Dynamic Performance Improvement of Model-Based Capacitor Voltage Control for Single-Phase STATCOM with Reduced Capacitance

Motoki Akihiro, Tomoyuki Mannen, T. Isobe
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Abstract

This paper proposes an improved model-based capacitor voltage control for single-phase STATCOM. A cascaded H-bridge multilevel converter (CHB-MC) based STATCOM consists of several series connected single-phase STATCOM; therefore, the required capacitance to achieve a constant dc voltage is comparatively high. The concept of applying the drastically reduced capacitance by accepting a strongly fluctuating capacitor voltage has been proposed. For the propose concept, keeping the peak capacitor voltage is important, and its overshoot may occur during transient changes. The transient behavior of the STATCOM with reduced capacitance is discussed and fundamentals of the proposed control are shown. Experimental results confirm that the proposed control can avoid over-shoot after a step-change in current reference.
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基于模型的减容单相STATCOM电容电压控制动态性能改进
提出了一种改进的基于模型的单相STATCOM电容电压控制方法。基于级联h桥多电平变换器(CHB-MC)的STATCOM由多个串联的单相STATCOM组成;因此,实现恒定直流电压所需的电容相对较高。提出了通过接受强烈波动的电容器电压来应用急剧减小的电容的概念。对于所提出的概念,保持峰值电容电压是重要的,其超调可能发生在瞬态变化。讨论了电容减小后STATCOM的暂态行为,并给出了控制的基本原理。实验结果表明,该控制方法可以避免参考电流发生阶跃变化后的超调。
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