A chaos game optimization algorithm-based optimal control strategy for performance enhancement of offshore wind farms

Shaheen, Mohamed A.M.; Hasanien, Hany M.; Mekhamer, S. F.; Talaat, Hossam Eldin;

Abstract


This paper presents a novel application of the chaos game optimization (CGO) algorithm to optimally design PI controllers for power electronic interface circuits of offshore wind farms (OWF) consisting of a permanent magnet synchronous generator powered by a variable-speed wind turbine. The OWF is linked to the network via a high-voltage direct current (HVDC) transmission system. The CGO metaheuristic method is employed to fine-tune voltage source converter (VSC)-based HVDC transmission systems’ proportional-integral controller gains. The study explores multiple strategies to extract the highest power from the system while ensuring stability under symmetrical and unsymmetrical fault conditions. The CGO algorithm consistently yields superior results to other algorithms, improving system regaining and stability post disturbances. Consequently, the technique enhances the dynamic and transient stability of the OWF. The detailed study is implemented using MATLAB/Simulink.


Other data

Title A chaos game optimization algorithm-based optimal control strategy for performance enhancement of offshore wind farms
Authors Shaheen, Mohamed A.M.; Hasanien, Hany M.; Mekhamer, S. F.; Talaat, Hossam Eldin 
Keywords CGO algorithm;High Voltage direct current;Offshore wind farms;Voltage source converter
Issue Date 1-Jun-2024
Journal Renewable Energy Focus 
Volume 49
ISSN 17550084
DOI 10.1016/j.ref.2024.100578
Scopus ID 2-s2.0-85192886022

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