Claims
- 1. An air conditioner for a hybrid vehicle, the hybrid vehicle having an engine for running the vehicle, an electric motor for running the vehicle, and an engine controller for controlling an operation of the engine, the air conditioner comprising:
a compressor for compressing and discharging refrigerant, the compressor being driven by the engine; a cooling heat exchanger for cooling and dehumidifying air to be blown into a passenger compartment of the vehicle, by an operation of the compressor; and a control unit for controlling the operation of the compressor, wherein:
the control unit outputs an air-conditioning preference signal for requiring to drive the engine irrespective of a condition of the vehicle, to the engine controller, in a defrosting control where air cooled and dehumidified by the cooling heat exchanger is blown toward a windshield of the vehicle.
- 2. The air conditioner according to claim 1, wherein the defrosting control is performed when a relative humidity on an inner surface of the windshield becomes equal to or higher than a predetermined value.
- 3. The air conditioner according to claim 1, wherein:
the control unit sets one of a cooling mode where the cooling heat exchanger has a predetermined cooling/dehumidifying capacity while an amenity of the passenger compartment is mainly considered, and an economy mode where the cooling heat exchanger has a cooling/dehumidifying capacity lower than the predetermined cooling/dehumidifying capacity; and when the cool mode is selected by the control unit, the air-conditioning preference signal is output to the engine controller.
- 4. The air conditioner according to claim 3, further comprising:
an air conditioning switch for setting the cooling mode; and an economy switch for setting the economy mode, wherein:
when the control unit determines that the defrosting control is need, the control unit automatically starts the operation of the compressor even when both the air conditioning switch and the economy switch are turned off.
- 5. The air conditioner according to claim 1, wherein the compressor is driven by the engine, when the control unit outputs the air-conditioning preference signal to the engine controller.
- 6. The air conditioner according to claim 1, wherein:
when the economy mode is performed in a control except for the defrosting control, the control unit stops the output of the air-conditioning preference signal to the engine controller when it is determined that the vehicle is in a stopping state.
- 7. A hybrid vehicle comprising:
an engine for running the vehicle; an electric motor for running the vehicle; an air conditioner including a compressor driven by the engine for compressing and discharging refrigerant, and a cooling heat exchanger for cooling and dehumidifying air to be blown into a passenger compartment of the vehicle by an operation of the compressor; and an engine controller for controlling an operation of the engine based on a condition of the air conditioner and a condition of the vehicle except the air conditioner, wherein:
while the air conditioner performs a defrosting control where air cooled and dehumidified by the cooling heat exchanger is blown toward a windshield of the vehicle, the engine controller drives the engine irrespective of a condition of the vehicle except the air conditioner.
- 8. The hybrid vehicle according to claim 7, wherein the defrosting control is performed when a relative humidity on an inner surface of the windshield becomes equal to or higher than a predetermined value.
- 9. The hybrid vehicle according to claim 7, wherein:
the air conditioner includes an air-conditioning controller for controlling an operation of the compressor; when the air conditioner performs the defrosting control, the air-conditioning controller outputs an air-conditioning preference signal for requiring to drive the engine irrespective of the condition of the vehicle, to the engine controller; and the engine controller drives the engine irrespective of the condition of the vehicle when the engine controller receives the air-conditioning preference signal from the air-conditioning controller.
- 10. The hybrid vehicle according to claim 9, wherein:
the air-conditioning controller outputs an engine-driving requirement signal for requiring to drive the engine, to the engine controller, when air-conditioning operation of the cooling heat exchanger is performed by driving the compressor; and when the engine controller receives only the engine-driving requirement signal among the engine driving requirement signal and the air-conditioning preference signal, the engine controller drives the engine when a predetermined condition is satisfied in the vehicle, and the engine controller stops the engine when the predetermined condition is not satisfied in the vehicle.
- 11. The hybrid vehicle according to claim 10, wherein the predetermined condition is any one of a first condition where a vehicle speed is equal to or higher than a predetermined speed, and a second condition where the vehicle speed is lower than the predetermined speed without a braking operation.
- 12. The hybrid vehicle according to claim 9, wherein:
the air-conditioning controller includes an air conditioning switch for setting a cooling mode where the cooling heat exchanger has a predetermined cooling/dehumidifying capacity, and an economy switch for setting an economy mode where the cooling heat exchanger has a cooling/dehumidifying capacity lower than the predetermined cooling/dehumidifying capacity; and when the air-conditioning controller determines that the defrosting control is need, the air-conditioning preference signal is output to the engine controller even when both the air conditioning switch and the economy switch are turned off.
- 13. The hybrid vehicle according to claim 12, wherein when the economy mode is performed in a control except for the defrosting control, the air-conditioning controller stops the output of the air-conditioning preference signal to the engine controller.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2001-7849 |
Jan 2001 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is related to and claims priority from Japanese Patent Application No. 2001-7849 filed on Jan. 16, 2001, the content of which is hereby incorporated by reference.