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International Journal of Innovative Research and Development, Vol 1, No 8 (2012), Pagination: 563-577
Abstract
The design of a fuzzy logic controller using the voltage as feedback for significantly improving the dynamic performance of converter. A Power quality problem is an occurrence manifested as a nonstandard voltage, current or frequency that results in a failure or a misoperation of end user equipments. Utility distribution networks, sensitive industrial loads and critical commercial operations suffer from various types of outages and service interruptions which can cost significant financial losses. Renewable energy resources (RES) are being increasingly connected in distribution systems utilizing power electronic converters. This paper presents a novel control strategy for achieving maximum benefits from these grid-interfacing inverters using the closed loop fuzzy logic control, when installed in 3-phase 4-wire distribution systems. The inverter is controlled to perform as a multi-function device by incorporating active power filter functionality. The inverter can thus be utilized as: 1) power converter to inject power generated from RES to the grid, and 2) shunt APF to compensate current unbalance, load current harmonics, load reactive power demand and load neutral current. All of these functions may be accomplished either individually or simultaneously. This new control concept is demonstrated with extensive MATLAB/Simulink. Finally the proposed shceme is applied for both balanced and unbalanced linear non linear loads.
Keywords
International Electro-Technical Commission (IEC), Power Quality, Photo Voltaic (PV) System, Fuzzy Logic Controller (FLC)
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