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Study of a renewable energy sources-based smart grid. requirements, targets and solutions

机译:基于可再生能源的智能电网研究。需求,目标和解决方案

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More and more often governments around the world drive their efforts on displacing their actual electricity production models which consist on large power plants based on fossil fuels, towards other ones based on renewable energy source, usually smaller and geographically distributed. Two main reasons justify this movement: 1-the increasingly environmental problem derived from the use of fossil fuels and 2-the long distances they must be overcome to transport the electricity from the production point to consumption area. In this paper authors propose a distributed power generation system with interconnected loads (microgrid), made up by solar panels (PV), wind turbines (WT), a batteries bank (BAT) and a modular fuel cell system. In addition, an electrolyzer (load) will convert the electrical energy into chemical energy with the use of hydrogen like energy vector. To put in work this microgrid, it is needed a proper energy management strategy which takes into account both technical and economical parameters (smart grid). This paper analyses the hierarchical structure of the proposed smart grid, starting from primary sources, and finishing with the whole plant. Furthermore it is proposed and tested an energy management strategy which satisfies smart grid requirements at time that accomplishes the fixed targets.
机译:世界各地的政府越来越多地努力将其实际的电力生产模型(包括基于化石燃料的大型发电厂)转变为其他基于可再生能源(通常规模较小且地理分布)的发电模型。造成这种运动的原因有两个:一是使用化石燃料引起的环境问题日趋严重;二是将电力从生产点输送到消费区必须克服距离较远的问题。在本文中,作者提出了一种具有相互连接的负载(微电网)的分布式发电系统,该系统由太阳能电池板(PV),风力涡轮机(WT),电池组(BAT)和模块化燃料电池系统组成。另外,电解器(负载)将利用像能量矢量一样的氢将电能转换为化学能。为了使这种微电网投入使用,需要一种适当的能源管理策略,该策略应同时考虑技术和经济参数(智能电网)。本文分析了拟议的智能电网的层次结构,从主要来源开始,直至整个工厂。此外,提出并测试了一种能源管理策略,该策略可以在满足固定目标的同时满足智能电网的要求。

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