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A Reduced Series/Parallel Module for Cascade Multilevel Static Compensators Supporting Sensorless Balancing

机译:用于支撑无传感器平衡的级联多级静态补偿器的减少的系列/并联模块

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Cascaded multilevel converters have been gaining popularity in static compensators (STATCOMs) owing to their excellent modularity, output quality, and fault tolerance. However, cascaded multilevel converters require a large number of galvanically isolated voltage sensors and complex communication systems in order to balance the module dc-link voltages. This article proposes a reduced series/parallel module (RSPM) that intends to replace H-bridges in cascaded multilevel STATCOMs. Any adjacent RSPMs can be configured in series, bypass, or parallel. Cycling the parallel state through all modules balances all capacitor voltages in a sensorless manner. Since the RSPM-balancing process occurs at the hardware level, H-bridges can be easily replaced by RSPMs without changing higher-level control loops. Compared to existing series/parallel modules, the RSPM has the same functionalities but uses 25% fewer transistors. Despite the reduced switch count, the RSPM is shown to achieve even better efficiency under certain load conditions. The RSPM also attains similar semiconductor utilization ratio as H-bridge modules. The features of the RSPMs are verified on simulations and a down-scaled experimental setup.
机译:由于其优异的模块化,输出质量和容错,级联的多级转换器一直在静态补偿器(Statcoms)中受欢迎。然而,级联的多级转换器需要大量的电压隔离电压传感器和复杂的通信系统,以便平衡模块直流链路电压。本文提出了一个促进级联的多级统计组织中的H-Brafges的序列/并行模块(RSPM)。任何相邻的RSPM都可以串联,旁路或并行配置。通过所有模块循环并联状态以无传感器方式平衡所有电容电压。由于RSPM平衡过程发生在硬件级别,因此H形桥可以容易地由RSPMS更换而不改变更高级别的控制环路。与现有系列/并联模块相比,RSPM具有相同的功能,但使用25%的晶体管。尽管开关计数降低,但RSPM显示在某些负载条件下实现更好的效率。 RSPM还达到与H桥模块类似的半导体利用率。 RSPMS的特征在仿真和下缩放的实验设置上验证。

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