2016
DOI: 10.1016/j.rser.2015.11.064
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A review on performance of artificial intelligence and conventional method in mitigating PV grid-tied related power quality events

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Cited by 116 publications
(63 citation statements)
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“…A brief review of anti-islanding techniques and power quality issues were discussed in the study of [60]. A comprehensive review of power quality, stability, and protection and the negative impacts of PV systems due to voltage parameter control and static compensation techniques in the power distribution grid were discussed in the studies of [61,62]. Meanwhile, [63] investigated a CHB-based inverter and modular multilevel converters for STATCOM applications and compared reactive power controls for large PV applications [64].…”
Section: Multilevel Pv-statcom Applications In Grid-connected Systemsmentioning
confidence: 99%
“…A brief review of anti-islanding techniques and power quality issues were discussed in the study of [60]. A comprehensive review of power quality, stability, and protection and the negative impacts of PV systems due to voltage parameter control and static compensation techniques in the power distribution grid were discussed in the studies of [61,62]. Meanwhile, [63] investigated a CHB-based inverter and modular multilevel converters for STATCOM applications and compared reactive power controls for large PV applications [64].…”
Section: Multilevel Pv-statcom Applications In Grid-connected Systemsmentioning
confidence: 99%
“…Some investigations have analyzed the performance of artificial intelligence in mitigating power quality events in photovoltaic grid-tied systems [26]. Other recent studies have proposed methods based on artificial intelligence techniques to optimize power quality parameters optimization in off-grid systems [27].…”
Section: Artificial Intelligence and Optimisation Techniquesmentioning
confidence: 99%
“…Utilizing PV systems can help to reduce the dependence on conventional power plants, improve voltage profile, and decrease energy losses [3]. However, in the case of high PV penetration in LV distribution network, reverse power flow may occur when the PV production exceeds the consumers' load [4].…”
Section: Introductionmentioning
confidence: 99%