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A Distributed Model-Free Controller for Enhancing Power System Transient Frequency Stability

机译:一种用于增强电力系统瞬态稳定性的分布式无模型控制器

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摘要

The transient stability control of power systems with growing penetration of renewable energy resources is challenging due to inherent small damping of generators and complicated operating conditions. To address the drawbacks of existing control approaches which need accurate systemwide network parameters, a model-free fuzzy controller is proposed to enhance the transient and frequency stability of power systems. Also, an adaptive parameter estimation scheme is developed to eliminate the fuzzy approximation errors and compensate the external disturbances. The proposed strategy is implemented based on the multiagent framework, which enables the sharing of communication and computation burdens among local controllers for fast and coordinated response. The convergence of the proposed distributed control approach is rigorously proved using the Graph theory and Lyapunov stability theory. Simulation studies validate the effectiveness of the proposed distributed control approach.
机译:由于发生器的固有的小阻尼和复杂的操作条件,随着可再生能源资源的渗透而增长的电力系统的瞬态稳定性控制是挑战性的。为了解决需要精确系统的网络参数的现有控制方法的缺点,提出了一种无模型模糊控制器,以增强电力系统的瞬态和频率稳定性。而且,开发了自适应参数估计方案以消除模糊近似误差并补偿外部干扰。该拟议的策略是基于多元框架实施的,这使得在当地控制器之间共享通信和计算负担以获得快速和协调的响应。使用图形理论和Lyapunov稳定性理论严格证明了所提出的分布式控制方法的收敛性。仿真研究验证了拟议的分布式控制方法的有效性。

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