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Sliding mode controller based decoupled control of STATCOM for voltage profile improvement in a micro grid system

机译:基于滑模控制器的STATCOM解耦控制以改善微电网系统中的电压分布

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Micro grids have become ultimate solution to the energy crisis in the world. But the micro grid are most vulnerable while working in the isolated mode. Because due to the small generation capacity and highly fluctuating loads the voltage profile of the micro grid system deteriorates, which undesirable voltage dips and even causes instability. To get rid of these problems many FACTS devices have been developed which can compensate reactive power of the system rapidly. In this work micro grid system is considered which constitutes of an alternator feeding a concentrated load through a transmission line. A STATCOM is connected at the load bus to improve the voltage profile of the system. The STATCOM is controlled by a control scheme which enables fast and decoupled control of active and reactive power. Sliding mode controllers, which are considered to be fast and robust are designed and implemented for the power control purpose of the STATCOM. The performance of the micro grid is simulated and analyzed with and without STATCOM, and the results are presented. The simulation is done in Matlab/Simulink platform.
机译:微电网已成为解决世界能源危机的最终解决方案。但是在隔离模式下工作时,微电网最容易受到攻击。因为由于小发电量和高波动的负载,微电网系统的电压分布恶化,这不希望有的电压骤降甚至导致不稳定。为了解决这些问题,已经开发了许多FACTS设备,它们可以快速补偿系统的无功功率。在这项工作中,考虑了微电网系统,该系统由交流发电机组成,该交流发电机通过传输线向集中负载供电。 STATCOM连接在负载总线上,以改善系统的电压曲线。 STATCOM由一种控制方案控制,该方案可实现对有功和无功功率的快速和解耦控制。为了实现STATCOM的功率控制目的,设计并实现了被认为是快速而强大的滑模控制器。在有或没有STATCOM的情况下,对微电网的性能进行了仿真和分析,并给出了结果。仿真是在Matlab / Simulink平台上完成的。

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