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首页> 外文期刊>IEEJ Transactions on Electrical and Electronic Engineering >Control strategy for motor drive system of electric vehicle
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Control strategy for motor drive system of electric vehicle

机译:电动汽车电动机驱动系统的控制策略

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摘要

An induction motor drive system is widely used in electric vehicles (EVs). However, most control strategies of these EVs focus only on control of the induction motor without considering the switching of different driving conditions and the changing of motor parameters. The upper limits of the torque generated by the motor are different under different motor parameters and driving conditions, which may lead to the fluctuation of the driving torque and affect the comfort and safety of the driver. This paper proposes a vector-control-based flexible control strategy to deal with this problem. First, the threshold values of the automatic speed regulator (ASR) and the automatic voltage regulator (AVR) could change with respect to the state variables of the motor including the change in driving conditions and some motor parameters; second, a backward proportional integral controller, which has a dynamically adjustable threshold, is added to the output of the ASR and AVR to achieve the flexibility of driving torque. Finally, a calculator that has threshold value is added to the input of the ASR and AVR controller. The results of simulation show that the designed flexible control strategy can achieve the stability of motor current, torque, and speed during the switching of different driving conditions. (c) 2016 Institute of Electrical Engineers of Japan. Published by John Wiley & Sons, Inc.
机译:感应电动机驱动系统被广泛用于电动汽车(EV)。但是,这些电动汽车的大多数控制策略仅集中于对感应电动机的控制,而无需考虑不同的驱动条件和电动机参数的变化。电动机产生的扭矩的上限在不同的电机参数和驾驶条件下是不同的,这可能导致驾驶扭矩的波动并影响驾驶员的舒适性和安全性。本文提出了一种基于向量控制的灵活控制策略来解决此问题。首先,自动速度调节器(ASR)和自动电压调节器(AVR)的阈值可能相对于电动机的状态变量发生变化,包括驱动条件和某些电动机参数的变化;其次,在ASR和AVR的输出中添加了一个可动态可调阈值的向后比例积分控制器,以实现驾驶扭矩的灵活性。最后,将具有阈值的计算器添加到ASR和AVR控制器的输入中。模拟的结果表明,在不同驾驶条件的切换过程中,设计的灵活控制策略可以达到电流,扭矩和速度的稳定性。 (c)2016年日本电气工程师研究所。由John Wiley&Sons,Inc。出版

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