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Power flow computations of convertible static compensators for large-scale power systems
Conference paper

Power flow computations of convertible static compensators for large-scale power systems

S.-H. Lee and Chia-Chi Chu
2004 IEEE Power Engineering Society General Meeting, Vol.1, pp.1172-1177
2004

Abstract

Convertible Static Compensator (CSC) D-Q Axis Reference Frame Decomposition Flexible Alternative Current Transmission System (FACTS) Generalized Unified Power Flow Controller (GUPFC) Newton-Raphson Method Power Flow Analysis
Power flow models of Convertible Static Compensators for large-scale power systems are investigated. Two families of multi-configuration and multi-functional FACTS controllers, including Interline Power Flow Controllers (IPFC) and Generalized Unified Power Flow Controllers (GUPFC), are considered in details. Mathematical models of the IPFC and GUPFC based on d-q axis reference frame decomposition have been derived. A unified procedure to incorporate IPFC and GUPFC models into the conventional Newton-Raphson power flow solver is developed. Under this framework, for each EPFC or GUPFC, only two control parameters are appended in the unknown vector of iteration formula. Simulation results on a practical large-scale power system demonstrate the effectiveness and robustness of our models. Comparison studies for convergence performance with existing model are performed.

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