2022
DOI: 10.1016/j.isatra.2021.05.014
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An intelligent Hybrid Wind–PV farm as a static compensator for overall stability and control of multimachine power system

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Cited by 26 publications
(8 citation statements)
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“…Siva et al [40] built a hybrid PV/Wind system for TS analysis, power flow analysis, and P, Q correction in an IEEE 14 Bus system to decrease transmission losses, and fuel cost, and improve transmission line stability. Using a hybrid PSO-BFOA controller based on swarm optimization, the efficacy of wind and PV was evaluated to suppress and moderate global chaotic oscillations in a multi-machine system [41]. Hybrid Wind-PV-STATCOM uses PSO-BFOA-based intelligent VSI control (Figure 7).…”
Section: Figure 6 Pv Inverter Modelmentioning
confidence: 99%
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“…Siva et al [40] built a hybrid PV/Wind system for TS analysis, power flow analysis, and P, Q correction in an IEEE 14 Bus system to decrease transmission losses, and fuel cost, and improve transmission line stability. Using a hybrid PSO-BFOA controller based on swarm optimization, the efficacy of wind and PV was evaluated to suppress and moderate global chaotic oscillations in a multi-machine system [41]. Hybrid Wind-PV-STATCOM uses PSO-BFOA-based intelligent VSI control (Figure 7).…”
Section: Figure 6 Pv Inverter Modelmentioning
confidence: 99%
“…As shown in Table 3 [41], most current renewable inverters are Wind-STATCOM or PV STATCOM, not Hybrid Wind-PV. This study uses a Wind-PV hybrid farm's reversible capabilities to stabilize a multi-machine power system's chaotic oscillations.…”
Section: Figure 6 Pv Inverter Modelmentioning
confidence: 99%
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“…Over the years, research has been carried out in designing damping controllers [165][166][167]. In these studies, [167][168][169] different methods to define the objective function are consid-ered. Defining the objective function is an integral part of designing the damping controller.…”
Section: Objective Functionmentioning
confidence: 99%