Research Article
Development of the Unified Series-Shunt Compensator for Power Quality Mitigation

M.A. Hannan, A. Mohamed, A. Hussain and Majid al Dabbay

American Journal of Engineering and Applied Sciences, 2008, 1(4), 338-346.

Abstract

This study describes the derivation of an analytical model and simulation for the unified series-shunt compensator (USSC) for investigating power quality in power distribution system. The USSC simulation comprises of two 12-pulse inverters which were connected in series and in shunt with the system. A generalized sinusoidal pulse width modulation (SPWM) switching technique was developed in the proposed controller for fast control action of the USSC. Simulations were carried out using the PSCAD/EMTDC electromagnetic transient programs to examine the performance of the USSC model. Simulation results from the proposed model demonstrated the performance of the USSC and its effectiveness for voltage sag compensation, flicker reduction, voltage unbalance mitigation, power flow control and harmonics elimination.

ASCI-ID: 2811-54

Similar Articles


Design Analysis of High-Speed Axial-Flux Generator

American Journal of Engineering and Applied Sciences, 2008, 1(4), 312-317.

Artificial Neural Networks Based Modeling and Control of Continuous Stirred Tank Reactor

American Journal of Engineering and Applied Sciences, 2009, 2(1), 229-235.

AC Analysis of PEO10LiCF3SO3 Polymeric Material for Memory Storage Application

American Journal of Engineering and Applied Sciences, 2010, 3(1), 128-132. DOI: 10.3844/ajeassp.2010.128.132

Linear Genetic Programming for Prediction of Nickel Recovery from Spent Nickel Catalyst

American Journal of Engineering and Applied Sciences, 2010, 3(2), 482-488. DOI: 10.3844/ajeassp.2010.482.488

Modeling and Analysis of MRR, EWR and Surface Roughness in EDM Milling through Response Surface Methodology

American Journal of Engineering and Applied Sciences, 2010, 3(4), 611-619. DOI: 10.3844/ajeassp.2010.611.619

Elapse Time Factor on Induced Vegetative Moisture Uptake in an Unsaturated Soil

American Journal of Engineering and Applied Sciences, 2010, 3(4), 597-603. DOI: 10.3844/ajeassp.2010.597.603