply duct, and the air supply duct can supply air to the tent, such as the exhaust port of the air supply duct leading to the tent. The air intake control valve is used to control the air intake volume and / or air intake rhythm when the flexible air reservoir supplies air to the tent through the air supply duct, that is, to control the air intake channel of the flexible air reservoir to the air supply duct. The air intake control valve is located at the exhaust port of the flexible air reservoir or in the air supply duct, preferably at the air inlet of the air supply duct.

[0044] In the scheme of the present application, the tent air conditioner matches the air supply tube assembly, the air supply tube assembly includes an air supply tube, the part of the air supply tube extending into the tent interior is provided with a millimeter wave radar device, a sound pickup MIC, and an ambient temperature sensor, and the part of the air supply tube not extending into the tent interior is provided with a flexible gas storage bag and an air inlet control valve (generally, when the tent air conditioner is working, it is placed outside the tent). The use scenario of the air supply tube is that when the air conditioner is not suitable to be placed inside the tent, the air conditioner is placed outside the tent, at this time the air conditioner needs a pipeline to blow cold air into the tent, and the role of the air supply tube is to connect the air conditioner placed outside the tent and the tent, and guide the cold air from the air conditioner into the tent, and the structure thereof can be similar to that of an exhaust hood pipeline or a washing machine drain pipe. The air supply tube and the air outlet of the tent air conditioner are connected through clamping and quick assembly and disassembly, for example, the air supply tube and the air outlet of the air conditioner are connected through buckling or screw connection, and the sensors and electrical components on the air supply tube are powered by the tent air conditioner after being clamped and installed.

[0045] In the scheme of the present application, as shown in Figure 1 the control method of the tent air conditioner comprises steps S110 to S120.

[0046] At step S110, when the tent air conditioner is running and the quiet adjustment mode of the tent air conditioner is turned on, the indoor environment temperature of the tent is acquired, specifically, the ambient temperature T i of the internal environment of the tent is acquired, the human body posture and the human body vital signs of the user in the tent are acquired, and the indoor environment noise of the tent is acquired, specifically, the ambient noise value S of the internal environment of the tent is acquired. For example, the part of the air supply tube extending into the tent interior is provided with a millimeter wave radar device, a sound pickup MIC, and an ambient temperature sensor. The ambient temperature sensor can detect the ambient temperature T i of the internal environment of the tent. The millimeter wave radar device can detect the posture of the human body (such as sleeping posture, sitting posture, standing posture, etc.) and the vital signs of the human body (including breathing frequency and breathing time). The sound pickup MIC can collect the ambient noise in the tent. Generally, the space in the tent is small, and the noise difference caused by the distance difference between the human ear and the sound source is ignored in the scheme of the present application.

[0047] At step S120, based on the indoor environment temperature of the tent, in combination with the human body posture of the user, the human body vital signs of the user, and the indoor environment noise of the tent, at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed is controlled to realize the control of the air inlet amount and / or air inlet rhythm when the flexible gas storage bag is blown to the tent through the air supply cylinder.

[0048] The control scheme of the silent adjustment system applied to the tent air conditioner provided in the scheme of the present application realizes the silent adjustment mode of the tent air conditioner by arranging the flexible gas storage bag and the air inlet control valve, detects the physiological indicators and rest and sleep states of the human body in the tent through the millimeter wave radar device, combines the environment temperature data of the tent collected by the environment temperature sensor, and opens the flexible gas storage bag to inflate when detecting that the user is in the rest or sleep mode under different temperature conditions, so as to realize the silent adjustment function by using different air supply refrigeration modes; thereby, the problem that the tent air conditioner in the related scheme pursues rapid refrigeration to cause large air supply noise and affect the rest of the user is solved.

[0049] In some embodiments, the specific process of controlling at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed based on the indoor environment temperature of the tent, in combination with the human body posture of the user, the human body vital signs of the user, and the indoor environment noise of the tent in step S120 is described in the following example.

[0050] The following will be described in combination with Figure 2 The following will be described in combination with

[0051] Step S210, determining the size relationship between the indoor environment temperature of the tent and the set temperature. Wherein, the set temperature is T0.

[0052] Step S220, if it is determined that the indoor environment temperature of the tent is less than or equal to the set temperature, controlling the air conditioner body to run a preset cooling mode, so that the silent adjustment mode of the tent air conditioner is in standby, i.e. the air outlet of the air conditioner body directly sends air to the tent.

[0053] Step S230, if it is determined that the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when it is opened, and the closing time of the air inlet control valve when it is closed is controlled according to the human posture of the user and the indoor environment noise of the tent.

[0054] In some embodiments, the human posture of the user includes the posture of the user lying down for rest or sleep, or the posture of the user standing or sitting. In step S230, in the case where it is determined that the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, the specific process of controlling at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when it is opened, and the closing time of the air inlet control valve when it is closed according to the human posture of the user and the indoor environment noise of the tent is described in the following exemplary description.

[0055] The following will be described in conjunction with Figure 3 The following will be described in conjunction with

[0056] Step S310, in the case where it is determined that the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, determining whether the user is in the posture of lying down for rest or sleep according to the human posture of the user.

[0057] Step S320, in the case that the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, if it is determined that the user is not in a lying rest or sleep posture, the air conditioner body is controlled to run in a preset cooling mode, and the silent adjustment mode of the tent air conditioner is in standby, that is, the air outlet of the air conditioner body directly supplies air to the tent.

[0058] Step S330, in the case that the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, if it is determined that the user is in a lying rest or sleep posture, the air inlet control valve is controlled to be closed, the air outlet of the air conditioner body supplies air to the flexible air storage bag until the flexible air storage bag is fully inflated, and the silent adjustment mode of the tent air conditioner is executed: the air conditioner body is controlled to stop directly supplying air to the tent; and at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed is controlled according to the indoor environment noise of the tent.

[0059] Figure 10 Flowchart of the control method of the silent adjustment system applied to the tent air conditioner Figure 1 , specifically the control method of the silent adjustment system applied to the tent air conditioner when the set temperature T0< tent indoor temperature T i ≤ T0+2.5℃. As shown in Figure 10 , the control method of the silent adjustment system applied to the tent air conditioner comprises:

[0060] Step 11, in the case that the tent air conditioner is normally working and the user sets the tent air conditioner to start the silent adjustment mode, the tent indoor millimeter wave radar device detects the human physiological indicators in the tent, the tent indoor temperature and humidity sensor detects the environmental information in the tent, and the size relationship of the set temperature T0< tent indoor temperature T i is compared: if the set temperature T0< tent indoor temperature T i ≤ the set temperature T0+2.5℃, step 12 is executed; if the tent indoor temperature T i ≤ the set temperature T0, it indicates that the environmental temperature does not need to be adjusted at this time, and the silent adjustment mode of the tent air conditioner is in standby; if the tent indoor temperature T i > the set temperature T0+2.5℃, step 21 in Figure 11 is executed. Wherein, the set temperature T0 represents the temperature that the user sets to be reached in the tent air conditioner, and the user can set the temperature. The temperature range of the conventional tent air conditioner is 16℃-30℃; if the user does not set, the system can set the default value as 25℃.

[0061] In step 11, the tent millimeter wave radar device detects the physiological indicators of the human body in the tent. The millimeter wave radar device can detect the posture of the human body and the vital signs of the human body, including the breathing rate. The tent temperature sensor obtains the environmental temperature information. Because the tent space is small, the temperature field is not considered to be uneven, and the temperature difference at each position in the tent is caused by the uneven temperature field, and the inside of the tent is considered to be a uniform temperature field. At the same time, the acquisition of the temperature inside the tent and the acquisition of the physiological indicators and the breathing state of the human body can also be obtained through other sensors and wearable devices inside the tent, and shared with the tent air conditioner through Bluetooth.

[0062] Step 12, the working principle of the millimeter wave radar device is to monitor the state and physiological indicators of the human body by emitting electromagnetic waves, even the state and action of falling, to determine whether the human body is on the bed, whether it belongs to deep sleep or light sleep, etc. According to the physiological indicators of the human body in the tent detected by the tent millimeter wave radar device, it is judged whether the human body is in a lying rest or sleep state (i.e. the default state): if so, the air inlet control valve of the flexible gas storage bag leading to the inside of the tent is closed, the cold air of the tent air conditioner is filled into the flexible gas storage bag, and then step 13 is executed; if not, the tent air conditioner enters a normal refrigeration state.

[0063] In the process of charging the flexible gas storage bag with the tent air conditioner, the air conditioner only delivers cold air to the flexible gas storage bag. Because the working condition of charging the flexible gas storage bag is that the state of the human body needing rest or sleep has been detected, the air conditioner needs to be in silent mode at this time, so during the charging process, the air conditioner only charges the flexible gas storage bag, and the delivery of cold air to the inside of the tent is controlled by the flexible gas storage bag.

[0064] In the case that the tent air conditioner enters a normal refrigeration state, the normal refrigeration state is divided into two cases: the first case is when the air conditioner is placed inside the tent, at this time the air conditioner directly sends air to the inside of the tent, and does not need a air supply tube. The second case is when the air conditioner is placed outside the tent, at this time the user considers that the tent space is small, or the air conditioner itself works and affects the temperature inside the tent, or considers that the air conditioner works with a large noise, at this time the air conditioner needs to be connected with an air supply tube to deliver the cold air of the air conditioner to the inside of the tent; when placed outside the tent and the user is also outside, at this time the user can choose to directly use the air conditioner to cool himself, or can connect the air supply pipe to cool himself.

[0065] Step 13, the air inlet control valve of the flexible gas storage bag leading to the inside of the tent is closed, the cold air of the tent air conditioner is filled into the flexible gas storage bag, the flexible gas storage bag is charged, the tent air conditioner is in a silent standby mode, and the sound pickup MIC picks up the environmental noise value S in the tent (real-time picking up the environmental noise), and then step 14 is executed. Among them, the tent environmental noise value S represents the noise value collected by the sound pickup microphone in the tent, with a unit of DB, and the pickup range is 0-60DB.

[0066] In the scheme of the present application, the tent air conditioner is provided with a flexible gas storage bag, and at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed is controlled according to the human body posture of the user and the indoor environment noise of the tent when the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, so that the air inlet valve of the tent air conditioner is closed, the cold air blown out by the tent air conditioner is stored in the flexible gas storage bag, the superposition of the working noise and the exhaust noise of the tent air conditioner is avoided, the control of different air inlet amounts and air inlet rhythms is realized, the noise of the refrigeration adjustment is reduced, and the comfort is improved.

[0067] In some embodiments, at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed is controlled according to the indoor environment noise of the tent when the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, including: controlling the process of the air inlet control valve under the non-periodic noise when the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value.

[0068] The following will be described in combination with Figure 4 The following will be described in combination with

[0069] Step S410, when the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, it is determined whether the indoor environment noise of the tent is periodic noise.

[0070] Step S420, when the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, if it is determined that the indoor environment noise of the tent is not periodic noise, it is determined whether the indoor environment noise of the tent is less than or equal to the preset first noise threshold value. Wherein, the preset first noise threshold value is, for example, 25DB.

[0071] Step S430, in the case that the indoor environment temperature of the tent is determined to be greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, and the indoor environment noise of the tent is determined to be not periodic noise, if it is determined that the indoor environment noise of the tent is less than or equal to the preset first noise threshold value, the air inlet control valve is controlled to open at a preset first speed until the indoor environment noise of the tent increases to a preset second noise threshold value, the air inlet control valve is kept at the opening at this time to indirectly supply air to the tent, and after the flexible gas storage bag is exhausted, the air inlet control valve is controlled to close, and then returns to control at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when it is opened, and the closing time of the air inlet control valve when it is closed based on the indoor environment temperature of the tent, the user's body posture, the user's body vital signs, and the indoor environment noise of the tent. The preset second noise threshold value is greater than the preset first noise threshold value. The preset second noise threshold value is, for example, 30DB.

[0072] Step S440, in the case that the indoor environment temperature of the tent is determined to be greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, and the indoor environment noise of the tent is determined to be not periodic noise, if it is determined that the indoor environment noise of the tent is greater than the preset first noise threshold value, the air inlet control valve is controlled to open at a preset first speed until the indoor environment noise of the tent increases by a preset third noise threshold value, the air inlet control valve is kept at the opening at this time to indirectly supply air to the tent, and after the flexible gas storage bag is exhausted, the air inlet control valve is controlled to close, and then returns to control at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when it is opened, and the closing time of the air inlet control valve when it is closed based on the indoor environment temperature of the tent, the user's body posture, the user's body vital signs, and the indoor environment noise of the tent. The preset third noise threshold value is less than the preset first noise threshold value. The preset third noise threshold value is, for example, 5DB.

[0073] As shown in Figure 10 the control method applied to the noise adjustment system of the tent air conditioner further comprises:

[0074] Step 14, determine whether the periodically repeated noise value (mainly refers to snoring) is detected: if not, step 15 is executed, if yes, step 16 is executed. For example: when the MIC picks up the noise, it is recorded and stored in the air conditioner main control unit, and the air conditioner main control unit can draw the audio curve of the obtained noise, which includes the size, average value, peak and valley, duration of the audio, and records the time when the noise is obtained; When the MIC picks up the noise again, the system will still repeat this operation, and compare it with the noise spectrum that has been picked up, when the data of its spectral characteristics coincide more than 60%, and its repetition times exceed 5 times, it can be determined that there is periodic repeated noise.

[0075] Step 15, if the periodically repeated noise value (mainly refers to snoring) is not detected, determine whether the tent environment noise value S≤25DB is met: if yes, the valve inlet opens at a speed K1 until the noise reaches 30DB, and the opening size is maintained without further expansion; if not, the valve inlet opens at a speed K1 until the noise reaches S+5DB, and the opening size is maintained without further expansion. Then, the opening of the valve inlet is maintained at this opening size, and cold air is input to the tent until the flexible gas storage bag is exhausted, the air inlet control valve is closed, and then the operation is returned to step 12 for recycling. Wherein, the speed K1 is 0.5cm / s, the inlet size is set to a rectangle with a width of 1cm and a length of 8cm; the air inlet control valve is an electromagnetic valve, and the electromagnetic valve opening is in the length direction of the rectangle. According to the actual environmental test and the relevant data, the ideal sleep environment noise value is controlled at 30DB; if the environmental noise value S has exceeded 25DB without opening the valve inlet, assuming it is 30DB, in order to adjust the indoor air, the valve inlet still needs to be opened for temperature adjustment, but in order to further reduce the noise value, the noise value generated by the valve opening is controlled at 5DB.

[0076] The tent air conditioner utilizes a pickup MIC to obtain the environmental noise in the tent, and combines the environmental noise value to judge the opening size of the air inlet control valve. When the environmental noise is less than or equal to 25 DB, the air inlet of the valve body is gradually opened until the noise value reaches 30 DB. When the environmental noise is greater than 25 DB, the air inlet of the valve body is gradually opened until the noise value reaches the environmental noise value S+5 DB, so as to realize the control of different air inlet quantity and air inlet rhythm, reduce the noise of refrigeration adjustment, and improve the comfort. The process of opening the air inlet of the valve body can be controlled by the main control unit. When the air inlet of the valve body is gradually opened, the gas passes through the air inlet of the valve body. With the gradually increasing hole of the air inlet of the valve body, the noise value also increases. For example, the noise value starts from S. When the air inlet of the valve body is gradually opened, the noise increases. At this time, the MIC monitors the noise data inside the tent in real time. When the air inlet of the valve body is continuously gradually opened, the MIC monitors that the noise value has reached S+5. The main control unit will issue a control instruction to stop the air inlet of the valve body from continuing to open.

[0077] In some embodiments, in the case where it is determined in step S330 that the indoor environmental temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when it is opened, and the closing time of the air inlet control valve when it is closed is controlled according to the indoor environmental noise of the tent, further comprising: in the case where it is determined that the indoor environmental temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, controlling the air inlet control valve under periodic noise.

[0078] The following will be described in combination with Figure 5 An embodiment flowchart of controlling the air inlet control valve under periodic noise in the case where it is determined that the indoor environmental temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value in the method of the present application shown in FIG. 10, further illustrates the specific process of controlling the air inlet control valve under periodic noise in step S330 in the case where it is determined that the indoor environmental temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, comprising steps S510 to S530.

[0079] Step S510, in the case that the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, if it is determined that the indoor environment noise of the tent is periodic noise, the occurrence frequency, the duration time and the rest time of the indoor environment noise of the tent are determined according to the indoor environment noise of the tent, which are recorded as the first noise occurrence frequency, the first noise duration time and the first noise rest time. Wherein, the first noise occurrence frequency is like noise occurrence frequency H1, the first noise duration time is like duration time TO, and the first noise rest time is like rest time TF.

[0080] Step S520, in the case that the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, and it is determined that the indoor environment noise of the tent is periodic noise, the air inlet control valve is controlled to open at a preset second speed in the case that the indoor environment noise of the tent occurs, and the duration time is the first noise duration time, until the air inlet control valve is controlled to close after the flexible gas storage bag is exhausted, and then returns to control at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when it is opened, and the closing time of the air inlet control valve when it is closed, based on the indoor environment temperature of the tent, combined with the human body posture of the user, the human body vital signs of the user, and the indoor environment noise of the tent; wherein, the preset second speed is greater than the preset first speed.

[0081] Step S530, in the case that the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, and it is determined that the indoor environment noise of the tent is periodic noise, the air inlet control valve is controlled to close in the case that the indoor environment noise of the tent stops, and the duration time is the first noise rest time, and the cycle is repeated.

[0082] As Figure 10As shown, the control method of the noise adjustment system applied to the tent air conditioner further comprises: step 16, if the periodically repeated noise value (mainly referring to snoring sound) is detected, the pickup MIC obtains the first noise occurrence frequency H1 and the duration TO and the rest time TF; the data is transmitted to the air conditioner control module, and the control module adjusts the working current of the air inlet control valve: according to the first noise occurrence frequency H1, when the noise occurs, the system controls the air inlet of the valve body to open at a speed K2, and the time is the duration TO of the noise, so that the cold air is input to the tent through the opening, until the flexible gas storage bag is exhausted, the air inlet control valve is closed, and then the operation is recycled again in step 12; when the noise stops, the system controls the valve body to be closed, and the closing time is the rest time TF of the noise. Wherein, the speed K2 is 1.0 cm / s, the air inlet size is set to a rectangle with a width of 1 cm and a length of 8 cm; the air inlet control valve is an electromagnetic valve, and the electromagnetic valve opening is in the length direction of the rectangle.

[0083] Wherein, the noise data obtained by the pickup MIC is transmitted to the main control unit, the main control unit draws the audio frequency spectrum curve of the obtained noise data, the curve clearly records and describes the noise starting time, rising curve, falling curve, repetition period and wave crest and trough value of the audio, so as to obtain the first noise occurrence frequency H1 and the duration TO and the rest time TF. In addition, the millimeter wave human body detection sensor can realize human body biological existence perception and human body motion perception, continuously record the human body existence condition, and judge the sleep state and respiratory heartbeat frequency of the target in real time according to the body motion amplitude change and respiratory and heart rate change in the sleep process; the millimeter wave human body detection sensor can realize human body posture recognition through point cloud imaging algorithm, accurately recognize the lying state, and perform accurate life detection, report parameters such as falling state, stay time and body static state.

[0084] It should be noted that the environmental temperature sensor also obtains environmental temperature data at a certain time interval, and if the environmental temperature data is not in the range, the operation program corresponding to the temperature range is executed.

[0085] In the scheme of the application, the set temperature T0 is less than the temperature T in the tent i≤ set temperature T0+2.5℃, the tent air conditioner uses a microphone (MIC) to obtain the environmental noise in the tent. If the environment does not have periodic repeated noise, the opening size of the air inlet control valve is determined in combination with the environmental noise value. When the environmental noise is less than or equal to 25 decibels (DB), the air inlet of the valve body (i.e., the opening of the air inlet control valve) is gradually opened until the noise value reaches 30 DB. When the environmental noise is greater than 25 DB, the air inlet of the valve body is gradually opened until the noise value reaches the environmental noise value+5 DB. In the scheme of the present application, for the case of set temperature T0 i ≤ set temperature T0+2.5℃, the tent air conditioner uses a microphone (MIC) to obtain the environmental noise in the tent. If the environment does not have periodic repeated noise, the opening size of the air inlet control valve is determined in combination with the environmental noise value. When the environmental noise is less than or equal to 25 decibels (DB), the air inlet of the valve body (i.e., the opening of the air inlet control valve) is gradually opened until the noise value reaches 30 DB. When the environmental noise is greater than 25 DB, the air inlet of the valve body is gradually opened until the noise value reaches the environmental noise value+5 DB. In the scheme of the present application, for the case of set temperature T0

[0086] In step S240, if it is determined that the indoor environmental temperature of the tent is greater than the sum of the set temperature and the preset threshold value, at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when it is opened, and the closing time of the air inlet control valve when it is closed is controlled according to the human posture of the user, the human vital signs of the user, and the indoor environmental noise of the tent.

[0087] In the scheme of the present application, by providing the air supply tube assembly of the tent air conditioner, the tent air conditioner detects whether the user is in a lying rest or sleep state according to the environmental temperature in the tent, in combination with the millimeter wave radar device, provides different modes of silent adjustment mode, uses the flexible gas storage bag to temporarily store cold air, and adjusts the current size of the air inlet control valve of the air supply tube assembly according to the environmental temperature and the environmental noise, to realize the control of different air inlet amounts and air inlet rhythms, so as to reduce the noise of refrigeration adjustment and achieve the experience effect of quiet adjustment.

[0088] In some embodiments, the human posture of the user includes the posture of the user in a lying rest or sleep state, or the posture of the user in a standing or sitting state. In step S240, in the case where it is determined that the indoor environmental temperature of the tent is greater than the sum of the set temperature and the preset threshold value, at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when it is opened, and the closing time of the air inlet control valve when it is closed is controlled according to the human posture of the user, the human vital signs of the user, and the indoor environmental noise of the tent. The specific process is described in the following exemplary description.

[0089] The following will be described in combination with Figure 6An embodiment flowchart of the method of the present application for controlling at least one of the opening and closing of the air intake control valve, the opening size and opening time of the air intake control valve when open, and the closing time of the air intake control valve when closed according to the user's body posture, the user's body vital signs, and the indoor ambient noise of the tent in step S240 is shown in the figure, which further illustrates the specific process of controlling at least one of the opening and closing of the air intake control valve, the opening size and opening time of the air intake control valve when open, and the closing time of the air intake control valve when closed according to the user's body posture, the user's body vital signs, and the indoor ambient noise of the tent in step S240, including steps S610 to S630.

[0090] Step S610, in the case where it is determined that the indoor ambient temperature of the tent is greater than the sum of the set temperature and the preset threshold value, according to the user's body posture, it is determined whether the user is in a lying resting or sleeping posture.

[0091] Step S620, in the case where it is determined that the indoor ambient temperature of the tent is greater than the sum of the set temperature and the preset threshold value, if it is determined that the user is not in a lying resting or sleeping posture, the air conditioner body is controlled to run in a preset cooling mode, and the silent adjustment mode of the tent air conditioner is put on standby, i.e., the air outlet of the air conditioner body directly supplies air to the tent.

[0092] Step S630, in the case where it is determined that the indoor ambient temperature of the tent is greater than the sum of the set temperature and the preset threshold value, if it is determined that the user is in a lying resting or sleeping posture, the air intake control valve is controlled to be closed, the air outlet of the air conditioner body is controlled to supply air to the flexible air storage bag until the flexible air storage bag is fully inflated, and the silent adjustment mode of the tent air conditioner is executed: the air conditioner body is controlled to stop directly supplying air to the tent; and at least one of the opening and closing of the air intake control valve, the opening size and opening time of the air intake control valve when open, and the closing time of the air intake control valve when closed is controlled according to the user's body posture, the user's body vital signs, and the indoor ambient noise of the tent.

[0093] Figure 11 Flowchart of the control method for the silent adjustment system of the tent air conditioner Figure 2 , specifically the control method for the silent adjustment system of the tent air conditioner when the temperature Ti in the tent is greater than T0+2.5℃. As Figure 11 shown, the control method for the silent adjustment system of the tent air conditioner includes:

[0094] Step 21, according to the physiological indexes of the human body in the tent detected by the millimeter wave radar device in the tent, it is judged whether the human body is in a lying rest or sleep state (i.e. a default state): if yes, the air inlet control valve of the flexible gas storage bag leading to the inside of the tent is closed, the cold air of the tent air conditioner is filled into the flexible gas storage bag, and then step 22 is performed; if no, the tent air conditioner enters a normal refrigeration state.

[0095] Step 22, the air inlet control valve of the flexible gas storage bag leading to the inside of the tent is closed, the cold air of the tent air conditioner is filled into the flexible gas storage bag, the flexible gas storage bag is fully inflated, the tent air conditioner is in a silent standby mode, the sound pickup MIC picks up the environmental noise value S in the tent (real-time picking up of environmental noise), and it is judged whether a periodically repeated noise value (mainly snoring sound) is detected: if no, step 23 is performed, and if yes, step 24 is performed.

[0096] In the scheme of the present application, the tent air conditioner is provided with a flexible gas storage bag, and in the case where the indoor environmental temperature of the tent is greater than the sum of the set temperature and the preset threshold value, at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when it is opened, and the closing time of the air inlet control valve when it is closed is controlled according to the human body posture of the user and the indoor environmental noise of the tent, so that when the silent adjustment mode is opened, the air inlet valve of the tent air conditioner is closed, the cold air blown out by the tent air conditioner is stored in the flexible gas storage bag, the superposition of the working noise and the exhaust noise of the tent air conditioner is avoided, the control of different air inlet amounts and air inlet rhythms is realized, the noise of refrigeration adjustment is reduced, and the comfort is improved.

[0097] In some embodiments, the human body vital signs of the user include at least one of the following: human body breathing frequency, human body exhalation time, and human body inhalation time. In step S630, in the case where the indoor environmental temperature of the tent is greater than the sum of the set temperature and the preset threshold value, at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when it is opened, and the closing time of the air inlet control valve when it is closed is controlled according to the human body posture of the user, the human body vital signs of the user, and the indoor environmental noise of the tent, including: in the case where the indoor environmental temperature of the tent is greater than the sum of the set temperature and the preset threshold value, the process of controlling the air inlet control valve under non-periodic noise.

[0098] The following will be described in combination with Figure 7Fig. 7 shows a flowchart of an embodiment of the method of the present application for controlling the air inlet control valve under non-periodic noise when it is determined that the indoor environmental temperature of the tent is greater than the sum of the set temperature and the preset threshold value, further illustrating the specific process of controlling the air inlet control valve under non-periodic noise when it is determined that the indoor environmental temperature of the tent is greater than the sum of the set temperature and the preset threshold value in step S630, including steps S710-S740.

[0099] Step S710, when it is determined that the indoor environmental temperature of the tent is greater than the sum of the set temperature and the preset threshold value, determining whether the indoor environmental noise of the tent is periodic noise.

[0100] Step S720, when it is determined that the indoor environmental temperature of the tent is greater than the sum of the set temperature and the preset threshold value, if it is determined that the indoor environmental noise of the tent is not periodic noise, determining the human respiratory frequency, human exhalation time and human inhalation time according to the human vital signs of the user.

[0101] Step S730, when it is determined that the indoor environmental temperature of the tent is greater than the sum of the set temperature and the preset threshold value, and it is determined that the indoor environmental noise of the tent is not periodic noise, controlling the air inlet control valve to open at a preset third speed in the case of human exhalation according to the human respiratory frequency, and the duration is the human exhalation time, until the air inlet control valve is closed after the flexible gas storage bag is exhausted, and then returning to control at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when it is opened, and the closing time of the air inlet control valve when it is closed based on the indoor environmental temperature of the tent, the human posture of the user, the human vital signs of the user, and the indoor environmental noise of the tent again; wherein the preset third speed is greater than the preset second speed.

[0102] Step S740, when it is determined that the indoor environmental temperature of the tent is greater than the sum of the set temperature and the preset threshold value, and it is determined that the indoor environmental noise of the tent is not periodic noise, controlling the air inlet control valve to close in the case of human inhalation according to the human respiratory frequency, and the duration is the human inhalation time, and so on.

[0103] As Figure 11As shown, the control method of the noise adjustment system applied to the tent air conditioner further comprises: step 23, if the periodically repeated noise value (mainly referring to snoring sound) is not detected, the millimeter wave obtains the human body breathing frequency H and the exhale time TH and inhale time TX; the data is transmitted to the air conditioner control module, the control module adjusts the working current of the control valve: when the human body inhales, the system controls the air inlet of the valve body to be closed, and the time is TX; when the human body exhales, the system controls the air inlet of the valve body to be opened at a speed of K3, and the time is TH; until the air bag is exhausted, the control valve is closed; the human body state is determined again, and the cycle is repeated.

[0104] Wherein, the system picks up the exhale time of the user, which is obtained according to the millimeter wave radar device capable of accurately obtaining the physiological characteristics of the human body, and the human body breathing frequency H is 12-20 times per minute; the exhale time TH is, for example, 2 seconds; the inhale time TX is, for example, 3 seconds. The millimeter wave radar device detects the physiological indicators of the human body in the tent, and the millimeter wave radar device can detect the posture of the human body and the vital signs of the human body including the breathing frequency, detect the breathing time, and generally, the human body breathing frequency is 12-20 times per minute, the inhale time is generally 3 seconds, and the exhale time is 2 seconds. With the breathing rhythm of the human body, the air inlet frequency can be provided, and the effect of assisting sleep can be formed in the state of rest or sleep of the human body. The speed K3 is 3 cm / s, the size of the air inlet is set to a rectangle with a width of 1 cm and a length of 8 cm, and the electromagnetic valve is opened in the length direction of the rectangle.

[0105] In the scheme of the present application, in the case where it is determined that the indoor environment temperature of the tent is greater than the sum of the set temperature and the preset threshold value, at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed is controlled according to the human body posture of the user, the vital signs of the user, and the indoor environment noise of the tent, avoiding the superposition of the working noise and the exhaust noise of the tent air conditioner, realizing the control of different air inlet quantities and air inlet rhythms, reducing the noise of refrigeration adjustment, and improving the comfort.

[0106] In some embodiments, in the case where it is determined that the indoor environment temperature of the tent is greater than the sum of the set temperature and the preset threshold value in step S630, at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed is controlled according to the human body posture of the user, the vital signs of the user, and the indoor environment noise of the tent, and the process of controlling the air inlet control valve under the non-periodic noise in the case where it is determined that the indoor environment temperature of the tent is greater than the sum of the set temperature and the preset threshold value.

[0107] The following will be described in combination withFigure 8 Fig. 8 shows a flowchart of an embodiment of the method of the present application for controlling the air intake control valve under non-periodic noise when it is determined that the indoor environmental temperature of the tent is greater than the sum of the set temperature and the preset threshold value, further illustrating the specific process of controlling the air intake control valve under non-periodic noise when it is determined that the indoor environmental temperature of the tent is greater than the sum of the set temperature and the preset threshold value in step S630, including steps S810-S830.

[0108] Step S810, when it is determined that the indoor environmental temperature of the tent is greater than the sum of the set temperature and the preset threshold value, if it is determined that the indoor environmental noise of the tent is periodic noise, then according to the indoor environmental noise of the tent, the occurrence frequency, duration and pause time of the indoor environmental noise of the tent are determined, denoted as the second noise occurrence frequency, the second noise duration and the second noise pause time. Among them, the second noise occurrence frequency is like noise occurrence frequency H2, the second noise duration is like duration TO1, and the second noise pause time is like pause time TF1.

[0109] Step S820, when it is determined that the indoor environmental temperature of the tent is greater than the sum of the set temperature and the preset threshold value, and it is determined that the indoor environmental noise of the tent is periodic noise, according to the second noise occurrence frequency, when the indoor environmental noise of the tent occurs, control the air intake control valve to open at a preset third speed and the duration is the second noise duration, until the flexible gas storage bag is exhausted, then control the air intake control valve to close, and then return to control at least one of the opening and closing of the air intake control valve, the opening size and opening time when the air intake control valve is opened, and the closing time when the air intake control valve is closed based on the indoor environmental temperature of the tent, combined with the human body posture of the user, the human body vital signs of the user, and the indoor environmental noise of the tent.

[0110] Step S830, when it is determined that the indoor environmental temperature of the tent is greater than the sum of the set temperature and the preset threshold value, and it is determined that the indoor environmental noise of the tent is periodic noise, according to the second noise occurrence frequency, when the indoor environmental noise of the tent stops, control the air intake control valve to close and the duration is the second noise pause time, and repeat the cycle.

[0111] As Figure 11As shown, the control method of the noise adjustment system applied to the tent air conditioner further comprises: step 24, if the periodically repeated noise value (mainly referring to snoring sound) is detected, the pickup MIC acquires the first noise occurrence frequency H2 and the duration TO1 and the pause time TF1; the data is transmitted to the air conditioner control module, and the control module adjusts the working current of the air inlet control valve: according to the first noise occurrence frequency H1, when the noise occurs, the system controls the air inlet of the valve body to be opened at a speed K3, and the time is the duration TO1 of the noise, so that the cold air is input to the tent through the opening, until the flexible air storage bag is exhausted, the air inlet control valve is closed, and then the operation is recycled again in step 12; when the noise stops, the system controls the valve body to be closed, and the closing time is the pause time TF1 of the noise. The tent air conditioner uses the millimeter wave radar device to obtain the user's breathing frequency and breathing time, adjusts the power supply current, adjusts the air inlet control valve opening time and frequency, and matches the breathing rhythm of the human body; the air valve exhausts according to the human breathing frequency, which can synchronize the sound and breathing, and achieve the effect of noise auxiliary sleep.

[0112] It should be noted that the temperature range of the temperature Ti in the tent > T0+2.5℃ is compared with the set temperature T0 i It should be noted that the temperature range of the temperature Ti in the tent > T0+2.5℃ is compared with the set temperature T0

[0113] In the scheme of the application, the temperature T iIn the case of setting the temperature T0+2.5℃, the tent air conditioner acquires the environmental noise in the tent by using the sound pickup MIC, and if the environment does not exist periodic repeated noise, the tent air conditioner acquires the user's breathing frequency and breathing time by using the millimeter wave radar device, and adjusts the opening time and frequency of the air inlet control valve by adjusting the power supply current of the air inlet control valve, and matches the breathing rhythm of the human body. Specifically, first, the breathing frequency and rhythm, inhalation time and exhalation time and other breathing information of the human body can be acquired by the millimeter wave radar device; second, after the breathing information is converted into a physical model, the frequency and rhythm, inhalation time and exhalation time corresponding parameter values are obtained, and the main control unit sets the parameter values as the parameter values for controlling the action time and working rhythm of the motor; for example, the frequency value of the flexible gas storage bag is kept consistent with the value of the human body breathing, and the length of time of the flexible gas storage bag is kept consistent with the length of time of the human body breathing, and the control can be achieved by the main control unit acquiring the breathing parameter model data and controlling the working rhythm of the electromagnetic valve by using the parameters; for example, the working current required by the electromagnetic valve coil is 3A, at this time, when the electromagnetic valve does not work, the current input to the electromagnetic valve coil by the main control unit is controlled to be below 3A, when the electromagnetic valve needs to work for 3 seconds, the current input to the electromagnetic valve by the main control unit reaches 3A and lasts for 3 seconds, so as to realize the action and duration; finally, the speed of the action of the electromagnetic valve can be adjusted by the current, when the temperature inside the tent is higher, the cold air supply amount needs to be increased on the basis of the breathing rhythm of the human body, at this time, the opening degree of the electromagnetic valve needs to be larger than that when the temperature inside the tent is lower in the 3 seconds of the breathing of the human body, so the valve body needs to be opened faster, and the size of the working current adjusts the opening and closing speed of the electromagnetic valve body. In the scheme of the present application, the temperature T i In the case of setting the temperature T0+2.5℃, the tent air conditioner acquires the environmental noise in the tent by using the sound pickup MIC, and if the environment does not exist periodic repeated noise, the tent air conditioner acquires the user's breathing frequency and breathing time by using the millimeter wave radar device, and adjusts the opening time and frequency of the air inlet control valve by adjusting the power supply current of the air inlet control valve, and matches the breathing rhythm of the human body. Specifically, first, the breathing frequency and rhythm, inhalation time and exhalation time and other breathing information of the human body can be acquired by the millimeter wave radar device; second, after the breathing information is converted into a physical model, the frequency and rhythm, inhalation time and exhalation time corresponding parameter values are obtained, and the main control unit sets the parameter values as the parameter values for controlling the action time and working rhythm of the motor; for example, the frequency value of the flexible gas storage bag is kept consistent with the value of the human body breathing, and the length of time of the flexible gas storage bag is kept consistent with the length of time of the human body breathing, and the control can be achieved by the main control unit acquiring the breathing parameter model data and controlling the working rhythm of the electromagnetic valve by using the parameters; for example, the working current required by the electromagnetic valve coil is 3A, at this time, when the electromagnetic valve does not work, the current input to the electromagnetic valve coil by the main control unit is controlled to be below 3A, when the electromagnetic valve needs to work for 3 seconds, the current input to the electromagnetic valve by the main control unit reaches 3A and lasts for 3 seconds, so as to realize the action and duration; finally, the speed of the action of the electromagnetic valve can be adjusted by the current, when the temperature inside the tent is higher, the cold air supply amount needs to be increased on the basis of the breathing rhythm of the human body, at this time, the opening degree of the electromagnetic valve needs to be larger than that when the temperature inside the tent is lower in the 3 seconds of the breathing of the human body, so the valve body needs to be opened faster, and the size of the working current adjusts the opening and closing speed of the electromagnetic valve body. In the scheme of the present application, the temperature T i In the case of setting the temperature T0+2.5℃, the tent air conditioner acquires the environmental noise in the tent by using the sound pickup MIC, and if the environment does not exist periodic repeated noise, the tent air conditioner acquires the user's breathing frequency and breathing time by using the millimeter wave radar device, and adjusts the opening time and frequency of the air inlet control valve by adjusting the power supply current of the air inlet control valve, and matches the breathing rhythm of the human body. Specifically, first, the breathing frequency and rhythm, inhalation time and exhalation time and other breathing information of the human body can be acquired by the millimeter wave radar device; second, after the breathing information is converted into a physical model, the frequency and rhythm, inhalation time and exhalation time corresponding parameter values are obtained, and the main control unit sets the parameter values as the parameter values for controlling the action time and working rhythm of the motor; for example, the frequency value of the flexible gas storage bag is kept consistent with the value of the human body breathing, and the length of time of the flexible gas storage bag is kept consistent with the length of time of the human body breathing, and the control can be achieved by the main control unit acquiring the breathing parameter model data and controlling the working rhythm of the electromagnetic valve by using the parameters; for example, the working current required by the electromagnetic valve coil is 3A, at this time, when the electromagnetic valve does not work, the current input to the electromagnetic valve coil by the main control unit is controlled to be below 3A, when the electromagnetic valve needs to work for 3 seconds, the current input to the electromagnetic valve by the main control unit reaches 3A and lasts for 3 seconds, so as to realize the action and duration; finally, the speed of the action of the electromagnetic valve can be adjusted by the current, when the temperature inside the tent is higher, the cold air supply amount needs to be increased on the basis of the breathing rhythm of the human body, at this time, the opening degree of the electromagnetic valve needs to be larger than that when the temperature inside the tent is lower in the 3 seconds of the breathing of the human body, so the valve body needs to be opened faster, and the size of the working current adjusts the opening and closing speed of the electromagnetic valve body. In the scheme of the present application, the temperature T

[0114] In the scheme of the present application, the breathing type silence is set, the breathing rhythm is used to realize noise reduction control, and the problem that the tent air conditioner in the related scheme pursues fast cooling and causes large air supply noise to affect the user's rest is solved; the cold air blown by the tent air conditioner is stored and controlled, and the cold air is output according to specific modes in different working scenes, so the problem that the tent air conditioner in the related scheme cannot be matched and adjusted according to the scene where the user is located and thus affects the user experience is solved.

[0115] The technical scheme of the embodiment is adopted, the flexible gas storage bag and the air supply tube assembly are arranged for the tent air conditioner arranged outside the tent, the air inlet of the flexible gas storage bag is connected with the air outlet of the tent air conditioner, the air outlet of the tent air conditioner can send air into the tent through the first channel, and can also send air into the flexible gas storage bag through the second channel; the air supply tube assembly has an air supply tube and an air inlet control valve; the air supply tube has an air inlet outside the tent, the air inlet is connected with the flexible gas storage bag, and the air inlet control valve is arranged at the air inlet of the air supply tube; the air supply tube has an air outlet inside the tent, the air outlet of the air supply tube is located inside the tent, and a sensor assembly (such as a millimeter wave radar device, a sound pickup MIC, and an environment temperature sensor) can be arranged at the part of the air supply tube inside the tent to obtain the human body posture and the human body life characteristics, the environmental noise and the environmental temperature inside the tent; based on different intervals of the environmental temperature, the opening and closing of the air inlet control valve, the opening size and time and the closing time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed are controlled in combination with the human body posture, the human body life characteristics and the environmental noise, so that the control of different air inlet amounts and air inlet rhythms is realized; thereby, the different air inlet amounts and air inlet rhythms of the tent air conditioner are controlled in combination with the flexible gas storage bag, the noise is reduced, and the comfort is improved.

[0116] According to the embodiment of the present application, a control device of a tent air conditioner corresponding to a control method of the tent air conditioner is also provided. Referring to Figure 9 The device of the embodiment of the present application is shown in the structural schematic diagram. The tent air conditioner has an air conditioner body, an air supply tube assembly and a flexible gas storage bag, the air supply tube assembly has an air supply tube and an air inlet control valve, preferably the air supply tube assembly has an air supply tube, a sensor device and an air inlet control valve; the air outlet of the air conditioner body can directly send air to the tent, and can also indirectly send air to the tent through the flexible gas storage bag and the air supply tube, for example, the air outlet of the air conditioner body respectively leads to the inside of the tent and the air inlet of the flexible gas storage bag, specifically, the air outlet of the air conditioner body leads to the inside of the tent through a preset first channel, and leads to the air inlet of the flexible gas storage bag through a preset second channel; the air supply tube is arranged between the flexible gas storage bag and the tent, specifically, the flexible gas storage bag can send air to the air supply tube, for example, the air outlet of the flexible gas storage bag is connected with the air inlet of the air supply tube, the air supply tube can send air to the tent, for example, the air outlet of the air supply tube leads to the tent; the air inlet control valve is used to control the air inlet amount and / or air inlet rhythm when the flexible gas storage bag sends air to the tent through the air supply tube, that is, to control the air inlet passage of the flexible gas storage bag to the air supply tube, for example, the air inlet control valve is arranged at the air outlet of the flexible gas storage bag or the air supply tube, preferably the air inlet control valve is arranged at the air inlet of the air supply tube.

[0117] In the scheme of the present application, the tent air conditioner is matched with a supply air duct assembly, the supply air duct assembly includes a supply air duct, the part of the supply air duct extending into the interior of the tent is provided with a millimeter wave radar device, a sound pickup MIC, and an ambient temperature sensor, and the part of the supply air duct not extending into the interior of the tent is provided with a flexible gas storage bag and an air inlet control valve (generally, when the tent air conditioner is working, it is placed outside the tent). The supply air duct and the air outlet of the tent air conditioner are connected through clamping and quick assembly and disassembly, and the sensors and electrical components on the supply air duct are powered by the tent air conditioner after clamping and installation. The flexible gas storage bag can collect the cold air discharged by the tent air conditioner, temporarily store the cold air, and reduce the noise caused by the superposition of the working noise of the tent air conditioner and the exhaust noise when the cold air is directly discharged into the tent, thereby affecting the user's rest. The air inlet control valve is used to control the time and rhythm of the cold air in the flexible gas storage bag being discharged into the tent, and the air inlet control valve can control the size and time of the opening and closing of the air inlet through the current size.

[0118] In the scheme of the present application, as shown in Figure 9 , the control device of the tent air conditioner includes an acquisition unit 102 and a control unit 104.

[0119] The acquisition unit 102 is configured to acquire the indoor environmental temperature of the tent when the tent air conditioner is running and the silent adjustment mode of the tent air conditioner is turned on, specifically, to acquire the environmental temperature T i of the internal environment of the tent, to acquire the body posture and vital signs of the user in the tent, and to acquire the indoor environmental noise of the tent, specifically, to acquire the environmental noise value S of the internal environment of the tent. For specific functions and processing of the acquisition unit 102, see step S110. For example, the part of the supply air duct extending into the interior of the tent is provided with a millimeter wave radar device, a sound pickup MIC, and an ambient temperature sensor. The ambient temperature sensor can detect the environmental temperature T i of the internal environment of the tent. The millimeter wave radar device can detect the posture (such as sleeping posture, sitting posture, etc.) and vital signs (including breathing frequency and breathing time) of the human body. The sound pickup MIC can collect the environmental noise in the tent. Generally, the space in the tent is small, and the noise difference caused by the distance difference between the human ear and the sound source is ignored in the scheme of the present application.

[0120] The control unit 104 is configured to control at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed, based on the indoor environmental temperature of the tent, in combination with the body posture of the user, the vital signs of the user, and the indoor environmental noise of the tent, to control the air inlet amount and / or air inlet rhythm when the flexible gas storage bag supplies air to the tent through the supply air duct. For specific functions and processing of the control unit 104, see step S120.

[0121] The application provides a control scheme of a silent adjustment system applied to a tent air conditioner.

[0122] In some embodiments, the control unit 104 controls at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed, based on the indoor environment temperature of the tent, the human body posture of the user, the human body vital signs of the user, and the indoor environment noise of the tent.

[0123] The control unit 104 is specifically further configured to determine the size relationship between the indoor environment temperature of the tent and a set temperature. The set temperature is, for example, T0. The specific functions and processes of the control unit 104 are also described with reference to step S210.

[0124] The control unit 104 is specifically further configured to control the air conditioner body to run a preset cooling mode if it is determined that the indoor environment temperature of the tent is less than or equal to the set temperature, so that the silent adjustment mode of the tent air conditioner is in standby, that is, the air outlet of the air conditioner body directly supplies air to the tent. The specific functions and processes of the control unit 104 are also described with reference to step S220.

[0125] The control unit 104 is specifically further configured to control at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed, according to the human body posture of the user and the indoor environment noise of the tent, if it is determined that the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and a preset threshold. The specific functions and processes of the control unit 104 are also described with reference to step S230.

[0126] In some embodiments, the human posture of the user includes a lying posture of the user in a resting or sleeping state, or a standing posture or a sitting posture of the user. The control unit 104, in a case where the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, controls at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is open, and the closing time of the air inlet control valve when the air inlet control valve is closed, according to the human posture of the user and the indoor environment noise of the tent, including:

[0127] The control unit 104 is specifically further configured to, in a case where the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, determine whether the user is in a lying posture in a resting or sleeping state according to the human posture of the user. The specific functions and processes of the control unit 104 are also described with reference to step S310.

[0128] The control unit 104 is specifically further configured to, in a case where the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, if it is determined that the user is not in a lying posture in a resting or sleeping state, control the air conditioner body to operate in a preset cooling mode, and make the silent adjustment mode of the tent air conditioner standby, i.e., make the air outlet of the air conditioner body directly send air into the tent. The specific functions and processes of the control unit 104 are also described with reference to step S320.

[0129] The control unit 104 is specifically further configured to, in a case where the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, if it is determined that the user is in a lying posture in a resting or sleeping state, control the air inlet control valve to be closed, make the air outlet of the air conditioner body inflate the flexible air storage bag until the flexible air storage bag is fully inflated, and execute the silent adjustment mode of the tent air conditioner: control the air conditioner body to stop directly sending air into the tent; and control at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is open, and the closing time of the air inlet control valve when the air inlet control valve is closed, according to the indoor environment noise of the tent. The specific functions and processes of the control unit 104 are also described with reference to step S330.

[0130] Figure 10 Flowchart of the control method of the silent adjustment system of the tent air conditioner Figure 1 , specifically the control method of the silent adjustment system of the tent air conditioner when the set temperature T0 i ≤T0+2.5℃. As Figure 10As shown, the control method of the silent adjustment system applied to the tent air conditioner comprises:

[0131] Step 11, in the case that the tent air conditioner is working normally and the user sets the tent air conditioner to start the silent adjustment mode, the tent millimeter wave radar device detects the human physiological indicators in the tent, the tent temperature and humidity sensor obtains the environmental information, and the set temperature T0 is compared with the tent temperature T i . If the set temperature T0 is less than the tent temperature T i , the step 12 is executed; if the tent temperature T i is less than the set temperature T0, it indicates that the environmental temperature does not need to be adjusted at this time, and the silent adjustment mode of the tent air conditioner is standby; if the tent temperature T i is greater than the set temperature T0+2.5℃, the step 21 in the step 21 is executed. Figure 11 Wherein, the set temperature T0 represents the temperature that the user sets to be reached in the tent air conditioner, and the user can set the temperature. Referring to the temperature range of the conventional tent air conditioner, 16℃-30℃; if the user does not set, the system can set the default value as 25℃.

[0132] In step 11, the tent millimeter wave radar device detects the human physiological indicators in the tent, and the millimeter wave radar device can detect the posture of the human body and the vital signs of the human body including the breathing frequency. The tent temperature sensor obtains the environmental temperature information, because the tent space is small, the temperature difference at different positions in the tent caused by the non-uniform temperature field is not considered, and the tent interior is regarded as a uniform temperature field; at the same time, the acquisition of the temperature in the tent and the acquisition of the human physiological indicators and the breathing state can also be shared with the tent air conditioner through Bluetooth by other sensors and wearable devices in the tent.

[0133] Step 12, according to the human physiological indicators in the tent detected by the tent millimeter wave radar device, it is judged whether the human body is in the lying rest or sleep state (i.e. the default state): if yes, the air inlet control valve of the flexible gas bag leading to the tent interior is closed, the cold air of the tent air conditioner is filled into the flexible gas bag, and then step 13 is executed; if not, the tent air conditioner enters the normal refrigeration state.

[0134] Step 13, the air inlet control valve of the flexible gas bag leading to the tent interior is closed, the cold air of the tent air conditioner is filled into the flexible gas bag, the flexible gas bag is inflated, the tent air conditioner is in the silent standby mode, the sound pickup MIC picks up the environmental noise value S in the tent (real-time picking up the environmental noise), and then step 14 is executed. Wherein, the environmental noise value S in the tent represents the noise value in the tent collected by the sound pickup microphone, the unit is DB, and the pickup range is 0-60DB.

[0135] In the scheme of the present application, the tent air conditioner is provided with a flexible gas storage bag. In the case that the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when it is opened, and the closing time of the air inlet control valve when it is closed is controlled according to the human posture of the user and the indoor environment noise of the tent, so that in the opening of the silent adjustment mode, the air inlet valve of the tent air conditioner is closed, the cold air blown out by the tent air conditioner is stored in the flexible gas storage bag, the superposition of the working noise and the exhaust noise of the tent air conditioner is avoided, the control of different air inlet amount and air inlet rhythm is realized, the noise of refrigeration adjustment is reduced, and the comfort is improved.

[0136] In some embodiments, the control unit 104, in the case that the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, controls at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when it is opened, and the closing time of the air inlet control valve when it is closed according to the indoor environment noise of the tent, including: in the case that the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, controlling the process of the air inlet control valve under the non-periodic noise, specifically as follows:

[0137] The control unit 104 is specifically further configured to determine whether the indoor environment noise of the tent is periodic noise in the case that the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value. The specific functions and processes of this control unit 104 are also referred to step S410.

[0138] The control unit 104 is specifically further configured to, in the case that the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, if it is determined that the indoor environment noise of the tent is not periodic noise, determine whether the indoor environment noise of the tent is less than or equal to the preset first noise threshold value; wherein the preset first noise threshold value is, for example, 25DB. The specific functions and processes of this control unit 104 are also referred to step S420.

[0139] The control unit 104 is further configured to, when determining that the indoor ambient temperature of the tent is greater than a set temperature and less than or equal to the sum of the set temperature and a preset threshold, and determining that the indoor ambient noise of the tent is not periodic noise, if the indoor ambient noise of the tent is determined to be less than or equal to a preset first noise threshold, control the air intake control valve to open at a preset first speed until the indoor ambient noise of the tent rises to a preset second noise threshold, then keep the air intake control valve open at this time to indirectly supply air to the tent, until the flexible air storage bag is completely deflated, then control the air intake control valve to close, and then return to the previous state to control at least one of the following based on the indoor ambient temperature of the tent, combined with the user's posture, the user's vital signs, and the indoor ambient noise of the tent: the opening and closing of the air intake control valve, the opening size and opening time of the air intake control valve when opening, and the closing time of the air intake control valve when closing; wherein the preset second noise threshold is greater than the preset first noise threshold; the preset second noise threshold is, for example, 30 dB. The specific functions and processing of the control unit 104 are also described in step S430.

[0140] The control unit 104 is further configured to, when determining that the indoor ambient temperature of the tent is greater than a set temperature and less than or equal to the sum of the set temperature and a preset threshold, and determining that the indoor ambient noise of the tent is not periodic noise, if the indoor ambient noise of the tent is greater than a preset first noise threshold, control the air intake control valve to open at a preset first speed until the indoor ambient noise of the tent increases to a preset third noise threshold, then keep the air intake control valve open at this time to indirectly supply air to the tent, until the flexible air storage bag is completely deflated, then control the air intake control valve to close, and then return to the previous state to control at least one of the following based on the indoor ambient temperature of the tent, combined with the user's posture, the user's vital signs, and the indoor ambient noise of the tent: the opening and closing of the air intake control valve, the opening size and opening time of the air intake control valve when opening, and the closing time of the air intake control valve when closing. The preset third noise threshold is less than the preset first noise threshold. The preset third noise threshold is, for example, 5 dB. The specific functions and processing of the control unit 104 are also described in step S440.

[0141] like Figure 10 As shown, the control method for a silent control system applied to a tent air conditioner also includes:

[0142] Step 14: Determine if periodically repeating noise values ​​(mainly snoring) are detected: If not, proceed to step 15; if yes, proceed to step 16.

[0143] Step 15, if the periodically repeated noise value (mainly refers to snoring) is not detected, it is judged whether the tent environment noise value S≤25DB is met: if yes, the valve inlet is opened at a speed K1 until the noise reaches 30DB, and the opening size is maintained without further expansion; if not, the valve inlet is opened at a speed K1 until the noise reaches S+5DB, and the opening size is maintained without further expansion. Then, the opening of the valve inlet is maintained at this opening size, cold air is input to the tent until the flexible gas storage bag is exhausted, the air inlet control valve is closed, and then the operation is cycled again in step 12. Wherein, the speed K1 is 0.5cm / s, the air inlet size is set to a rectangle with a width of 1cm and a length of 8cm; the air inlet control valve is an electromagnetic valve, and the electromagnetic valve opening is in the length direction of the rectangle. According to actual environmental testing and reference to relevant information, the more ideal sleep environment noise value is controlled at 30DB; if the environmental noise value S has exceeded 25DB without opening the valve inlet, assuming it is 30DB, in order to adjust the indoor air, the valve inlet still needs to be opened for temperature adjustment, but in order to further reduce the noise value, the noise value generated by the valve opening is controlled at 5DB.

[0144] The tent air conditioner uses the pickup MIC to obtain the environmental noise in the tent, and combines the environmental noise value to determine the opening size of the air inlet control valve. When the environmental noise is less than or equal to 25DB, the valve inlet is gradually opened until the noise value reaches 30DB; when the environmental noise is greater than 25DB, the valve inlet is gradually opened until the noise value reaches the environmental noise value S+5DB, realizing the control of different air inlet amount and air inlet rhythm, reducing the noise of refrigeration adjustment, and improving the comfort.

[0145] In some embodiments, the control unit 104, in a case where the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, controls at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed according to the indoor environment noise of the tent, and further comprises: in a case where the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, controlling the air inlet control valve under periodic noise, specifically as follows:

[0146] The control unit 104 is specifically further configured to, in a case where it is determined that the indoor environmental temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, and it is determined that the indoor environmental noise of the tent is periodic noise, determine, according to the indoor environmental noise of the tent, the occurrence frequency, the duration and the rest time of the indoor environmental noise of the tent, denoted as a first noise occurrence frequency, a first noise duration and a first noise rest time. The first noise occurrence frequency is denoted as noise occurrence frequency H1, the first noise duration is denoted as duration TO, and the first noise rest time is denoted as rest time TF. The specific functions and processes of the control unit 104 are also described with reference to step S510.

[0147] The control unit 104 is specifically further configured to, in a case where it is determined that the indoor environmental temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, and it is determined that the indoor environmental noise of the tent is periodic noise, control the air inlet control valve to open at a preset second speed in a case where the indoor environmental noise of the tent occurs, and the duration is the first noise duration, until the flexible gas storage bag is exhausted, and then control the air inlet control valve to close, and thereafter return to control at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when it is open, and the closing time of the air inlet control valve when it is closed, based on the indoor environmental temperature of the tent, in combination with the human body posture of the user, the human body vital signs of the user, and the indoor environmental noise of the tent. The preset second speed is greater than the preset first speed. The specific functions and processes of the control unit 104 are also described with reference to step S520.

[0148] The control unit 104 is specifically further configured to, in a case where it is determined that the indoor environmental temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and the preset threshold value, and it is determined that the indoor environmental noise of the tent is periodic noise, control the air inlet control valve to close in a case where the indoor environmental noise of the tent stops, and the duration is the first noise rest time, and repeat the cycle. The specific functions and processes of the control unit 104 are also described with reference to step S530.

[0149] As Figure 10As shown, the control method of the noise adjustment system applied to the tent air conditioner further comprises: step 16, if the periodically repeated noise value (mainly referring to snoring sound) is detected, the sound pickup MIC acquires the first noise occurrence frequency H1 and the duration TO and the rest time TF; the data is transmitted to the air conditioner control module, and the control module adjusts the working current of the air inlet control valve: according to the first noise occurrence frequency H1, when the noise occurs, the system controls the air inlet of the valve body to open at a speed K2, and the time is the duration TO of the noise. In this way, cold air is input to the tent through the opening until the flexible gas storage bag is exhausted, and then the air inlet control valve is closed. After that, the operation is recycled again in step 12. When the noise stops, the system controls the valve body to close, and the closing time is the rest time TF of the noise. Wherein, the speed K2 is 1.0 cm / s, the air inlet size is set to a rectangle with a width of 1 cm and a length of 8 cm; the air inlet control valve is an electromagnetic valve, and the electromagnetic valve is opened in the length direction of the rectangle.

[0150] It should be noted that the ambient temperature sensor also acquires ambient temperature data at certain time intervals. If the ambient temperature data is not within the range, the operation program corresponding to the temperature range is executed.

[0151] In the scheme of the present application, for the case that the set temperature T0 < tent temperature T i ≤ set temperature T0+2.5℃, the tent air conditioner uses a sound pickup microphone (MIC) to acquire the ambient noise in the tent. If the environment does not have periodic noise, the opening size of the air inlet control valve is determined according to the ambient noise value. When the ambient noise is less than or equal to 25 decibels (DB), the valve body air inlet (i.e. the opening of the air inlet control valve) is gradually opened until the noise value reaches 30 DB. When the ambient noise is greater than 25 DB, the valve body air inlet is gradually opened until the noise value reaches the ambient noise value + 5 DB. In the scheme of the present application, for the case that the set temperature T0 < tent temperature T i ≤ set temperature T0+2.5℃, the tent air conditioner uses a sound pickup microphone (MIC) to acquire the ambient noise in the tent. If the environment does not have periodic noise, the opening size of the air inlet control valve is determined according to the ambient noise value. When the ambient noise is less than or equal to 25 decibels (DB), the valve body air inlet (i.e. the opening of the air inlet control valve) is gradually opened until the noise value reaches 30 DB. When the ambient noise is greater than 25 DB, the valve body air inlet is gradually opened until the noise value reaches the ambient noise value + 5 DB. In the scheme of the present application, for the case that the set temperature T0 < tent temperature T

[0152] The control unit 104 is specifically further configured to determine that the indoor environment temperature of the tent is greater than the sum of the set temperature and the preset threshold value, and control at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed according to the human body posture of the user, the human body vital signs of the user, and the indoor environment noise of the tent. The specific functions and processes of the control unit 104 also refer to step S240.

[0153] The scheme of the present application provides a tent air conditioner air supply duct assembly. The tent air conditioner detects whether a user is in a lying rest or sleep state according to the ambient temperature in the tent, in combination with a millimeter wave radar device, provides different modes of silent adjustment mode, uses a flexible gas storage bag to temporarily store cold air, and adjusts the current size of the air intake control valve of the air supply duct assembly according to the ambient temperature and ambient noise, to achieve control of different air intake amounts and air intake rhythms, aiming to reduce the noise of refrigeration adjustment and achieve a quiet adjustment experience effect.

[0154] In some embodiments, the human posture of the user includes a lying rest or sleep posture of the user, or a standing or sitting posture of the user. The control unit 104, in a case where the indoor ambient temperature of the tent is greater than the sum of the set temperature and the preset threshold value, controls at least one of the opening and closing of the air intake control valve, the opening size and opening time of the air intake control valve when it is open, and the closing time of the air intake control valve when it is closed, according to the human posture of the user, the human vital signs of the user, and the indoor ambient noise of the tent, including:

[0155] The control unit 104 is specifically further configured to, in a case where the indoor ambient temperature of the tent is greater than the sum of the set temperature and the preset threshold value, determine whether the user is in a lying rest or sleep posture according to the human posture of the user. The specific functions and processes of this control unit 104 are also referred to as step S610.

[0156] The control unit 104 is specifically further configured to, in a case where the indoor ambient temperature of the tent is greater than the sum of the set temperature and the preset threshold value, if it is determined that the user is not in a lying rest or sleep posture, control the air conditioner body to run a preset cooling mode, so that the silent adjustment mode of the tent air conditioner is on standby, i.e., the air outlet of the air conditioner body directly supplies air to the tent. The specific functions and processes of this control unit 104 are also referred to as step S620.

[0157] The control unit 104 is further configured to, in the case that the indoor environment temperature of the tent is greater than the sum of the set temperature and the preset threshold value, if it is determined that the user is in a lying rest or sleep state, control the air inlet control valve to close, make the air outlet of the air conditioner body inflate the flexible gas storage bag, until the flexible gas storage bag is fully inflated, execute the silent adjustment mode of the tent air conditioner: control the air conditioner body to stop directly sending air to the tent; and according to the human body posture of the user, the human body vital signs of the user, and the indoor environment noise of the tent, control at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed. The specific functions and processes of the control unit 104 are also described in step S630.

[0158] Figure 11 Flowchart of the control method of the silent adjustment system applied to the tent air conditioner Figure 2 , specifically the control method of the silent adjustment system applied to the tent air conditioner when the temperature Ti in the tent is greater than T0+2.5℃. As shown in Figure 11 , the control method of the silent adjustment system applied to the tent air conditioner, comprising:

[0159] Step 21, according to the human body physiological indicators detected by the millimeter wave radar device in the tent, judge whether the human body is in a lying rest or sleep state (i.e. default state): if yes, the air inlet control valve of the flexible gas storage bag to the tent interior is closed, the cold air of the tent air conditioner is filled into the flexible gas storage bag, and then step 22 is executed; if not, the tent air conditioner enters the normal refrigeration state.

[0160] Step 22, the air inlet control valve of the flexible gas storage bag to the tent interior is closed, the cold air of the tent air conditioner is filled into the flexible gas storage bag, the flexible gas storage bag is fully inflated, the tent air conditioner is in a silent standby mode, the sound pickup MIC picks up the indoor environment noise value S (real-time picking up the environment noise), and judges whether the periodic and repeated noise value (mainly referring to snoring sound) is detected: if not, step 23 is executed, if yes, step 24 is executed.

[0161] In the scheme of the present application, the tent air conditioner is provided with a flexible gas storage bag. In the case where the indoor environment temperature of the tent is greater than the sum of the set temperature and the preset threshold value, at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when it is opened, and the closing time of the air inlet control valve when it is closed is controlled according to the human body posture of the user and the indoor environment noise of the tent, so that in the opening of the silent adjustment mode, the air inlet valve of the tent air conditioner is closed, the cold air blown out by the tent air conditioner is stored in the flexible gas storage bag, the superposition of the working noise and the exhaust noise of the tent air conditioner is avoided, the control of different air inlet amounts and air inlet rhythms is realized, the noise of the refrigeration adjustment is reduced, and the comfort is improved.

[0162] In some embodiments, the human body vital signs of the user include at least one of the human body breathing frequency, the human body exhalation time, and the human body inhalation time. The control unit 104, in the case where the indoor environment temperature of the tent is greater than the sum of the set temperature and the preset threshold value, controls at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when it is opened, and the closing time of the air inlet control valve when it is closed according to the human body posture of the user, the human body vital signs of the user, and the indoor environment noise of the tent, including: in the case where the indoor environment temperature of the tent is greater than the sum of the set temperature and the preset threshold value, controlling the process of the air inlet control valve under the aperiodic noise, specifically as follows:

[0163] The control unit 104 is specifically further configured to determine whether the indoor environment noise of the tent is periodic noise in the case where the indoor environment temperature of the tent is greater than the sum of the set temperature and the preset threshold value. The specific functions and processes of this control unit 104 are also referred to step S710.

[0164] The control unit 104 is specifically further configured to determine the human body breathing frequency, the human body exhalation time, and the human body inhalation time according to the human body vital signs of the user in the case where the indoor environment temperature of the tent is greater than the sum of the set temperature and the preset threshold value, and the indoor environment noise of the tent is not periodic noise. The specific functions and processes of this control unit 104 are also referred to step S720.

[0165] The control unit 104 is further configured to, in a case where it is determined that the indoor environment temperature of the tent is greater than the sum of the set temperature and the preset threshold value, and it is determined that the indoor environment noise of the tent is not periodic noise, control the air inlet control valve to open at a preset third speed for a duration of the human exhalation time at the human respiratory frequency in a case where the human is exhaling, until the flexible gas storage bag is exhausted and the air inlet control valve is closed, and then return to control at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when it is open, and the closing time of the air inlet control valve when it is closed, based on the indoor environment temperature of the tent, in combination with the human posture of the user, the human vital signs of the user, and the indoor environment noise of the tent. The preset third speed is greater than the preset second speed. For specific functions and processes of the control unit 104, see step S730.

[0166] The control unit 104 is further configured to, in a case where it is determined that the indoor environment temperature of the tent is greater than the sum of the set temperature and the preset threshold value, and it is determined that the indoor environment noise of the tent is not periodic noise, control the air inlet control valve to close for a duration of the human inhalation time at the human respiratory frequency in a case where the human is inhaling, and so on. For specific functions and processes of the control unit 104, see step S740.

[0167] As shown in Figure 11 The control method applied to the noise adjustment system of the tent air conditioner further includes: step 23, if the periodically repeated noise value (mainly snoring sound) is not detected, the millimeter wave obtains the human respiratory frequency H and the exhalation time TH and the inhalation time TX; this data is transmitted to the air conditioner control module, and the control module adjusts the working current of the control valve: when the human is inhaling, the system controls the air inlet of the valve body to close for a time of TX; when the human is exhaling, the system controls the air inlet of the valve body to open at a speed of K3 for a time of TH; until the gas bag is exhausted, the control valve is closed; the human state is judged again, and the cycle is repeated.

[0168] Wherein, the system picks up the user's exhalation time, according to the millimeter wave radar device can accurately obtain the physiological characteristics of the human body, and the exhalation time is TH. The human respiratory rate H is 12-20 times per minute; the exhalation time TH is, for example, the exhalation time is 2 seconds; the inhalation time TX is, for example, the inhalation time is 3 seconds. The millimeter wave radar device in the tent detects the physiological indicators of the human body in the tent, and the millimeter wave radar device can detect the posture of the human body and the vital signs of the human body including the respiratory rate, detect the breathing time, and generally, the human respiratory rate is 12-20 times per minute, the inhalation time is generally 3 seconds, and the exhalation time is 2 seconds. With the breathing rhythm of the human body, the air inlet frequency can be provided, and the effect of helping sleep can be formed in the state of rest or sleep of the human body. The speed K3 is 3 cm / s, the air inlet size is set to a rectangle with a width of 1 cm and a length of 8 cm; the air inlet control valve is an electromagnetic valve, and the electromagnetic valve is opened in the length direction of the rectangle.

[0169] In the scheme of the present application, in the case where the indoor environment temperature of the tent is greater than the sum of the set temperature and the preset threshold value, at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when it is opened, and the closing time of the air inlet control valve when it is closed is controlled according to the human posture of the user, the vital signs of the user, and the indoor environment noise of the tent, to avoid the superposition of the working noise and the exhaust noise of the tent air conditioner, to realize the control of different air inlet amounts and air inlet rhythms, to reduce the noise of refrigeration adjustment, and to improve the comfort.

[0170] In some embodiments, the control unit 104, in the case where the indoor environment temperature of the tent is greater than the sum of the set temperature and the preset threshold value, at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when it is opened, and the closing time of the air inlet control valve when it is closed is controlled according to the human posture of the user, the vital signs of the user, and the indoor environment noise of the tent, and further comprises: in the case where the indoor environment temperature of the tent is greater than the sum of the set temperature and the preset threshold value, the process of controlling the air inlet control valve under the non-periodic noise, specifically as follows:

[0171] The control unit 104 is specifically further configured to, in the case where it is determined that the indoor environment temperature of the tent is greater than the sum of the set temperature and the preset threshold value, and it is determined that the indoor environment noise of the tent is periodic noise, determine, according to the indoor environment noise of the tent, the occurrence frequency, the duration and the pause time of the indoor environment noise of the tent, denoted as a second noise occurrence frequency, a second noise duration and a second noise pause time, wherein the second noise occurrence frequency is like the noise occurrence frequency H2, the second noise duration is like the duration TO1, and the second noise pause time is like the pause time TF1. The specific functions and processes of the control unit 104 also refer to step S810.

[0172] The control unit 104 is specifically further configured to, in the case where it is determined that the indoor environment temperature of the tent is greater than the sum of the set temperature and the preset threshold value, and it is determined that the indoor environment noise of the tent is periodic noise, control the air inlet control valve to open at a preset third speed in the case where the indoor environment noise of the tent occurs, and the duration is the second noise duration, until the flexible gas storage bag is exhausted, and then control the air inlet control valve to close, and thereafter return to control at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when it is opened, and the closing time of the air inlet control valve when it is closed, based on the indoor environment temperature of the tent, in combination with the human body posture of the user, the human body vital signs of the user, and the indoor environment noise of the tent. The specific functions and processes of the control unit 104 also refer to step S820.

[0173] The control unit 104 is specifically further configured to, in the case where it is determined that the indoor environment temperature of the tent is greater than the sum of the set temperature and the preset threshold value, and it is determined that the indoor environment noise of the tent is periodic noise, control the air inlet control valve to close in the case where the indoor environment noise of the tent stops, and the duration is the second noise pause time, and so on. The specific functions and processes of the control unit 104 also refer to step S830.

[0174] As Figure 11As shown, the control method of the noise adjustment system applied to the tent air conditioner further comprises: step 24, if the periodically repeated noise value (mainly referring to snoring sound) is detected, the sound pickup MIC obtains the first noise occurrence frequency H2 and the duration TO1 and the pause time TF1; the data is transmitted to the air conditioner control module, and the control module adjusts the working current of the air inlet control valve: according to the first noise occurrence frequency H1, when the noise occurs, the system controls the air inlet of the valve body to open at a speed K3, and the time is the duration TO1 of the noise, so that the cold air is input to the tent through the opening until the flexible air storage bag is exhausted, and then the air inlet control valve is closed, and then the operation is recycled again in step 12; when the noise stops, the system controls the valve body to be closed, and the closing time is the pause time TF1 of the noise. The tent air conditioner obtains the breathing frequency and breathing time of the user by using the millimeter wave radar device, adjusts the opening time and frequency of the air inlet control valve by adjusting the power supply current, and matches the breathing rhythm of the human body; the air valve exhausts according to the breathing frequency of the human body, so that the sound and breathing are synchronized, and the effect of noise-assisted sleep is achieved.

[0175] It should be noted that the temperature range of the temperature Ti in the tent > the temperature T0+2.5℃ is compared with the set temperature T0 < the temperature T in the tent i ≤ the set temperature T0+2.5℃, the ambient temperature is high, so it is more necessary to adjust the air at this time, and the priority of the noise influence degree is lower than that of the air adjustment, but in order to reduce the influence of air adjustment on human rest and sleep, the breathing type air supply mode is adopted.

[0176] In the scheme of the application, for the temperature T i > the set temperature T0+2.5℃, the tent air conditioner obtains the ambient noise in the tent by using the sound pickup MIC, if the environment does not exist periodically repeated noise, the tent air conditioner obtains the breathing frequency and breathing time of the user by using the millimeter wave radar device, adjusts the opening time and frequency of the air inlet control valve by adjusting the power supply current of the air inlet control valve, and matches the breathing rhythm of the human body. In the scheme of the application, for the temperature T i > the set temperature T0+2.5℃, the tent air conditioner obtains the ambient noise in the tent by using the sound pickup MIC, if the environment does not exist periodically repeated noise, the tent air conditioner obtains the breathing frequency and breathing time of the user by using the millimeter wave radar device, adjusts the opening time and frequency of the air inlet control valve by adjusting the power supply current of the air inlet control valve, and matches the breathing rhythm of the human body. In the scheme of the application, for the temperature T i ≤ the set temperature T0+2.5℃, the opening speed is faster, so as to meet the refrigeration requirement of the working condition.

[0177] In the scheme of the present application, the breathing type of silence is set, the breathing rhythm is utilized, and the noise reduction control is realized, so as to solve the problem that the air supply noise of the tent air conditioner is large due to the fast refrigeration pursued by the tent air conditioner, and the user's rest is affected; the cold air blown out by the tent air conditioner is stored and controlled, and the cold air is output according to specific modes for different working scenes, so as to solve the problem that the tent air conditioner cannot be matched and adjusted according to the scene where the user is located, thereby affecting the user experience.

[0178] Since the processing and functions realized by the device of the present embodiment basically correspond to the embodiments, principles and examples of the foregoing method, details not described in the description of the present embodiment can be referred to the related description in the foregoing embodiments, which will not be repeated here.

[0179] According to the embodiments of the present application, a tent air conditioner corresponding to the control device of the tent air conditioner is also provided. The tent air conditioner can include the control device of the tent air conditioner described above.

[0180] Since the processing and functions realized by the tent air conditioner of the present embodiment basically correspond to the embodiments, principles and examples of the foregoing device, details not described in the description of the present embodiment can be referred to the related description in the foregoing embodiments, which will not be repeated here.

[0181] According to the embodiments of the present application, a computer program product corresponding to the tent air conditioner is also provided, which includes a computer program, and the computer program realizes the steps of the control method of the tent air conditioner described above when executed by a processor.

[0182] Since the processing and functions realized by the product of the present embodiment basically correspond to the embodiments, principles and examples of the foregoing tent air conditioner, details not described in the description of the present embodiment can be referred to the related description in the foregoing embodiments, which will not be repeated here.

[0183] According to the embodiments of the present application, a storage medium corresponding to the control method of the tent air conditioner is also provided, which includes a stored program, and when the program runs, the device where the storage medium is located executes the steps of the control method of the tent air conditioner described above.

[0184] Since the processing and functions realized by the storage medium of the present embodiment basically correspond to the embodiments, principles and examples of the foregoing method, details not described in the description of the present embodiment can be referred to the related description in the foregoing embodiments, which will not be repeated here.

[0185] In summary, those skilled in the art can easily understand that the above advantageous modes can be freely combined and superimposed without conflict.

[0186] The above merely illustrates the embodiments of the present application but should not be taken as limitations. Various changes and modifications can be made by those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the scope of claims of the present application.

Claims

1. A control method of a tent air conditioner, characterized by, The tent air conditioner has an air conditioner body, a supply air duct assembly, and a flexible air storage bag, the supply air duct assembly has a supply air duct and an air inlet control valve, an air outlet of the air conditioner body can directly supply air to the tent, and can indirectly supply air to the tent through the flexible air storage bag and the supply air duct, the air inlet control valve is used to control the air inlet amount and / or air inlet rhythm when the flexible air storage bag supplies air to the tent through the supply air duct, and a control method of the tent air conditioner includes: In the case that the tent air conditioner is running and a quiet adjustment mode of the tent air conditioner is started, the indoor environment temperature of the tent is acquired, the human body posture and the human body vital signs of a user in the tent are acquired, and the indoor environment noise of the tent is acquired; Based on the indoor environment temperature of the tent, in combination with the human body posture of the user, the human body vital signs of the user, and the indoor environment noise of the tent, at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed is controlled, so as to control the air inlet amount and / or air inlet rhythm when the flexible air storage bag supplies air to the tent through the supply air duct.

2. The control method of a tent air conditioner according to claim 1, characterized by, Based on the indoor environment temperature of the tent, in combination with the human body posture of the user, the human body vital signs of the user, and the indoor environment noise of the tent, at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed is controlled, including: Determining the size relationship between the indoor environment temperature of the tent and a set temperature; If it is determined that the indoor environment temperature of the tent is less than or equal to the set temperature, the air conditioner body is controlled to run in a preset cooling mode, and the quiet adjustment mode of the tent air conditioner is put on standby; If it is determined that the indoor environment temperature of the tent is greater than the set temperature and less than or equal to the sum of the set temperature and a preset threshold value, at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed is controlled according to the human body posture of the user and the indoor environment noise of the tent; If it is determined that the indoor environment temperature of the tent is greater than the sum of the set temperature and the preset threshold value, at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed is controlled according to the human body posture of the user, the human body vital signs of the user, and the indoor environment noise of the tent.

3. The control method of the tent air conditioner according to claim 2, characterized by, The human body posture of the user includes the posture of the user in a lying rest or sleep state, or the posture of the user in a standing or sitting state; Controlling at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed according to the human body posture of the user and the indoor environment noise of the tent includes: According to the human body posture of the user, it is determined whether the user is in the posture of the lying rest or sleep state; If it is determined that the user is not in a lying down rest or sleep posture, the air conditioner body is controlled to run in a preset cooling mode, and the silent adjustment mode of the tent air conditioner is in standby; If it is determined that the user is in a lying down rest or sleep posture, the air inlet control valve is controlled to be closed, the air outlet of the air conditioner body is controlled to inflate the flexible air storage bag until the flexible air storage bag is fully inflated, and the silent adjustment mode of the tent air conditioner is executed: the air conditioner body is controlled to stop directly supplying air to the tent; and at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed is controlled according to the indoor environmental noise of the tent.

4. The control method of a tent air conditioner according to claim 3, characterized by, Controlling at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed according to the indoor environmental noise of the tent includes: Determining whether the indoor environmental noise of the tent is periodic noise; If it is determined that the indoor environmental noise of the tent is not periodic noise, it is determined whether the indoor environmental noise of the tent is less than or equal to a preset first noise threshold; If it is determined that the indoor environmental noise of the tent is less than or equal to the preset first noise threshold, the air inlet control valve is controlled to be opened at a preset first speed until the indoor environmental noise of the tent rises to a preset second noise threshold, the air inlet control valve is kept at the opening at this time to indirectly supply air to the tent, and the air inlet control valve is controlled to be closed after the flexible air storage bag is fully deflated; wherein the preset second noise threshold is greater than the preset first noise threshold; If it is determined that the indoor environmental noise of the tent is greater than the preset first noise threshold, the air inlet control valve is controlled to be opened at a preset first speed until the indoor environmental noise of the tent increases by a preset third noise threshold, the air inlet control valve is kept at the opening at this time to indirectly supply air to the tent, and the air inlet control valve is controlled to be closed after the flexible air storage bag is fully deflated; wherein the preset third noise threshold is less than the preset first noise threshold.

5. The control method of a tent air conditioner according to claim 3 or 4, characterized by, Controlling at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when the air inlet control valve is opened, and the closing time of the air inlet control valve when the air inlet control valve is closed according to the indoor environmental noise of the tent also includes: If it is determined that the indoor environmental noise of the tent is periodic noise, the occurrence frequency, duration and pause time of the indoor environmental noise of the tent are determined according to the indoor environmental noise of the tent, and are recorded as a first noise occurrence frequency, a first noise duration and a first noise pause time; According to the first noise occurrence frequency, when the indoor environmental noise of the tent occurs, the air inlet control valve is controlled to be opened at a preset second speed for a duration of the first noise duration, and the air inlet control valve is controlled to be closed after the flexible air storage bag is fully deflated; wherein the preset second speed is greater than the preset first speed; According to the first noise generation frequency, in the case that the indoor ambient noise of the tent is stopped, the air intake control valve is controlled to be closed with a duration of the first noise stop time.

6. The control method of a tent air conditioner according to claim 2, characterized by, The human body posture of the user includes: a posture of the user lying down for rest or sleep, or a posture of the user standing or sitting; According to the human body posture of the user, the human body vital signs of the user, and the indoor ambient noise of the tent, at least one of the opening and closing of the air intake control valve, the opening size and opening time of the air intake control valve when it is opened, and the closing time of the air intake control valve when it is closed is controlled, including: According to the human body posture of the user, it is determined whether the user is in a posture of lying down for rest or sleep; If it is determined that the user is not in a posture of lying down for rest or sleep, the air conditioner body is controlled to run in a preset cooling mode, and the silent adjustment mode of the tent air conditioner is standby; If it is determined that the user is in a posture of lying down for rest or sleep, the air intake control valve is controlled to be closed, the air outlet of the air conditioner body is controlled to inflate the flexible gas storage bag until the flexible gas storage bag is fully inflated, and the silent adjustment mode of the tent air conditioner is executed: the air conditioner body is controlled to stop directly supplying air to the tent; and at least one of the opening and closing of the air intake control valve, the opening size and opening time of the air intake control valve when it is opened, and the closing time of the air intake control valve when it is closed is controlled according to the human body posture of the user, the human body vital signs of the user, and the indoor ambient noise of the tent.

7. The control method of a tent air conditioner according to claim 6, wherein The human body vital signs of the user include at least one of: human body breathing frequency, human body exhalation time, and human body inhalation time; According to the human body posture of the user, the human body vital signs of the user, and the indoor ambient noise of the tent, at least one of the opening and closing of the air intake control valve, the opening size and opening time of the air intake control valve when it is opened, and the closing time of the air intake control valve when it is closed is controlled, including: It is determined whether the indoor ambient noise of the tent is periodic noise; If it is determined that the indoor ambient noise of the tent is not periodic noise, it is determined according to the human body vital signs of the user that the human body breathing frequency, the human body exhalation time, and the human body inhalation time are determined; According to the human body breathing frequency, in the case of human body exhalation, the air intake control valve is controlled to be opened at a preset third speed with a duration of the human body exhalation time, and the air intake control valve is controlled to be closed after the flexible gas storage bag is fully exhausted; wherein the preset third speed is greater than the preset second speed; According to the human body breathing frequency, in the case of human body inhalation, the air intake control valve is controlled to be closed with a duration of the human body inhalation time.

8. The control method of a tent air conditioner according to claim 6 or 7, characterized by, According to the human body posture of the user, the human body vital signs of the user, and the indoor ambient noise of the tent, at least one of the opening and closing of the air intake control valve, the opening size and opening time of the air intake control valve when it is opened, and the closing time of the air intake control valve when it is closed is controlled, including: If it is determined that the indoor ambient noise of the tent is periodic noise, the occurrence frequency, duration and pause time of the indoor ambient noise of the tent are determined according to the indoor ambient noise of the tent, and are recorded as a second noise occurrence frequency, a second noise duration and a second noise pause time; According to the second noise occurrence frequency, when the indoor ambient noise of the tent occurs, the air inlet control valve is controlled to open at a preset third speed and for a duration of the second noise duration until the flexible gas storage bag is exhausted, and then the air inlet control valve is controlled to close; According to the second noise occurrence frequency, when the indoor ambient noise of the tent stops, the air inlet control valve is controlled to close and for a duration of the second noise pause time.

9. A control device for a tent air conditioner, characterized by comprising: The tent air conditioner has an air conditioner body, an air supply cylinder assembly and a flexible gas storage bag, the air supply cylinder assembly has an air supply cylinder and an air inlet control valve; the air outlet of the air conditioner body can directly supply air to the tent, and can also indirectly supply air to the tent through the flexible gas storage bag and the air supply cylinder; the air inlet control valve is used to control the air inlet amount and / or air inlet rhythm when the flexible gas storage bag supplies air to the tent through the air supply cylinder; and the control device of the tent air conditioner comprises: An acquisition unit is configured to acquire the indoor ambient temperature of the tent when the tent air conditioner is running and the silent mode of the tent air conditioner is turned on; acquire the human body posture and vital signs of the user in the tent, and acquire the indoor ambient noise of the tent; A control unit is configured to control at least one of the opening and closing of the air inlet control valve, the opening size and opening time of the air inlet control valve when it is opened, and the closing time of the air inlet control valve when it is closed, based on the indoor ambient temperature of the tent, in combination with the human body posture of the user, the human body vital signs of the user, and the indoor ambient noise of the tent, to control the air inlet amount and / or air inlet rhythm when the flexible gas storage bag supplies air to the tent through the air supply cylinder.

10. A tent air conditioner, characterized by, Comprise: The control device of the tent air conditioner according to claim 9.

11. A storage medium, characterized by The storage medium comprises a stored program, wherein when the program is running, the device where the storage medium is located performs the control method of the tent air conditioner according to any one of claims 1 to 8.

12. A computer program product comprising a computer program, characterized in that, The computer program is executed by the processor to implement the steps of the control method of the tent air conditioner according to any one of claims 1 to 8. The computer program is executed by the processor to implement the steps of the control method of the tent air conditioner according to any one of claims 1 to 8.

Citation Information

Patent Citations

  • Portable outdoor air conditioner and control method thereof

    CN113566330A

  • Camping tent air conditioning equipment

    CN213687353U