HARMONIC COMPENSATION AND ACTIVE POWER INJECTION WITH PV AND BATTERY INTEGRATED PARALLEL ACTIVE POWER FILTER
DOI:
https://doi.org/10.55766/sujst10160Keywords:
Active power injection, Battery energy storage system, DG-SRF theory, Harmonics, Parallel Active Power Filter, Solar-PV systemAbstract
In recent days, the harmonic distortion plays crucial power-quality issues which proliferates the distribution system and also worrying the power system engineers. These harmonics distortions are mostly injected into system by employing non-linear power-electronic loads in several domestic and industrial applications. In this regard, active power filters are found to have considerable interest at distribution system so as to maintain harmonic-free and also enhance distribution system stability. The shunt-Active Power Filter utilizes the single voltage-source inverter for compensation of harmonic currents in source current is maintained to be sinusoidal, linear and balanced in shape. But, the single VSI have some technical limitations over the dual-Voltage Source Inverter’s are connected as parallel to attain current sharing, low switch stress, reduced switching losses and maximizing the over-all efficiency, so on. In this work, the dual-VSIs based parallel connected APF has been proposed for reducing harmonic current distortions, power-quality enhancement in Power Quality-mode. It injects the active power by employing the solar and battery connected energy storage system under DG connected mode by using DG-SRF control algorithm. The performance of dual-VSIs based parallel connected APF is verified in both PQ and DG integrated modes by using Matlab/Simulink software tool, results are presented with comparisons
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