Power quality enhancement by current controlled Voltage Source Inverter based DSTATCOM for load variations

Author(s):  
Hareesh Myneni ◽  
G. Siva Kumar ◽  
D. Sreenivasarao
2014 ◽  
Vol 573 ◽  
pp. 673-678
Author(s):  
Smrithi Vijayan ◽  
Nallaperumal Chellammal ◽  
Tatipamula Mohana

This paper deals with the design of filters for power quality enhancement in microgrid. The voltage source inverters (VSI) fed from microgrid requires filter across them to detect the unbalance and harmonics in the system. The performances of various filters are compared and the improved negative sequence filter is found out to be the best solution. The stability of these filters are also studied and simulations are carried out to validate the results.


Author(s):  
R. Balamurugan ◽  
R. Nithya

In this paper, a Fuel cell (FC) / Photovoltaic cell (PV)/ Battery operated three phase Shunt Active power Filter (SAF) is proposed for improving the power quality at the utility side. Fuzzy based instantaneous p-q theory control is proposed for SAF. This SAF consists of Voltage Source PWM Converter (VSC) and a DC link capacitor supplied by a FC/PV/Battery. The filter provides harmonic mitigation with reactive power compensation and neutral compensation for loads at the Point of Common Coupling (PCC). A Single switch boost DC-DC converter connects the FC/PV/Battery with the VSC to maintain the load. The performance of the proposed SAF is tested in MATLAB / SIMULINK environment with Fuzzy logic controller (FLC). The controller maintains the DC link voltage based on the current reference generated by the p-q theory. The Hysteresis PWM current controller is employed to generate the gating pulses to the switches in VSC. The simulation results of the proposed SAF validate the effectiveness of FLC in power quality enhancement.


2008 ◽  
Vol 18 (2) ◽  
pp. 644-647 ◽  
Author(s):  
Sung-Hun Lim ◽  
Su-Won Lee ◽  
Young-Hyun Moon ◽  
Jae-Chul Kim ◽  
Tae-Kuk Ko

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