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A genetic algorithm based battery model for Stand Alone Radio Base Stations powering

机译:基于遗传算法的独立无线电基站供电电池模型

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This paper focuses on energy storage devices to be used in Stand Alone and Radio Base Stations powering, where performance analysis of different storage systems must be made taking into account the typical operating conditions. A Lithium Polymer (LiPo) cell model whose parameters have been identified through a combination of least mean square and genetic algorithms has been used to simulate the behavior of the Energy Storage System (ESS) used in a photovoltaic Stand Alone Power Systems (SAPS). Two different simulations are proposed. In the first simulation the ESS is dimensioned to be able to power the load for a five days period. In the second simulation the ESS is dimensioned to work as an energy buffer for a period of 24 hours, storing exceeding photovoltaic energy during sunny hours to furnish it back to the load during dark hours.
机译:本文重点介绍了用于独立和无线电基站供电的能量存储设备,在这些设备中,必须考虑典型的工作条件来对不同的存储系统进行性能分析。锂聚合物(LiPo)电池模型的参数已通过最小均方和遗传算法的组合进行了识别,已被用于模拟光伏独立发电系统(SAPS)中使用的储能系统(ESS)的行为。提出了两种不同的模拟。在第一个模拟中,ESS的尺寸可以在五天内为负载供电。在第二个模拟中,ESS的尺寸设置为可充当能量缓冲达24小时,在晴天期间存储超过的光伏能量,以在黑暗时段将其提供给负载。

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