永磁同步电机驱动器的速度滑动控制

M. Kadjoudj, A. Goléa, N. Goléa, M. Benbouzid
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引用次数: 5

摘要

电流控制电压源逆变器馈电永磁同步电机在高性能矢量控制和运动控制应用中得到了广泛的关注。迟滞控制器对系统参数具有固有的鲁棒性,具有很高的动态性,易于实现。迟滞控制器的主要缺点是对开关频率的控制有限。使用三个独立的控制器可以产生非常高的开关频率。本文分别介绍了固定带电流控制器和正弦带电流控制器,并对其性能进行了评价。此外,还提出了一种正弦带加固定带的混合模式控制器。为了便于比较,采用快速傅立叶变换(FFT)得到了相电流的谐波谱。本文还对速度滑模控制(SMC)进行了详细的分析和仿真。在不同工况下验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Speed Sliding Control of PMSM Drives
The current controlled voltage source inverter fed PMSM has received wide spread interest in high performance vector control and motion control applications. Hysteresis controllers are intrinsically robust to system parameters, exhibit very high dynamics and are suitable for simple implementation. The main drawback of the hysteresis controller is a limited control on switching frequency. Very high switching frequency may be resulted from the use of three independent controllers. In this paper, both the fixed band and the sinusoidal band current controllers are presented and their performances evaluated. In addition, a mixed mode controller of a sinusoidal band added to a fixed band is proposed. For comparison purposes, the harmonics spectra of the phase currents are obtained using the fast Fourier transformer (FFT). This paper presents also a detailed analysis and simulation of speed sliding mode control (SMC). The effectiveness is demonstrated for different operating conditions.
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