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Evaluating the impact of geographic distribution of photovoltaic self-consumption on energy losses

机译:评估光伏自耗地理分布对能量损失的影响

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Photovoltaic (PV) self-consumption concept has emerged as a sustainable and economically viable alternative to save electricity provided by electric utilities. There are several concerns about the massive deployment of PV self-consumption installations. One of them is the influence of such installations on energy losses. Several research works have indicated that PV self-consumption installations reduce or increase energy losses depending on their penetration level. These research works use a uniform geographic distribution of PV self-consumption installations. However, rural areas are more likely to have a higher PV self-consumption penetration rate than urban areas and so, a uniform distribution may not be a proper approach. This paper proposes a methodology with different levels of geographic distribution to evaluate this issue. This methodology has been applied to the electric network of Murcia (Spain). Simulation results show that there is a significant influence of geographic concentration or dispersion of PV self-consumption systems on energy losses.
机译:光伏(PV)自我消费概念已成为可持续且经济上可行的替代方案,以节省电力公用事业提供的电力。关于PV自耗装置的大规模部署有几个问题。其中一个是这种装置对能量损失的影响。几项研究工作表明,PV自耗装置根据其渗透水平来减少或提高能量损失。这些研究作品使用光伏自耗装置的均匀地理分布。然而,农村地区更有可能具有比城市地区更高的光伏自我消费渗透率,因此,统一的分布可能不是一种适当的方法。本文提出了一种不同水平的地理分布方法来评估这个问题。该方法已应用于穆尔西亚的电网(西班牙)。仿真结果表明,光伏自耗系统对能量损失的地理浓度或分散有显着影响。

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