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Performance Comparison of Shunt Active Filter Interfacing Algorithm for Renewable Energy Sources

Publication Type : Conference Proceedings

Publisher : PEDES

Source : IEEE International Conference on Power Electronics, Drives and Energy Systems (PEDES 2012), Central Power Research Institute (CPRI), Bengaluru, 2012

Url : https://www.scopus.com/inward/record.uri?eid=2-s2.0-84876040158&doi=10.1109%2fPEDES.2012.6484412&partnerID=40&md5=49b6292f3c4fb7b4d203a6a0e9665fc0

Keywords : Active filters, Algorithm design and analysis, electric utility side, energy conservation, grid interfacing converter topology, instantaneous reactive power theory, IRPT, linear static load, load flow control, MATLAB-Simulink simulation, modified IcosΦ algorithm, Performance comparison, Power efficiency, power factor correction, power filters, power grid-source side power flow control, Power grids, Power harmonic filters, Power quality, power supply quality, power system control, Reactive power, Reactive power compensation, reactive power control, Renewable energy source, renewable energy sources, shunt active filter interface, shunt active filter interfacing algorithm, Switches, Voltage control

Campus : Amritapuri

School : School of Engineering

Center : Amrita Innovation & Research

Department : Electrical and Electronics

Verified : Yes

Year : 2012

Abstract :

The renewable energy source interfacing with grid is the major issue in the electric utility side. The various types of grid interfacing converter topology have been proposed by researchers to improve quality of power and efficiency of the system. This paper focuses the shunt active filter interface for the renewable energy source with an efficient modified IcosΦ algorithm for controlling the grid /source side power flow and renewable energy power with linear static loads. The proposed shunt active filter interfacing algorithm is compared with the well known algorithm of Instantaneous Reactive Power Theory (IRPT) with modifications for reactive power compensation and real power control from the renewable energy source. The performance of the both the algorithms have been simulated and tested in MATLAB/Simulink.

Cite this Research Publication : Ilango Karuppasamy, Bhargav, A., Trivikram, A., Kavya, P. S., Mounika, G., and Dr. Manjula G. Nair, “Performance Comparison of Shunt Active Filter Interfacing Algorithm for Renewable Energy Sources”, IEEE International Conference on Power Electronics, Drives and Energy Systems (PEDES 2012), Central Power Research Institute (CPRI). Bengaluru, 2012.

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