Development of wheel hub motor brake recovery control test bench

Zhang Li, Zongmei Hu, Taiwei Zhang, Zhanxiang He, Tonglin Han
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Abstract

Aiming at the electric vehicle driven by hub motor, a test bench was designed and developed in order to study the brake recovery of the electric vehicle driven by hub. It can provide experimental basis for the use of the hub-driven electric vehicle. The test bench adopts modular design, and many other test modules can be added on the basis of the mechanical part of the bench. For some major electric vehicle tests, the designed bench can well realize simulation and experiment.The test bench is equipped with road resistance simulation, weight simulation, lateral force simulation, other test functions and braking energy recovery, etc. It is a test bench for the comprehensive performance of electric vehicle driven by hub motor. The electric wheel module integrates various functions of vehicle driving, steering and braking. The maximum limit of the platform is simulated under real working conditions. Therefore, it can test these performances well. The test bench uses a hybrid battery and ultracapacitor, that is, a battery-ultracapacitor hybrid storage unit, to give play to the advantages of large specific energy of the battery and large specific power of the ultracapacitor. It can satisfy the dual requirements of the electric vehicle’s comparative energy and specific power and extend the driving range to the maximum extent, which provided a convenient for the research of wheel drive EV.
轮毂电机制动恢复控制试验台的研制
针对轮毂电机驱动的电动汽车,设计并研制了轮毂电机驱动电动汽车制动回收试验台。可为轮毂驱动电动汽车的实际应用提供实验依据。试验台采用模块化设计,在试验台机械部分的基础上可以增加许多其他的试验模块。对于一些大型电动汽车试验,所设计的试验台可以很好地实现仿真和实验。试验台设有道路阻力模拟、重量模拟、侧向力模拟等试验功能和制动能量回收等。它是轮毂电机驱动电动汽车综合性能的试验台。电动轮模块集车辆行驶、转向、制动等多种功能于一体。模拟了平台在实际工况下的最大极限。因此,它可以很好地测试这些性能。试验台采用混合电池和超级电容器,即电池-超级电容器混合存储单元,发挥电池比能量大、超级电容器比功率大的优点。它可以满足电动汽车的比较能量和比功率的双重要求,最大限度地延长续驶里程,为轮驱电动汽车的研究提供了方便。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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