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Studies on Energy-Efficient Air Conditioning of Hybrid and Electric Vehicles

机译:混合动力和电动汽车节能空调的研究

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Energy-efficient air conditioning of passenger cells is an ever-increasing challenge in the development of electric vehicles because the electric heating in particular reduces the cruising range significantly. For this reason, a simulation model has been developed at Chemnitz University of Technology, which simulates the whole air conditioning system including the passenger cell and the complete powertrain in electric cars. With the help of this model, differ-rent optimization approaches on the cruising range have been analyzed and evaluated. This paper first illustrates how much the cruising range of an exemplary electric vehicle is reduced by using the electric heating under different wintery weather conditions. Afterwards, the exploitation of the waste heat produced by the powertrain components (electric motor and power electronics) will be explained. Finally, it shall be described to what extent this exploitation increases the cruising range.
机译:乘客电池的节能空调是在电动车辆开发中产生的不断增加的挑战,因为电加热尤其可以显着降低巡航范围。因此,在Chemnitz技术大学开发了一种仿真模型,其模拟了整个空调系统,包括乘客电池和电动汽车的完整动力总成。借助该模型的帮助,分析并评估了巡航范围内的不同租金优化方法。本文首先说明了通过在不同的浊度天气条件下使用电加热来减小示例性电动车辆的巡航范围的巡航范围。之后,将解释由动力总成部件(电动机和电力电子设备)产生的废热的利用。最后,应在多大程度上描述这种开采增加了巡航范围。

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