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The stability of interconnected power system is compared with normal or stable operation after subjected to some form of disturbance. With interconnected systems continually growing in size and extending over vast geographical regions, it is becoming increasingly more difficult to maintain synchronism between various parts of the power system. This project investigates the Custom Power Active Transformer (CPAT) capability to provide UPFC services which includes power flow control, reactive power compensation, voltage regulation and harmonics elimination. Simulations of the Fuzzy- UPFC with a…mehr

Produktbeschreibung
The stability of interconnected power system is compared with normal or stable operation after subjected to some form of disturbance. With interconnected systems continually growing in size and extending over vast geographical regions, it is becoming increasingly more difficult to maintain synchronism between various parts of the power system. This project investigates the Custom Power Active Transformer (CPAT) capability to provide UPFC services which includes power flow control, reactive power compensation, voltage regulation and harmonics elimination. Simulations of the Fuzzy- UPFC with a stiff grid and a 5-bus power system demonstrate its functionality as an inter-bus coupling transformer that provides the required grid services. Moreover, the impact of the Fuzzy-UPFC during load disturbances on the power system is investigated to further validate its transient and steady-state response.
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Autorenporträt
Sekhar Sunil Akkisetty est professeur assistant au département EEE du PSCMRCET, Vijayawada. Il poursuit actuellement un doctorat à l'Université Acharya Nagarjuna de Guntur.