An optimization approach to design decentralized load frequency controllers for generators in islanded microgrids

S. Azizi, S. A. Khajehoddin
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引用次数: 2

Abstract

In this paper, an optimal decentralized controller is designed for the load frequency control of a microgrid with multiple synchronous generation systems and renewable energy sources in the islanded mode of operation. The decentralized controller includes multiple proportional-integral (PI) controllers designed and optimized simultaneously by using a classical descent-direction Quasi-Newton based optimization technique. The optimal decentralized PI controller accounts for the dynamic coupling among the areas of the microgrid without any communication links required among the PI controllers, and hence improves the frequency control performance as compared to a set of optimal linear-quadratic Gaussian (LQG) integral controllers of eighth order which are designed independently. Simulation results confirm the effectiveness of the proposed decentralized control approach.
孤岛微电网发电机分散负荷频率控制器的优化设计方法
本文针对孤岛运行模式下具有多个同步发电系统和可再生能源的微电网的负荷频率控制问题,设计了一种最优分散控制器。分散控制器包括多个比例积分(PI)控制器,采用经典的基于下降方向的拟牛顿优化技术同时设计和优化。最优分散PI控制器考虑了微电网各区域之间的动态耦合,而PI控制器之间不需要任何通信链路,与独立设计的一组最优线性二次高斯(LQG)八阶积分控制器相比,提高了频率控制性能。仿真结果验证了所提分散控制方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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