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THD minimization of modular multilevel converter with unequal DC values

机译:直流值不相等的模块化多电平转换器的THD最小化

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Different modulation techniques used to control multilevel converters can be classified based on the selected converter topology and optimization goals. Among all proposed modulation methods low switching frequency modulation techniques are very popular for multilevel converters yet non-real time low switching frequency methods cannot be applied to multilevel converters with unequal or varying DC values because these modulation techniques rely on look up tables and the size of look up tables will be huge in this case. This paper proposes a new modular multilevel converter (MMC) structure with unequal DC values. Some well-known low switching frequency modulation techniques and the commonly used PWM based methods are compared and using the new low switching frequency modulation technique called minimal total harmonic distortion (THD) modulation for MMC with unequal DC values is proposed. The PSCAD simulation results show that the new converter topology with unequal DC values has much lower THD compared to the typical MMC. Modulation algorithm is implemented in digital signal processor (DSP) and controller hardware in the loop (CHIL) implementation in RTDS verifies the real-time performance of the algorithm.
机译:可以基于所选的转换器拓扑和优化目标对用于控制多级转换器的不同调制技术进行分类。在所有提出的调制方法中,低开关频率调制技术在多电平转换器中非常流行,但非实时的低开关频率方法不能应用于具有不相等或变化的DC值的多电平转换器,因为这些调制技术依赖于查找表和大小在这种情况下,查找表将非常庞大。本文提出了一种具有不相等直流值的新型模块化多电平转换器(MMC)结构。比较了一些众所周知的低开关频率调制技术和基于PWM的常用方法,并针对具有不相等DC值的MMC,提出了一种称为最小总谐波失真(THD)调制的新低开关频率调制技术。 PSCAD仿真结果表明,与典型的MMC相比,具有不相等的DC值的新转换器拓扑具有更低的THD。调制算法在数字信号处理器(DSP)中实现,而RTDS在循环中的控制器硬件(CHIL)实现验证了算法的实时性能。

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