Power quality enhancement in hybrid renewable energy systems for smart grid applications using optimized upqc
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Abstract
newline In the evolving landscape of smart grid applications, the integration
newlineof renewable energy sources represents a critical frontier, addressing both
newlineenvironmental concerns and the need for enhanced power quality. Traditional
newlinepower systems face significant challenges, including environmental
newlinesustainability concerns and a growing demand for improved reliability and
newlineefficiency. The intermittent nature of renewable source, such as solar and
newlinewind power, necessitates innovative solutions to seamlessly incorporate them
newlineinto smart grids. Moreover, as the global energy landscape evolves, research
newlineefforts aim to address issues related to voltage fluctuations, harmonics, and
newlineload balancing, emphasizing the critical role of renewable energy in
newlinemitigating these challenges. As such, this research begins by introducing a
newlinesmart grids applications for power systems operation aimed at enhancing
newlinepower quality and flow in transmission lines, addressing issues, like unwanted
newlineharmonics and compensating for sag and swell in power sources. To achieve
newlinethis, a Flexible Alternating Current Transmission System (FACTS) device is
newlineemployed, implementing a series compensator in parallel with a Three-phase
newlineFour Wire (3P4W) distribution systems in the first contribution. The proposed
newlinecompensator circuit, GTO Thyristor-Controlled Series Capacitor (GCSC),
newlinecombines Thyristor-Controlled Series Compensator (TCSC) and Gate Turn
newlineOff (GTO) for switching. Control of the proposed compensator involves
newlineutilizing a Proportional Integral Resonant (PIR) controller, with optimization
newlineof its parameters achieved through the Rock Hyraxes Swarm Optimization
newline(RHSO) algorithm.