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Space-vector hysteresis modulation for neutral-diode-clamped inverter in active power filter applications

机译:有源功率滤波器应用中的中性二极管钳位逆变器的空间矢量磁滞调制

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A space-vector hysteresis modulation (SVHM) technique is presented in this paper for three-level neutral-point-clamped (TL-NPC) multilevel inverter for active power filter (APF) applications. The main responsibility of this modulation technique is to force the actual current to reach the reference current and, simultaneously, balance the capacitor voltages. This scheme is implemented in the stationary reference frame (SRF) to avoid interphase dependency in three-phase floated neutral point (TP-FNP) systems. The space-vector-based method permits for the efficient application of zero-voltage vectors and avoids high switching frequencies triggered by phase interaction in TPFNP systems. The approach comprises of performing two alternative hysteresis strategies around the error vector in SRF. Then, based on the present location of it, the next voltage vector is selected to minimize the next error vector and also balance the capacitor voltages. The performance of the proposed technique is investigated and verified through detailed simulation studies for both steady-state and transient conditions.
机译:本文针对用于有源电力滤波器(APF)应用的三电平中性点钳位(TL-NPC)多电平逆变器,提出了一种空间矢量磁滞调制(SVHM)技术。这种调制技术的主要职责是迫使实际电流达到参考电流,并同时平衡电容器电压。在固定参考系(SRF)中实现该方案,以避免三相浮点中性点(TP-FNP)系统中的相间依赖性。基于空间矢量的方法允许零电压矢量的有效应用,并避免了TPFNP系统中由相位相互作用触发的高开关频率。该方法包括围绕SRF中的误差向量执行两种可选的磁滞策略。然后,基于其当前位置,选择下一个电压矢量以最小化下一个误差矢量并平衡电容器电压。通过对稳态和瞬态条件进行详细的仿真研究,对所提出技术的性能进行了研究和验证。

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