Voltage Harmonics Mitigation through Hybrid Active Power Filter
Journal: Mehran University Research Journal of Engineering and Technology (Vol.35, No. 1)Publication Date: 2016-01-01
Authors : Anwer Ali Sahito; Shah Murad Tunio; Arbab Nighat Khizer;
Page : 101-110
Keywords : Power electronics converters; Voltage Harmonics; Total Harmonic Distortion; Hybrid Active Power Filter;
Abstract
Fast dynamic response, high efficiency, low cost and small size of power electronic converters have exponentially increased their use in modern power system which resulted in harmonically distorted voltage and currents. Voltage harmonics mainly caused by current harmonics are more dangerous as performance and expected operating life of other power system equipment are affected by harmonically distorted supply voltage. Electronic filter circuits are used to improve system power quality by mitigating adverse effects of harmonics. Hybrid filters having advantages of both passive and active filters are preferred to resolve the problem of harmonics efficiently and avoiding any chance of resonance. In this paper, a three phase three wire network is considered to supply an adjustable speed drive represented by a resistive load connected across a three phase bridge rectifier. Simulation of the considered system shows THD (Total Harmonic Distortion) of 18.91 and 7.61% in supply current and voltage respectively. A HAPF (Hybrid Active Power Filter) is proposed to reduce these THD values below 5% as recommended by IEEE Standard-519. P-Q theorem is used to calculate required parameters for proposed filter, which is implemented through hysteresis control. Simulation results confirm the effectiveness of the designed filter as THD for both current and voltage have reduced below allowable limit of 5%.
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Last modified: 2016-01-10 00:04:45