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Direct power control of a multilevel inverter based active power filter

机译:基于多电平逆变器的有源功率滤波器的直接功率控制

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摘要

A cascaded H-bridge multilevel inverter based active power filter with a novel direct power control is proposed in this paper. It can be directly connected to medium/high voltage power line without using the bulky transformer or passive filter. Due to the limited switching frequency (typically below 1 kHz) of high-power solid-state devices (GTO/IGCT), multiple synchronous/stationary reference frame current controllers are reviewed and derived. Based on this, a novel current controller is proposed for harmonic current elimination and system power factor compensation. Furthermore, a synchronous/stationary hybrid structure can be derived with fundamental de-coupling control. The instantaneous reactive power theory and synchronous reference frame based control are compared based on mathematical models. A direct power control concept is then derived and proposed. It is equivalent as the hybrid synchronous/stationary frame current controller, but has a simpler implementation. It has clear physical meaning and can be considered as a simplified version of the hybrid frame current controller. Simulations on a 4160 V/1.2MVA system and experimental results on a 208 V/6 kVA laboratory prototype are presented to validate the proposed active power filter design.
机译:提出了一种具有新颖直接功率控制的基于级联H桥多电平逆变器的有源功率滤波器。它可以直接连接到中/高压电源线,而无需使用笨重的变压器或无源滤波器。由于大功率固态设备(GTO​​ / IGCT)的开关频率有限(通常低于1 kHz),因此需要审查和推导多个同步/固定参考框架电流控制器。在此基础上,提出了一种用于谐波电流消除和系统功率因数补偿的新型电流控制器。此外,可以通过基本的去耦控制获得同步/平稳混合结构。基于数学模型对瞬时无功功率理论和基于同步参考系的控制进行了比较。然后推导并提出了直接功率控制的概念。它等效于混合同步/固定帧电流控制器,但实现起来更简单。它具有明确的物理含义,可以视为混合框架电流控制器的简化版本。提出了在4160 V / 1.2MVA系统上的仿真和在208 V / 6 kVA实验室原型上的实验结果,以验证所提出的有源功率滤波器设计。

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