Fast space vector modulation based on a neurocomputing digital signal processor

A. Bakhshai, G. Joós, J. Espinoza, H. Jin
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引用次数: 17

Abstract

This paper presents a novel approach to the implementation of the space vector modulation (SVM). The proposed technique takes advantage of a modified Kohonen's competitive layer to calculate the on duration of the adjacent switching state vectors. By using this technique: (a) the hardware and software complexity of the system is reduced; (b) the maximum attainable switching frequency and thus the bandwidth of the control system is increased; and (c) the waveform degradation and parasitic harmonics resulting from inaccurate calculations are avoided. The proposed method is compared to the conventional implementations of SVM techniques in terms of hardware/software requirements, switching frequency, computation time, and harmonic spectra. The method is applied to a DSP controlled 3 kVA unit (voltage source inverter) and experimental results verify the validity of theoretical and simulation results.
基于神经计算数字信号处理器的快速空间矢量调制
提出了一种实现空间矢量调制(SVM)的新方法。该技术利用改进的Kohonen竞争层来计算相邻切换状态向量的持续时间。通过使用这种技术:(a)降低了系统的硬件和软件复杂性;(b)可达到的最大开关频率,从而增加了控制系统的带宽;(c)避免了由于计算不准确而导致的波形退化和寄生谐波。该方法在硬件/软件要求、开关频率、计算时间和谐波谱等方面与传统支持向量机技术进行了比较。将该方法应用于DSP控制的3kva电压源逆变器,实验结果验证了理论和仿真结果的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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