Back close

Performance Analysis of Different Control Algorithms for Series active Filter

Publication Type : Conference Proceedings

Publisher : ICECCT

Source : Electrical, Computer and Communication Technologies (ICECCT), 2015 IEEE International Conference on. IEEE, 2015.

Url : https://ieeexplore.ieee.org/abstract/document/7225966

Campus : Bengaluru, Amritapuri

School : School of Engineering

Center : Amrita Innovation & Research

Department : Electrical and Electronics

Verified : Yes

Year : 2015

Abstract : Power quality of electric power supply has gathered huge attention in recent years due to its high impact in the manufacturing industry of electrical devices. Poor power quality has brought several constraints to the manufacturers of electrical devices. Harmonics is one major reason behind poor power quality and elimination of harmonics is done through the use of active filters. We focus on developing a controller for series active filter to eliminate voltage harmonics, sag and swell in this paper. The series filter is used to eliminate voltage harmonics and to balance and regulate the terminal voltage of the load. The series active filter injects a voltage component in series with supply voltage which is added or subtracted from the source voltage thus maintaining the load side waveforms as pure sinusoidal. A voltage source inverter is used as series active filter. Dynamic Voltage Restorer (DVR) is one of the most efficient and effective modern custom power devices used in power distribution networks to mitigate power quality problems such as voltage sag and swell. A comparative study between different control algorithms has been carried out by simulating the various controllers in MATLAB Simulink platform to analyze the performance.

Cite this Research Publication : Manitha P. V., Raji, S., and Dr. Manjula G. Nair, “Performance Analysis of Different Control Algorithms for Series active Filter”, Electrical, Computer and Communication Technologies (ICECCT), 2015 IEEE International Conference on. IEEE, 2015.

Admissions Apply Now