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Design of a Control Scheme for Distribution Static Synchronous Compensators with Power-Quality Improvement Capability

机译:具有电能质量改善能力的配电静态同步补偿器控制方案设计

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Electric power systems are among the greatest achievements of the last century. Today, important issues, such as an ever-increasing demand, the flexible and reliable integration of distributed generation or a growth in disturbing loads, must be borne in mind. In this context, smart grids play a key role, allowing better efficiency of power systems. Power electronics provides solutions to the aforementioned matters, since it allows various energy sources to be integrated into smart grids. Nevertheless, the design of the various control schemes that are necessary for the correct operation of the power-electronic interface is a very important issue that must always be taken into consideration. This paper deals with the design of the control system of a distribution static synchronous compensator (DSTATCOM) based on flying-capacitor multilevel converters. The control system is tailored to compensate for both voltage sags by means of reactive-power injection and voltage imbalances caused by unbalanced loads. The design of the overall control is carried out by using the root-locus and frequency-response techniques, improving both the transient response and the steady-state error of the closed-loop system. Simulation results obtained using PSCAD™/EMTDC™ (Manitoba Hydro International Ltd., Commerce Drive, Winnipeg, MB, Canada) show the resultant voltage regulation.
机译:电力系统是上个世纪的最大成就。今天,必须牢记重要的问题,例如不断增长的需求,分布式发电的灵活可靠的集成或令人不安的负荷的增长。在这种情况下,智能电网将发挥关键作用,从而提高电力系统的效率。电力电子为上述问题提供了解决方案,因为它允许将各种能源集成到智能电网中。但是,正确操作电源电子接口所需的各种控制方案的设计是一个非常重要的问题,必须始终予以考虑。本文针对基于飞电容多电平变换器的配电静态同步补偿器(DSTATCOM)的控制系统进行设计。该控制系统经过专门设计,可通过无功功率注入和由不平衡负载引起的电压不平衡来补偿电压骤降。通过使用根轨迹和频率响应技术来进行总体控制的设计,从而改善了闭环系统的瞬态响应和稳态误差。使用PSCAD™/ EMTDC™(马尼托巴水电国际有限公司,加拿大明尼苏达州温尼伯的商业大道,马尼托巴水电国际有限公司)获得的仿真结果显示了所得的电压调节率。

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