Experimental Testing of The Wavelet Modulation Technique for 3φ, 5-Level, PECs

S. Saleh
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引用次数: 1

Abstract

This paper presents the implementation and experimental testing of the wavelet-modulation technique for three-phase (3φ) 5 level (5L) power electronic converters (PECs). This version of the wavelet modulation technique is structured as a multi-resolution analysis that can support a redundant non-uniform recurrent sampling-reconstruction of three reference-modulating signals. The reconstruction of reference-modulating signals is achieved by sets of resolution-segmented scale-base linearly combined synthesis wavelet basis functions, which are used as switching signals to activate the switching elements of a 3φ, 5L, VS dc-ac PEC. The presented wavelet-modulation technique is implemented in realtime using a digital signal processing board. Switching pulses generated by the extended wavelet modulation technique are used to operate 3φ, 5L, VS, diode-clamped and flying-capacitor dc-ac PECs. Experimental performance of the tested 5L dc-ac PECs is evaluated, when operated by the presented wavelet modulation, level-shifted pulse width modulation (PWM), phase shifted PWM, and space vector modulation techniques. Experimental tests are conducted for linear, dynamic, and nonlinear loads fed by the tested 5L PECs. Test results show that magnitudes of output voltage fundamental components can be significantly increased, and harmonic distortions can be effectively reduced using the wavelet modulation technique. These features are further demonstrated by performance comparisons with other techniques under similar operating conditions.
小波调制技术在3φ 5电平PECs中的实验测试
本文介绍了小波调制技术在三相(3φ) 5电平(5L)电力电子变换器(PECs)中的实现和实验测试。这个版本的小波调制技术的结构是一个多分辨率的分析,可以支持一个冗余的非均匀的周期性采样重建三个参考调制信号。参考调制信号的重建是通过一组分辨率分割的尺度基线性组合合成小波基函数来实现的,这些小波基函数用作开关信号来激活3φ, 5L, VS直流-交流PEC的开关元件。所提出的小波调制技术是利用数字信号处理板实时实现的。扩展小波调制技术产生的开关脉冲用于3φ、5L、VS、二极管箝位和飞电容直流-交流PECs。在小波调制、电平移脉宽调制(PWM)、相移PWM和空间矢量调制技术下,对所测试的5L直流-交流PECs的实验性能进行了评估。实验测试进行了线性,动态和非线性负载由测试的5L PECs。实验结果表明,采用小波调制技术可以显著提高输出电压基波分量的幅值,有效降低谐波失真。在类似操作条件下与其他技术的性能比较进一步证明了这些特性。
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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