Inductive Load power factor Correction using Capacitor Bank

Author:

Shanmugapriya M,Sijini Aarim C,Srinivas V T,Karthick M,Pavan S

Abstract

Abstract At this time, efficient power generation is critical because power leakage is a global problem. The power factor of a machine tests its power efficiency and is a significant factor in improving supply quality. A low power factor caused by high lot of utilises of inductive load is often ignored in the majority of control systems. A power factor correction unit will enable the system’s power factor to be restored to near unity for cost-effective operation. Reduced power system losses, enhanced load carrying capabilities, improved voltages, and other benefits of power factor correction are only a few of the benefits. The aim of this program is to develop an Power Factor Correction Unit which can monitor a system’s energy consumption and increase its power factor. For accurate power measurement, an open source energy monitoring library was used in the design. The energy monitor unit measures the reactive strength absorbed by a load network and uses capacitor bank to compensate for the lagging power factor.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference6 articles.

1. Energy Saver Power Factor Controller for Synchronous Motors;Jones;IEEE Transactions on Power Apparatus and Systems,1983

2. Control schemes for equalization of capacitor voltages in neutral clamped shunt compensator;Joshi;IEEE Trans. Power Del.,2003

3. Design of FLC for OVR Reduction of Negative Output KY Converter;Sugavanam;International Journal of Applied Engineering Research(IJAER),2014

4. A bio-inspired swarm intelligence technique for social aware cognitive radio handovers;Anandakumar;Computers & Electrical Engineering,2018

5. Early Detection of Lung Cancer Using Wavelet Feature Descriptor and Feed Forward Back Propagation Neural Networks Classifier;Arulmurugan

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