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{"title":"Model Predictive Control of Three Phase Inverter for PV Systems","authors":"Irtaza M. Syed, Kaamran Raahemifar","volume":106,"journal":"International Journal of Energy and Power Engineering","pagesStart":1188,"pagesEnd":1194,"ISSN":"1307-6892","URL":"https:\/\/publications.waset.org\/pdf\/10002756","abstract":"This paper presents a model predictive control (MPC)\r\nof a utility interactive three phase inverter (TPI) for a photovoltaic\r\n(PV) system at commercial level. The proposed model uses phase\r\nlocked loop (PLL) to synchronize the TPI with the power electric\r\ngrid (PEG) and performs MPC control in a dq reference frame. TPI\r\nmodel consists of a boost converter (BC), maximum power point\r\ntracking (MPPT) control, and a three-leg voltage source inverter\r\n(VSI). The operational model of VSI is used to synthesize the\r\nsinusoidal current and track the reference. The model is validated\r\nusing a 35.7 kW PV system in Matlab\/Simulink. Implementation\r\nresults show simplicity and accuracy, as well as reliability of the\r\nmodel.","references":"[1] R. J. Wai, C. Y. Lin, Y. C. Huang, and Y. R. Chang, \u201cDesign of highperformance\r\nstand-alone and grid-connected inverter for distributed\r\ngeneration applications,\u201d IEEE Trans. Ind. Electron., vol. 60, no. 4,\r\n(2013).\r\n[2] C. Trujillo, D. Velasco, G. Garcera, E. Figueres, and J. Guacaneme,\r\n\u201cReconfigurable control scheme for a PV micro-inverter working in both\r\ngrid-connected and island modes,\u201d IEEE Trans. Ind. Electron., vol. 60,\r\nno. 4, (2013).\r\n[3] M. Monfared, S. Golestan, and Josep M. Guerrero, \"Analysis, Design,\r\nand Experimental Verification of a Synchronous Reference Frame\r\nVoltage Control for Single-Phase Inverters\" IEEE Trans. Ind. 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