WO2022215222A1 - Air conditioning system - Google Patents
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- WO2022215222A1 WO2022215222A1 PCT/JP2021/014878 JP2021014878W WO2022215222A1 WO 2022215222 A1 WO2022215222 A1 WO 2022215222A1 JP 2021014878 W JP2021014878 W JP 2021014878W WO 2022215222 A1 WO2022215222 A1 WO 2022215222A1
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- air
- air conditioner
- room
- conditioning system
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- 238000004378 air conditioning Methods 0.000 title claims abstract description 30
- 239000000428 dust Substances 0.000 claims abstract description 29
- 238000004891 communication Methods 0.000 claims description 7
- 230000006870 function Effects 0.000 description 12
- 238000010586 diagram Methods 0.000 description 8
- 238000004140 cleaning Methods 0.000 description 5
- 238000000034 method Methods 0.000 description 5
- 238000007664 blowing Methods 0.000 description 2
- 239000004065 semiconductor Substances 0.000 description 2
- 230000003749 cleanliness Effects 0.000 description 1
- 239000002131 composite material Substances 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 230000003287 optical effect Effects 0.000 description 1
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Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/70—Control systems characterised by their outputs; Constructional details thereof
- F24F11/72—Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure
- F24F11/79—Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure for controlling the direction of the supplied air
Definitions
- the present disclosure relates to an air conditioning system having an air conditioner and an air cleaner.
- Patent Document 1 Conventionally, techniques have been proposed for effective airflow control in accordance with changes in the indoor environment, operating conditions of air conditioners, and user needs (see Patent Document 1, for example). Also, a technique has been proposed in which an air purifier having a dust collection function collects dust and purifies the air (see, for example, Patent Document 1).
- Conventional cooperative airflow control aims to improve user comfort by controlling airflow that matches the indoor environment. It makes it possible to collect dust scattered in the air.
- the conventional cooperative airflow control has a problem that it is difficult to collect dust adhering to or accumulated on walls or floors.
- the present disclosure has been made in view of the above, and aims to obtain an air conditioning system that collects dust from the air, walls, and floors in a room in which an air conditioner and an air cleaner are arranged. aim.
- the air conditioning system includes an air purifier that sucks in air, purifies the sucked air, and blows out the purified air, and an air conditioner that blows out the air. and an air conditioner that performs Based on the positional information of the air cleaner and the positional information of the air conditioner, the air conditioner controls the airflow in the room in which the air cleaner and the air conditioner are installed to remove dust in the room. collect to
- the air conditioning system according to the present disclosure has the effect of being able to collect dust in the air, walls and floors in a room in which an air conditioner and an air cleaner are arranged.
- FIG. 4 is a diagram showing a processor when the controller of the air conditioner of the air conditioning system according to the embodiment is realized by the processor;
- FIG. 4 is a diagram showing a processing circuit when the control unit of the air conditioner of the air conditioning system according to the embodiment is realized by the processing circuit;
- An air conditioning system includes an air cleaner that draws in air, purifies the drawn air, and blows out the purified air, and an air conditioner that blows out air for air conditioning. Both the air purifier and the air conditioner are arranged in one room.
- FIG. 1 is a diagram showing the configuration of an air conditioner 1 included in the air conditioning system according to the embodiment.
- the air conditioner 1 has a control unit 11 that determines the content of control for air conditioning, and a storage unit 12 that stores position information of the air purifier and information of the room in which the air conditioner 1 is arranged. .
- the information about the room in which the air conditioner 1 is arranged includes the position information of the air conditioner 1 .
- the storage unit 12 is realized by a semiconductor memory.
- the air conditioner 1 includes a communication unit 13 that acquires the above information from a remote controller or a smartphone, a blowout unit 14 that generates an airflow, and a wind direction adjustment unit 15 that adjusts the direction of the wind blown out from the blowout unit 14. and
- FIG. 2 is a diagram showing the configuration of the air purifier 2 included in the air conditioning system according to the embodiment.
- the air purifier 2 includes a blowout portion 21 for generating an airflow, a wind direction adjustment portion 22 for changing the wind direction, a suction portion 23 for collecting air containing dust, and the air collected by the suction portion 23. and an air cleaning unit 24 for cleaning the air.
- the air conditioner 1 Based on the position information of the air cleaner 2 and the position information of the air conditioner 1, the air conditioner 1 controls the airflow in the room in which the air cleaner 2 and the air conditioner 1 are arranged, Dust is collected in the air purifier 2.
- FIG. 3 is a flow chart showing the operation procedure of the air conditioner 1 included in the air conditioning system according to the embodiment.
- the air conditioner 1 acquires the position information of the air conditioner 1 and the position information of the air cleaner 2 from, for example, a remote controller attached to the air conditioner 1 or a smartphone application connectable to the air conditioner 1. (S1).
- the operation of step S ⁇ b>1 is performed by the communication unit 13 .
- the position information acquired by the communication unit 13 is saved in the storage unit 12 .
- the user sets the dust collection mode for the air conditioner 1 using, for example, a remote controller attached to the air conditioner 1 or a smartphone application connectable to the air conditioner 1 .
- the air conditioner 1 accepts the set dust collection mode (S2).
- the air conditioner 1 determines whether the location information of the air conditioner 1 and the location information of the air cleaner 2 are stored in the storage unit 12 (S3).
- the air conditioner 1 determines that the position information of the air conditioner 1 and the position information of the air cleaner 2 are not stored in the storage unit 12 (No in S3), the position information of the air conditioner 1 and the air cleaner The user is requested to input the position information of the machine 2 (S4).
- the air conditioner 1 makes a request to the user in step S4 using, for example, sound. After performing the operation of step S4, the air conditioner 1 performs the operation of step S2.
- the air conditioner 1 determines that the position information of the air conditioner 1 and the position information of the air cleaner 2 are stored in the storage unit 12 (Yes in S3), the position information of the air conditioner 1 and the air cleaner are stored.
- the operating conditions are determined based on the position information of the machine 2 (S5).
- the operation of step S ⁇ b>5 is performed by the control unit 11 .
- the air conditioner 1 starts operation in the dust collection mode based on the determined operating conditions (S6).
- FIG. 4 is a diagram for explaining the dust collection mode of the embodiment.
- the air conditioner 1 and the air cleaner 2 are arranged at two ends of one diagonal line in the room 50 as shown in FIG. 4 will be described below.
- the air conditioner 1 In operation in the dust collection mode, the air conditioner 1 generates an airflow such that the wind flows from the top to the bottom of the room 50 . Arrows in FIG. 4 indicate the airflow generated by the air conditioner 1 .
- the air conditioner 1 blows air from the blowing part 14 while gradually moving the angle of the vertical direction adjusting means of the wind direction adjusting part 15 from upward to downward.
- the air conditioner 1 Based on the stored positional information of the air conditioner 1 and the positional information of the air cleaner 2, the air conditioner 1 adjusts the left-right direction of the wind direction adjusting unit 15 so that the dust gathers on the air cleaner 2. Adjust the angle of the means to the direction of the air purifier 2.
- the air cleaner 2 removes dust from the air sucked from the suction part 23 by the air cleaning part 24 and blows off clean air from the blowing part 21. ⁇
- the air cleaning unit 24 removes dust by, for example, a dust collection filter or electric dust collection.
- the air conditioning system Since the air conditioner 1 generates an airflow so as to collect dust in the room 50 to the air cleaner 2, the air conditioning system according to the embodiment can realize a clean room with less dust. Furthermore, since the air conditioner 1 generates an airflow that removes dust adhering to or accumulated on the wall or floor, the air conditioning system realizes a clean room with less dust and improves the cleanliness of the room 50. be able to.
- the air conditioner 1 controls the airflow in the room in which the air cleaner 2 and the air conditioner 1 are arranged based on the positional information of the air cleaner 2 and the positional information of the air conditioner 1. to collect the dust in the room into the air purifier 2. Therefore, the air conditioning system according to the embodiment can collect dust in the air, on the walls and on the floor in the room where the air conditioner 1 and the air cleaner 2 are arranged.
- the air conditioner 1 and the air cleaner 2 may have the function of communicating wirelessly or by wire, and the air conditioner 1 may have the function of controlling the operation of the air cleaner 2 .
- An example of communication that occurs wirelessly is communication that occurs over Bluetooth®.
- the air conditioner 1 acquires space information indicating the size of the room in which the air conditioner 1 is arranged, and arrangement information indicating the position of the furniture arranged in the room. and may also use the size and location information to control the airflow in the room.
- the air conditioner 1 has means for acquiring person information, which is information on the position of a person in the room in which the air conditioner 1 is arranged, and also uses the person information to control the airflow in the room. good too.
- FIG. 5 is a diagram showing the processor 91 when the controller 11 of the air conditioner 1 of the air conditioning system according to the embodiment is implemented by the processor 91.
- the functions of the control unit 11 may be realized by the processor 91 executing programs stored in the memory 92 .
- the processor 91 is a CPU (Central Processing Unit), processing device, arithmetic device, microprocessor, or DSP (Digital Signal Processor).
- Memory 92 is also shown in FIG.
- the function of the control unit 11 is implemented by the processor 91
- the function is implemented by the processor 91 and software, firmware, or a combination of software and firmware.
- Software or firmware is written as a program and stored in memory 92 .
- the processor 91 implements the functions of the control unit 11 by reading and executing programs stored in the memory 92 .
- the air conditioner 1 has a memory 92 for storing programs that result in the execution of the steps executed by the control unit 11. It can be said that the program stored in the memory 92 causes the computer to execute the controller 11 .
- the memory 92 is non-volatile such as RAM (Random Access Memory), ROM (Read Only Memory), flash memory, EPROM (Erasable Programmable Read Only Memory), EEPROM (registered trademark) (Electrically Erasable Programmable Read-Only Memory). Or a volatile semiconductor memory, a magnetic disk, a flexible disk, an optical disk, a compact disk, a mini disk, a DVD (Digital Versatile Disk), or the like.
- FIG. 6 is a diagram showing the processing circuit 93 when the control unit 11 of the air conditioner 1 of the air conditioning system according to the embodiment is realized by the processing circuit 93.
- the control unit 11 may be implemented by the processing circuit 93 .
- the processing circuit 93 is dedicated hardware.
- the processing circuit 93 is, for example, a single circuit, a composite circuit, a programmed processor, a parallel programmed processor, an ASIC (Application Specific Integrated Circuit), an FPGA (Field-Programmable Gate Array), or a combination thereof. is.
- Part of the control unit 11 may be realized by dedicated hardware separate from the rest.
- part of the multiple functions may be implemented by software or firmware, and the rest of the multiple functions may be implemented by dedicated hardware.
- multiple functions of the control unit 11 can be implemented by hardware, software, firmware, or a combination thereof.
- Air conditioner 1 Air conditioner, 2 Air purifier, 11 Control unit, 12 Storage unit, 13 Communication unit, 14, 21 Blow unit, 15, 22 Wind direction adjustment unit, 23 Suction unit, 24 Air cleaning unit, 50 Room, 91 Processor, 92 memory, 93 processing circuit.
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- General Engineering & Computer Science (AREA)
- Air Conditioning Control Device (AREA)
Abstract
This air conditioning system comprises: an air purifier (2) that sucks in air, purifies the sucked-in air, and blows out the purified air; and an air conditioner (1) that blows out air to perform air conditioning. The air conditioner (1) controls, on the basis of positional information of the air purifier (2) and positional information of the air conditioner (1), airflow in a room in which the air purifier (2) and the air conditioner (1) are disposed, so as to gather dust in the room to the air purifier (2).
Description
本開示は、空気調和機と空気清浄機とを有する空気調和システムに関する。
The present disclosure relates to an air conditioning system having an air conditioner and an air cleaner.
従来、室内の環境の変化、空気調和機の動作の状況、及びユーザのニーズに合わせた効果的な気流の制御を行う技術が提案されている(例えば、特許文献1参照)。また、集塵機能を有する空気清浄機が塵埃を集塵して空気を浄化する技術も提案されている(例えば、特許文献1参照)。
Conventionally, techniques have been proposed for effective airflow control in accordance with changes in the indoor environment, operating conditions of air conditioners, and user needs (see Patent Document 1, for example). Also, a technique has been proposed in which an air purifier having a dust collection function collects dust and purifies the air (see, for example, Patent Document 1).
従来の連携気流制御は、室内の環境に合わせた気流の制御により、ユーザの快適性を高めることを目的としており、室内の空気中に飛散する塵埃が空気清浄機を通過するように制御することで、空気中に飛散している塵埃を集塵することを可能にする。しかしながら、従来の連携気流制御には、壁又は床に付着又は溜まった塵埃を集塵することは困難であるという課題がある。
Conventional cooperative airflow control aims to improve user comfort by controlling airflow that matches the indoor environment. It makes it possible to collect dust scattered in the air. However, the conventional cooperative airflow control has a problem that it is difficult to collect dust adhering to or accumulated on walls or floors.
本開示は、上記に鑑みてなされたものであって、空気調和機と空気清浄機とが配置されている部屋において、空気中、壁及び床の塵埃を集塵する空気調和システムを得ることを目的とする。
The present disclosure has been made in view of the above, and aims to obtain an air conditioning system that collects dust from the air, walls, and floors in a room in which an air conditioner and an air cleaner are arranged. aim.
上述した課題を解決し、目的を達成するために、本開示に係る空気調和システムは、空気を吸い込んで吸い込んだ空気を浄化して浄化した空気を吹き出す空気清浄機と、空気を吹き出して空気調和を行う空気調和機とを有する。空気調和機は、空気清浄機の位置情報と空気調和機の位置情報とをもとに、空気清浄機及び空気調和機が配置される部屋の気流を制御して当該部屋における塵埃を空気清浄機に集める。
In order to solve the above-described problems and achieve the object, the air conditioning system according to the present disclosure includes an air purifier that sucks in air, purifies the sucked air, and blows out the purified air, and an air conditioner that blows out the air. and an air conditioner that performs Based on the positional information of the air cleaner and the positional information of the air conditioner, the air conditioner controls the airflow in the room in which the air cleaner and the air conditioner are installed to remove dust in the room. collect to
本開示に係る空気調和システムは、空気調和機と空気清浄機とが配置されている部屋において、空気中、壁及び床の塵埃を集塵することができるという効果を奏する。
The air conditioning system according to the present disclosure has the effect of being able to collect dust in the air, walls and floors in a room in which an air conditioner and an air cleaner are arranged.
以下に、実施の形態に係る空気調和システムを図面に基づいて詳細に説明する。
Below, the air conditioning system according to the embodiment will be described in detail based on the drawings.
実施の形態.
実施の形態に係る空気調和システムは、空気を吸い込んで吸い込んだ空気を浄化して浄化した空気を吹き出す空気清浄機と、空気を吹き出して空気調和を行う空気調和機とを有する。空気清浄機と空気調和機とはいずれも、ひとつの部屋に配置される。 Embodiment.
An air conditioning system according to an embodiment includes an air cleaner that draws in air, purifies the drawn air, and blows out the purified air, and an air conditioner that blows out air for air conditioning. Both the air purifier and the air conditioner are arranged in one room.
実施の形態に係る空気調和システムは、空気を吸い込んで吸い込んだ空気を浄化して浄化した空気を吹き出す空気清浄機と、空気を吹き出して空気調和を行う空気調和機とを有する。空気清浄機と空気調和機とはいずれも、ひとつの部屋に配置される。 Embodiment.
An air conditioning system according to an embodiment includes an air cleaner that draws in air, purifies the drawn air, and blows out the purified air, and an air conditioner that blows out air for air conditioning. Both the air purifier and the air conditioner are arranged in one room.
図1は、実施の形態に係る空気調和システムが有する空気調和機1の構成を示す図である。空気調和機1は、空気調和についての制御の内容を決定する制御部11と、空気清浄機の位置情報と空気調和機1が配置されている部屋の情報とを記憶する記憶部12とを有する。空気調和機1が配置されている部屋の情報は、空気調和機1の位置情報を含む。例えば、記憶部12は半導体メモリによって実現される。空気調和機1は、リモートコントローラ又はスマートフォンから上記の情報を取得する通信部13と、気流を発生させる吹き出し部14と、吹き出し部14から吹き出される風の向きを調整するための風向調整部15とを更に有する。
FIG. 1 is a diagram showing the configuration of an air conditioner 1 included in the air conditioning system according to the embodiment. The air conditioner 1 has a control unit 11 that determines the content of control for air conditioning, and a storage unit 12 that stores position information of the air purifier and information of the room in which the air conditioner 1 is arranged. . The information about the room in which the air conditioner 1 is arranged includes the position information of the air conditioner 1 . For example, the storage unit 12 is realized by a semiconductor memory. The air conditioner 1 includes a communication unit 13 that acquires the above information from a remote controller or a smartphone, a blowout unit 14 that generates an airflow, and a wind direction adjustment unit 15 that adjusts the direction of the wind blown out from the blowout unit 14. and
図2は、実施の形態に係る空気調和システムが有する空気清浄機2の構成を示す図である。空気清浄機2は、気流を発生させるための吹き出し部21と、風向を変更するための風向調整部22と、塵埃を含む空気を収集するための吸込み部23と、吸込み部23が収集した空気を清浄化するための空気清浄部24とを有する。
FIG. 2 is a diagram showing the configuration of the air purifier 2 included in the air conditioning system according to the embodiment. The air purifier 2 includes a blowout portion 21 for generating an airflow, a wind direction adjustment portion 22 for changing the wind direction, a suction portion 23 for collecting air containing dust, and the air collected by the suction portion 23. and an air cleaning unit 24 for cleaning the air.
空気調和機1は、空気清浄機2の位置情報と空気調和機1の位置情報とをもとに、空気清浄機2及び空気調和機1が配置される部屋の気流を制御して当該部屋における塵埃を空気清浄機2に集める。
Based on the position information of the air cleaner 2 and the position information of the air conditioner 1, the air conditioner 1 controls the airflow in the room in which the air cleaner 2 and the air conditioner 1 are arranged, Dust is collected in the air purifier 2.
次に、実施の形態に係る空気調和システムの動作を説明する。図3は、実施の形態に係る空気調和システムが有する空気調和機1の動作の手順を示すフローチャートである。空気調和機1は、例えば空気調和機1に付随しているリモートコントローラ又は空気調和機1と接続可能なスマートフォンのアプリケーションから、空気調和機1の位置情報及び空気清浄機2の位置情報を取得する(S1)。ステップS1の動作は、通信部13によって行われる。通信部13によって取得された位置情報は、記憶部12に保存される。
Next, the operation of the air conditioning system according to the embodiment will be explained. FIG. 3 is a flow chart showing the operation procedure of the air conditioner 1 included in the air conditioning system according to the embodiment. The air conditioner 1 acquires the position information of the air conditioner 1 and the position information of the air cleaner 2 from, for example, a remote controller attached to the air conditioner 1 or a smartphone application connectable to the air conditioner 1. (S1). The operation of step S<b>1 is performed by the communication unit 13 . The position information acquired by the communication unit 13 is saved in the storage unit 12 .
ユーザは、例えば空気調和機1に付随しているリモートコントローラ又は空気調和機1と接続可能なスマートフォンのアプリケーションを用いて、空気調和機1に集塵モードを設定する。空気調和機1は、設定された集塵モードを受け付ける(S2)。空気調和機1は、空気調和機1の位置情報及び空気清浄機2の位置情報が記憶部12に格納されているか否かを判断する(S3)。
The user sets the dust collection mode for the air conditioner 1 using, for example, a remote controller attached to the air conditioner 1 or a smartphone application connectable to the air conditioner 1 . The air conditioner 1 accepts the set dust collection mode (S2). The air conditioner 1 determines whether the location information of the air conditioner 1 and the location information of the air cleaner 2 are stored in the storage unit 12 (S3).
空気調和機1は、空気調和機1の位置情報及び空気清浄機2の位置情報が記憶部12に格納されていないと判断した場合(S3でNo)、空気調和機1の位置情報及び空気清浄機2の位置情報の入力をユーザに要求する(S4)。空気調和機1は、ステップS4におけるユーザへの要求を例えば音を用いて行う。空気調和機1は、ステップS4の動作を行った後、ステップS2の動作を行う。
When the air conditioner 1 determines that the position information of the air conditioner 1 and the position information of the air cleaner 2 are not stored in the storage unit 12 (No in S3), the position information of the air conditioner 1 and the air cleaner The user is requested to input the position information of the machine 2 (S4). The air conditioner 1 makes a request to the user in step S4 using, for example, sound. After performing the operation of step S4, the air conditioner 1 performs the operation of step S2.
空気調和機1は、空気調和機1の位置情報及び空気清浄機2の位置情報が記憶部12に格納されていると判断した場合(S3でYes)、空気調和機1の位置情報と空気清浄機2の位置情報とをもとに運転条件を決定する(S5)。ステップS5の動作は、制御部11によって行われる。空気調和機1は、ステップS5の動作を行った後、決定した運転条件をもとに集塵モードの運転を開始する(S6)。
When the air conditioner 1 determines that the position information of the air conditioner 1 and the position information of the air cleaner 2 are stored in the storage unit 12 (Yes in S3), the position information of the air conditioner 1 and the air cleaner are stored. The operating conditions are determined based on the position information of the machine 2 (S5). The operation of step S<b>5 is performed by the control unit 11 . After performing the operation of step S5, the air conditioner 1 starts operation in the dust collection mode based on the determined operating conditions (S6).
次に、集塵モードの運転内容を説明する。図4は、実施の形態の集塵モードを説明するための図である。以下では、図4に示されるように、空気調和機1と空気清浄機2とが室内50におけるひとつの対角線の二つの端部に配置された場合の例を説明する。集塵モードの運転において、空気調和機1は、室内50の上部から下部へと風が流れるように気流を発生する。図4における矢印は、空気調和機1によって生成された気流を示している。具体的には、空気調和機1は、風向調整部15の上下方向調整手段の角度を上向きから下向きへ徐々に動かしながら、吹き出し部14から空気を吹き出す。
Next, we will explain the operation details of the dust collection mode. FIG. 4 is a diagram for explaining the dust collection mode of the embodiment. An example in which the air conditioner 1 and the air cleaner 2 are arranged at two ends of one diagonal line in the room 50 as shown in FIG. 4 will be described below. In operation in the dust collection mode, the air conditioner 1 generates an airflow such that the wind flows from the top to the bottom of the room 50 . Arrows in FIG. 4 indicate the airflow generated by the air conditioner 1 . Specifically, the air conditioner 1 blows air from the blowing part 14 while gradually moving the angle of the vertical direction adjusting means of the wind direction adjusting part 15 from upward to downward.
空気調和機1は、記憶している空気調和機1の位置情報と空気清浄機2の位置情報とをもとに、塵埃が空気清浄機2に集まるように、風向調整部15の左右方向調整手段の角度を空気清浄機2の方向へ調整する。空気清浄機2は、吸込み部23から吸い込んだ空気から空気清浄部24で塵埃を取り除き、吹き出し部21から清浄な空気を吹き出す。空気清浄部24は、例えば集塵用のフィルタ又は電気集塵で塵埃を取り除く。
Based on the stored positional information of the air conditioner 1 and the positional information of the air cleaner 2, the air conditioner 1 adjusts the left-right direction of the wind direction adjusting unit 15 so that the dust gathers on the air cleaner 2. Adjust the angle of the means to the direction of the air purifier 2. The air cleaner 2 removes dust from the air sucked from the suction part 23 by the air cleaning part 24 and blows off clean air from the blowing part 21.例文帳に追加The air cleaning unit 24 removes dust by, for example, a dust collection filter or electric dust collection.
空気調和機1が室内50の塵埃を空気清浄機2に集めるように気流を生成するので、実施の形態に係る空気調和システムは、塵埃が少ない清潔な部屋を実現することができる。更に言うと、空気調和機1が壁又は床に付着又は溜まった塵埃を除去させる気流を生成するので、当該空気調和システムは、塵埃が少ない清潔な部屋を実現して室内50の清潔性を高めることができる。
Since the air conditioner 1 generates an airflow so as to collect dust in the room 50 to the air cleaner 2, the air conditioning system according to the embodiment can realize a clean room with less dust. Furthermore, since the air conditioner 1 generates an airflow that removes dust adhering to or accumulated on the wall or floor, the air conditioning system realizes a clean room with less dust and improves the cleanliness of the room 50. be able to.
上述の通り、空気調和機1は、空気清浄機2の位置情報と空気調和機1の位置情報とをもとに、空気清浄機2及び空気調和機1が配置される部屋の気流を制御して当該部屋における塵埃を空気清浄機2に集める。したがって、実施の形態に係る空気調和システムは、空気調和機1と空気清浄機2とが配置されている部屋において、空気中、壁及び床の塵埃を集塵することができる。
As described above, the air conditioner 1 controls the airflow in the room in which the air cleaner 2 and the air conditioner 1 are arranged based on the positional information of the air cleaner 2 and the positional information of the air conditioner 1. to collect the dust in the room into the air purifier 2. Therefore, the air conditioning system according to the embodiment can collect dust in the air, on the walls and on the floor in the room where the air conditioner 1 and the air cleaner 2 are arranged.
なお、空気調和機1及び空気清浄機2は無線又は有線で通信を行う機能を有していて、空気調和機1は空気清浄機2の動作を制御する機能を有していてもよい。無線で行われる通信の例は、Bluetooth(登録商標)で行われる通信である。
The air conditioner 1 and the air cleaner 2 may have the function of communicating wirelessly or by wire, and the air conditioner 1 may have the function of controlling the operation of the air cleaner 2 . An example of communication that occurs wirelessly is communication that occurs over Bluetooth®.
空気調和機1は、空気調和機1が配置される部屋の広さを示す情報である広さ情報と、当該部屋に配置されている家具の位置を示す情報である配置情報とを取得する手段を有していて、広さ情報及び配置情報をも利用して当該部屋の気流を制御してもよい。
The air conditioner 1 acquires space information indicating the size of the room in which the air conditioner 1 is arranged, and arrangement information indicating the position of the furniture arranged in the room. and may also use the size and location information to control the airflow in the room.
空気調和機1は、空気調和機1が配置される部屋における人物の位置の情報である人物情報を取得する手段を有していて、人物情報をも利用して当該部屋の気流を制御してもよい。
The air conditioner 1 has means for acquiring person information, which is information on the position of a person in the room in which the air conditioner 1 is arranged, and also uses the person information to control the airflow in the room. good too.
図5は、実施の形態に係る空気調和システムの空気調和機1が有する制御部11がプロセッサ91によって実現される場合のプロセッサ91を示す図である。つまり、制御部11の機能は、メモリ92に格納されるプログラムを実行するプロセッサ91によって実現されてもよい。プロセッサ91は、CPU(Central Processing Unit)、処理装置、演算装置、マイクロプロセッサ、又はDSP(Digital Signal Processor)である。図5には、メモリ92も示されている。
FIG. 5 is a diagram showing the processor 91 when the controller 11 of the air conditioner 1 of the air conditioning system according to the embodiment is implemented by the processor 91. As shown in FIG. In other words, the functions of the control unit 11 may be realized by the processor 91 executing programs stored in the memory 92 . The processor 91 is a CPU (Central Processing Unit), processing device, arithmetic device, microprocessor, or DSP (Digital Signal Processor). Memory 92 is also shown in FIG.
制御部11の機能がプロセッサ91によって実現される場合、当該機能は、プロセッサ91と、ソフトウェア、ファームウェア、又は、ソフトウェアとファームウェアとの組み合わせとによって実現される。ソフトウェア又はファームウェアは、プログラムとして記述され、メモリ92に格納される。プロセッサ91は、メモリ92に記憶されたプログラムを読み出して実行することにより、制御部11の機能を実現する。
When the function of the control unit 11 is implemented by the processor 91, the function is implemented by the processor 91 and software, firmware, or a combination of software and firmware. Software or firmware is written as a program and stored in memory 92 . The processor 91 implements the functions of the control unit 11 by reading and executing programs stored in the memory 92 .
制御部11の機能がプロセッサ91によって実現される場合、空気調和機1は、制御部11によって実行されるステップが結果的に実行されることになるプログラムを格納するためのメモリ92を有する。メモリ92に格納されるプログラムは、制御部11をコンピュータに実行させるものであるともいえる。
When the functions of the control unit 11 are implemented by the processor 91, the air conditioner 1 has a memory 92 for storing programs that result in the execution of the steps executed by the control unit 11. It can be said that the program stored in the memory 92 causes the computer to execute the controller 11 .
メモリ92は、例えば、RAM(Random Access Memory)、ROM(Read Only Memory)、フラッシュメモリ、EPROM(Erasable Programmable Read Only Memory)、EEPROM(登録商標)(Electrically Erasable Programmable Read-Only Memory)等の不揮発性若しくは揮発性の半導体メモリ、磁気ディスク、フレキシブルディスク、光ディスク、コンパクトディスク、ミニディスク又はDVD(Digital Versatile Disk)等である。
The memory 92 is non-volatile such as RAM (Random Access Memory), ROM (Read Only Memory), flash memory, EPROM (Erasable Programmable Read Only Memory), EEPROM (registered trademark) (Electrically Erasable Programmable Read-Only Memory). Or a volatile semiconductor memory, a magnetic disk, a flexible disk, an optical disk, a compact disk, a mini disk, a DVD (Digital Versatile Disk), or the like.
図6は、実施の形態に係る空気調和システムの空気調和機1が有する制御部11が処理回路93によって実現される場合の処理回路93を示す図である。つまり、制御部11は、処理回路93によって実現されてもよい。処理回路93は、専用のハードウェアである。処理回路93は、例えば、単一回路、複合回路、プログラム化されたプロセッサ、並列プログラム化されたプロセッサ、ASIC(Application Specific Integrated Circuit)、FPGA(Field-Programmable Gate Array)、又はこれらを組み合わせたものである。制御部11の一部は、残部と別個の専用のハードウェアによって実現されてもよい。
FIG. 6 is a diagram showing the processing circuit 93 when the control unit 11 of the air conditioner 1 of the air conditioning system according to the embodiment is realized by the processing circuit 93. As shown in FIG. That is, the control unit 11 may be implemented by the processing circuit 93 . The processing circuit 93 is dedicated hardware. The processing circuit 93 is, for example, a single circuit, a composite circuit, a programmed processor, a parallel programmed processor, an ASIC (Application Specific Integrated Circuit), an FPGA (Field-Programmable Gate Array), or a combination thereof. is. Part of the control unit 11 may be realized by dedicated hardware separate from the rest.
制御部11の複数の機能について、当該複数の機能の一部がソフトウェア又はファームウェアで実現され、当該複数の機能の残部が専用のハードウェアで実現されてもよい。このように、制御部11の複数の機能は、ハードウェア、ソフトウェア、ファームウェア、又はこれらの組み合わせによって実現することができる。
Regarding the multiple functions of the control unit 11, part of the multiple functions may be implemented by software or firmware, and the rest of the multiple functions may be implemented by dedicated hardware. Thus, multiple functions of the control unit 11 can be implemented by hardware, software, firmware, or a combination thereof.
以上の実施の形態に示した構成は、一例を示すものであり、別の公知の技術と組み合わせることも可能であるし、要旨を逸脱しない範囲で、構成の一部を省略又は変更することも可能である。
The configuration shown in the above embodiment is an example, and can be combined with another known technique, and part of the configuration can be omitted or changed without departing from the scope of the invention. It is possible.
1 空気調和機、2 空気清浄機、11 制御部、12 記憶部、13 通信部、14,21 吹き出し部、15,22 風向調整部、23 吸込み部、24 空気清浄部、50 室内、91 プロセッサ、92 メモリ、93 処理回路。
1 Air conditioner, 2 Air purifier, 11 Control unit, 12 Storage unit, 13 Communication unit, 14, 21 Blow unit, 15, 22 Wind direction adjustment unit, 23 Suction unit, 24 Air cleaning unit, 50 Room, 91 Processor, 92 memory, 93 processing circuit.
Claims (4)
- 空気を吸い込んで吸い込んだ空気を浄化して浄化した空気を吹き出す空気清浄機と、
空気を吹き出して空気調和を行う空気調和機とを備え、
前記空気調和機は、前記空気清浄機の位置情報と前記空気調和機の位置情報とをもとに、前記空気清浄機及び前記空気調和機が配置される部屋の気流を制御して前記部屋における塵埃を前記空気清浄機に集める
空気調和システム。 an air purifier that draws in air, purifies the inhaled air, and blows out the purified air;
An air conditioner that blows out air to perform air conditioning,
Based on the position information of the air cleaner and the position information of the air conditioner, the air conditioner controls the airflow in the room in which the air cleaner and the air conditioner are arranged, and controls the air flow in the room. An air conditioning system that collects dust on the air purifier. - 前記空気調和機及び前記空気清浄機は、無線又は有線で通信を行う機能を有しており、
前記空気調和機は、前記空気清浄機の動作を制御する機能を有する
請求項1に記載の空気調和システム。 The air conditioner and the air purifier have a function of performing wireless or wired communication,
The air conditioning system according to claim 1, wherein the air conditioner has a function of controlling operation of the air cleaner. - 前記空気調和機は、前記部屋の広さを示す情報である広さ情報と、前記部屋に配置されている家具の位置を示す情報である配置情報とを取得する手段を有し、前記広さ情報及び前記配置情報をも利用して前記部屋の気流を制御する
請求項1又は2に記載の空気調和システム。 The air conditioner has means for acquiring size information that indicates the size of the room and arrangement information that indicates the positions of furniture arranged in the room. The air conditioning system according to claim 1 or 2, wherein the information and the location information are also used to control the airflow in the room. - 前記空気調和機は、前記部屋における人物の位置の情報である人物情報を取得する手段を有し、前記人物情報をも利用して前記部屋の気流を制御する
請求項1から3のいずれか1項に記載の空気調和システム。 4. Any one of claims 1 to 3, wherein the air conditioner has means for acquiring person information, which is information on the position of a person in the room, and controls the airflow in the room using the person information as well. 3. Air conditioning system according to paragraph.
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JP2013511017A (en) * | 2009-11-12 | 2013-03-28 | パナソニック株式会社 | Dust collection system |
JP2017020775A (en) * | 2015-07-08 | 2017-01-26 | パナソニックIpマネジメント株式会社 | Intake device and intake method |
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JP2013511017A (en) * | 2009-11-12 | 2013-03-28 | パナソニック株式会社 | Dust collection system |
JP2017020775A (en) * | 2015-07-08 | 2017-01-26 | パナソニックIpマネジメント株式会社 | Intake device and intake method |
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