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An Optimized Cascaded Multilevel Static Synchronous Compensator for Medium Voltage Distribution Systems

机译:用于中压配电系统的优化级联多级静态同步补偿器

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Problems related to energy quality in medium voltage distribution systems have severely been affecting the industrial process, especially at the industries that work with complex plant processes, causing damages to the equipments and high financial losses. The necessity of a better energy quality for industry encourages the transition of the custom power equipments, typically used in low voltage systems, to work in medium voltage systems. This recent interest has been instigating researches from the power-electronics society. The multilevel power converters represent a potential breakthrough in employing switching equipments in medium voltage applications. In this context, studies related to multilevel topologies, modulation strategies and control circuits are presented in this paper in order to achieve an optimized multilevel distribution static synchronous compensator (DSTATCOM) to improve the power quality in industrial installations. Simulation results with all the contributions show the optimized performance of the compensator.
机译:与中压配电系统中的能量质量相关的问题严重影响了工业过程,特别是在与复杂的工厂流程合作的行业,对设备造成损害和高金融损失。为工业提供更好的能量质量的必要性鼓励通常在低压系统中使用的定制电源设备的过渡,从而在中压系统中工作。最近的兴趣已经煽动了电力电子社会的研究。多级功率转换器代表在中压应用中采用开关设备的电位突破。在这种情况下,本文提出了与多级拓扑,调制策略和控制电路相关的研究,以实现优化的多级分布静态同步补偿器(DSTATCOM),以提高工业安装中的电力质量。仿真结果所有贡献都显示了补偿器的优化性能。

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