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Circulating Current Control for Modular Multilevel Converters With (N+1) Selective Harmonic Elimination—PWM

机译:具有(n + 1)选择性谐波消除-PWM的模块化多级转换器的循环电流控制

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摘要

Modular multilevel converters (MMCs) require control of the circulating current, $i_{ext{circ}}$, to improve their operation and efficiency. This is particularly important when low switching frequency modulation techniques, such as selective harmonic elimination pulsewidth modulation (SHE-PWM) are applied. This article provides a novel method to control the circulating current along with (N+1) SHE-PWM. Unlike the case of (2N+1) SHE-PWM, explicit redundant levels are not available and, therefore, different modulation indexes, $m_{1}$ and $m_{2}$, are employed in the upper and lower arms to obtain the desired modulation index $m_{a}$. Unlike previous (N+1) circulating current methods, the distances between $m_{a}$, $m_{1}$, and $m_{2}$ remain constant to not disturb the phase output voltage, with an interchange of $m_{1}$ and $m_{2}$ between the arms used to follow the desired $i_{ext{circ}}$. The control adjusts the dc component of the circulating current and the energy stored in the SMs to their references, while maintaining the energy balance between the upper and lower arms. Simulation tests and experimental results, obtained from a single-phase laboratory prototype MMC, validate the proposed control technique.
机译:模块化多级转换器(MMC)需要控制循环电流,$ i_ { text {circ}} $,以提高其操作和效率。当应用低开关频率调制技术,例如选择谐波消除脉冲宽度调制(SHE-PWM)时,这尤为重要。本文提供了一种新颖的方法,可以控制循环电流以及(n + 1)SHE-PWM。与(2N + 1)的情况不同,不可用的显式冗余级别,因此,在上部和下臂中使用不同的调制索引,$ M_ {1} $和$ M_ {2} $获得所需的调制索引$ M_ {A} $。与以前的(n + 1)循环电流方法不同,$ m_ {a} $,$ m_ {1} $和$ m_ {2} $的距离保持恒定,以便与$互换m_ {1} $和$ m_ {2} $遵循所需$ i _ { text {circ}} $。该控制调节循环电流的DC分量和存储在SMS中的能量,同时保持上臂和下臂之间的能量平衡。从单相实验室原型MMC获得的仿真试验和实验结果,验证了所提出的控制技术。

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