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In this paper, a SSI (Sinusoidal Signal Integrator) based control technique is proposed for a single-stage single-phase solar photovoltaic (PV) grid tied with self-adjusting capability to voltage fluctuations. This system configures a solar PV array supplying the active power to single-phase grid and connected linear/nonlinear loads. The system aims at improving power quality, eliminating grid current...
This paper proposes the use of a least mean fourth (LMF)-based algorithm for single-stage three-phase grid-integrated solar photovoltaic (SPV) system. It consists of an SPV array, voltage source converter (VSC), three-phase grid, and linear/nonlinear loads. This system has an SPV array coupled with a VSC to provide three-phase active power and also acts as a static compensator for the reactive power...
In this paper, an integration of single-stage solar photovoltaic (SPV) generation to three-phase distribution grid is proposed using a variable step-size least mean square (VSS-LMS) control technique. The prime focus of the system is to establish a safe, secure and reliable integration which mitigates several power quality issues like voltage fluctuations and flickers, harmonics distortion, DC current...
This paper pertains to the application of an intelligent control algorithm for the integration of single stage solar photovoltaic (SPV) system with the three-phase grid. The basic attributes of this integration of SPV system with the grid involve active power exchange, reactive power compensation, PFC (Power Factor Correction), zero voltage regulation at the point of common coupling (PCC) and harmonics...
In this paper, an integration of single-stage solar photovoltaic (SPV) generation to three-phase AC grid is proposed using admittance based LMS (Least Mean Square) adaptive control approach. The main focus of the system is to supply active power to the grid as well as loads at PCC and also mitigate several power quality issues like current harmonics distortion, reactive power and load unbalancing...
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