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Optimization analysis for hydro pumped storage and natural gas accumulation technologies in the Argentine Energy System

机译:阿根廷能源系统中水泵储存与天然气积累技术的优化分析

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Globally, there is a growing interest in energy storage systems technologies due to the effects they have on electric power systems. In this field, this paper presents a novel mathematical model that assets an objective quantification of the impact of main energy storage systems on a large scale electric power system. The model is developed to analyze the storage systems by considered real and simulated situations. The model is obtained by applying linearization techniques to several system constraints. In order to achieve a complete study, it will be necessary to consider the relationships among power systems, storage systems, and fuel supplies. It allows ob-taining more real solutions. The system selected for the study is the Argentine Storage System, composed mainly by the pumped energy storage technology and the natural gas storage system through pipelines. Five scenarios are studied. According to the obtained results, pumped storage system constitutes a reserve of 0.4% of the total generated power. The storage of natural gas allows cost reductions of up to 3% with an average of 207 MMm(3). The methodology of how extending the proposed model to all test cases is also included.
机译:在全球范围内,由于它们对电力系统的影响,对能量存储系统技术的兴趣日益增长。在该领域,本文提出了一种新颖的数学模型,可以在大规模电力系统上资产主能储存系统的影响。开发了该模型以通过考虑真实和模拟的情况来分析存储系统。通过将线性化技术应用于几个系统约束来获得该模型。为了实现完整的研究,有必要考虑电力系统,存储系统和燃料供应之间的关系。它允许更真实的解决方案。选择用于研究的系统是阿根廷存储系统,主要由泵送的能量存储技术和天然气存储系统通过管道组成。研究了五种情况。根据所得的结果,泵送存储系统构成了总产生功率的0.4%的储备。天然气的储存允许成本降低高达3%,平均为207毫米(3)。还包括将所提出的模型延伸到所有测试用例的方法。

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