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Optimization and operation of a renewable energy based pv-fc-micro grid using homer

机译:使用Homer优化和运行基于可再生能源的PV-FC-微电网

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Distributed generation using hybrid systems is one of the new trends of power generation. These distributed generating units are integrated to form a micro grid to serve the loads among the locality, which is in connection with the utility grid for power exchange. These DGS can be operated at two modes grid connected mode & stand alone mode. Distributed generators can provide high reliability by providing on-site generation. Distributed generation has advantages like elimination of transmission losses, utilization of green fuels and reduction of load demand upon the utility grid resulting in reduction of fossil fuel consumption. Many DGSs are available like PV cells, wind turbine, diesel and small hydro systems. This paper optimizes the operation of PV-FC system with a storage device under DC grid connected mode and provides simulation results. There are many techniques available for sizing of the systems which are complicated in designing, optimizing and also not provides accurate simulation results. HOMER is software used for the simulation and analysis of the hybrid system which simplifies the task of evaluating designs. HOMER's optimization and sensitivity analysis algorithms make it easier to evaluate possible number of design configurations. It provides highly feasible simulation results compared to the other sizing techniques.
机译:使用混合动力系统的分布式发电是发电的新趋势之一。这些分布式发电单元被集成以形成微电网,以服务当地的负载,该微电网与公用电网连接以进行电力交换。这些DGS可以在两种模式下并网运行和独立运行。分布式发电机可通过提供现场发电来提供高可靠性。分布式发电具有诸如消除传输损失,利用绿色燃料以及减少公用电网上的负荷需求等优点,从而减少了化石燃料的消耗。许多DGS可用,例如光伏电池,风力涡轮机,柴油和小型水力系统。本文以直流并网模式优化了带存储设备的PV-FC系统的运行,并提供了仿真结果。有许多技术可用于确定系统的大小,这些技术设计,优化很复杂,并且无法提供准确的仿真结果。 HOMER是用于混合系统的仿真和分析的软件,可简化评估设计的任务。 HOMER的优化和灵敏度分析算法使评估可能的设计配置数量变得更加容易。与其他上浆技术相比,它提供了高度可行的仿真结果。

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