Design And Implementation Of Switched Reluctance Machine Based Electric Vehicle

V. Prabhu, Ms.P. Aruna, P. Velmurugan
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Abstract

The Switched Reluctance Machine (SRM) with the rising emphasis on energy efficiency is receiving conspicuous commercial and vehicular applications in the recent scenario. The requirement for variable speed drive (VSD) for the operation of electric vehicles (EV) is ever increasing. The paradigm shift in the auto industry towards EVs took the electrical machines to a whole new level. Due to the inherent advantages of SRM and remarkable advances in the field of power switching devices, they can be considered as a serious candidate for propulsion of EV. The Finite Element Method (FEM) based conventional method of machine modelling is not sufficient to extract maximum output from special electrical machines like BLDC, PMSM and SR Machine due to converter based excitation of phase windings. Compare to permanent magnet motor nonmagnetic SR machine suitability is very high towards EV applications. So this paper work focus towards integral approach for SR machine design is using MagNet software for the physical modelling and controller modelling using MATLAB software for improving performance by all torque producing components. Magnetic circuit parameters acquired from machine modelling are utilized for initializing the SR machine in MATLAB/Simulink environment.The complete closed loop circuit is designed with the inner current and outer speed loop based adaptive speed controllers are also designed for providing a better regulation. In order to design the controller, the optimum turns on/off angles are selected. The triggering points in inductance profile are picked with the objective function of maximizing the torque and minimizing the ripple content.
基于开关磁阻电机的电动汽车设计与实现
随着对能源效率的日益重视,开关磁阻电机(SRM)在最近的场景中得到了明显的商业和车载应用。电动汽车运行对变速传动系统的要求越来越高。汽车行业向电动汽车的范式转变将电机提升到了一个全新的水平。由于SRM的固有优势和在功率开关器件领域的显著进展,它们可以被认为是电动汽车推进的重要候选。基于有限元法(FEM)的传统机器建模方法不足以从无刷直流电机、永磁同步电机和SR电机等特殊电机中提取出由于基于变换器的相绕组励磁而产生的最大输出。与永磁电机相比,非磁性SR电机对电动汽车的适用性非常高。因此,本文的工作重点是SR机械设计的整体方法,即使用MagNet软件进行物理建模,使用MATLAB软件进行控制器建模,以提高所有产生扭矩的部件的性能。利用机床建模获得的磁路参数,在MATLAB/Simulink环境下对SR机床进行初始化。设计了完整的闭环电路,并设计了基于内电流和外速度环的自适应速度控制器,以提供更好的调节。为了设计控制器,选择最佳开/关角。以最大转矩和最小纹波为目标函数,选取电感曲线中的触发点。
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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