WO2024007597A1 - Procédé et dispositif de commande de climatiseur, et climatiseur - Google Patents

Procédé et dispositif de commande de climatiseur, et climatiseur Download PDF

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Publication number
WO2024007597A1
WO2024007597A1 PCT/CN2023/077692 CN2023077692W WO2024007597A1 WO 2024007597 A1 WO2024007597 A1 WO 2024007597A1 CN 2023077692 W CN2023077692 W CN 2023077692W WO 2024007597 A1 WO2024007597 A1 WO 2024007597A1
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WIPO (PCT)
Prior art keywords
air
air conditioner
component
purification
operation plan
Prior art date
Application number
PCT/CN2023/077692
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English (en)
Chinese (zh)
Inventor
秦玲
徐永伟
于兆志
Original Assignee
青岛海尔空调器有限总公司
青岛海尔空调电子有限公司
海尔智家股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by 青岛海尔空调器有限总公司, 青岛海尔空调电子有限公司, 海尔智家股份有限公司 filed Critical 青岛海尔空调器有限总公司
Publication of WO2024007597A1 publication Critical patent/WO2024007597A1/fr

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/89Arrangement or mounting of control or safety devices
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/50Control or safety arrangements characterised by user interfaces or communication
    • F24F11/54Control or safety arrangements characterised by user interfaces or communication using one central controller connected to several sub-controllers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/62Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
    • F24F11/63Electronic processing
    • F24F11/64Electronic processing using pre-stored data
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/88Electrical aspects, e.g. circuits
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/10Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering
    • F24F8/117Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering using wet filtering
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/20Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by sterilisation

Definitions

  • the present application relates to the technical field of smart home appliances, for example, to a method, device and air conditioner for controlling air conditioners.
  • a kitchen air conditioner which includes a casing and an air conditioning system arranged in the casing.
  • the casing is provided with an air outlet for supplying air conditioning air into the kitchen room and an air inlet channel for sucking air from the kitchen room.
  • a first filter screen is provided between the air conditioning system and the air inlet channel;
  • the air inlet channel includes a first air inlet channel and a second air inlet channel arranged independently of each other;
  • a second filter screen is provided in the first air inlet channel, and the
  • An openable and closable first air door is provided at the entrance of the first air inlet duct;
  • an oil and gas separation device is provided in the second air inlet duct, and an openable and closable second air door is provided at the entrance of the second air inlet duct.
  • the oil smoke concentration is detected in the air inlet channel, and the first damper or the first damper is controlled to open according to the oil smoke concentration and the preset value.
  • Embodiments of the present disclosure provide a method and device for controlling an air conditioner and an air conditioner to improve the air quality of the kitchen air conditioner and improve user comfort.
  • the air conditioner is used in the kitchen, and the air inlet side of the air conditioner is provided with a deodorization and purification mechanism.
  • the deodorization and purification mechanism includes a purification component, a water washing component, and a deodorization component arranged in sequence; the method includes: Start the air conditioner During operation, indoor environmental parameters are detected; according to changes in indoor environmental parameters, a target operation plan of the air conditioner is determined; and according to the target operation plan, the operation of corresponding components in the deodorization and purification mechanism is controlled.
  • the device includes: a processor and a memory storing program instructions, and the processor is configured to execute the aforementioned method for controlling air conditioning when running the program instructions.
  • the air conditioner includes: an air inlet; a deodorizing and purifying mechanism disposed inside the air inlet; and, as mentioned above, the device for controlling the air conditioner;
  • the deodorizing and purifying mechanism includes: a purifying component disposed on The inside of the air inlet is configured to be controlled open or closed to purify the incoming air;
  • the water washing component is arranged behind the purification component and is configured to separate the oil in the incoming air from the incoming air;
  • the deodorizing component is arranged behind the water washing component The rear of the assembly is configured to remove odors from the purified air.
  • the methods, devices and air conditioners for controlling air conditioning provided by the embodiments of the present disclosure can achieve the following technical effects:
  • the air conditioner When the air conditioner starts running, indoor air parameters are detected. Based on the changes in indoor air parameters, the target operation plan of the air conditioner is determined. Control the corresponding components in the deodorization and purification mechanism to execute the target operation plan. In this way, different purification plans can be determined based on changes in indoor air parameters. And control the operation of corresponding components to purify indoor air. Thereby improving indoor air quality and improving user comfort.
  • Figure 1 is a schematic cross-sectional structural diagram of a deodorizing and purifying mechanism in an air conditioner provided by an embodiment of the present disclosure
  • Figure 2 is a schematic diagram of a method for controlling air conditioning provided by an embodiment of the present disclosure
  • Figure 3 is a schematic diagram of another method for controlling air conditioning provided by an embodiment of the present disclosure.
  • Figure 4 is a schematic diagram of another method for controlling air conditioning provided by an embodiment of the present disclosure.
  • Figure 5 is a schematic diagram of a device for controlling air conditioning provided by an embodiment of the present disclosure
  • FIG. 6 is a schematic diagram of another device for controlling air conditioning provided by an embodiment of the present disclosure.
  • A/B means: A or B.
  • a and/or B means: A or B, or A and B.
  • correspondence can refer to an association relationship or a binding relationship.
  • correspondence between A and B refers to an association relationship or a binding relationship between A and B.
  • the air conditioner is applied in the kitchen to purify the air in the kitchen.
  • the air conditioner includes a housing, an air inlet 10 , and a deodorizing and purifying mechanism provided in the housing inside the air inlet 10 .
  • the deodorizing and purifying mechanism includes a water washing component 20, a purifying component and a deodorizing component 30 which are sequentially arranged in the air inlet duct according to the air inlet direction.
  • the water washing component 20 is disposed inside the air inlet 10 and is configured to separate the oil in the inlet air from the air.
  • the purification component is arranged behind the water washing component 20 and can be controlled to open or close. When opened, the purification component can cover the air inlet duct to purify the air in the air inlet duct. When closed, the purification component can let out of the air inlet duct and no longer purifies the air in the air inlet duct.
  • the deodorizing component 30 is disposed behind the purifying component and is configured to absorb odors in the purified air. When working, the deodorizing component 30 can emit deodorizing substances, such as negative ions, for deodorizing.
  • the water washing assembly 20 includes: a water storage tank 21, an atomization assembly 23, a water collecting tray 24 and an oil collecting box 25.
  • Water storage tank 21 is used to store water.
  • the atomizing component 23 is connected to the water storage tank 21 through a pipeline, and the atomizing component 23 is evenly distributed on the pipeline. It can evenly moisten the inlet air when spraying atomized water in a controlled manner.
  • a water pump 22 is provided on the pipeline. When the water washing assembly 20 is working, the water pump 22 is started to supply the water in the water storage tank 21 to the atomization assembly 23 .
  • the water receiving tray 24 is provided below the atomization assembly 23 and is used to receive the atomized condensate water and separate the water and oil in the condensate water.
  • the oil collecting box 25 is arranged on one side of the water receiving pan 24 and is connected with the oil outlet in the water receiving pan 24 to store the separated oil.
  • the water collecting tray 24 is coated with a hydrophilic film. After the atomized air circulates through the water tray, the oil attached in the air When the condensate water passes through the drain pan 24, the oil condenses on the surface of the drain pan 24 and falls off, and is collected at the bottom of the drain pan 24. Thereby, it is collected into the oil collection box 25 through the oil outlet.
  • the water collecting tray 24 is set at an angle. At the same time, in order for the air to pass through the water receiving tray 24, air holes or air slots are provided on the water receiving tray 24 so that the wind can pass through smoothly.
  • the oil outlet of the water receiving pan 24 is disposed on the bottom side of the water receiving pan 24 .
  • oil will accumulate at the bottom of the water receiving pan 24 due to gravity.
  • the oil outlet is provided at the bottom end of the water receiving pan 24 .
  • the deodorizing assembly 30 includes a deodorizing box 31 .
  • the deodorizing box 31 includes a box body and a box cover, and the box cover can be opened or closed in a controlled manner.
  • a solid deodorant is provided inside the box, and a heating module 32 is provided at the bottom outside the box.
  • the box lid is controlled to open and the heating module 32 is heated. In order to volatilize the solid deodorant and purify the odor in the incoming air.
  • the box lid is closed in a controlled manner and the heating module 32 is not working.
  • the purification component includes a filter 40, and the filter 40 is disposed behind the purification component.
  • the filter 40 has a collapsible structure.
  • the power component drives the filter 40 to shrink on one side of the air inlet duct.
  • the driving member drives the filter 40 to extend and cover the air inlet duct. So that the air in the air inlet duct is filtered by the filter and further circulates in the air inlet duct.
  • the structure of the air conditioner is more compact and highly integrated. It can also process air with different oil fume concentrations.
  • the three components of the deodorizing and purifying mechanism can be combined arbitrarily or controlled and operated individually to meet the needs of different scenarios.
  • this solution not only purifies the dirty components in the air, but also purifies the odor in the air. It improves the air quality of the air conditioner and enhances the user experience.
  • an embodiment of the present disclosure provides a method for controlling the air conditioner, including:
  • the processor determines the target operation plan of the air conditioner based on changes in indoor air parameters.
  • S103 The processor controls the operation of corresponding components in the deodorization and purification mechanism according to the target operation plan.
  • a sensor is installed at the air inlet of the air conditioner to detect indoor air. Such as detecting indoor PM2.5 content, detecting the concentration of volatile organic compounds, etc.
  • the detection cycle can be set to detect the air parameters of the kitchen regularly or irregularly. Based on the detected values, the changes in air parameters are calculated. Further, according to the changes in parameters, the target operation plan of the air conditioner is determined. Among them, after the air conditioner is turned on, if cooking or steaming is not performed in the kitchen, the detection values of some of the air parameters in the kitchen will not continue to deteriorate. If cooking or steaming is performed in the kitchen, the detection values of some of the air parameters in the kitchen will become worse.
  • the target operation plan of the air conditioner it is necessary to determine the target operation plan of the air conditioner based on changes in air parameters.
  • the concentration of volatile organic compounds in the kitchen is detected to be increasing, it indicates that there is greater indoor oil smoke.
  • the air conditioner needs to run the water washing program.
  • the concentration of PM2.5 in the kitchen increases, the air conditioner needs to run a purification program.
  • the operation of corresponding components in the deodorization and purification mechanism is controlled.
  • different target operation plans have different corresponding execution components. Therefore, after the target operation plan is determined, the corresponding execution component is determined based on the target operation scheme to control the operation of the execution component.
  • indoor air parameters are detected when the air conditioner is started to operate. Based on the changes in indoor air parameters, the target operation plan of the air conditioner is determined. Control the corresponding components in the deodorization and purification mechanism to execute the target operation plan. In this way, different solutions can be selected based on changes in indoor air parameters. And control the operation of corresponding components to purify indoor air. Improve indoor air and improve user comfort.
  • the indoor air parameters include the concentration of PM2.5 and volatile organic compounds; step S102, the processor determines the target operation plan of the air conditioner based on the changes in the indoor air parameters, including:
  • the processor determines that the target operation plan of the air conditioner is the purification operation plan.
  • the processor determines that the target operation plan of the air conditioner is the water washing operation plan when the concentration increase rate of indoor PM2.5 is greater than the first rate and the concentration increase rate of volatile organic compounds is greater than the second rate.
  • the target operation plan of the air conditioner is determined to be the purification operation plan. That is to say, it can purify PM2.5 in the kitchen air without dealing with oil fumes.
  • the concentration of indoor PM2.5 increases faster than the first rate and the concentration of volatile organic compounds increases faster than the second rate, it indicates that cooking is in progress in the kitchen, so the change rate of oil smoke is faster and the concentration of PM2.5 is also increasing. big.
  • the target operation plan of the air conditioner is determined to be the water washing operation plan.
  • the processor determines the indoor PM2.5 concentration, volatile organic compound concentration and the preset concentration threshold. Then based on the judgment results, the target operation plan of the air conditioner is determined. For example, when the concentration of indoor PM2.5 is greater than the first concentration threshold and the concentration of volatile organic compounds is greater than the second concentration threshold, the target operation plan of the air conditioner is determined to be the water washing operation plan.
  • the constant concentration of volatile organic compounds means that the concentration is relatively unchanged or changes less than the preset range. Generally, the concentration of volatile organic compounds in the kitchen remains basically unchanged when the kitchen is not cooking.
  • step S103 the processor controls the operation of corresponding components in the deodorization and purification mechanism according to the target operation plan, including:
  • the processor controls the operation of the purification component in the deodorization and purification mechanism. OK.
  • the processor controls the operation of the purification component and the water washing component in the deodorization and purification mechanism.
  • the corresponding component operation is controlled.
  • the target operation plan is the purification operation plan
  • the operation of the purification component in the deodorization and purification mechanism is controlled.
  • the filter that controls the purification component extends to cover the air inlet duct. In this way, the air entering from the air inlet is filtered through the filter to adsorb suspended particles and other impurities in the inlet air.
  • the target operation plan is the water washing operation plan
  • control the operation of the purification component and the water washing component control the operation of the purification component and the water washing component.
  • the water pump in the purification component is controlled to start to provide water source to the atomization component, and the atomization component sprays atomized water to moisten the air entering the air inlet.
  • the moistened air flows through the drain pan, it condenses to form condensation water and the oil in the condensation water is separated. After the oil accumulates, it forms oil droplets and is collected at the bottom of the drain pan. And flows into the oil collection box through the water tray. In this way, when the oil fume in the indoor air is heavy, the water washing component can purify the oil in the air. Furthermore, the air after oil separation continues to flow to the purification component and absorbs impurities through the filter. Then it flows out of the air outlet of the heat exchanger and is sent to the kitchen.
  • step S103 the processor controls the operation of the water washing component in the deodorization and purification mechanism, including:
  • an embodiment of the present disclosure provides another method for controlling air conditioning, including:
  • the processor determines the target operation plan of the air conditioner based on changes in indoor air parameters.
  • S103 The processor controls the operation of corresponding components in the deodorization and purification mechanism according to the target operation plan.
  • the air odor at the air-conditioning treatment outlet is detected. If the detection value is greater than the preset odor threshold, it indicates that the oil smoke is heavy or the air conditioner has been running for a long time and has accumulated oil pollution. Therefore, the air outlet from the air conditioner has a peculiar smell.
  • control the operation of the deodorization component in the deodorization and purification mechanism Specifically, the lid of the deodorizing box is controlled to open and the heating module is controlled to work. To control the volatilization rate of solid deodorant to purify the incoming air and eliminate odors.
  • the deodorizing component is controlled to stop operating.
  • an embodiment of the present disclosure provides another method for controlling air conditioning, including:
  • S402 detects the concentration of PM2.5 and volatile organic compounds (VOC, Volatile Organic Compounds) at the air inlet of the air conditioner;
  • S405 determine the water washing operation plan for the air conditioner, and control the operation of the purification component and the water washing component;
  • S408 control the operation of the deodorizing component, and then execute S406;
  • an embodiment of the present disclosure provides a device 50 for controlling air conditioning, including a detection module 51 , a determination module 52 and a control module 53 .
  • the detection module 51 is configured to detect indoor air parameters when the air conditioner is started to operate;
  • the determination module 52 is configured to determine the target operation plan of the air conditioner according to changes in the indoor air parameters;
  • the control module 53 is configured to determine the target operation plan according to the target operation plan , control the operation of corresponding components in the deodorization and purification mechanism.
  • the device for controlling the air conditioner provided by the embodiment of the present disclosure is used to detect indoor air parameters when the air conditioner starts running. Based on the changes in indoor air parameters, the target operation plan of the air conditioner is determined. Control the corresponding components in the deodorization and purification mechanism to execute the target operation plan. In this way, different solutions can be determined based on changes in indoor air parameters. And control the operation of corresponding components to purify indoor air. Thereby improving indoor air and improving user comfort.
  • an embodiment of the present disclosure provides a device 60 for controlling air conditioning, including a processor 100 and a memory 101 .
  • the device 60 may also include a communication interface (Communication Interface) 102 and a bus 103.
  • Communication interface 102 may be used for information transmission.
  • the processor 100 may call logical instructions in the memory 101 to execute the method for controlling air conditioning in the above embodiment.
  • the above-mentioned logical instructions in the memory 101 can be implemented in the form of software functional units and can be stored in a computer-readable storage medium when sold or used as an independent product.
  • the memory 101 can be used to store software programs and computer executable programs. Such as the program instructions/modules corresponding to the methods in the embodiments of the present disclosure.
  • the processor 100 executes the program instructions/modules stored in the memory 101 to execute functional applications and data processing, that is, to implement the method for controlling the air conditioner in the above embodiment.
  • the memory 101 may include a stored program area and a stored data area, wherein the stored program area may store an operating system and at least one application program required for a function; the stored data area may store data created according to the use of the terminal device, etc.
  • the memory 101 may include a high-speed random access memory and may also include a non-volatile memory.
  • An embodiment of the present disclosure provides an air conditioner, including the above device for controlling the air conditioner.
  • Embodiments of the present disclosure provide a storage medium that stores computer-executable instructions, and the computer-executable instructions are configured to execute the above method for controlling air conditioning.
  • the above-mentioned storage medium may be a transient computer-readable storage medium or a non-transitory computer-readable storage medium.
  • An embodiment of the present disclosure provides a computer program that, when executed by a computer, causes the computer to implement the above method for controlling an air conditioner.
  • Embodiments of the present disclosure provide a computer program product.
  • the computer program product includes computer instructions stored on a computer-readable storage medium. When the program instructions are executed by a computer, the computer implements the above-mentioned control of air conditioners. Methods.
  • the technical solution of the embodiments of the present disclosure may be embodied in the form of a software product.
  • the computer software product is stored in a storage medium and includes one or more instructions to enable a computer device (which may be a personal computer, a server, or a network equipment, etc.) to perform all or part of the steps of the method described in the embodiments of the present disclosure.
  • the aforementioned storage media can be non-transitory storage media, including: U disk, mobile hard disk, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), magnetic disk or optical disk, etc.
  • each embodiment may focus on its differences from other embodiments, and the same and similar parts among various embodiments may be referred to each other.
  • the relevant parts can be referred to the description of the method part.
  • the disclosed methods and products can be implemented in other ways.
  • the device embodiments described above are only illustrative.
  • the division of the units may only be a logical function division. In actual implementation, there may be other division methods.
  • multiple units or components may be combined. Either it can be integrated into another system, or some features can be ignored, or not implemented.
  • the coupling or direct coupling or communication connection between each other shown or discussed may be through some interfaces, indirect coupling or communication connection of devices or units, and may be in electrical, mechanical or other forms.
  • each functional unit in the embodiment of the present disclosure may be integrated into one processing unit, or each unit may exist physically alone, or two or more units may be integrated into one unit.
  • each block in the flowchart or block diagrams may represent a module, segment, or portion of code that contains one or more components for implementing the specified logical function(s).
  • Executable instructions may be included in the blocks.
  • the functions noted in the block may occur out of the order noted in the figures. For example, two consecutive blocks may actually execute substantially in parallel, or they may sometimes execute in the reverse order, depending on the functionality involved.
  • the operations or steps corresponding to different blocks may also be performed in a sequence different from that disclosed in the description.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Signal Processing (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • Fuzzy Systems (AREA)
  • Mathematical Physics (AREA)
  • Air Conditioning Control Device (AREA)

Abstract

La présente invention concerne un procédé de commande d'un climatiseur. Le climatiseur est utilisé dans une cuisine ; un mécanisme de désodorisation et de purification est situé sur un côté d'une entrée d'air (10) du climatiseur ; le mécanisme de désodorisation et de purification comprend un ensemble de lavage à l'eau (20), un ensemble de purification et un ensemble de désodorisation (30) qui sont agencés en séquence. Le procédé consiste à : mesurer des paramètres d'air intérieur dans la condition selon laquelle le climatiseur est démarré pour fonctionner ; déterminer un schéma de fonctionnement cible du climatiseur en fonction de changements des paramètres d'air intérieur ; et commander, selon le schéma de fonctionnement cible, l'ensemble correspondant dans le mécanisme de désodorisation et de purification pour fonctionner. Dans le procédé, à la lumière des changements des paramètres d'air intérieur, le climatiseur est déterminé pour exécuter différents schémas de purification. De plus, les ensembles correspondant aux schémas de purification sont commandés pour fonctionner pour améliorer la qualité de l'air intérieur et améliorer le confort d'utilisation d'un utilisateur. En outre, sont divulgués un dispositif de commande d'un climatiseur, et un climatiseur.
PCT/CN2023/077692 2022-07-06 2023-02-22 Procédé et dispositif de commande de climatiseur, et climatiseur WO2024007597A1 (fr)

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CN202210789436.8A CN115264858A (zh) 2022-07-06 2022-07-06 用于控制空调的方法及装置、空调
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