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A New Energy Management System of Directly-Driven Electric Vehicle with Electronic Gearshift and Regenerative Braking

机译:一种新型电动换档电动汽车齿轮和再生制动的新能源管理系统

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This paper proposes a novel energy management system with electronic gearshift and regenerative braking to improve the gross efficiency and driving range of an electric vehicle. This electric motorcycle is driven directly by a wheel motor, which is a custom-designed disk-type axial-flux dc brushless motor. Its stator windings are grouped into four phases and are connected in parallel or serially for high or low speed ranges. The integration of windings, batteries, ultracapacitors and the core controller constitutes the energy management system, which features a natural and smooth shifting of gears and regenerative braking electronically. The control and energy management are coded in a field programmable gate array, which also functions for the calculation and display of the state of charge of batteries. The gross efficiency of this electric vehicle is improved in the driving range by 20% with respect to that without regenerative braking scheme according to the ECE47 standard of performance test. The motor-to-wheel efficiency also was above 70% at 30 km/hr with low speed gear and at 50 km/hr with high speed gear.
机译:本文提出了一种具有电子换档和再生制动的新型能源管理系统,以提高电动车辆的总效率和驾驶范围。该电动摩托车直接由轮子电机驱动,这是一种定制设计的盘式轴向通量直流无刷电机。将其定子绕组分成四个阶段,并且以平行或连续连接,以用于高或低速范围。绕组,电池,超容器和核心控制器的整合构成了能量管理系统,其特征在于电子和再生制动的自然和平滑的换档。控制和能量管理在现场可编程门阵列中编码,其还用于计算和显示电池的充电状态。相对于根据ECE47性能测试标准,该电动车辆的总效率在驾驶范围内得到20%的改善20%。电机到车轮效率也高于70%以上的30公里/小时,高速齿轮,50 km / hr,高速齿轮。

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