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JP2002228234A - Air conditioner and its control method - Google Patents

Air conditioner and its control method

Info

Publication number
JP2002228234A
JP2002228234A JP2001019481A JP2001019481A JP2002228234A JP 2002228234 A JP2002228234 A JP 2002228234A JP 2001019481 A JP2001019481 A JP 2001019481A JP 2001019481 A JP2001019481 A JP 2001019481A JP 2002228234 A JP2002228234 A JP 2002228234A
Authority
JP
Japan
Prior art keywords
rotation speed
air temperature
outdoor
motor
air conditioner
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
JP2001019481A
Other languages
Japanese (ja)
Inventor
Hiroaki Tsuboe
宏明 坪江
Susumu Nakayama
進 中山
Kazumiki Urata
和幹 浦田
Koji Naito
宏治 内藤
Hiroshi Takenaka
寛 竹中
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.)
Hitachi Ltd
Original Assignee
Hitachi Ltd
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 Hitachi Ltd filed Critical Hitachi Ltd
Priority to JP2001019481A priority Critical patent/JP2002228234A/en
Publication of JP2002228234A publication Critical patent/JP2002228234A/en
Pending legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25BREFRIGERATION MACHINES, PLANTS OR SYSTEMS; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS
    • F25B2313/00Compression machines, plants or systems with reversible cycle not otherwise provided for
    • F25B2313/029Control issues
    • F25B2313/0294Control issues related to the outdoor fan, e.g. controlling speed

Landscapes

  • Other Air-Conditioning Systems (AREA)
  • Air Conditioning Control Device (AREA)

Abstract

PROBLEM TO BE SOLVED: To provide a high efficiency air conditioner with reduced electric power consumption when a load of the air conditioner is reduced, i.e., when the number of revolutions of a refrigerant compressor is small. SOLUTION: In a freezing cycle wherein a refrigerant compressor with variable number of revolutions, an outdoor heat exchanger including a fresh air temperature detector and an outdoor air fan, an expander, and an indoor heat exchanger are coupled in succession, there is employed an electric motor as an electric motor for driving the foregoing outdoor air fan which electric motor has the variable number of revolutions and in which a permanent magnet is employed for a rotator, and further the number of revolutions of the outdoor fan is controlled in response to the number of revolutions of the refrigerant compressor and fresh air temperature detected by the foregoing fresh air temperature detector.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は、冷凍サイクルを用
いる空気調和機に係り、特に室外ファンを駆動する電動
機として回転数が可変でありかつ、回転子に永久磁石を
用いた電動機を使用した冷房運転及び暖房運転に好適な
空気調和機及びその制御方法に関するものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to an air conditioner using a refrigeration cycle, and more particularly to a cooling system using a motor having a variable rotation speed as a motor for driving an outdoor fan and using a permanent magnet as a rotor. The present invention relates to an air conditioner suitable for an operation and a heating operation and a control method thereof.

【0002】[0002]

【従来の技術】冷凍サイクルを構成する冷媒圧縮機及び
室外ファンを駆動する電動機に、回転数が可変な電動機
を用いた空気調和機を使用して、省エネルギー性や快適
性の向上を図る方法が種々提案されている。その一例と
して、例えば、特開平10−185284号公報に開示
されているように、室外空気温度、室内空気温度及び冷
媒圧縮機の回転数に応じて室外ファンを駆動する電動機
の回転数を制御する方法が挙げられる。
2. Description of the Related Art There is a method of improving energy saving and comfort by using an air conditioner using a motor whose rotation speed is variable as a motor for driving a refrigerant compressor and an outdoor fan constituting a refrigeration cycle. Various proposals have been made. For example, as disclosed in Japanese Patent Application Laid-Open No. 10-185284, the number of rotations of an electric motor that drives an outdoor fan is controlled in accordance with the outdoor air temperature, the indoor air temperature, and the rotation number of a refrigerant compressor. Method.

【0003】その他の例として、例えば、特開平10−
148378号公報に開示されているように、室外熱交
換器の温度と外気の温度との差が予め設定された値を越
えた時、室外熱交換器が着霜手前の温度に収束するよう
に、室外ファンを駆動する電動機の回転数を制御する方
法が挙げられる。
As another example, see, for example,
As disclosed in JP-A-148378, when the difference between the temperature of the outdoor heat exchanger and the temperature of the outside air exceeds a preset value, the outdoor heat exchanger converges to the temperature just before frost formation. And a method of controlling the rotation speed of an electric motor that drives an outdoor fan.

【0004】[0004]

【発明が解決しようとする課題】冷媒圧縮機の回転数が
可変であれば、空調負荷が小さい場合、上記のような制
御方法により冷媒圧縮機の回転数を下げることで、冷凍
サイクル内の冷媒循環量を少なくし空気調和機の発生能
力を低下させることができる。したがって、熱交換器に
流れる冷媒量も少なくなり、熱交換器での必要能力も少
なくて済む。そのため、熱交換器に備えたファンを駆動
する電動機の回転数を下げて、熱交換器の風量を減ら
し、熱交換器の能力を低下させることが可能である。こ
のように、熱交換器に備えたファンの回転数を下げるこ
とによって、熱交換器の能力を低下させ、さらに空気調
和機の発生能力を低下させることができる。
If the rotation speed of the refrigerant compressor is variable and the air-conditioning load is small, the rotation speed of the refrigerant compressor is reduced by the above-described control method, whereby the refrigerant in the refrigeration cycle is reduced. The amount of circulation can be reduced and the generation capacity of the air conditioner can be reduced. Therefore, the amount of refrigerant flowing through the heat exchanger is reduced, and the required capacity of the heat exchanger is reduced. Therefore, it is possible to reduce the rotation speed of the electric motor that drives the fan provided in the heat exchanger, reduce the air volume of the heat exchanger, and reduce the capacity of the heat exchanger. As described above, by reducing the rotation speed of the fan provided in the heat exchanger, it is possible to reduce the capacity of the heat exchanger and further reduce the generation capacity of the air conditioner.

【0005】しかしながら、ファンを駆動する電動機と
して、電動機の回転子に従来から使用されてきたかご形
巻線を用いた誘導モータでは、電動機の回転数が低下す
るとともに、電動機の効率が著しく低下し、空気調和機
の発生能力は低下させることができるが、空気調和機の
消費電力の低下が空気調和機の発生能力の低下よりも小
さいため、空気調和機の運転効率すなわち空気調和機の
発生能力と空気調和機の消費電力の比が低下するという
問題点があった。
However, in an induction motor using a cage winding which has been conventionally used as a motor for driving a fan as a motor rotor, the number of rotations of the motor decreases and the efficiency of the motor decreases remarkably. Although the generation capacity of the air conditioner can be reduced, the reduction in power consumption of the air conditioner is smaller than the reduction in the generation capacity of the air conditioner. And the ratio of the power consumption of the air conditioner is reduced.

【0006】本発明の目的は、上記のような従来技術の
問題点を解決し、空気調和機に使用する室外ファンを駆
動する電動機として、回転数が可変であり、かつ回転子
に永久磁石を用いたブラシレスDCモータを電動機とし
て使用することにより、空気調和機の負荷が小さいすな
わち冷媒圧縮機の回転数が低い時の空気調和機の消費電
力の少ない、高効率な空気調和機及びその制御方法を提
供することにある。
SUMMARY OF THE INVENTION An object of the present invention is to solve the above-mentioned problems of the prior art, and as a motor for driving an outdoor fan used in an air conditioner, the number of rotations is variable and a permanent magnet is provided on a rotor. By using the brushless DC motor used as an electric motor, a high-efficiency air conditioner and a control method for the air conditioner with low load on the air conditioner, that is, low power consumption of the air conditioner when the rotation speed of the refrigerant compressor is low, are used. Is to provide.

【0007】[0007]

【課題を解決するための手段】前記の目的を達成するた
めに、本発明による空気調和機及びその制御方法は、特
許請求の範囲の各請求項に記載されたところを特徴とす
るものであるが、装置発明としての請求項1に係る空気
調和機は、少なくとも回転数が可変の冷媒圧縮機、外気
温度検出器及び室外ファンを有する室外熱交換器、膨張
機、室内熱交換器を備え、これらの機器を順次連結して
なる冷凍サイクルを用いた空気調和機において、前記室
外ファンを駆動する電動機として回転数が可変であり、
かつ回転子に永久磁石を用いた電動機と、該電動機を使
用し、前記冷媒圧縮機の回転数及び前記外気温度検出器
により検出される外気温度に応じて前記室外ファンの回
転数を制御する制御手段と、を備えたことを特徴とする
ものである。
In order to achieve the above object, an air conditioner and a control method thereof according to the present invention are characterized by what is described in the claims. However, the air conditioner according to claim 1 as an apparatus invention includes at least a refrigerant compressor having a variable rotation speed, an outdoor heat exchanger having an outdoor air temperature detector and an outdoor fan, an expander, and an indoor heat exchanger. In an air conditioner using a refrigeration cycle formed by sequentially connecting these devices, the rotation speed is variable as an electric motor that drives the outdoor fan,
And a motor using a permanent magnet for the rotor, and control for using the motor to control the rotation speed of the outdoor fan according to the rotation speed of the refrigerant compressor and the outside air temperature detected by the outside air temperature detector. And means.

【0008】同じく方法発明としての請求項2に係る空
気調和機の制御方法は、請求項1に記載の空気調和機を
使用し、前記冷媒圧縮機の回転数が所定の回転数よりも
低く、かつ冷房運転時は前記外気温度検出器により検出
される外気温度が所定の温度よりも低いかあるいは暖房
運転時は前記外気温度検出器により検出される外気温度
が所定の温度よりも高い時に、前記室外ファンの回転数
を所定の回転数よりも低く設定することを特徴とするも
のである。
[0008] A method of controlling an air conditioner according to a second aspect of the present invention uses the air conditioner of the first aspect, wherein the rotation speed of the refrigerant compressor is lower than a predetermined rotation speed. And during the cooling operation, when the outside air temperature detected by the outside air temperature detector is lower than a predetermined temperature or during the heating operation, the outside air temperature detected by the outside air temperature detector is higher than a predetermined temperature, The rotation speed of the outdoor fan is set lower than a predetermined rotation speed.

【0009】同じく方法発明としての請求項3に係る空
気調和機の制御方法は、請求項1に記載の空気調和機を
使用し、前記冷媒圧縮機の回転数が設定可能な最低の回
転数である時、かつ冷房運転時は前記外気温度検出器に
より検出される外気温度が所定の温度よりも低いかある
いは暖房運転時は前記外気温度検出器により検出される
外気温度が所定の温度よりも高い時に、前記室外ファン
の回転数を所定の回転数よりも低く設定することを特徴
とするものである。
A method of controlling an air conditioner according to a third aspect of the present invention uses the air conditioner according to the first aspect of the present invention, wherein the number of rotations of the refrigerant compressor is set to a minimum settable number of rotations. At certain times, and during the cooling operation, the outside air temperature detected by the outside air temperature detector is lower than a predetermined temperature, or during the heating operation, the outside air temperature detected by the outside air temperature detector is higher than the predetermined temperature. In some cases, the rotation speed of the outdoor fan is set lower than a predetermined rotation speed.

【0010】[0010]

【発明の実施の形態】以下、本発明の空気調和機及び空
気調和機の制御方法に係わる実施例を図1ないし図3を
用いて説明する。
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS An air conditioner and an air conditioner control method according to an embodiment of the present invention will be described below with reference to FIGS.

【0011】図1に、外気温度及び冷媒圧縮機の回転数
に応じて室外ファン回転数を制御し得る冷凍サイクルを
用いた空気調和機の実施例を示す。
FIG. 1 shows an embodiment of an air conditioner using a refrigeration cycle capable of controlling the outdoor fan rotation speed in accordance with the outside air temperature and the rotation speed of the refrigerant compressor.

【0012】回転数が可変の冷媒圧縮機モータ10を内
蔵した冷媒圧縮機1、四方弁2、外気温度検出器12及
び室外ファンモータ11で駆動される室外ファン4を備
えた室外熱交換器3、室外膨張機5、受液器6、室内膨
張機7、室内送風装置9を備えた室内熱交換器8を順次
連結して、冷凍サイクルが構成される。冷媒圧縮機1と
四方弁2と室外熱交換器3と室外ファン4と室外膨張機
5と受液器6とをまとめて室外ユニット20とし筐体内
に収納する。一方、室内熱交換器8と室内膨張機7とを
まとめて室内ユニット21とし筐体内に収納する。
An outdoor heat exchanger 3 equipped with a refrigerant compressor 1 having a built-in refrigerant compressor motor 10 whose rotation speed is variable, a four-way valve 2, an outdoor air temperature detector 12 and an outdoor fan 4 driven by an outdoor fan motor 11. The outdoor expander 5, the liquid receiver 6, the indoor expander 7, and the indoor heat exchanger 8 including the indoor blower 9 are sequentially connected to form a refrigeration cycle. The refrigerant compressor 1, the four-way valve 2, the outdoor heat exchanger 3, the outdoor fan 4, the outdoor expander 5, and the liquid receiver 6 are collectively stored as an outdoor unit 20 in a housing. On the other hand, the indoor heat exchanger 8 and the indoor expander 7 are collectively referred to as an indoor unit 21 and housed in a housing.

【0013】また、本発明の空気調和機の制御装置は、
室内の空調負荷によって決まった冷媒圧縮機回転数に応
じて冷媒圧縮機モータ10を制御する冷媒圧縮機モータ
制御手段を内蔵した冷媒圧縮機モータ制御装置30と、
前記冷媒圧縮機回転数及び外気温度検出器12によって
検出された外気温度に応じて室外ファンモータ11を制
御する室外ファンモータ制御手段を内蔵した室外ファン
モータ制御装置31と、を特に備えている。さらに、室
外ファン4を駆動する室外ファンモータ11には、回転
子に永久磁石を用いたブラシレスDCモータを採用す
る。
Further, the control device for the air conditioner of the present invention comprises:
A refrigerant compressor motor control device 30 incorporating refrigerant compressor motor control means for controlling the refrigerant compressor motor 10 according to the refrigerant compressor rotation speed determined by the indoor air conditioning load;
An outdoor fan motor control device 31 including an outdoor fan motor control means for controlling the outdoor fan motor 11 according to the refrigerant compressor rotation speed and the outdoor air temperature detected by the outdoor air temperature detector 12 is particularly provided. Further, a brushless DC motor using a permanent magnet for a rotor is adopted as the outdoor fan motor 11 for driving the outdoor fan 4.

【0014】図2に、誘導モータ及びブラシレスDCモ
ータのモータ回転数に対するモータ効率を、図3に両モ
ータのモータ回転数に対するモータ消費電力を示す。本
発明において採用したブラシレスDCモータのモータ効
率は、従来の誘導モータに比べ全モータ回転数に亘って
全体的に高く、特にモータ回転数の小さい領域では両者
の差は大きい。
FIG. 2 shows the motor efficiency of the induction motor and the brushless DC motor with respect to the motor speed, and FIG. 3 shows the motor power consumption with respect to the motor speed of both motors. The motor efficiency of the brushless DC motor employed in the present invention is generally higher over the entire motor speed than the conventional induction motor, and the difference between the two is large especially in a region where the motor speed is small.

【0015】また、ブラシレスDCモータのモータ回転
数に対するモータ消費電力は誘導モータに比べて低く、
かつその減少率は、誘導モータに比べて大きい。つま
り、ブラシレスDCモータを用いた場合には、室外ファ
ンモータ11の回転数を下げることによって、大幅に室
外ファンモータ11の消費電力を低減することができ
る。したがって、室外ファンモータ11の回転数が制御
できる場合には、室外ファンモータ11の消費電力を抑
えることができ、高効率な空気調和機を提供することが
できる。
The motor power consumption of the brushless DC motor with respect to the motor speed is lower than that of the induction motor.
And the reduction rate is larger than that of the induction motor. That is, when the brushless DC motor is used, the power consumption of the outdoor fan motor 11 can be significantly reduced by reducing the rotation speed of the outdoor fan motor 11. Therefore, when the rotation speed of the outdoor fan motor 11 can be controlled, the power consumption of the outdoor fan motor 11 can be suppressed, and a highly efficient air conditioner can be provided.

【0016】特に、冷房運転時では、室外熱交換器3は
凝縮器として作用することから、室外ファン4の回転数
を下げると凝縮器としての能力が低下し、その結果冷媒
圧縮機1の吐出側圧力が上昇し、冷媒圧縮機1の消費電
力が増加するので、室外ファンモータ11の回転数の低
い領域でのモータ効率の高いブラシレスDCモータを使
用することにより、冷媒圧縮機1の消費電力の増加より
も、室外ファンモータ11の消費電力の減少の方が大き
い、高効率な空気調和機を提供することができるように
なる。
In particular, during the cooling operation, the outdoor heat exchanger 3 acts as a condenser. Therefore, when the rotation speed of the outdoor fan 4 is reduced, the capacity as the condenser is reduced, and as a result, the discharge of the refrigerant compressor 1 is performed. Since the side pressure increases and the power consumption of the refrigerant compressor 1 increases, the power consumption of the refrigerant compressor 1 is increased by using a brushless DC motor having high motor efficiency in a region where the rotation speed of the outdoor fan motor 11 is low. Thus, it is possible to provide a highly efficient air conditioner in which the reduction in power consumption of the outdoor fan motor 11 is greater than the increase in power consumption.

【0017】また、室外熱交換器3は、室外に設置され
ていることから、ゴミ等の付着によって熱交換器の通風
抵抗が増加する。このとき室外ファン4を駆動する室外
ファンモータ11として誘導モータを使用した場合は、
従来回転数の検出を行わず、回転数制御も行わないこと
から、熱交換器の通風抵抗の増加により室外ファンモー
タ11にかかる負荷が増大し、室外ファンモータ11の
回転数が低下し、室外ファン4の回転数も低下する。
Further, since the outdoor heat exchanger 3 is installed outdoors, the ventilation resistance of the heat exchanger increases due to the attachment of dust and the like. At this time, when an induction motor is used as the outdoor fan motor 11 for driving the outdoor fan 4,
Conventionally, since the rotation speed is not detected and the rotation speed control is not performed, the load on the outdoor fan motor 11 increases due to the increase in the ventilation resistance of the heat exchanger, and the rotation speed of the outdoor fan motor 11 decreases. The rotation speed of the fan 4 also decreases.

【0018】これによって、特に暖房運転時では、室外
熱交換器3は蒸発器として作用するので、室外熱交換器
3にゴミが付着していない状態であれば着霜しない室外
ファン4の回転数であっても、ゴミが付着して室外ファ
ン4の回転数が低下することで蒸発能力も低下し、蒸発
温度が下がることにより、室外熱交換器3は着霜する。
そのため、空気調和機は除霜運転を実施する必要が生
じ、運転効率が低下するとともに、快適性が著しく損な
われる結果となる。
Accordingly, especially during the heating operation, the outdoor heat exchanger 3 acts as an evaporator. Therefore, if no dust adheres to the outdoor heat exchanger 3, the rotation speed of the outdoor fan 4 does not frost. However, when the dust is attached and the number of rotations of the outdoor fan 4 is reduced, the evaporation ability is also reduced, and the outdoor heat exchanger 3 is frosted due to the reduced evaporation temperature.
Therefore, it is necessary for the air conditioner to perform a defrosting operation, resulting in a decrease in operating efficiency and a significant decrease in comfort.

【0019】一方、ブラシレスDCモータでは、回転子
の永久磁石の磁極の位置を検出するためのセンサが使わ
れているかまたは電流波形を検出して磁極の位置を検出
している。一般にセンサ信号をフィードバックして、回
転数が一定となるように制御する。そのため、室外熱交
換器3にゴミが付着したとしても、室外ファン4の回転
数は低下しないので、暖房運転時、室外熱交換器3は、
ゴミが付着していない状態で着霜しない運転条件であれ
ば、たとえゴミが付着したとしても着霜しない。
On the other hand, in the brushless DC motor, a sensor for detecting the position of the magnetic pole of the permanent magnet of the rotor is used or the current waveform is detected to detect the position of the magnetic pole. Generally, the sensor signal is fed back to control the rotation speed to be constant. Therefore, even if dust adheres to the outdoor heat exchanger 3, the rotation speed of the outdoor fan 4 does not decrease.
If the operating condition does not cause frost in a state where dust is not attached, frost does not occur even if dust is attached.

【0020】熱交換器の能力は、熱交換器の面積と、熱
交換器を構成するフィンを通過する風速すなわち熱交換
器の風量と、によって決まる。いいかえれば熱交換器の
面積が大きいほど、また熱交換器の風量が多いほど、熱
交換器の能力は大きくなる。熱交換器の能力を決定する
時は、まず空気調和機の定格能力が確保され、つぎに過
負荷条件下で、例えば冷房運転時に外気温度が著しく高
い場合において、空気調和機の室外熱交換器3での凝縮
圧力が上昇して、空気調和機を構成する各機器の設計圧
力を越えて空気調和機の信頼性を著しく低下させること
のないように、熱交換器の能力が設定される。
The capacity of the heat exchanger is determined by the area of the heat exchanger and the wind speed passing through the fins constituting the heat exchanger, that is, the air volume of the heat exchanger. In other words, the greater the area of the heat exchanger and the greater the air flow of the heat exchanger, the greater the capacity of the heat exchanger. When determining the capacity of the heat exchanger, first, the rated capacity of the air conditioner is secured, and then, under overload conditions, for example, when the outside air temperature is extremely high during cooling operation, the outdoor heat exchanger of the air conditioner The capacity of the heat exchanger is set so that the condensing pressure at 3 does not increase and does not exceed the design pressure of each device constituting the air conditioner and significantly lower the reliability of the air conditioner.

【0021】さらに、室外熱交換器3の面積及び風量に
ついては、一般的には室外ユニット20の筐体の大きさ
を小さくするために、室外熱交換器3の面積ができるだ
け小さく設定され、過負荷条件下で室外ファン4を駆動
する室外ファンモータ11の回転数が室外ファンモータ
11の最大回転数となるようにすなわち室外熱交換器3
の風量が最大となるように設定される。
Further, the area and the air volume of the outdoor heat exchanger 3 are generally set to be as small as possible in order to reduce the size of the housing of the outdoor unit 20. Under the load condition, the outdoor fan motor 11 for driving the outdoor fan 4 is set to have the maximum rotation speed of the outdoor fan motor 11, that is, the outdoor heat exchanger 3
Is set so that the air volume of the air becomes maximum.

【0022】このため、室内の空調負荷が小さい時、す
なわち空気調和機の発生能力が小さくてもよいときは、
冷媒圧縮機1の回転数を低く設定し、冷媒循環量を減少
することで対応する。この時、熱交換器の能力は小さく
てよいことから、熱交換器の風量を小さくすることがで
きる。ただし、室内熱交換器8の風量は、空気調和機を
使用している人が決定するため、空気調和機が制御する
ことはできない。室外熱交換器3の風量の制御は、可能
である。
Therefore, when the indoor air-conditioning load is small, that is, when the generation capacity of the air conditioner may be small,
This is addressed by setting the rotational speed of the refrigerant compressor 1 low and reducing the amount of circulating refrigerant. At this time, since the capacity of the heat exchanger may be small, the air volume of the heat exchanger can be reduced. However, the air volume of the indoor heat exchanger 8 is determined by the person using the air conditioner, and therefore cannot be controlled by the air conditioner. Control of the air volume of the outdoor heat exchanger 3 is possible.

【0023】室外熱交換器3の能力は、外気温度によっ
て変化する。冷房運転時は、室外熱交換器3は凝縮器と
して作用するため、外気温度が低いほど室外熱交換器3
内を流れる冷媒との温度差が大きくなるので、凝縮器の
能力は向上する。一方、暖房運転時は、室外熱交換器3
は蒸発器として作用するため、外気温度が高いほど室外
熱交換器3内を流れる冷媒との温度差が大きくなるの
で、蒸発器の能力は向上する。そこで、室内の空調負荷
によって決まった冷媒圧縮機1の回転数及び外気温度検
出器12により検出された外気温度から、室外ファンモ
ータ制御装置31によって室外ファンモータ11の回転
数を決定し、室外ファン4の回転数を決定することによ
って、消費電力の少ない、高効率な運転の可能な空気調
和機を提供することができる。
The capacity of the outdoor heat exchanger 3 changes depending on the outside air temperature. During the cooling operation, the outdoor heat exchanger 3 acts as a condenser.
Since the temperature difference with the refrigerant flowing through the inside increases, the capacity of the condenser is improved. On the other hand, during the heating operation, the outdoor heat exchanger 3
Acts as an evaporator, so that the higher the outside air temperature, the greater the temperature difference between the refrigerant and the refrigerant flowing in the outdoor heat exchanger 3, so that the capacity of the evaporator is improved. Therefore, the rotational speed of the outdoor fan motor 11 is determined by the outdoor fan motor control device 31 from the rotational speed of the refrigerant compressor 1 determined by the indoor air-conditioning load and the outdoor air temperature detected by the outdoor air temperature detector 12. By determining the number of revolutions of 4, an air conditioner that consumes less power and can operate with high efficiency can be provided.

【0024】次に、上記のような空気調和機の制御方法
の第1の実施例について説明する。
Next, a first embodiment of the control method for an air conditioner as described above will be described.

【0025】冷媒圧縮機1の回転数及び外気温度の変化
に応じて、頻繁に室外ファンモータ11の回転数を変え
るように制御すると、室外ファンモータ11の回転軸と
室外ファン4との締結部及び室外ファンモータ11の軸
受の寿命が低下する。
If the rotation speed of the outdoor fan motor 11 is frequently changed according to the change in the rotation speed of the refrigerant compressor 1 and the outside air temperature, the fastening portion between the rotation shaft of the outdoor fan motor 11 and the outdoor fan 4 is controlled. In addition, the life of the bearing of the outdoor fan motor 11 is reduced.

【0026】そこで、冷媒圧縮機1の回転数が所定の回
転数よりも低く、かつ冷房運転時は外気温度検出器12
により検出される外気温度が所定の温度よりも低い時、
暖房運転時は外気温度検出器12により検出される外気
温度が所定の温度よりも高い時に、室外ファン4の回転
数を所定の回転数よりも一定量だけ低く設定すること
で、信頼性が高く、高効率な空気調和機の運転を実施す
ることができるようになる。
Therefore, the rotation speed of the refrigerant compressor 1 is lower than a predetermined rotation speed, and the outside air temperature detector 12
When the outside air temperature detected by is lower than a predetermined temperature,
During the heating operation, when the outside air temperature detected by the outside air temperature detector 12 is higher than the predetermined temperature, the rotation speed of the outdoor fan 4 is set to be lower than the predetermined rotation speed by a certain amount, thereby increasing the reliability. Thus, it becomes possible to carry out the operation of the air conditioner with high efficiency.

【0027】また、上記のような空気調和機の制御方法
の第2の実施例では、最も熱交換器の能力を必要としな
い冷媒圧縮機1の回転数が設定可能な最低の回転数であ
る時に、かつ冷房運転時は外気温度検出器12により検
出される外気温度が所定の温度よりも低い時、暖房運転
時は外気温度検出器12により検出される外気温度が所
定の温度よりも高い時に、室外ファン4の回転数を所定
の回転数よりも一定量だけ低く設定することで、第1の
実施例と比べ室外ファン4の回転数制御を簡略化するこ
とができ、開発期間の短縮が可能となる。
In the second embodiment of the air conditioner control method as described above, the number of revolutions of the refrigerant compressor 1 which does not require the capacity of the heat exchanger is the lowest settable number of revolutions. When the outside air temperature detected by the outside air temperature detector 12 is lower than a predetermined temperature during the cooling operation, and when the outside air temperature detected by the outside air temperature detector 12 is higher than the predetermined temperature during the heating operation. By setting the rotation speed of the outdoor fan 4 lower than the predetermined rotation speed by a certain amount, the rotation speed control of the outdoor fan 4 can be simplified as compared with the first embodiment, and the development period can be shortened. It becomes possible.

【0028】[0028]

【発明の効果】以上説明したように、請求項1に係る本
装置発明においては、室外ファンを駆動する電動機とし
て回転数が可変であり、かつ回転子に永久磁石を用いた
電動機を使用し、冷媒圧縮機の回転数及び外気温度検出
器により検出される外気温度に応じて室外ファンの回転
数を制御することで、空気調和機の負荷が小さいすなわ
ち冷媒圧縮機の回転数が低い時に、空気調和機の消費電
力を減らし、高効率にすることができる。
As described above, in the present invention according to the first aspect, as the electric motor for driving the outdoor fan, the electric motor having a variable rotation speed and using a permanent magnet for the rotor is used. By controlling the rotation speed of the outdoor fan according to the rotation speed of the refrigerant compressor and the outside air temperature detected by the outside air temperature detector, when the load on the air conditioner is small, that is, when the rotation speed of the refrigerant compressor is low, the air The power consumption of the harmony device can be reduced and the efficiency can be increased.

【0029】また、請求項2に係る本方法発明において
は、頻繁に室外ファンモータの回転数を変更する制御を
しなくてすむため、空気調和機の信頼性を向上させ効率
を良くすることができる。
In the method according to the second aspect of the present invention, since it is not necessary to frequently control the number of revolutions of the outdoor fan motor, it is possible to improve the reliability and efficiency of the air conditioner. it can.

【0030】また、請求項3に係る本方法発明において
は、さらに室外ファンの回転数制御を簡略化でき、開発
期間を短縮することができる。
According to the third aspect of the present invention, the control of the number of revolutions of the outdoor fan can be further simplified, and the development period can be shortened.

【図面の簡単な説明】[Brief description of the drawings]

【図1】本発明の空気調和機の冷凍サイクル構成図であ
る。
FIG. 1 is a configuration diagram of a refrigeration cycle of an air conditioner of the present invention.

【図2】ブラシレスDCモータ及び誘導モータのモータ
回転数に対するモータ効率特性図である。
FIG. 2 is a diagram showing motor efficiency characteristics with respect to the number of rotations of a brushless DC motor and an induction motor.

【図3】ブラシレスDCモータ及び誘導モータのモータ
回転数に対するモータ消費電力特性図である。
FIG. 3 is a graph showing motor power consumption characteristics with respect to the number of rotations of a brushless DC motor and an induction motor.

【符号の説明】[Explanation of symbols]

1…冷媒圧縮機 2…四方弁 3…室外熱交換器 4…室外ファン 5…室外膨張機 6…受液器 7…室内膨張機 8…室内熱交換器 9…室内送風装置 10…冷媒圧縮機モータ 11…室外ファンモータ 12…外気温度検出器 20…室外ユニット 21…室内ユニット 30…冷媒圧縮機モータ制御装置 31…室外ファンモータ制御装置 DESCRIPTION OF SYMBOLS 1 ... Refrigerant compressor 2 ... Four-way valve 3 ... Outdoor heat exchanger 4 ... Outdoor fan 5 ... Outdoor expander 6 ... Liquid receiver 7 ... Indoor expander 8 ... Indoor heat exchanger 9 ... Indoor air blower 10 ... Refrigerant compressor Motor 11 ... Outdoor fan motor 12 ... Outdoor temperature detector 20 ... Outdoor unit 21 ... Indoor unit 30 ... Refrigerator compressor motor controller 31 ... Outdoor fan motor controller

───────────────────────────────────────────────────── フロントページの続き (72)発明者 浦田 和幹 静岡県清水市村松390番地 株式会社日立 空調システム清水生産本部内 (72)発明者 内藤 宏治 静岡県清水市村松390番地 株式会社日立 空調システム清水生産本部内 (72)発明者 竹中 寛 静岡県清水市村松390番地 株式会社日立 空調システム清水生産本部内 Fターム(参考) 3L054 BA03 3L060 AA03 CC03 CC19 DD05 EE06 ──────────────────────────────────────────────────の Continuing from the front page (72) Inventor Kazuki Urata 390 Muramatsu, Shimizu-shi, Shizuoka Pref.Hitachi Air Conditioning Systems Co., Ltd. Shimizu Production Headquarters (72) Inventor Hiroshi Takenaka 390 Muramatsu, Shimizu-shi, Shizuoka Prefecture Hitachi Air Conditioning Systems Co., Ltd. Shimizu Production Headquarters F-term (reference) 3L054 BA03 3L060 AA03 CC03 CC19 DD05 EE06

Claims (3)

【特許請求の範囲】[Claims] 【請求項1】 少なくとも回転数が可変の冷媒圧縮機、
外気温度検出器及び室外ファンを有する室外熱交換器、
膨張機、室内熱交換器を備え、これらの機器を順次連結
してなる冷凍サイクルを用いた空気調和機において、 前記室外ファンを駆動する電動機として回転数が可変で
あり、かつ回転子に永久磁石を用いた電動機と、該電動
機を使用し、前記冷媒圧縮機の回転数及び前記外気温度
検出器により検出される外気温度に応じて前記室外ファ
ンの回転数を制御する制御手段と、を備えたことを特徴
とする空気調和機。
1. A refrigerant compressor having at least a variable number of revolutions,
An outdoor heat exchanger having an outdoor air temperature detector and an outdoor fan,
An air conditioner using a refrigeration cycle including an expander and an indoor heat exchanger, and sequentially connecting these devices, wherein the number of rotations is variable as an electric motor for driving the outdoor fan, and a permanent magnet is provided on the rotor. And a control unit that controls the number of revolutions of the outdoor fan according to the number of revolutions of the refrigerant compressor and the outside air temperature detected by the outside air temperature detector using the motor. An air conditioner characterized by that:
【請求項2】 請求項1に記載の空気調和機を使用し、
前記冷媒圧縮機の回転数が所定の回転数よりも低く、か
つ冷房運転時は前記外気温度検出器により検出される外
気温度が所定の温度よりも低いかあるいは暖房運転時は
前記外気温度検出器により検出される外気温度が所定の
温度よりも高い時に、前記室外ファンの回転数を所定の
回転数よりも低く設定することを特徴とする空気調和機
の制御方法。
2. An air conditioner according to claim 1, wherein:
The rotation speed of the refrigerant compressor is lower than a predetermined rotation speed, and the outside air temperature detected by the outside air temperature detector is lower than a predetermined temperature during the cooling operation or the outside air temperature detector during the heating operation. And controlling the rotation speed of the outdoor fan to be lower than a predetermined rotation speed when the outside air temperature detected by the control is higher than a predetermined temperature.
【請求項3】 請求項1に記載の空気調和機を使用し、
前記冷媒圧縮機の回転数が設定可能な最低の回転数であ
る時、かつ冷房運転時は前記外気温度検出器により検出
される外気温度が所定の温度よりも低いかあるいは暖房
運転時は前記外気温度検出器により検出される外気温度
が所定の温度よりも高い時に、前記室外ファンの回転数
を所定の回転数よりも低く設定することを特徴とする空
気調和機の制御方法。
3. An air conditioner according to claim 1, wherein:
When the rotation speed of the refrigerant compressor is a settable minimum rotation speed, and during the cooling operation, the outside air temperature detected by the outside air temperature detector is lower than a predetermined temperature, or during the heating operation, the outside air temperature is reduced. When the outside air temperature detected by the temperature detector is higher than a predetermined temperature, the rotation speed of the outdoor fan is set lower than the predetermined rotation speed.
JP2001019481A 2001-01-29 2001-01-29 Air conditioner and its control method Pending JP2002228234A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2001019481A JP2002228234A (en) 2001-01-29 2001-01-29 Air conditioner and its control method

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2001019481A JP2002228234A (en) 2001-01-29 2001-01-29 Air conditioner and its control method

Publications (1)

Publication Number Publication Date
JP2002228234A true JP2002228234A (en) 2002-08-14

Family

ID=18885355

Family Applications (1)

Application Number Title Priority Date Filing Date
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Country Link
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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007322038A (en) * 2006-05-31 2007-12-13 Hitachi Appliances Inc Air conditioner
JP5450637B2 (en) * 2009-09-28 2014-03-26 東芝キヤリア株式会社 Air conditioner
CN111306719A (en) * 2018-12-11 2020-06-19 广东Tcl智能暖通设备有限公司 Fan control method and device and air conditioner outdoor unit
CN111442503A (en) * 2020-04-09 2020-07-24 宁波奥克斯电气股份有限公司 Control method and device for outdoor fan of air conditioner and air conditioner
CN112665085A (en) * 2019-10-16 2021-04-16 广东美的制冷设备有限公司 Air purification system, air purification method, control device and readable storage medium
WO2023005013A1 (en) * 2021-07-30 2023-02-02 广东美的制冷设备有限公司 Air conditioner, control method therefor, and computer-readable storage medium

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007322038A (en) * 2006-05-31 2007-12-13 Hitachi Appliances Inc Air conditioner
JP5450637B2 (en) * 2009-09-28 2014-03-26 東芝キヤリア株式会社 Air conditioner
CN111306719A (en) * 2018-12-11 2020-06-19 广东Tcl智能暖通设备有限公司 Fan control method and device and air conditioner outdoor unit
CN112665085A (en) * 2019-10-16 2021-04-16 广东美的制冷设备有限公司 Air purification system, air purification method, control device and readable storage medium
CN112665085B (en) * 2019-10-16 2022-07-08 广东美的制冷设备有限公司 Air purification system, air purification method, control device and readable storage medium
CN111442503A (en) * 2020-04-09 2020-07-24 宁波奥克斯电气股份有限公司 Control method and device for outdoor fan of air conditioner and air conditioner
WO2023005013A1 (en) * 2021-07-30 2023-02-02 广东美的制冷设备有限公司 Air conditioner, control method therefor, and computer-readable storage medium

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