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Small-signal stability and decentralized control design for electric energy systems with a large penetration of distributed generators

机译:分布式发电机普及率较高的电力系统的小信号稳定性和分散控制设计

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This paper investigates small-signal stability and decentralized control design for distribution electric energy systems with a large penetration of distributed generators. Two real world distribution systems are studied in this paper. The first system is the IEEE 30-node distribution system and the second one is the distribution system on Flores Island, one of the western group islands of the Azores Archipelago. The Block Gerschgorin Theorem and Liapunov function-based stability criteria are applied to formally state sufficient conditions for small-signal stability. The results illustrate that when the governor control of distributed generators is designed without considering interactions between generators, small-signal instability could occur in the system and even the sufficient conditions for stability would not be satisfied. In the next step, the paper assesses control design to stabilize potentially unstable distribution systems. The main focus is on designing enhanced decentralized control based on the introduced stability criteria. The findings illustrate that implementing the enhanced decentralized control could ensure stability and support a large penetration of distributed generators.
机译:本文研究了分布式发电机大渗透率的分布式电能系统的小信号稳定性和分散控制设计。本文研究了两个现实世界的分销系统。第一个系统是IEEE 30节点分发系统,第二个系统是弗洛雷斯岛上的分发系统,弗洛雷斯岛是亚速尔群岛西部群岛之一。运用块Gerschgorin定理和基于Liapunov函数的稳定性标准来正式陈述小信号稳定性的充分条件。结果表明,在设计分布式发电机的调速器控制而没有考虑发电机之间的相互作用时,系统中可能会出现小信号不稳定,甚至无法满足足够的稳定性条件。在下一步中,本文评估了控制设计以稳定潜在不稳定的配电系统。主要重点是基于引入的稳定性标准设计增强的分散控制。研究结果表明,实施增强的分散控制可以确保稳定性并支持分布式发电机的大渗透。

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