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Renewable energy supply of refugee camps to decrease fuel consumption and CO2 emissions

机译:难民营的可再生能源供应,以减少燃料消耗和CO 2 排放

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Due to existing conflicts or natural disasters in many different parts of the world, refugee camps are established by different aid organizations in order to provide local humanitarian assistance. Nowadays, these camps are electrically supplied using diesel generators, which are not environmentally friendly and require huge amounts of not easily available fossil fuels. In this sense, Microgrids (MGs) may have an opportunity to provide efficient electrical energy including renewable energy resources. In this paper a refugee camp located in Juba, South Sudan was selected as simulation example. First, the proposed MG to replace the current refugee camp topology and to supply the required electric and heat power is presented. The MG here considered is composed of different commercially available technologies. An economic study of the benefit using this grid configuration is carried out in order to determine the fuel consumption savings due to the use of renewable energy resources based generation technologies. Then, the replacement of diesel by photovoltaic and wind generation results in a reduced system inertia which brings problems related to frequency stability. A control strategy derived from the equations of a synchronous machine is here used to operate converter-coupled units in order to improve the MG frequency stability.
机译:由于世界许多不同地区现有的冲突或自然灾害,不同的援助组织建立了难民营,以提供当地的人道主义援助。如今,这些营地使用柴油发电机供电,这不环保,并且需要大量不易获得的化石燃料。从这个意义上讲,微电网(MGs)可能有机会提供包括可再生能源在内的高效电能。本文选择了一个位于南苏丹朱巴的难民营作为模拟实例。首先,提出了拟议的MG来替代当前的难民营拓扑并提供所需的电力和热力。这里考虑的MG由不同的商业可用技术组成。为了确定由于使用基于可再生能源的发电技术而节省的燃料消耗,对使用这种电网配置的收益进行了经济研究。然后,用光伏发电和风力发电代替柴油会导致系统惯性降低,从而带来与频率稳定性有关的问题。为了提高MG频率稳定性,此处使用了从同步电机方程式导出的控制策略来操作转换器耦合的单元。

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