A simple approach to the realization of an FPGA-based harmonic elimination PWM generator

Woei-Luen Chen, Yung-Ping Feng, C. Pien
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引用次数: 5

Abstract

This paper presents a low-cost and effective approach to generate harmonic elimination PWM (HEPWM) waveforms for three-phase voltage-sourced inverters (VSIs). In the developed approach, the off-line computations of switching patterns based on harmonic elimination strategy are stored in EPROM, thereby allowing a microprocessor-free design. With the proposed configuration, the circuits for the adjustments of modulation index and phase angle are synthesized onto a field-programmable gate array (FPGA) by means of hardware description language (VHDL). Since the VHDL statements, contrary to regular microprocessor programs, are inherently concurrent, high-speed response for determination of circuit output (switching state associated with the specified modulation index and phase angle) can be achieved. Furthermore, in order to limit switching losses for high power applications, eight switching sets having switching angles from 3 to 17 (M=2N+1, N=1...8) in each quarter fundamental period are available. Experimental and simulation results are presented to verify the effectiveness and accuracy of the proposed configuration.
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一种基于fpga的谐波消除PWM发生器的简单实现方法
提出了一种低成本、高效的三相电压源逆变器谐波消除PWM (HEPWM)波形产生方法。在开发的方法中,基于谐波消除策略的开关模式的离线计算存储在EPROM中,从而允许无微处理器的设计。在此基础上,利用硬件描述语言(VHDL)将调制指数和相角调节电路合成到现场可编程门阵列(FPGA)上。由于VHDL语句与常规微处理器程序相反,本质上是并发的,因此可以实现确定电路输出(与指定调制指数和相角相关的开关状态)的高速响应。此外,为了限制高功率应用的开关损耗,在每个季度基本周期中有8个开关组,开关角从3到17 (M=2N+1, N=1…8)。实验和仿真结果验证了该结构的有效性和准确性。
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