首页> 外文会议>ECCE 2013 >Low-Voltage-Ride-Through (LVRT) Capability of a Phase-Shifted-PWM STATCOM Using the Modular Multilevel Cascade Converter Based on Single-Star Bridge-Cells (MMCC-SSBC)
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Low-Voltage-Ride-Through (LVRT) Capability of a Phase-Shifted-PWM STATCOM Using the Modular Multilevel Cascade Converter Based on Single-Star Bridge-Cells (MMCC-SSBC)

机译:使用基于单星桥 - 电池的模块化多级级联转换器(MMCC-SSBC)的模块化多级级联转换器的低压 - 乘飞机(LVRT)能力

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This paper has an experimental discussion on low-voltage-ride-through (LVRT) capability of a phase-shifted-PWM STATCOM using the modular multilevel cascade converter based on single-star bridge-cells (MMCC-SSBC). The cluster-balancing control, that produces a significant effect on the LVRT capability, is modeled and analyzed with focus on either low-pass filter (LPF) or moving average filter (MAF) to attenuate the 100-Hz (double the line frequency) component inherent in each dc capacitor voltage. The cluster-balancing control using the MAF is better in transient performance than that using the LPF. A three-phase downscaled system rated at 150 V and 10 kVA is designed, constructed, and tested to verify the LVRT capability of the SSBC-based STATCOM under the severest single-phase, two-phase, and three-phase voltage sags with a voltage depth of 100%. Experimental waveforms show that the STATCOM continues operating stably as if no voltage sag occurred.
机译:本文采用基于单星桥电池(MMCC-SSBC)的模块化多级级联转换器的相移-PWM Statcom的低压乘飞机(LVRT)能力进行了实验讨论。为LVRT能力产生显着影响的群集平衡控制是模拟和分析的,专注于低通滤波器(LPF)或移动平均滤波器(MAF)以衰减100 Hz(双线频率的双倍)每个直流电容电压中固有的组件。使用MAF的群集平衡控制比使用LPF的瞬态性能更好。设计,构造,测试,并测试三相缩小系统,以150 V和10 kVA设计,并测试,以验证基于SSBC的STATCOM在最严重的单相,两相和三相电压下凹陷的LVRT能力电压深度为100%。实验波形表明,Statcom继续稳定地操作,好像没有发生电压凹陷。

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