A practical design of fuzzy SMES controller based on synchronized phasor measurement for interconnected power system

Abstract

Recently, fuzzy logic control has widely received attention in various power system applications, despite difficulties of obtaining its control rules and membership functions. Nowadays, power system consists of multiple areas where load variations with abrupt changes always exist, and proper control rules and membership functions could be hardly achieved. This paper proposes a practical design of fuzzy logic controllers for superconducting magnetic energy storage (SMES) based on wide area synchronized phasor measurement for improving stability of interconnected power system. Moreover, a heuristic method is applied for determining control rules and membership functions. The estimated model is determined via a coupled vibration model for detection and assessment of an approximated inter-area oscillation mode. Finally, some simulation studies based on a two-area four-machine power system are carried out to examine the performance and effectiveness of the designed fuzzy SMES controller. © 2007 RPS.

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Keywords

Fuzzy logic controller, Power system stability, Superconducting magnetic energy storage, Synchronized phasor measurement, Wide area system

Citation

8th International Power Engineering Conference IPEC 2007, 100-105, 2007

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