Fuzzy based Grid voltage Synchronization for Distributed Generated System

G. Chandra, Bangaroju Somayyachary

Abstract


In this project behavior of advanced grid synchronization systems and structures are presented. The transmission system operators (TSOs) are especially concerned about the low-voltage-ride-through requirements. Solutions based on the installation of STATCOMs and dynamic voltage regulators (DVRs), as well as on advanced control functionalities for the existing power converters of distributed generation plants, have contributed to enhance their response under faulty and distorted scenarios and, hence, to fulfill these requirements. In order to achieve satisfactory results with such systems, it is necessary to count on accurate and fast grid voltage synchronization algorithms, which are able to work under unbalanced and distorted conditions. This project analyzes the synchronization capability of three advanced synchronization systems: the decoupled double synchronous reference frame phase-locked loop (PLL), the dual second order generalized integrator PLL, and the three-phase enhanced PLL, designed to work under such conditions. Although other systems based on frequency-locked loops have also been developed, PLLs have been chosen due to their link with dq0 controllers. The proposed concept is implemented to Fuzzy logic controller by using mat lab/simulink software.


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Copyright (c) 2016 G. Chandra, Bangaroju Somayyachary

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