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    • 9. 发明申请
    • Vehicle air conditioner
    • 车用空调
    • US20050103488A1
    • 2005-05-19
    • US10989225
    • 2004-11-15
    • Yoshinori IchishiTatsumi Kumada
    • Yoshinori IchishiTatsumi Kumada
    • B60H1/00G01K7/42G05D23/00
    • B60H1/00792B60H1/00742B60H1/3428B60H2001/3471G01K7/42G01K2201/02
    • In a vehicle air conditioner, a first air-conditioning control value is calculated based on a surface temperature detected by a non-contact temperature sensor in a temperature detection area of a passenger compartment. When it is determined that an obstacle exists between the temperature detection area and the non-contact temperature sensor, a second air-conditioning control value is calculated according to a temperature information that is influenced less by the obstacle than the detected surface temperature. When it is determined that the obstacle does not exist, an air conditioning state of the passenger compartment is controlled based on the first air-conditioning control value. When it is determined that the obstacle exists, the first air-conditioning control value is corrected to approach the second air-conditioning control value to calculate a corrected air-conditioning control value, so that the air conditioning state can be controlled satisfactorily.
    • 在车辆空调机中,基于由乘客室的温度检测区域中的非接触式温度传感器检测出的表面温度来计算第一空调控制值。 当确定在温度检测区域和非接触式温度传感器之间存在障碍物时,根据受到障碍物影响较小的温度信息而不是检测到的表面温度来计算第二空调控制值。 当确定障碍物不存在时,基于第一空调控制值来控制乘客室的空调状态。 当确定存在障碍物时,第一空调控制值被校正以接近第二空调控制值以计算校正空调控制值,从而可以令人满意地控制空调状态。