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A Novel Driving and Control System for Direct-Wheel-Driven Electric Vehicle

机译:一种新型的直动式电动汽车驾驶与控制系统

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摘要

Based on comprehensive analysis of differential principle, a novel driving and control system for a direct-wheel-driven electric vehicle (EV) is presented in this paper. Without differential gears, direct-wheel-driven EV has to employ complicated differential algorithm for steering, which dramatically increased the difficulty of the control system of EV. The system proposed in this paper has changed the traditional configuration and control strategy of direct-wheel-driven EV to simplify the control of EV. The proposed system connected two permanent-magnet brushless dc motors (PMBDCMs) directly in series, cut down the differential algorithm thoroughly in velocity control strategy, and adopted the traditional PI controller. By analyzing the running rules of EV and investigation on performance of PMBDCM, the operation principle of the proposed system is expounded. Based on the analysis, an equivalent simulation system was developed under Matlab/Simulink platform, and the result verified the rationality and feasibility of the driving and control system for direct-wheel-driven EV. The unique performance of the proposed system made direct-wheel-driven EV more practical and competitive.
机译:在综合分析微分原理的基础上,提出了一种新型的直驱电动汽车驱动与控制系统。在没有差速器的情况下,直驱电动汽车必须采用复杂的差速算法进行转向,这大大增加了电动汽车控制系统的难度。本文提出的系统改变了传统的直驱电动汽车的配置和控制策略,以简化电动汽车的控制。拟议的系统直接串联两个永磁无刷直流电动机(PMBDCM),彻底削减了速度控制策略中的微分算法,并采用了传统的PI控制器。通过分析电动汽车的运行规律并研究PMBDCM的性能,阐述了该系统的工作原理。在此基础上,开发了基于Matlab / Simulink平台的等效仿真系统,验证了直驱电动汽车驱动控制系统的合理性和可行性。拟议系统的独特性能使直轮驱动电动汽车更具实用性和竞争力。

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