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A Novel Control Method for Unified Power Quality Conditioner Using Nine-Switch Power Conditioner

机译:九开关功率调节器的统一电能质量调节器的新控制方法

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A nine-switch power converter having two sets of out-put terminals was recently proposed in place of the traditional back-to-back power converter that uses 12 switches in total. The nine-switch converter has already been proven to have certain advantages, in addition to its component saving topological feature. Despite these advantages, the nine-switch converter has so far found limited applications due to its many perceived performance tradeoffs like requiring an oversized dc-link capacitor, limited amplitude sharing, and constrained phase shift between its two sets of output terminals. Instead of accepting these tradeoffs as limitations, a nine-switch power conditioner is proposed here that virtually "converts" most of these topological short comings into interesting performance advantages. Aiming further to reduce its switching losses, an appropriate discontinuous modulation scheme is proposed and studied here in detail to doubly ensure that maxi-mal reduction of commutations is achieved. With an appropriately designed control scheme then incorporated, the nine-switch converter is shown to favorably raise the overall power quality in experiment, hence justifying its role as a power conditioner at a reduced semiconductor cost.
机译:最近,提出了一种具有两组输出端子的九开关功率转换器,以代替总共使用12个开关的传统背靠背功率转换器。九开关转换器除了节省元件的拓扑功能外,还被证明具有某些优势。尽管具有这些优点,但由于九开关转换器在性能上的许多权衡,例如需要超大型直流链路电容器,有限的幅度共享以及在其两组输出端子之间的相移受限制,因此迄今为止,其应用受到了限制。这里没有提出将这些折衷作为限制的方法,而是提出了一种九开关功率调节器,该调节器实际上将这些拓扑缺点中的大多数“转化”为有趣的性能优势。为了进一步降低其开关损耗,本文提出并研究了一种适当的不连续调制方案,以双重确保实现最大程度的换向降低。结合适当设计的控制方案后,九开关转换器在实验中可以很好地提高整体电源质量,从而以降低的半导体成本证明了其作为功率调节器的作用。

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