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Modeling renewable energy production for base stations power supply

机译:模拟基站电源的可再生能源生产

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Cellular access networks need to reduce their dependence on the grid, with the twofold objective to decrease operational cost and guarantee self-sustainability in case of grid unreliability. For doing so, an interesting possibility is to use renewable energy generators. The power supply system considered here consists of small units that power individual Base Stations (BSs) and are composed of solar renewable energy (RE) generators combined with energy storage units to sustain the BS operation during night or low production periods. The simulation and design of the power supply system require the availability of simple, yet accurate, models of the RE production. In this paper, we propose a stochastic model of the daily RE production that is represented by a single random variable, characterized by the mean value and the variance, that multiplies a shape function describing the production in the timeframe of a day. Our results show that the model, despite being simple, is accurate in predicting the system performance. Moreover, our simulations reveal that, while the mean value of production is fundamental to discriminate an insufficient-production from a sufficient-production regime, the variance of the production has an important impact on the system performance. Higher values of the variance imply a reduced BS self-sufficiency; in these cases, larger PV panels are required to guarantee a sufficient RE production regime.
机译:蜂窝接入网需要减少它们对网格的依赖性,其双重目的是降低运营成本并在网格不可靠的情况下保证自我可持续性。为此,一种有趣的可能性是使用可再生能源发电机。这里考虑的电源系统由为单个基站(BS)供电的小型单元组成,由太阳能可再生能源(RE)发电机与储能单元组合而成,以在夜间或低产量时段维持BS的运行。电源系统的仿真和设计需要可再生能源生产的简单但准确的模型。在本文中,我们提出了一个每日可再生能源生产的随机模型,该模型由一个随机变量表示,该变量以均值和方差为特征,该模型乘以描述一天时间范围内生产的形状函数。我们的结果表明,该模型尽管简单,但在预测系统性能方面是准确的。此外,我们的模拟显示,虽然生产的平均值是区分生产不足和生产充足的基础,但是生产的差异对系统性能有重要影响。较高的方差值意味着降低了BS自给自足;在这种情况下,需要使用更大的光伏面板来保证足够的可再生能源生产制度。

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