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Design and Optimization of Hybrid Micro-Grid System

机译:混合微电网系统的设计与优化

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Hybrid microgrid systems (HMGS) comprise of several parallel connected distributed resources with electronically controlled strategies, which are capable to operate in both islanded and grid connected mode. HMGS based on renewable energy sources (RES) is the cost-effective option for solving the power supply problem in remote areas, which are located far from grids. In this paper, the wind and solar meteorological data for Sundarban (India) station are used to design Islanded HMGS for providing necessary electricity. Cost effectiveness and system reliability are major factors considered for designing HMGS to achieve better power management scheme. Particle Swarm Optimization (PSO) scheme is applied to identify the sizing of wind turbines (WT), photovoltaic (PV) module, battery energy storage system (BESS) and diesel generator, and find the optimal configuration of HMGS system. The design and optimal operation of HMGS system has been developed and validated through MATLAB software.
机译:混合微电网系统(HMGS)包括具有电子控制策略的几个并行连接的分布式资源,能够在岛立和网格连接模式下操作。基于可再生能源(RES)的HMGS是解决远离网格的偏远地区电源问题的成本效益。在本文中,Sundarban(印度)站的风和太阳气象数据用于设计岛立的HMG,以提供必要的电力。成本效益和系统可靠性是设计HMG以实现更好的电源管理方案的主要因素。应用粒子群优化(PSO)方案用于识别风力涡轮机(WT),光伏(PV)模块,电池储能系统(BESS)和柴油发电机的尺寸,并找到HMGS系统的最佳配置。 HMGS系统的设计和最佳操作已通过MATLAB软件开发和验证。

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