Proportional Wavelet Sliding Mode Controller for Torque Ripple Reduction in BLDC Motor

M. M. Lumertz, C. D. de Oliveira, A. G. de Castro, P. Guazzelli, M.L. de Aguiar, J. Monteiro
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Abstract

Permanent magnetic synchronous machines with trapezoidal back-electromotive force and six-step operation, also known as brushless direct current motors, have high torque undulations because needed current waveform can’t be provided. Proper vector control techniques used to reduce chattering, are high dependent on machine parameters and are complex to implement on real applications. Sliding Mode and Pseudo Sliding Mode are controllers with high dynamical performance and simple implementation, but increase torque undulations in machine control applications. On the other hand, wavelet multiresolution controllers have the feature of chattering reduction, but are complex to tune and analyze, due to the number of parallel detail and approximation coefficients used. This works proposes a simplified wavelet controller, replacing approximation coefficients with a proportional controller. This controller was used to design a proper sliding manifold for a sliding mode speed control, on a BLDC motor, without using machine parameters. A genetic algorithm was used to determine an optimum mother wavelet for a fixed decomposition level, leaving just one parameter to tune in future works. In results, an improvement to the proposed controller was suggested, for a controller with high dynamical and steady state performance, without torque undulations and easier to tune than wavelet multiresolution controllers.
无刷直流电动机转矩脉动抑制的比例小波滑模控制器
梯形反电动势六步运行的永磁同步电机,又称无刷直流电机,由于无法提供所需的电流波形,其转矩波动较大。适当的矢量控制技术用于减少抖振,高度依赖于机器参数,在实际应用中实现起来很复杂。滑模和伪滑模是具有高动态性能和简单实现的控制器,但在机械控制应用中会增加转矩波动。另一方面,小波多分辨率控制器具有减少抖振的特点,但由于使用了大量的并行细节和近似系数,调整和分析比较复杂。本文提出了一种简化的小波控制器,用比例控制器代替近似系数。在不使用机器参数的情况下,利用该控制器设计了适合于无刷直流电机滑模速度控制的滑动歧管。一个遗传算法被用来确定一个固定分解水平的最佳母小波,只留下一个参数来调整未来的工作。结果表明,所提出的控制器具有较高的动态和稳态性能,无转矩波动,比小波多分辨率控制器更容易调谐。
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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