JPS6011047A - Operation control of air-conditioner - Google Patents

Operation control of air-conditioner

Info

Publication number
JPS6011047A
JPS6011047A JP58118502A JP11850283A JPS6011047A JP S6011047 A JPS6011047 A JP S6011047A JP 58118502 A JP58118502 A JP 58118502A JP 11850283 A JP11850283 A JP 11850283A JP S6011047 A JPS6011047 A JP S6011047A
Authority
JP
Japan
Prior art keywords
compressor
timer
circuit
temperature
signal
Prior art date
Legal status (The legal status 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 status listed.)
Pending
Application number
JP58118502A
Other languages
Japanese (ja)
Inventor
Nobuo Kawai
信夫 川合
Hitoshi Konemura
仁 古根村
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Toshiba Corp
Original Assignee
Toshiba Corp
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.)
Filing date
Publication date
Application filed by Toshiba Corp filed Critical Toshiba Corp
Priority to JP58118502A priority Critical patent/JPS6011047A/en
Publication of JPS6011047A publication Critical patent/JPS6011047A/en
Pending legal-status Critical Current

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  • Air Conditioning Control Device (AREA)

Abstract

PURPOSE:To improve the comfortable and energy saving properties by a method wherein the operation control of a compressor is effected in accordance with an operating rate curve in which the operating rate of the compressor is reduced gradually as a time is elapsed after setting a sound sleep timer. CONSTITUTION:When the sound sleep timer is set or a control start signal is inputted, the input is detected by a control start signal detecting circuit 5 and the detecting signal of the circuit is inputted into an integral timer 6. The time of elapse after the input of the control start signal is integrated in the integral timer 6 while the ON/OFF time of the compressor is obtained in a compressor ON/OFF time setting and operating circuit 7 based on the operating rate curve of the compressor which is held previously. Then, the signal is inputted into a timer 8 and the ON/OFF operation of the compressor is effected by the effect of this timer 8.

Description

【発明の詳細な説明】 〔発明の技術分野〕 本発明は空気調和機の運転制御方法に関する。[Detailed description of the invention] [Technical field of invention] The present invention relates to a method for controlling the operation of an air conditioner.

〔発明の技術的背景〕[Technical background of the invention]

一般に、夏の夜などは寝苦しく空気調和機を塗分運転さ
せたまま眠)につくことが多い。この場合、眠りの初期
は快適に眠シにつくことができるように温度調節器の設
定温度を低(し、眠シについてしまった後は身体の内部
発熱も少なくなるので冷え過ぎを防止するため温度調節
器の設定温度を高くすることが望まれる。
Generally, people find it difficult to sleep on summer nights and often go to sleep with the air conditioner running at full capacity. In this case, in the early stages of sleep, set the temperature on the thermostat to a low level so that you can comfortably fall asleep, and after you fall asleep, the internal heat generation of your body decreases, so you can prevent yourself from getting too cold. It is desirable to increase the set temperature of the temperature controller.

そこで、従来の空気調和機においては、第1図に示すよ
うに1時間の経過と共に段階的に温度が高くなるような
ルームサーモ設定温度曲線Aを予め定めておき、この曲
線上の温度にまで室温が低下した場合にコンプレッサを
OF’Fとし、一方、この曲線上の温度よシ多少高い温
度にてコンプレッサをONして、第二図の破線Bに示す
ように室温を時間的経過と共に上げてゆく方式が採られ
ていた。
Therefore, in conventional air conditioners, as shown in Figure 1, a room thermometer setting temperature curve A is determined in advance that increases the temperature step by step over the course of one hour, and the temperature reaches the temperature on this curve. When the room temperature drops, the compressor is turned off, and on the other hand, the compressor is turned on at a temperature slightly higher than the temperature on this curve, and the room temperature is raised over time as shown by the broken line B in Figure 2. The following method was adopted.

〔背景技術の問題点〕[Problems with background technology]

しかし々から、眠シの初期の室温が第一図に曲線Cで示
すように初期のルームサーモ設定温度Telよシ遥かに
高い場合においては、スリーブタイマが作動中、室温が
スリーブタイマのルームサーモ設定温度曲線A上の温度
に達するまで下がらないので、常にコンプレッサに10
θチ運転を強いることになシ省エネに反することになる
However, if the initial room temperature during sleep is much higher than the initial room thermoset temperature Tel, as shown by curve C in Figure 1, while the sleeve timer is operating, the room temperature Since the temperature does not drop until it reaches the temperature on the set temperature curve A, the compressor is always
Forcing the driver to operate at θ will go against energy conservation.

一方、ルーマサーモ設定温度が’I’s1から’rsx
に、またTs2からTs3に変化する部分においてはコ
ンプレッサのON 、 OFFによシ室温が第一図に曲
線Bで示すように急激に変化することとなるので、快適
な睡眠を妨げられるなどの難点がある。
On the other hand, the Luma thermo set temperature is from 'I's1 to 'rsx
In addition, in the part where Ts2 changes to Ts3, the room temperature changes rapidly as shown by curve B in Figure 1, depending on whether the compressor is turned on or off, which may cause problems such as disturbing a comfortable sleep. There is.

〔発明の目的〕[Purpose of the invention]

本発明は、前記事情を考慮してなされたもので。 The present invention has been made in consideration of the above circumstances.

省エネ性、快適性に優れた空気調和機の運転制御方法を
提供することを目的とする。
The purpose of this invention is to provide a method for controlling the operation of an air conditioner that is energy-saving and provides excellent comfort.

〔発明の概要〕[Summary of the invention]

前記目的は、コンプレッサ等を含んでなる空気調和機の
冷房運転にあたシ、安眠タイマセット後、時間経過とと
もにコンプレッサ運転率が漸減するような運転率曲線に
従ってコンプレッサの運転制御を行なうことにより達成
される。
The above objective is achieved by controlling the operation of the compressor according to an operation rate curve such that the compressor operation rate gradually decreases over time after setting a sleep timer during cooling operation of an air conditioner including a compressor, etc. be done.

〔発明の実施例〕[Embodiments of the invention]

以下1本発明を実施例に基゛づいて説明する。 The present invention will be explained below based on examples.

第3図は本発明を実施するための空気調和機の一例をブ
ロック図にて表わしたものである。
FIG. 3 is a block diagram showing an example of an air conditioner for implementing the present invention.

この空気調和機において、温度検出比較回路lは設定温
度検出回路コからの設定信号T8と室温T1 とを比較
するもので、この比較信号は運転状況判断回路3に送ら
れるようになっている。運転状況判断回路3は温度検出
比較回路lからの信号に応じて運転状況を選択するもの
で、この選抜信号は制御回路ヶ及び制御スタート信号検
出回路Sに送られるようになっている。制御回路グは運
転状況判断回路3からの選択信号に応じてコンプレッサ
リレー、ファンリレー等の運転制御を行なうものである
In this air conditioner, the temperature detection and comparison circuit 1 compares the set signal T8 from the set temperature detection circuit 1 with the room temperature T1, and this comparison signal is sent to the operating status determination circuit 3. The driving condition determining circuit 3 selects the driving condition according to the signal from the temperature detection comparison circuit 1, and this selection signal is sent to the control circuit 1 and the control start signal detection circuit S. The control circuit controls the operation of the compressor relay, fan relay, etc. in response to a selection signal from the operation status determination circuit 3.

また、空気調和機において、制御スタート信号検出回路
Sは前記運転状況判断回路3からの選択信号を受けると
ともに、制御スタート信号を検出するものであり、この
運転状況判断回路3からの信号は積算タイマ乙に送られ
るようになっている。
Further, in the air conditioner, the control start signal detection circuit S receives the selection signal from the driving condition determining circuit 3 and detects the control start signal, and the signal from the driving condition determining circuit 3 is detected by the integration timer. It is now sent to Party B.

積算タイマみは制御スタート信号が入力された後の経過
時間を積算するためのものであシ、この積算タイマ6か
らの信号はコンプレッサON10 F 7時間演算回路
7に送られるようになっている。コンプレッサ0N10
FF時間演算回路7はコンゾレッザ0N10FF時間を
設定す不もので、このコンプレッサ0N10FF時間設
定演算回路7からの信号はコンプレッサ0N10FF時
間タイマざに送られ、さらに制御回路グに送られるよう
になっている。
The integration timer 6 is for integrating the elapsed time after the control start signal is input, and the signal from the integration timer 6 is sent to the compressor ON10F7 time calculation circuit 7. Compressor 0N10
The FF time calculation circuit 7 is used to set the compressor 0N10FF time, and the signal from the compressor 0N10FF time setting calculation circuit 7 is sent to the compressor 0N10FF time timer and further sent to the control circuit.

続いて、本発明に係る空気調和機の運転制御の実施例を
説明する。
Next, an embodiment of the operation control of the air conditioner according to the present invention will be described.

先ず、基準となるコンプレッサ運転率曲線をめる。この
コンプレッサ運転曲線は例えば次のようにしてめられる
。即ち、従来のルームサーモ設定温度曲線Aを基準とし
た場合、制御スタート信号入力の後t1までは室温Ts
1を維持し、t1経過後t2までは(t2 tx)の時
間内に(t、52Ts1)だげ室温を上昇させ、t2経
過後t3までは(13−12)の時間内に(Tea T
82 )だけ室温を上昇させる場合のコンプレッサ運転
率な実験的にめることによって得られるにの結果得られ
たのが第グ図に示すコンプレッサ運転率曲線りであり、
これに従ってコンプレッサのON・10FF運転を行な
えば第一図に曲線Eに示す如く室温が変化することとな
る。
First, a reference compressor operating rate curve is determined. This compressor operating curve can be calculated, for example, as follows. That is, when the conventional room thermoset temperature curve A is used as a reference, the room temperature Ts remains constant until t1 after the control start signal is input.
1, the room temperature is increased by (t, 52Ts1) within the time (t2 tx) after t1 elapses until t2, and (Tea T
The result obtained by experimentally determining the compressor operating rate when the room temperature is increased by 82) is the compressor operating rate curve shown in Fig.
If the compressor is turned on and operated at 10FF in accordance with this, the room temperature will change as shown by curve E in Figure 1.

また、室温T1と設定温度’rBとの差とコンプレッサ
運転率との関係(第S図)から初期のコンプレッサ運転
率をめると共に、前記コンプレッサ運転率曲線りを基準
にして初期コンプレ・ノサ運転率に対応するコンプレッ
サ運転率曲線をめる。
In addition, the initial compressor operating rate is determined from the relationship between the difference between the room temperature T1 and the set temperature 'rB and the compressor operating rate (Figure S), and the initial compressor operating rate is determined based on the compressor operating rate curve. Determine the compressor operating rate curve corresponding to the rate.

即ち、室温T1と設定温度’rsの差がT1 + T2
 *T3であるとすれば第5図より初期コンプレッサ運
転率はa、b、cに決定される。また、この初期コンプ
レッサ運転率a、b、cが決定されると、これを前記コ
ンプレッサ運転率曲線りの変化に沿って補正をすること
によりそれぞれのコンプレッサ運転率曲線F、G、Hが
得られる。
That is, the difference between room temperature T1 and set temperature 'rs is T1 + T2
*If T3, the initial compressor operating rates are determined to be a, b, and c from FIG. Furthermore, once the initial compressor operating rates a, b, and c are determined, the respective compressor operating rate curves F, G, and H can be obtained by correcting them along the changes in the compressor operating rate curves. .

続いて実施例を前記空気調和機の作用と共に説明する。Next, an embodiment will be described together with the operation of the air conditioner.

取扱者によシ設定温度TSが入力されると、温度検出比
較回路lにおいては室温T1と前記温度T3とが比較さ
れここで(T、(−TS)がめられ。
When the operator inputs the set temperature TS, the temperature detection/comparison circuit 1 compares the room temperature T1 with the temperature T3 and finds (T, (-TS)).

この信号が運転状況判断回路3に送られる。この運転状
況判断回路3では第S図の関係に基づいて(T1−Ts
)に応じた初期のコンプレッサ運転率が選択され、この
信号が制御回路ダに送られる。
This signal is sent to the driving situation judgment circuit 3. In this driving situation judgment circuit 3, (T1-Ts
) is selected and this signal is sent to the control circuit Da.

この制御回路ダはこの信号に基づいてコンプレッサリレ
ー、ファンリレー等の運転制御を行なう。
This control circuit controls the operation of the compressor relay, fan relay, etc. based on this signal.

一方、取扱者によって安眠タイマがセットされると即ち
制御スタート信号が入力されると、制御スタート信号検
出回路5にて入力が検出され、この検出信号は積算タイ
マルに送られる。この精算タイマ6では制御スタート信
号入力後の経過時間が積算され、コンプレッサ0N10
F7時間設定演算回路7では、予め保持されているコン
プレッサ運転率曲線に基づいてコンプレッサのoN10
yy時間がめられる。而して、この信号はタイマgに送
られ、このタイマgの作用によってコンプレッサがON
 / OF F運転される。
On the other hand, when the sleep timer is set by the operator, that is, when the control start signal is input, the input is detected by the control start signal detection circuit 5, and this detection signal is sent to the integration timer. This settlement timer 6 integrates the elapsed time after inputting the control start signal, and
The F7 time setting calculation circuit 7 calculates the oN10 of the compressor based on the compressor operation rate curve held in advance.
yy time is measured. This signal is then sent to timer g, and the compressor is turned on by the action of timer g.
/Off operation is performed.

以上のように実施例によれば、コンプレッサの初期運転
率によりて決定され、コンプレッサ運転率が漸減するよ
うな運転率曲線に従ってコンプレッサを強制的に0N1
0FFさせ1時間の経過と共に無段階もしくは数段階に
変化はせているので。
As described above, according to the embodiment, the compressor is forced to 0N1 according to the operating rate curve determined by the initial operating rate of the compressor and in which the compressor operating rate gradually decreases.
I turn it off to 0FF and it changes steplessly or in several steps over the course of an hour.

室温の変動が少なく快適性に優れ、しかも省エネにも適
するという利点を有する。
It has the advantage of being excellent in comfort with little fluctuation in room temperature and also suitable for energy saving.

なお、本発明は前記実施例に限定されるものではなく、
能力可変式コンプレッサを使用した冷房機等にも応用で
きるものであυ、この場合、先ずコンプレッサの能力を
減少させて、その後運転率曲線に従ったO N / O
F F運転を行なえば快適性はよ〕向上することとなる
Note that the present invention is not limited to the above embodiments,
This can also be applied to air conditioners using variable capacity compressors, etc. In this case, the capacity of the compressor is first reduced, and then the O N/O is adjusted according to the operating rate curve.
If FWD driving is performed, comfort will be greatly improved.

〔発明の効果〕〔Effect of the invention〕

以上に説明したように本発明は、コンプレッサ等を含ん
でなる空気調和機の冷房運転にあたシ、安眠タイマセッ
ト後1時間経過とともにコンプレッサ運転率が漸減する
ような運転率曲線に従ってコンプレッサの運転制御を行
なうようにしているので、快適性、省エネ性の向上を図
ることができるという利点を有する。
As explained above, the present invention provides cooling operation of an air conditioner including a compressor, etc., and operates the compressor according to an operation rate curve in which the compressor operation rate gradually decreases as one hour elapses after the sleep timer is set. Since it is controlled, it has the advantage that comfort and energy saving can be improved.

定温度曲線を表わす図、第一図は従来及び本発明例を表
わすブロック図、第を図、第S図及び第6図は本発明の
実施例の運転制御方法の説明図である。
FIG. 1 is a block diagram showing a conventional method and an example of the present invention; FIG.

ハ・・温度検出比較回路、コ・・・設定温度検出回路、
3・・・運転状況判断回路、q・・・制御回路、S・・
・制御スタート信号検出回路、乙・・・コンプレッサ0
N10FF時間演算回路、7・・・コンプレッサ0N1
0’F7時間タイマ。
C...Temperature detection comparison circuit, C...Set temperature detection circuit,
3... Driving situation judgment circuit, q... Control circuit, S...
・Control start signal detection circuit, B...Compressor 0
N10FF time calculation circuit, 7... Compressor 0N1
0'F7 hour timer.

出願人代理人 猪 股 清 97Applicant's agent Kiyoshi Inomata 97

Claims (1)

【特許請求の範囲】 /)コンプレッサ等を含んでなる空気調和機の冷房運転
にあたり、安眠タイマセット後、時間経過とともにコン
プレッサ運転率が漸減するような運転率曲線に従ってコ
ンプレッサの運転制御を行なうようにしたことを特徴と
する空気調和機の運転制御方法。 、2)前記運転率曲線は室温と設定温度の差によシ補正
されていることを特徴とする特許請求の範囲第1項記載
の空気調和機の運転制御方法。
[Scope of Claims] /) During cooling operation of an air conditioner including a compressor, etc., after setting a sleep timer, the operation of the compressor is controlled according to an operation rate curve such that the compressor operation rate gradually decreases over time. An air conditioner operation control method characterized by: , 2) The operation control method for an air conditioner according to claim 1, wherein the operation rate curve is corrected based on the difference between the room temperature and the set temperature.
JP58118502A 1983-06-30 1983-06-30 Operation control of air-conditioner Pending JPS6011047A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP58118502A JPS6011047A (en) 1983-06-30 1983-06-30 Operation control of air-conditioner

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP58118502A JPS6011047A (en) 1983-06-30 1983-06-30 Operation control of air-conditioner

Publications (1)

Publication Number Publication Date
JPS6011047A true JPS6011047A (en) 1985-01-21

Family

ID=14738253

Family Applications (1)

Application Number Title Priority Date Filing Date
JP58118502A Pending JPS6011047A (en) 1983-06-30 1983-06-30 Operation control of air-conditioner

Country Status (1)

Country Link
JP (1) JPS6011047A (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003056888A (en) * 2001-07-27 2003-02-26 Lg Electronics Inc Apparatus and method for controlling operation of air conditioner
KR100785600B1 (en) 2006-01-20 2007-12-14 산요덴키가부시키가이샤 Air Conditioning Device
JP2008151564A (en) * 2006-12-15 2008-07-03 Omron Healthcare Co Ltd Basal thermometer
JP2012220031A (en) * 2011-04-04 2012-11-12 Panasonic Corp Air conditioner

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS58123035A (en) * 1982-01-16 1983-07-22 Sharp Corp Air conditioner

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS58123035A (en) * 1982-01-16 1983-07-22 Sharp Corp Air conditioner

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003056888A (en) * 2001-07-27 2003-02-26 Lg Electronics Inc Apparatus and method for controlling operation of air conditioner
KR100785600B1 (en) 2006-01-20 2007-12-14 산요덴키가부시키가이샤 Air Conditioning Device
JP2008151564A (en) * 2006-12-15 2008-07-03 Omron Healthcare Co Ltd Basal thermometer
JP2012220031A (en) * 2011-04-04 2012-11-12 Panasonic Corp Air conditioner

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