Active harmonic elimination in multilevel converters using FPGA control

Z. Du, L. Tolbert, J. Chiasson
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引用次数: 26

Abstract

This paper presents an optimal total harmonic distortion (THD) control algorithm referred to as active harmonic elimination method for cascaded H-bridges multilevel converter control with unequal DC sources. First, the multilevel converter is decoupled into unipolar converters, the low order harmonics, such as the 5th, 7th, 11th and 13th are eliminated by using elimination theory, and the minimum THD combination of unipolar converters for multilevel converter control is found. Next, the magnitudes and phases of the residual higher harmonics are computed and subtracted from the original output voltage waveform to eliminate these higher harmonics. To validate the proposed algorithm, the method is simulated by Matlab first. After the simulation, an experimental 11-level H-bridge multilevel converter with a real-time controller based on Altera FLEX 10 K field programmable gate array (FPGA) is used to implement the algorithm with 8 /spl mu/s control resolution. The experimental results show that the method can effectively eliminate the specific harmonics as expected, and the output voltage waveforms have low THD.
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基于FPGA控制的多电平变换器有源谐波消除
本文提出了一种用于非等直流源级联h桥多电平变换器控制的最优总谐波失真(THD)控制算法——有源谐波消除法。首先,将多电平变换器解耦成单极变换器,利用消元理论消除5、7、11、13次低次谐波,找到用于多电平变换器控制的单极变换器最小THD组合。接下来,计算剩余高次谐波的幅值和相位,并从原始输出电压波形中减去这些高次谐波。为了验证所提出的算法,首先用Matlab对该方法进行了仿真。仿真完成后,采用基于Altera FLEX 10k现场可编程门阵列(FPGA)的11电平h桥多电平变换器和实时控制器,以8 /spl mu/s的控制分辨率实现了该算法。实验结果表明,该方法能有效地消除特定谐波,输出电压波形具有较低的THD。
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