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A 1φ3W inverter with grid connection and active power filtering based on nonlinear programming and fast-zero-phase detection algorithm
Journal article   Peer reviewed

A 1φ3W inverter with grid connection and active power filtering based on nonlinear programming and fast-zero-phase detection algorithm

Tsai-Fu Wu, Chih-Lung Shen, Hung-Shou Nein and Guang-Fei Li
IEEE Transactions on Power Electronics, Vol.20(1), pp.218-226
01/2005

Abstract

Active power filter Fast-zero-phase detection (FZPD) Grid connection Inverter Nonlinear programming Photovoltaic arrays
This paper presents design and implementation of a single-phase three-wire (1φ3W) inverter with grid connection and active power filtering which is based on nonlinear programming and fast-zero-phase detection (FZPD) algorithm. The proposed inverter system can transmit photovoltaic power, compensate harmonic currents, supply reactive power, and balance power at source side even when the line voltages are highly distorted. Simulated and experimental results have verified the FZPD algorithm and demonstrated that when the voltage sources are highly distorted, the proposed inverter system can yield better power quality over that with conventional zero-crossing-detection algorithm. © 2005 IEEE.

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