A simple approach for the computation of magnetic characteristics of 4-phase switched reluctance motor

Basavaraj S. Hadapad, Raghuram L. Naik
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Abstract

Switched reluctance motor (SRM) is non-linear in nature due to non-uniform air gap between stator and rotor that is produced from doubly salient poles. To control the operation of non-linear motor, a precise modelling of magnetic characteristic is essential. Traditionally magnetic equivalent circuit, finite element method (FEM) and experimental approaches have been used to derive magnetic characteristics of SRM. These methods involve complex computational steps and numerous assumptions for its calculations. To avoid this complexity, a simple approach is suggested in this paper to compute magnetic characteristics of 4-phase SRM. In this approach, SRM phase inductance is measured directly to identify the location of rotor with respect to stator from unaligned to aligned position. Then, single phase of SRM is excited through asymmetric converter and voltage and currents of corresponding phase is recorded with rotor being blocked using indexing head. Later recorded values are used to compute the magnetic characteristics from unaligned to aligned position. The proposed method is carried out using field programmable gate array (FPGA) controlled 8/6, 4-phase SRM. Further, accuracy of obtained magnetic characteristic is verified using FEM. In addition, fidelity of the magnetic characteristic is also validated by developing a dynamic model of SRM in MATLAB/Simulink
计算四相开关磁阻电机磁特性的简单方法
开关磁阻电机(SRM)由于定子和转子之间的气隙不均匀而具有非线性特性,这种非线性特性是由双突出磁极产生的。要控制非线性电机的运行,必须对磁特性进行精确建模。传统上,磁等效电路、有限元法(FEM)和实验方法被用于推导 SRM 的磁特性。这些方法涉及复杂的计算步骤和大量的计算假设。为了避免这种复杂性,本文提出了一种计算四相 SRM 磁特性的简单方法。在这种方法中,直接测量 SRM 的相位电感,以确定转子相对于定子的位置(从未调谐位置到调谐位置)。然后,通过不对称转换器对 SRM 的单相进行激励,并在转子被分度头挡住的情况下记录相应相位的电压和电流。之后,记录的数值将用于计算从未调谐位置到调谐位置的磁特性。所提议的方法是通过现场可编程门阵列(FPGA)控制的 8/6 4 相 SRM 实现的。此外,还使用有限元法验证了所获得磁特性的准确性。此外,还通过在 MATLAB/Simulink 中开发 SRM 动态模型验证了磁特性的保真度。
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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