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Minimum cost solar power systems for LTE macro base stations

机译:LTE宏基站的最低成本太阳能系统

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This paper proposes an algorithm for the identification of the minimum cost solution over a 10 year time horizon to power an LTE (Long-Term Evolution) macro base station, using a photovoltaic solar panel, a set of batteries, and optionally also a secondary power source, which can be a connection to a (possibly unreliable) power grid, or a small Diesel generator. The optimization is formalised as an Mixed Integer Programming (MIP) problem, which, after linearization, can be solved with CPLEX. A heuristic algorithm is also proposed, with the objective of decreasing the computational complexity of the optimization. Numerical results show that a hybrid solar-grid (or solar-diesel) power system saves a significant fraction of the total cost, compared to a pure solar system, and to the traditional power-grid system, over the investigated 10-year period, in a south European city, like Torino in Italy, as well as in a location close to the tropic, like Aswan in Egypt. Our proposed heuristic algorithm can be used to obtain a solution within 10-20% of the optimum, at a computational speed 200 times faster than the MIP solution. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文提出了一种算法,用于识别使用光伏太阳能电池板,一组电池以及可选的二次电源为LTE(长期演进)宏基站供电的10年时间范围内的最低成本解决方案电源,可能是与(可能是不可靠的)电网的连接,也可能是小型柴油发电机。该优化形式化为混合整数编程(MIP)问题,在线性化之后,可以使用CPLEX解决。还提出了一种启发式算法,其目的是降低优化的计算复杂度。数值结果表明,在研究的10年中,与纯太阳能系统和传统电网系统相比,混合太阳能电网(或太阳能柴油)发电系统节省了总成本的相当一部分,在南部城市,例如意大利的都灵,以及靠近热带地区的城市,例如埃及的阿斯旺。我们提出的启发式算法可用于获得最佳值的10-20%之内的解决方案,其计算速度比MIP解决方案快200倍。 (C)2016 Elsevier B.V.保留所有权利。

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