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首页> 外文期刊>Journal of power electronics >A Hybrid Static Compensator for Dynamic Reactive Power Compensation and Harmonic Suppression
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A Hybrid Static Compensator for Dynamic Reactive Power Compensation and Harmonic Suppression

机译:用于动态无功补偿和谐波抑制的混合静态补偿器

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This paper presents a combined system of a small-capacity inverter and multigroup delta-connected thyristor switched capacitors (TSCs). The system is referred to as a hybrid static compensator (HSC) and has the functions of dynamic reactive power compensation and harmonic suppression. In the proposed topology, the load reactive power is mainly compensated by the TSCs. Meanwhile the inverter is meant to cooperate with TSCs to achieve continuous reactive power compensation, and to filter the harmonics generated by nonlinear loads and the TSCs. First, the structure and mathematical model of the HSC are discussed Then the control method of the HSC is presented. An improved reduced order generalized integrator (ROGI)-based selective current control method is adopted in the inverter to achieve high-performance reactive and harmonic current compensation. Meanwhile, a switch control strategy is proposed to implement precise and fast switching of the TSCs and to avoid changing the time delay needed by the conventional switch strategy. Experiments are implemented on a 20 KVA HSC prototype and the obtained results verify the validity of the proposed HSC system.
机译:本文提出了一种小容量逆变器和多组三角形连接的可控硅开关电容器(TSC)的组合系统。该系统称为混合静态补偿器(HSC),具有动态无功补偿和谐波抑制功能。在提出的拓扑中,负载无功功率主要由TSC补偿。同时,逆变器旨在与TSC合作以实现连续的无功功率补偿,并过滤非线性负载和TSC产生的谐波。首先讨论了HSC的结构和数学模型,然后提出了HSC的控制方法。逆变器采用改进的基于降阶广义积分器(ROGI)的选择性电流控制方法,以实现高性能的无功和谐波电流补偿。同时,提出了一种切换控制策略,以实现TSC的精确,快速切换,并避免改变传统切换策略所需的时间延迟。在20 KVA HSC原型上进行了实验,获得的结果证明了所提出的HSC系统的有效性。

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