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    • 7. 发明授权
    • Heating control system for vehicle
    • 车辆加热控制系统
    • US08052066B2
    • 2011-11-08
    • US11578705
    • 2005-04-05
    • Hideto WatanabeYasuo Shimizu
    • Hideto WatanabeYasuo Shimizu
    • B60H1/00
    • B60H1/004B60H1/00764B60H2001/00992B60K6/445B60L2240/34B60L2240/445B60W2510/0676Y02T10/6239Y02T10/7077Y02T10/7241
    • A hybrid vehicle can be driven using both of respective driving forces from an engine and a motor. A heating mechanism of an air conditioning apparatus uses thermal energy from cooling water of the engine to heat the interior of a passenger compartment. An ECU takes into consideration engine efficiency from the standpoint of fuel economy enhancement to primarily determine the driving force share ratio between the engine and the motor. Further, the ECU calculates a preset temperature corresponding to a cooling water temperature necessary for desired heating as well as a control target temperature in which the preset temperature is reflected, and corrects the primarily determined driving force share ratio to increase the share of the driving force of the engine by an amount according to a deviation between the cooling water temperature measured by a water temperature sensor and the control target temperature. Heating performance can thus be ensured promptly without deterioration of fuel economy.
    • 可以使用来自发动机和电动机的相应的驱动力来驱动混合动力车辆。 空调装置的加热机构使用来自发动机的冷却水的热能来加热乘客舱的内部。 ECU从燃油经济性提升的角度考虑发动机效率,主要确定发动机和电机之间的驱动力份额比。 此外,ECU计算对应于期望加热所需的冷却水温度的预设温度以及反映预设温度的控制目标温度,并且校正主要确定的驱动力份额比以增加驱动力的份额 根据由水温传感器测量的冷却水温度与控制目标温度之间的偏差量的发动机。 因此可以迅速地确保加热性能,而不会降低燃料经济性。