TELKOMNIKA (Telecommunication Computing Electronics and Control)
Vol 18, No 4: August 2020

Design of shunt hybrid active power filter for compensating harmonic currents and reactive power

Ibrahim Alhamrouni (Universiti Kuala Lumpur (UniKL BMI))
F. N. Hanafi (Universiti Kuala Lumpur (UniKL BMI))
Mohamed Salem (Universiti Sains Malaysia)
Nadia H. A. Rahman (Universiti Kuala Lumpur (UniKL BMI))
Awang Jusoh (Universiti Teknologi Malaysia)
Tole Sutikno (Universitas Ahmad Dahlan)



Article Info

Publish Date
01 Aug 2020

Abstract

For the past two decades, tremendous advancements have been achieved in the electricity industry. The usage of non-linear loads in the daily life has affected the power quality of the system and caused the presence of harmonics. To compensate the harmonic currents and reactive power in the system, the design of shunt hybrid active power filter has been proposed in this research. The design of the filter has included several control systems of instantaneous active and reactive power (p-q) theory and PI controller to investigate the performance of the filter. The robustness of the designed hybrid power filter has also been benchmarked with the other filter topologies available in literature. The hybrid power filter will combine passive power filter and active power filter configurated in shunt connection. The result of this research showed that the total harmonic distortion analyzed is below than 5% according to IEEE-519 standard requirements and reactive power is compensated proved by the increase in power factor. The shunt hybrid active power filter is designed, and simulation result is analyzed by using MATLAB-Simulink environment.

Copyrights © 2020






Journal Info

Abbrev

TELKOMNIKA

Publisher

Subject

Computer Science & IT

Description

Submitted papers are evaluated by anonymous referees by single blind peer review for contribution, originality, relevance, and presentation. The Editor shall inform you of the results of the review as soon as possible, hopefully in 10 weeks. Please notice that because of the great number of ...