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Design and control of LCL filter interfaced grid connected solar photovoltaic (SPV) system using power balance theory
Affiliation:1. Graduate School of Life Science and Systems Engineering, Green Electronics Division, Kyushu Institute of Technology, Kitakyushu 808-0196, Japan;2. Electrical Engineering Department, Delhi Technological University (formerly DCE), Delhi 110042, India;1. Dept. of Engineering Sciences, Faculty of Engineering and Science, University of Agder (UiA), N-4898, Grimstad, Norway;2. Smart Grid and Renewable Energy, Faculty of Engineering and Sceince, University of Agder, N-4879, Grimstad, Norway;1. School of Electrical Engineering, Shandong University, Jinan 250061, China;2. Department of Electrical Engineering, Jouf University, Sakaka, Saudi Arabia
Abstract:In this paper solar photovoltaic (SPV) system connected to the utility grid is designed and simulated. The utility grid and SPV system are coupled with current controlled voltage source converter (VSC) and LCL filter. The design of LCL filter, MPPT algorithm and power quality improvements are discussed and simulation results are shown for the performance analysis of grid-coupled PV system under different load condition. The system is controlled through power balance theory method. The principle behind the control implementation is to evacuate the solar power generated during the daytime and the reactive power demand for the load should be supplied by the PV. The grid coupled system consists of SPV system, dc–dc boost converter, maximum power point tracking (MPPT), voltage source converter (VSC), LCL filter, different loads and three phase utility grid. This system is capable of eliminating harmonic and load balancing by supplying unbalanced current from the PV as a compensator. The system is simulated with 10 kW SPV array using indirect current control scheme.
Keywords:Solar photovoltaic (SPV)  Maximum power point tracking (MPPT)  Voltage source converter (VSC)  Unity power factor (UPF)  LCL filter  Electromagnetic interference (EMI)
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