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JP2012154558A - Air conditioner - Google Patents

Air conditioner Download PDF

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JP2012154558A
JP2012154558A JP2011013556A JP2011013556A JP2012154558A JP 2012154558 A JP2012154558 A JP 2012154558A JP 2011013556 A JP2011013556 A JP 2011013556A JP 2011013556 A JP2011013556 A JP 2011013556A JP 2012154558 A JP2012154558 A JP 2012154558A
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stop time
operation stop
time
filter
air conditioner
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Yoshiko Watabe
佳子 渡部
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Hitachi Appliances Inc
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Hitachi Appliances Inc
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  • Air Filters, Heat-Exchange Apparatuses, And Housings Of Air-Conditioning Units (AREA)
  • Air Conditioning Control Device (AREA)

Abstract

PROBLEM TO BE SOLVED: To provide an air conditioner that accurately detects operation stop time of the air conditioner, even if there is a case where the air conditioner has not been energized, and enables automatic operation of a filter based on the operation stop time.SOLUTION: The air conditioner has a filter arranged in an air intake side of a heat exchanger, a filter cleaning mechanism for cleaning the filter, a previous operation stop time recording means for recording previous operation stop time, and an operation stop time calculation means for calculating operation stop time. The air conditioner calculates the operation stop time based on present time information transmitted from a remote controller and the previous operation stop time recorded in the previous operation stop time recording means, and adds up the operation stop time to thereby calculate totaled operation stop time, and cleans the filter by the filter cleaning mechanism if the calculated totalized operation stop time exceeds predetermined time.

Description

本発明はフィルタを清掃するフィルタ清掃機構を備えた空気調和機に関する。   The present invention relates to an air conditioner including a filter cleaning mechanism for cleaning a filter.

空気調和機は、室内空気を熱交換器に循環させて、加熱,冷却,除湿等により調和された空気を室内に吹き出すことにより、室内を空気調和する。この空気調和機内を循環する空気中の塵埃は、空気調和機の室内空気吸込口に配置されたフィルタにより除去される。しかし、フィルタで除去した塵埃が蓄積すると、通風抵抗が大きくなり、熱交換性能が低下する。   The air conditioner circulates room air through a heat exchanger and blows out air conditioned by heating, cooling, dehumidification, and the like into the room, thereby air-conditioning the room. The dust in the air circulating in the air conditioner is removed by a filter disposed at the indoor air intake port of the air conditioner. However, if dust removed by the filter accumulates, ventilation resistance increases and heat exchange performance decreases.

これに対して、従来の技術として、適宜な時期にフィルタを自動的に清掃するフィルタ清掃機構を備えた空気調和機がある。例えば、特許文献1では、空気調和機の積算運転時間を検出するための積算運転時間検出手段を備え、積算運転時間検出手段により検出された空気調和機の積算運転時間が所定時間を超えた場合にフィルタを自動的に清掃する空気調和機を開示する。また、空気調和機の積算停止時間を検出するための積算停止時間検出手段を備え、積算停止時間検出手段により検出された空気調和機の積算停止時間が所定時間を超えた場合にフィルタを自動的に清掃する空気調和機を開示する。   In contrast, as a conventional technique, there is an air conditioner including a filter cleaning mechanism that automatically cleans a filter at an appropriate time. For example, in Patent Document 1, when the integrated operation time detection means for detecting the integrated operation time of the air conditioner is provided and the integrated operation time of the air conditioner detected by the integrated operation time detection means exceeds a predetermined time Discloses an air conditioner that automatically cleans a filter. In addition, an integrated stop time detecting means for detecting the integrated stop time of the air conditioner is provided, and the filter is automatically activated when the integrated stop time of the air conditioner detected by the integrated stop time detecting means exceeds a predetermined time. An air conditioner for cleaning is disclosed.

特許文献1に開示の空気調和機のように、空気調和機の積算停止時間に基づいてフィルタを清掃する場合、室内機制御部に設けられたタイマのカウントにより計測された空気調和機の停止時間の積算時間が所定時間を経過したかどうかを判定し、この判定がYESの場合には、フィルタに塵埃が堆積していると判断する。従って、空気調和機の停止中も、室内機制御部に通電されている必要がある。   When cleaning the filter based on the integrated stop time of the air conditioner as in the air conditioner disclosed in Patent Document 1, the stop time of the air conditioner measured by the count of a timer provided in the indoor unit control unit It is determined whether a predetermined time has elapsed. If this determination is YES, it is determined that dust has accumulated on the filter. Therefore, the indoor unit control unit needs to be energized even when the air conditioner is stopped.

しかしながら、使用者により空気調和機の使用時期が異なり、例えば夏季の冷房運転でのみ使用する環境では、秋から翌春までの数カ月間、空気調和機が使用されない場合もある。このような場合に、空気調和機のエネルギー消費の低減を目的として、空気調和機の電源が切られると、空気調和機の制御部に設けたタイマでは、空気調和機の停止時間を正確に検出することが難しい。   However, the use time of the air conditioner differs depending on the user. For example, in an environment where the air conditioner is used only for cooling operation in summer, the air conditioner may not be used for several months from autumn to the next spring. In such a case, when the air conditioner is turned off for the purpose of reducing the energy consumption of the air conditioner, the timer provided in the control unit of the air conditioner accurately detects the stop time of the air conditioner. Difficult to do.

国際公開第2006/049244号International Publication No. 2006/049244

本発明は、空気調和機が長期間使用されない場合であっても(空気調和機が通電されていない場合があっても)、空気調和機の運転停止時間を正確に検出し、この運転停止時間に基づいたフィルタの自動運転を可能とする空気調和機を提供することを課題とする。   Even if the air conditioner is not used for a long time (even if the air conditioner is not energized), the present invention accurately detects the operation stop time of the air conditioner, and this operation stop time. It is an object to provide an air conditioner that enables automatic operation of a filter based on the above.

本発明の空気調和機は、空気吸込口及び空気吹出口を有する筐体、筐体内に配置された熱交換器、熱交換器の空気吸込側に配置されたフィルタ、室内空気を空気吸込口より吸い込みフィルタ及び熱交換器を通してから空気吹出口より吹き出す送風ファン、フィルタを清掃するフィルタ清掃機構、前回の運転停止時刻を記録する前回運転停止時刻記録手段、及び、運転停止時間を算出する運転停止時間算出手段、を有する室内機と、現在の時刻情報を管理する現在時刻情報管理手段を有するとともに、室内機に運転操作信号を送信するリモートコントローラと、を備える空気調和機において、運転停止時間算出手段は、リモートコントローラから送信された現在の時刻情報及び前回運転停止時刻記録手段に記録された前回の運転停止時刻に基づいて運転停止時間を算出するとともに、この運転停止時間を積算することにより積算の運転停止時間を算出し、この積算の運転停止時間が所定時間を超えた場合に、フィルタ清掃機構によりフィルタを清掃する。   The air conditioner of the present invention includes a housing having an air suction port and an air outlet, a heat exchanger disposed in the housing, a filter disposed on the air suction side of the heat exchanger, and indoor air from the air suction port. A blower fan that blows out from the air outlet after passing through the suction filter and the heat exchanger, a filter cleaning mechanism for cleaning the filter, a previous operation stop time recording means for recording the previous operation stop time, and an operation stop time for calculating the operation stop time An operation stop time calculating means in an air conditioner comprising: an indoor unit having a calculating means; and a remote controller that has a current time information managing means for managing current time information and that transmits a driving operation signal to the indoor unit. Is based on the current time information transmitted from the remote controller and the previous operation stop time recorded in the previous operation stop time recording means. The operation stop time is calculated, and the operation stop time is calculated by integrating the operation stop time. When the operation stop time exceeds the predetermined time, the filter is cleaned by the filter cleaning mechanism. .

本発明によれば、空気調和機が通電されていない場合があっても、空気調和機の運転停止時間を正確に検出し、この運転停止時間に基づいたフィルタの自動運転を可能とする空気調和機を提供することができる。   According to the present invention, even when the air conditioner is not energized, the air conditioner that accurately detects the operation stop time of the air conditioner and enables automatic operation of the filter based on the operation stop time. Machine can be provided.

空気調和機の全体構成図。The whole block diagram of an air conditioner. 室内機の側断面図。The sectional side view of an indoor unit. 室内機の内部上面図。The inside top view of an indoor unit. フィルタ清掃機構の斜視図。The perspective view of a filter cleaning mechanism. 空気調和機の室内機とリモコンの制御装置を示す概略ブロック線図。The schematic block diagram which shows the indoor unit of an air conditioner, and the control apparatus of a remote control.

以下、本発明の空気調和機の実施例を図1−図5を用いて説明する。まず、空気調和機の全体構成について図1及び図2を用いて説明する。   Hereinafter, embodiments of the air conditioner of the present invention will be described with reference to FIGS. First, the whole structure of an air conditioner is demonstrated using FIG.1 and FIG.2.

図1は空気調和機の全体構成図である。空気調和機21は、室内機22,室外機23、及び室内機22に運転開始等の操作信号を送信するリモートコントローラ(以下「リモコン」という。)1を備える。室内機22及び室外機23は接続配管24で接続される。室内機22は、筐体25内に、後述する熱交換器26等の内部構造体を備える。空気調和機21は、室内空気を空気吸込口27から吸い込み、熱交換器26で加熱,冷却,除湿等された室内空気を、空気吹出口29から室内に吹き出すことにより、室内を空気調和する。   FIG. 1 is an overall configuration diagram of an air conditioner. The air conditioner 21 includes an indoor unit 22, an outdoor unit 23, and a remote controller (hereinafter referred to as “remote controller”) 1 that transmits an operation signal such as operation start to the indoor unit 22. The indoor unit 22 and the outdoor unit 23 are connected by a connection pipe 24. The indoor unit 22 includes an internal structure such as a heat exchanger 26 described later in a housing 25. The air conditioner 21 air-conditions the room by sucking room air from the air suction port 27 and blowing out room air heated, cooled, or dehumidified by the heat exchanger 26 from the air outlet 29.

図2は室内機の側断面図である。室内機22は、室内空気を吸い込む空気吸込口27を室内機22上部に備える。空気吸込口27の下流側には、室内空気中の塵埃を除去するフィルタ28が空気吸込口27を覆うように配置される。フィルタ28の下流であって、筐体25の中央部には、略逆V字状に形成され熱交換器26が配置される。熱交換器26の下流には、熱交換器26の幅と略等しい長さの貫流ファン方式の送風ファン30が配置される。熱交換器の下端部には露受皿50が配置される。露受皿50は、冷房運転時や除湿運転時に熱交換器26に発生する凝縮水を受ける。露受皿50に集められた凝縮水はドレン配管37を通して室外に排出される。熱交換器26の下流であって、室内機22の下部には、熱交換器26で加熱,冷却,除湿等された室内空気を室内に吹き出す空気吹出口29を備える。空気吹出口29には、吹き出される空気を左右方向に偏向する左右風向板31、及び、上下方向に偏向する上下風向板32を備える。   FIG. 2 is a side sectional view of the indoor unit. The indoor unit 22 includes an air suction port 27 for sucking room air at the top of the indoor unit 22. On the downstream side of the air inlet 27, a filter 28 that removes dust in the room air is disposed so as to cover the air inlet 27. Downstream of the filter 28 and in the central portion of the housing 25, a heat exchanger 26 is disposed in a substantially inverted V shape. A cross-flow fan type blower fan 30 having a length substantially equal to the width of the heat exchanger 26 is disposed downstream of the heat exchanger 26. A dew receiving tray 50 is disposed at the lower end of the heat exchanger. The dew receiving tray 50 receives condensed water generated in the heat exchanger 26 during cooling operation or dehumidifying operation. The condensed water collected in the dew tray 50 is discharged outside through the drain pipe 37. An air outlet 29 is provided downstream of the heat exchanger 26 and below the indoor unit 22 to blow out indoor air heated, cooled, or dehumidified by the heat exchanger 26 into the room. The air outlet 29 includes a left and right wind direction plate 31 that deflects the blown air in the left and right direction, and a vertical wind direction plate 32 that deflects the air in the vertical direction.

空気調和機21において、まず、送風ファン30を運転することで、室内空気を空気吸込口27から室内機22内に吸い込む。その際、フィルタ28により空気中の塵埃が除去される。その後、室内機22内に吸い込まれた室内空気は、熱交換器26で加熱,冷却,除湿等されて、送風ファン30を介して、空気吹出口29から室内に吹き出される。空気吹出口29から室内に吹き出される調和された空気は、左右風向板31及び上下風向板32により、左右方向及び上下方向が偏向される。このようにして、室内空気を空気吸込口27から吸い込み、熱交換器26で加熱,冷却,除湿等された室内空気を空気吹出口29から室内に吹き出すことにより、室内を空気調和する。   In the air conditioner 21, first, indoor air is sucked into the indoor unit 22 from the air suction port 27 by operating the blower fan 30. At that time, dust in the air is removed by the filter 28. Thereafter, the indoor air sucked into the indoor unit 22 is heated, cooled, dehumidified, and the like by the heat exchanger 26 and blown out into the room from the air outlet 29 via the blower fan 30. The conditioned air blown into the room from the air outlet 29 is deflected in the left-right direction and the up-down direction by the left-right wind direction plate 31 and the up-down wind direction plate 32. In this way, the room air is sucked from the air inlet 27, and the room air heated, cooled, dehumidified, etc. by the heat exchanger 26 is blown into the room from the air outlet 29, thereby air conditioning the room.

次に、フィルタ清掃機構33の概略について図3及び図4を用いて説明する。図3は室内機の内部上面図である。図4はフィルタ清掃機構の斜視図である。   Next, an outline of the filter cleaning mechanism 33 will be described with reference to FIGS. 3 and 4. FIG. 3 is an internal top view of the indoor unit. FIG. 4 is a perspective view of the filter cleaning mechanism.

フィルタ清掃機構33は、フィルタ28と移動機構35との間に位置する掃除用刷毛34と、フィルタ28に捕集された塵埃を掃き取るように図3及び図4の左右方向(室内機22の長手方向)に掃除用刷毛34を移動させる移動機構35と、掃除用刷毛34により掃き取られた塵埃を収集する集塵機構36とを備える。   The filter cleaning mechanism 33 is provided with a cleaning brush 34 positioned between the filter 28 and the moving mechanism 35, and in the left-right direction in FIG. 3 and FIG. A moving mechanism 35 for moving the cleaning brush 34 in the longitudinal direction) and a dust collecting mechanism 36 for collecting the dust swept away by the cleaning brush 34 are provided.

室内機22の長手方向に、移動機構35が掃除用刷毛34を移動させることにより、掃除用刷毛34がフィルタ28に捕集された塵埃を掃き取る。さらに、掃除用刷毛34を集塵機構36上まで移動させることにより、集塵機構36上端に位置する櫛歯37により、掃除用刷毛34に付着した塵埃を集塵機構36で回収する。具体的には、フィルタ28から掃き取った塵埃を保持する掃除用刷毛34が集塵機構36上を往復することにより、掃除用刷毛34が櫛歯37により梳かれて、掃除用刷毛34により付着した塵埃が集塵機構36に落下することにより、塵埃が集塵機構36に回収される。   When the moving mechanism 35 moves the cleaning brush 34 in the longitudinal direction of the indoor unit 22, the cleaning brush 34 sweeps out the dust collected by the filter 28. Further, by moving the cleaning brush 34 onto the dust collecting mechanism 36, the dust collected on the cleaning brush 34 is collected by the dust collecting mechanism 36 by the comb teeth 37 positioned at the upper end of the dust collecting mechanism 36. Specifically, the cleaning brush 34 that holds the dust swept from the filter 28 reciprocates on the dust collecting mechanism 36, so that the cleaning brush 34 is combed by the comb teeth 37 and attached by the cleaning brush 34. The dust is collected by the dust collection mechanism 36 as the dust falls on the dust collection mechanism 36.

ここで、空気調和機21内を循環する空気中の塵埃は、上述したように、空気調和機21の室内空気吸込口27に配置されたフィルタ28により除去される。しかし、フィルタ28で除去した塵埃が蓄積すると、通風抵抗が大きくなり、熱交換性能が低下する。   Here, dust in the air circulating in the air conditioner 21 is removed by the filter 28 disposed in the indoor air suction port 27 of the air conditioner 21 as described above. However, if the dust removed by the filter 28 accumulates, the ventilation resistance increases and the heat exchange performance decreases.

これに対して本実施例の空気調和機は、フィルタ28を自動的に清掃する上述したフィルタ清掃機構33を備え、適宜な時期にフィルタ28を自動的に清掃する。特に、本実施例の空気調和機21は、運転停止時間を算出する運転停止時間算出手段を備え、リモコン1から送信された現在の時刻情報に基づいて運転停止時間を算出し、この運転停止時間が所定時間を超えた場合にフィルタ清掃機構33によりフィルタ28を清掃する。このような空気調和機によれば、空気調和機21が長期間使用されない場合であっても(空気調和機21が通電されていない場合があっても)、空気調和機21の運転停止時間を正確に検出し、運転停止時間に基づいたフィルタ28の自動運転が可能となる。現在の時刻情報を、電池等で通電され続けるリモコン1から入手するようにしたので、長期間の不使用により室内機の主電源が切られることがあっても、運転停止時間を、主電源が切られてもカウントし続けるタイマ等を室内機に備える必要がなく、簡易な構造で正確に算出することができる。以下詳細に、本実施例の空気調和機21のフィルタ清掃機構について説明する。   In contrast, the air conditioner of the present embodiment includes the above-described filter cleaning mechanism 33 that automatically cleans the filter 28, and automatically cleans the filter 28 at an appropriate time. In particular, the air conditioner 21 of the present embodiment includes an operation stop time calculation unit that calculates the operation stop time, calculates the operation stop time based on the current time information transmitted from the remote controller 1, and this operation stop time. When the time exceeds a predetermined time, the filter 28 is cleaned by the filter cleaning mechanism 33. According to such an air conditioner, even when the air conditioner 21 is not used for a long time (even when the air conditioner 21 is not energized), the operation stop time of the air conditioner 21 is reduced. The filter 28 can be detected automatically and automatically operated based on the operation stop time. Since the current time information is obtained from the remote controller 1 that is continuously energized with a battery or the like, even if the main power of the indoor unit may be turned off due to long-term non-use, There is no need for the indoor unit to have a timer or the like that keeps counting even if it is cut off, and it can be accurately calculated with a simple structure. Hereinafter, the filter cleaning mechanism of the air conditioner 21 of the present embodiment will be described in detail.

図5は、本実施例の空気調和機21の室内機22とリモコン1の制御装置を示す概略ブロック線図である。リモコン1は、CPU2,送信部3,電源部4,キー5,表示部6を備える。室内機22の室内機制御部8は、CPU9,受光部10,EEPROM11,タイマ部12を備える。   FIG. 5 is a schematic block diagram showing a control device for the indoor unit 22 of the air conditioner 21 and the remote controller 1 of the present embodiment. The remote controller 1 includes a CPU 2, a transmission unit 3, a power supply unit 4, a key 5, and a display unit 6. The indoor unit control unit 8 of the indoor unit 22 includes a CPU 9, a light receiving unit 10, an EEPROM 11, and a timer unit 12.

リモコン1のCPU2は、使用者が操作していない間は低消費電力待機モードで駆動する。使用者からのキー5の操作により運転開始要求等の運転操作信号が入力されると、リモコン1のCPU2はキー入力割込みにより通常動作モードに切り替わり、この運転操作信号が室内機22に発信される。リモコン1から室内機22への運転操作信号の送信は、リモコン1の発光部7より、赤外線等の信号としてワイヤレス通信により、CPU9を備えた室内機制御部8の受光部10に送信することにより行われる。   The CPU 2 of the remote controller 1 is driven in the low power consumption standby mode while the user is not operating. When a driving operation signal such as a driving start request is input by operating the key 5 from the user, the CPU 2 of the remote controller 1 is switched to the normal operation mode by a key input interrupt, and this driving operation signal is transmitted to the indoor unit 22. . Transmission of the driving operation signal from the remote controller 1 to the indoor unit 22 is transmitted from the light emitting unit 7 of the remote controller 1 to the light receiving unit 10 of the indoor unit control unit 8 including the CPU 9 by wireless communication as a signal such as infrared rays. Done.

リモコン1は、電池(乾電池や太陽電池)等が用いられた電源部4により、常に通電された状態とされる。また、リモコン1は、現在の時刻情報(例えば、年月日時分秒)を入手,記録等する現在時刻情報管理手段を備え、運転操作信号に現在の時刻情報を付加して室内機22に送信する。   The remote controller 1 is always energized by a power supply unit 4 using a battery (dry battery or solar battery) or the like. The remote controller 1 also includes current time information management means for obtaining and recording current time information (for example, year / month / day / hour / minute / second), and adds the current time information to the driving operation signal and transmits it to the indoor unit 22. To do.

室内機22の室内機制御部8は、不揮発性メモリであるEEPROM11を備え、運転毎の内容(運転毎にリモコン1から送信された運転開始時刻や、室内機制御部8内のタイマ部12により検出された運転時間等の運転情報)を記録する。   The indoor unit control unit 8 of the indoor unit 22 includes an EEPROM 11 that is a non-volatile memory. The content of each operation (operation start time transmitted from the remote controller 1 for each operation and the timer unit 12 in the indoor unit control unit 8 is used. Record the operation information such as the detected operation time).

このような、リモコン1と室内機22とを備えた空気調和機21は、室内機22がカレンダー機能を備えていなくても、また室内機22が通電されていない場合があっても、リモコン1の現在時刻情報管理手段や室内機制御部8のEEPROM11に記録された運転情報から、空気調和機の停止時間を正確に算出することができる。具体的には、室内機制御部8はリモコン1から送信された現在の時刻情報及びEEPROM11に記録された前回の運転停止時刻に基づいて運転停止時間を算出するとともにこの運転停止時間を積算して積算の運転停止時間を算出し、算出された積算の運転停止時間が所定時間を超えた場合にフィルタ清掃機構33によりフィルタ28を清掃する。   Such an air conditioner 21 including the remote controller 1 and the indoor unit 22 can be used even if the indoor unit 22 does not have a calendar function or the indoor unit 22 is not energized. The stop time of the air conditioner can be accurately calculated from the current time information management means and the operation information recorded in the EEPROM 11 of the indoor unit controller 8. Specifically, the indoor unit control unit 8 calculates the operation stop time based on the current time information transmitted from the remote controller 1 and the previous operation stop time recorded in the EEPROM 11, and accumulates the operation stop time. The integrated operation stop time is calculated, and the filter 28 is cleaned by the filter cleaning mechanism 33 when the calculated integrated operation stop time exceeds a predetermined time.

表1に、室内機制御部8のEEPROM11に記録される空気調和機の運転情報を示す。項目1は前回の空気調和機運転開始時刻T1(年月日時分)であり、リモコン1の現在時刻情報管理手段から入手される。項目2は前回の空気調和機の運転時間T2(時間)である。項目3は前回のフィルタ清掃の実施時刻T3(年月日時分)である。項目4はフィルタ清掃後の空気調和機の運転積算時間T4(時間)である。   Table 1 shows the operation information of the air conditioner recorded in the EEPROM 11 of the indoor unit control unit 8. Item 1 is the previous air conditioner operation start time T1 (year / month / day / minute) and is obtained from the current time information management means of the remote controller 1. Item 2 is the previous operation time T2 (time) of the air conditioner. Item 3 is the previous filter cleaning execution time T3 (year / month / day / hour). Item 4 is the accumulated operation time T4 (time) of the air conditioner after filter cleaning.

Figure 2012154558
Figure 2012154558

前回運転開始時刻T1と前回運転時間T2により前回運転停止時刻T5(T1+T2)が算出される。この前回運転停止時刻T5とリモコン1から発信された運転操作信号に含まれる今回運転開始時刻T6の差分を算出すれば、今回運転前の停止時間T7(T6−T5)を算出することができる。今回運転前の停止時間T7を空気調和機21の運転毎に積算して空気調和機21の積算の運転停止時間T12を算出する。以下、本実施例においては、前回運転開始時刻T1以前の空気調和機21の運転停止時間が0時間(T7=T12)として説明する。   The previous operation stop time T5 (T1 + T2) is calculated from the previous operation start time T1 and the previous operation time T2. By calculating the difference between the previous operation stop time T5 and the current operation start time T6 included in the driving operation signal transmitted from the remote controller 1, the stop time T7 (T6-T5) before the current operation can be calculated. The stop time T7 before operation this time is integrated for each operation of the air conditioner 21, and the integrated operation stop time T12 of the air conditioner 21 is calculated. Hereinafter, in this embodiment, the operation stop time of the air conditioner 21 before the previous operation start time T1 will be described as 0 hour (T7 = T12).

表1の例では、前回のフィルタ自動清掃を行ってからの運転積算時間T4は2時間である。一方、今回運転前の停止時間T7(T12)は1年であり、運転積算時間T4は2時間であるが、空気調和機21の上面に配置されたフィルタ28には塵埃等が蓄積していると想定される。この今回運転前の停止時間T7(T12)を予め設定した停止中におけるフィルタ自動清掃判定基準時間T8と比較し、フィルタ清掃の要否を判断する。   In the example of Table 1, the accumulated operation time T4 after the previous automatic filter cleaning is 2 hours. On the other hand, the stop time T7 (T12) before the current operation is one year and the operation integration time T4 is two hours, but dust and the like are accumulated in the filter 28 disposed on the upper surface of the air conditioner 21. It is assumed. The stop time T7 (T12) before the current operation is compared with a preset filter automatic cleaning determination reference time T8 during stoppage to determine whether filter cleaning is necessary.

尚、フィルタ28から室内空気中への塵埃の飛散等を考慮すると、フィルタ清掃機構33によるフィルタ28の清掃は、空気調和機21の運転停止後に開始することが好ましい。しかしながら、表1のような長期間空気調和機21を使用しなかった場合には、フィルタ28への塵埃付着による熱交換性能の低下が著しいので、空気調和機21の運転中であっても設定温度と室内温度とが近づいた状態でフィルタ清掃機構33を作動させるようにしてもよい。   In consideration of dust scattering from the filter 28 into the room air, the cleaning of the filter 28 by the filter cleaning mechanism 33 is preferably started after the operation of the air conditioner 21 is stopped. However, when the air conditioner 21 is not used for a long time as shown in Table 1, the heat exchange performance is significantly lowered due to dust adhering to the filter 28. Therefore, even when the air conditioner 21 is in operation, it is set. The filter cleaning mechanism 33 may be operated in a state where the temperature and the room temperature are close to each other.

また、空気調和機の積算の運転停止時間のみに基づいてフィルタ清掃機構33の自動運転の要否を判断するのではなく、空気調和機の積算の運転時間も考慮して、フィルタ清掃機構33の自動運転の要否を判断するようにしてもよい。具体的には、積算の運転停止時間T12及び積算の運転時間T4に基づく時間が所定時間を超えた場合に、フィルタ清掃機構33によりフィルタ28を清掃する。ここで、積算の運転停止時間には係数A(0<A<1)を掛ける。この係数Aは、空気調和機の運転時及び停止時におけるフィルタ28への塵埃の付着量を考慮して決定することができる。一般的に、空気調和機の停止時におけるフィルタ28への塵埃の付着量は空気調和機の運転時におけるフィルタ28への塵埃の付着量よりも少ないので、係数Aは0<A<1とする。つまり、空気調和機停止中の塵埃等による影響時間T9として、T9=運転停止時間T12×A(式1)とする。   Further, it is not determined whether or not the automatic operation of the filter cleaning mechanism 33 is necessary based only on the integrated operation stop time of the air conditioner, but the filter cleaning mechanism 33 of the filter cleaning mechanism 33 is also considered in consideration of the integrated operation time of the air conditioner. You may make it judge the necessity of an automatic driving | operation. Specifically, when the time based on the accumulated operation stop time T12 and the accumulated operation time T4 exceeds a predetermined time, the filter 28 is cleaned by the filter cleaning mechanism 33. Here, the integrated operation stop time is multiplied by a coefficient A (0 <A <1). This coefficient A can be determined in consideration of the amount of dust adhering to the filter 28 when the air conditioner is in operation and when it is stopped. In general, the amount of dust adhering to the filter 28 when the air conditioner is stopped is smaller than the amount of dust adhering to the filter 28 during operation of the air conditioner, so the coefficient A is 0 <A <1. . That is, T9 = operation stop time T12 × A (formula 1) as the influence time T9 due to dust or the like while the air conditioner is stopped.

このT9(運転停止時間T12×A)と運転積算時間T4とを加算して総合的な塵埃付着経過時間T0として、予め設定した所定の塵埃付着判定時間T11と比較することで、空気調和機の運転中及び停止中の塵埃の付着量を考慮し、フィルタ28の自動清掃を効率的に行うことができる。   By adding this T9 (operation stop time T12 × A) and the operation integration time T4 to obtain a total dust adhesion elapsed time T0, it is compared with a predetermined dust adhesion determination time T11 that is set in advance. The filter 28 can be automatically cleaned efficiently in consideration of the amount of dust attached during operation and when stopped.

1 リモコン
2,9 CPU
3 送信部
4 電源部
5 キー
6 表示部
7 発光部
8 室内機制御部
10 受光部
11 EEPROM
12 タイマ部
1 Remote control 2, 9 CPU
3 Transmitter 4 Power supply 5 Key 6 Display 7 Light emitter 8 Indoor unit controller 10 Light receiver 11 EEPROM
12 Timer section

Claims (4)

空気吸込口及び空気吹出口を有する筐体、前記筐体内に配置された熱交換器、前記熱交換器の空気吸込側に配置されたフィルタ、室内空気を前記空気吸込口より吸い込み前記フィルタ及び熱交換器を通してから前記空気吹出口より吹き出す送風ファン、前記フィルタを清掃するフィルタ清掃機構、前回の運転停止時刻を記録する前回運転停止時刻記録手段、及び、運転停止時間を算出する運転停止時間算出手段、を有する室内機と、
現在の時刻情報を管理する現在時刻情報管理手段を有するとともに、前記室内機に運転操作信号を送信するリモートコントローラと、
を備える空気調和機において、
前記運転停止時間算出手段は、前記リモートコントローラから送信された現在の時刻情報及び前記前回運転停止時刻記録手段に記録された前回の運転停止時刻に基づいて運転停止時間を算出するとともに、前記運転停止時間を積算して積算の運転停止時間を算出し、
前記運転停止時間算出手段により算出された積算の運転停止時間が所定時間を超えた場合に、前記フィルタ清掃機構により前記フィルタを清掃する空気調和機。
A housing having an air suction port and an air outlet, a heat exchanger disposed in the housing, a filter disposed on the air suction side of the heat exchanger, the indoor air sucked from the air suction port and the heat A blower fan that blows out from the air outlet after passing through the exchanger, a filter cleaning mechanism that cleans the filter, a previous operation stop time recording unit that records the previous operation stop time, and an operation stop time calculation unit that calculates the operation stop time And an indoor unit having
A remote controller that has current time information management means for managing current time information and transmits a driving operation signal to the indoor unit;
In an air conditioner comprising:
The operation stop time calculating means calculates the operation stop time based on the current time information transmitted from the remote controller and the previous operation stop time recorded in the previous operation stop time recording means, and the operation stop time Accumulate the time to calculate the total operation stop time,
An air conditioner that cleans the filter by the filter cleaning mechanism when the accumulated operation stop time calculated by the operation stop time calculation means exceeds a predetermined time.
請求項1において、前記室内機は積算の運転時間を記録する積算運転時間記録手段を有し、
前記運転停止時間算出手段により算出された積算の運転停止時間、及び、前記積算運転時間記録手段に記録された積算の運転時間に基づく時間が、所定時間を超えた場合に、前記フィルタ清掃機構により前記フィルタを清掃する空気調和機。
In Claim 1, the said indoor unit has an integrated operation time recording means which records an integrated operation time,
When the time based on the integrated operation stop time calculated by the operation stop time calculating means and the integrated operation time recorded in the integrated operation time recording means exceeds a predetermined time, the filter cleaning mechanism An air conditioner for cleaning the filter.
請求項2において、前記運転停止時間算出手段により算出された積算の運転停止時間に係数A(0<A<1)を掛けた時間に、前記積算運転時間記録手段に記録された積算の運転時間を加えた時間が、所定時間を超えた場合に、前記フィルタ清掃機構により前記フィルタを清掃する空気調和機。   3. The integrated operation time recorded in the integrated operation time recording means according to claim 2, wherein the integrated operation stop time calculated by the operation stop time calculating means is multiplied by a coefficient A (0 <A <1). An air conditioner that cleans the filter by the filter cleaning mechanism when the time of adding exceeds a predetermined time. 請求項1乃至3の何れかにおいて、前記リモートコントローラは電池により通電され続ける空気調和機。   4. The air conditioner according to claim 1, wherein the remote controller is continuously energized by a battery.
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Cited By (5)

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CN103869734A (en) * 2014-03-03 2014-06-18 杭州电子科技大学 Intelligent air conditioner switching time recording device
JP2015108487A (en) * 2013-12-05 2015-06-11 日立アプライアンス株式会社 Air conditioner and data extraction equipment
WO2016157293A1 (en) * 2015-03-27 2016-10-06 三菱電機株式会社 Indoor unit for air conditioner
WO2016157292A1 (en) * 2015-03-27 2016-10-06 三菱電機株式会社 Indoor unit for air conditioner
JP2018066563A (en) * 2018-02-06 2018-04-26 三菱電機株式会社 Indoor equipment of air conditioner

Cited By (9)

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Publication number Priority date Publication date Assignee Title
JP2015108487A (en) * 2013-12-05 2015-06-11 日立アプライアンス株式会社 Air conditioner and data extraction equipment
CN103869734A (en) * 2014-03-03 2014-06-18 杭州电子科技大学 Intelligent air conditioner switching time recording device
WO2016157293A1 (en) * 2015-03-27 2016-10-06 三菱電機株式会社 Indoor unit for air conditioner
WO2016157292A1 (en) * 2015-03-27 2016-10-06 三菱電機株式会社 Indoor unit for air conditioner
CN106687752A (en) * 2015-03-27 2017-05-17 三菱电机株式会社 Indoor unit for air conditioner
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