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Effect of extended-speed, constant-power operation of electric drives on the design and performance of EV-HEV propulsion system

机译:电动驱动延长速度,恒功率运转对EV-HEV推进系统的设计和性能

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Vehicle dynamics requires extended-speed, constant-power operation from the propulsion system in order to meet the vehicle's operating constraints (e.g., initial acceleration and gradeability) with minimum power. Decrease in power rating will decrease the volume of the energy storage system. However, extending the constant power operating range of the electric drives increases its rated torque, thereby, increasing motor volume and weight. This paper investigates the effect of extended constant power operation on battery driven electric vehicle (BEV) propulsion system taking the change in motor weight and battery volume into account. Five BEV systems with five traction drive having different base speeds are simulated for this study. The performances of the BEVs are obtained using FUDS and HWYFET drive cycles. Two EV-HEV software packages "V-ELPH" developed by Texas A&M University and "ADVISOR" from NREL are used for simulation testing. Based on the simulation results, the paper defines an optimum range of the constant power region for single gear operation.
机译:车辆动力学需要从推进系统的扩展速度,恒定功率操作,以满足车辆的操作约束(例如,初始加速和渐变性),具有最小功率。额定功率降低将降低能量存储系统的体积。然而,延伸电动驱动器的恒定功率操作范围会增加其额定扭矩,从而增加了电机体积和重量。本文研究了延长恒电功率运行对电池驱动电动车(BEV)推进系统的影响,考虑了电机重量和电池体积的变化。为本研究模拟了具有不同基速度的五个牵引驱动器的五种BEV系统。使用FUDS和HWYFET驱动循环获得BEV的性能。由德克萨斯A&M大学开发的两个EV-HEV软件包“V-ELPH”和NREL开发的“顾问”用于仿真测试。基于仿真结果,该纸张限定了单齿轮操作的恒电源区域的最佳范围。

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