Title :
Versatile Control of Unidirectional AC–DC Boost Converters for Power Quality Mitigation
Author :
Sung Min Park ; Sung-Yeul Park
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Connecticut, Storrs, CT, USA
Abstract :
This paper introduces a versatile control scheme for unidirectional ac-dc boost converters for the purpose of mitigating grid power quality. Since most power factor correction circuits available in the commercial market utilize unidirectional ac-dc boost converter topologies, this is an almost no-cost solution for compensating harmonic current and reactive power in residential applications. Harmonic current and reactive power compensation methods in the unidirectional ac-dc boost converter are investigated. The additional focus of this paper is to quantify the input current distortions by the unidirectional ac-dc boost converter used for supplying not only active power to the load but also reactive power. Due to input current distortions, the amount of reactive power injected from an individual converter to the grid should be restricted. Experimental results are presented to validate the effectiveness of the proposed control method.
Keywords :
AC-DC power convertors; compensation; electric current control; power factor correction; power grids; power supply quality; power system harmonics; reactive power control; grid power quality mitigation; harmonic current compensation; input current distortion; power factor correction circuit; reactive power; reactive power compensation method; residential application; unidirectional AC-DC boost converter; versatile control scheme; Harmonic analysis; Power quality; Power system harmonics; Reactive power; Switches; Topology; Active power filter (APF); Unidirectional ac-dc boost converter.; active power filter; cusp distortion; harmonic current compensation; harmonic current compensation (HCC); power factor correction; power factor correction (PFC); reactive power compensation; reactive power compensation (RPC); unidirectional ac???dc boost converter;
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2014.2364304