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Electric Conversion of a Polluting Gasoline Vehicle into an Electric Vehicle and its Performance and Drive Cycle Analysis

机译:污染汽油车电转化为电动车及其性能和行驶周期分析

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This paper reports a study carried out for electric conversion of a polluting gasoline car into an electric vehicle. The performance evaluation and drive cycle analysis of the electric vehicle were studied and presented. For the conversion, a new electric vehicle powertrain was proposed and developed by integrating a battery, controller and an electric motor with the vehicle's gearbox system, after removing the internal combustion engine. The new powertrain mechanical parts were designed and developed for the integration. A pre-conversion performance test was conducted for tailpipe emissions and fuel economy on chassis dynamometer which followed the path of a driving cycle. The electric vehicle was configured and fixed at the top gear having a gear ratio of 0.90:1. The post-conversion performance tests were carried out on the dynamometer. The average energy consumption of the electric vehicle was 94.71 watt-hour per kilometer. The percentage contribution of drive modes (acceleration, deceleration, cruising) to input power, torque and output power were estimated using a computer program developed for the study and results were analyzed and presented. In totality, the study and test results verified the new powertrain parts and feasibility of the electric conversion approach for faster adoption of electric vehicles, better air quality, and fuel savings.
机译:本文报道了一项将有污染的汽油车电动转换为电动车的研究。研究并提出了电动汽车的性能评估和驾驶循环分析。为进行转换,提出并开发了一种新的电动汽车动力总成,方法是在拆卸内燃发动机后将电池,控制器和电动机与车辆的变速箱系统集成在一起。为集成设计和开发了新的动力总成机械零件。在底盘测功机上进行了尾气排放和燃油经济性的转换前性能测试,该测试遵循了驾驶循环的路径。电动车辆被配置并固定在齿轮比为0.90:1的最高档​​处。转换后的性能测试是在测力计上进行的。电动汽车的平均能耗为每公里94.71瓦时。使用为该研究开发的计算机程序,估算了驱动模式(加速,减速,巡航)对输入功率,转矩和输出功率的百分比贡献,并对结果进行了分析和介绍。总体而言,研究和测试结果验证了新的动力总成部件和电动转换方法的可行性,从而可以更快地采用电动汽车,改善空气质量并节省燃料。

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