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A robust composite wide area control of a DFIG wind energy system for damping inter-area oscillations

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A. S. L. V. Tummala, “A robust composite wide area control of a DFIG wind energy system for damping inter-area oscillations,” Protection and Control of Modern Power Systems , vol. 5, no. 1, p. 25, 2020, doi: 10.1186/s41601-020-00170-y.   Abstract: This paper presents a novel composite wide area control of a DFIG wind energy system which combines the Robust Exact Differentiator (RED) and Discontinuous Integral (DI) control to damp out inter-area oscillations. RED generates the real-time differentiation of a relative speed signal in a noisy environment while DI control, an extension to a twisting algorithm and PID control, develops a continuous control signal and hence reduces chattering. The proposed control is robust to disturbances and can enhance the overall stability of the system. The proposed composite sliding mode control is evaluated using a modified benchmark two-area power system model with wind energy integration. Simulation results under various operating scenario

Modified vector controlled DFIG wind energy system based on barrier function adaptive sliding mode control

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Modified vector controlled DFIG wind energy system based on barrier function adaptive sliding mode control Journal name: Protection and control of modern power systems Link:  PDF