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Consensus-Based Torque Control of Deloaded Wind DFIGs for Distributed\n and Fair Dynamic Dispatching

2016/02/12 by Stefanos Baros, Baros, Stefanos
Engineering · #FOS: Electrical engineering #Frequency Control in Power Systems #Microgrid Control and Optimization #Smart Grid Energy Management #Systems and Control (eess.SY) #electronic engineering #information engineering

paper · pdf · doi:10.48550/arxiv.1602.04234

openalex publication_date 2016/02/12 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/28

Abstract

In this paper we aim to address the problem of dynamically dispatching a\ngroup of state-of-the-art deloaded wind generators (WGs) in a fair-sharing\nmanner. We use the term dynamically since the WGs aim to dispatch themselves\naccording to a varying committed WF power output. We first propose a\nleader-follower protocol whose execution guarantees asymptotically, two control\nobjectives. These are 1) reaching asymptotic consensus on the utilization level\nof all WGs and 2) the total power output of the WGs asymptotically converges to\nthe reference value. Thereafter, we combine singular perturbation and Lyapunov\ntheory to prove that, under certain conditions, the proposed protocol will\nasymptotically converge to its equilibrium. Finally, we derive a cooperative\nControl Lyapunov Function-based (CLF) controller for the rotor side converter\n(RSC) of each WG that realizes the protocol in practice. We demonstrate the\neffectiveness of our proposed protocol and the corresponding RSC controller\ndesign via simulations on the modified IEEE 24-bus RT system.\n

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