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Enhancement of grid-connected photovoltaic system using ANFIS-GA under different circumstances 被引量:3

Enhancement of grid-connected photovoltaic system using ANFIS-GA under different circumstances
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摘要 In recent years, many different techniques are applied in order to draw maximum power from photo- voltaic (PV) modules for changing solar irradiance and temperature conditions. Generally, the output power generation of the PV system depends on the intermittent solar insolation, cell temperature, efficiency of the PV panel and its output voltage level. Consequently, it is essential to track the generated power of the PV system and utilize the collected solar energy optimally. The aim of this paper is to simulate and control a grid-connected PV source by using an adaptive neuro-fuzzy inference system (ANFIS) and genetic algorithm (GA) controller. The data are optimized by GA and then, these optimum values are used in network training. The simulation results indicate that the ANFIS-GA controller can meet the need of load easily with less fluctuation around the maximum power point (MPP) and can increase the convergence speed to achieve the MPP rather than the conventional method. Moreover, to control both line voltage and current, a grid side P/Q controller has been applied. A dynamic modeling, control and simulation study of the PV system is performed with the Matlab/Simulink program. In recent years, many different techniques are applied in order to draw maximum power from photo- voltaic (PV) modules for changing solar irradiance and temperature conditions. Generally, the output power generation of the PV system depends on the intermittent solar insolation, cell temperature, efficiency of the PV panel and its output voltage level. Consequently, it is essential to track the generated power of the PV system and utilize the collected solar energy optimally. The aim of this paper is to simulate and control a grid-connected PV source by using an adaptive neuro-fuzzy inference system (ANFIS) and genetic algorithm (GA) controller. The data are optimized by GA and then, these optimum values are used in network training. The simulation results indicate that the ANFIS-GA controller can meet the need of load easily with less fluctuation around the maximum power point (MPP) and can increase the convergence speed to achieve the MPP rather than the conventional method. Moreover, to control both line voltage and current, a grid side P/Q controller has been applied. A dynamic modeling, control and simulation study of the PV system is performed with the Matlab/Simulink program.
出处 《Frontiers in Energy》 SCIE CSCD 2015年第3期322-334,共13页 能源前沿(英文版)
关键词 photovoltaic system maximum power point(MPP) adaptive neuro-fuzzy inference system (ANFIS) genetic algorithm (GA) photovoltaic system, maximum power point(MPP), adaptive neuro-fuzzy inference system (ANFIS),genetic algorithm (GA)
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  • 1International Electrotechnical Commission. Characteristics of the Utility Interface for Photovoltaic (PV) Systems[Report of IEC 61727][R].2002.
  • 2Blaabjerg F,Chen Z,Kjaer S. Power electronics as efficient interface in dispersed power generation systems[J].IEEE Transactions on Power Electronics,2004,(05):1184-1194.doi:10.1109/TPEL.2004.833453.
  • 3Najet R,Belgacem B G,Hasnaoui O,Rachid D. Identification of parameters of a PV module from Ⅰ-Ⅴ characteristics tacken under different solar radiation[A].Monastir,Tunisia,2010.
  • 4Masoum M A S,Dehbonei H,Fuchs E F. Theoretical and experimental analysis of photovoltaic systems with voltage and current-based maximum power-point tracking[J].IEEE Transactions on Energy Conversion,2002,(04):514-522.
  • 5Kim I S,Kim M B,Youn M J. New maximum power point tracker using sliding mode observer for estimation of solar array current in the grid connected photovoltaic system[J].IEEE Transactions on Industrial Electronics,2006,(04):1027-1035.doi:10.1109/TIE.2006.878331.
  • 6Hasnaoui O,Salem I,Mimounu M F,Dhifaoui R. Modelling and Control of a Variable Speed Wind Energy Conversion Turbine driven Synchronous Generator Connected to the Grid[A].Stevens Point,USA:World Scientific and Engineering Academy and Society (WSEAS),2006.
  • 7Cecati C,Dell'Aquila A,Liserre M. A novel three-phase singlestage distributed power inverter[J].IEEE Transactions on Power Electronics,2004,(05):1226-1233.doi:10.1109/TPEL.2004.835112.
  • 8Kim I S. Robust maximum power point tracker using sliding mode controller for three phase grid connected photovoltaic system[J].Journal of Solar Energy Engineering,2007,(03):405-414.
  • 9Carletti R L,Lopes C G,Barbosa P G. Active & reactive power control scheme for a grid-connected photovoltaic generation system based on VSI with selective harmonic eliminations[A].Recife,Brazil,2005.129-134.
  • 10Cavalcanti M C,Azevedo G M S,Oliveira K C,Amaral B A,Neves F A S,Lins Z D. A grid connected photovoltaic generation system with harmonic and reactive power compensation[A].Recife,Brazil,2005.135-140.

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