Combining cooperation and storage for the integration of renewable energy in smart grids

S. Lakshminarayana, Tony Q. S. Quek, H. Poor
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引用次数: 11

Abstract

Two different techniques for the integration of renewable energy in smart grid systems are considered. The first is storage, which smooths the fluctuations of the renewable energy generation across time. The second is the concept of distributed generation combined with cooperation by exchanging energy among the distributed sources. This technique leads to energy aggregation from diverse sources, which averages out the variation in the energy production across space. The trade-off present between the two techniques is analyzed, and the optimal combination of storage and cooperation to achieve a certain grid performance is investigated. The problem is formulated as a stochastic optimization problem with the objective of minimizing the time average cost of energy exchange within the grid. First, an analytical model of the optimal cost is provided by investigating the steady state of the system for some specific scenarios. Then, an algorithm to solve the cost minimization problem using the technique of Lyapunov optimization is developed. The algorithm is implemented on the renewable energy data provided by National Renewable Energy Laboratory (NREL) of the United States. The results show that in the presence of limited storage devices, the grid can benefit greatly from cooperation, whereas in the presence of large storage, cooperation does not yield much benefit.
合作与存储相结合,实现可再生能源在智能电网中的整合
考虑了智能电网系统中可再生能源集成的两种不同技术。首先是存储,它平滑了可再生能源发电在时间上的波动。二是分布式发电的概念与分布式电源之间的能量交换合作相结合。这种技术导致来自不同来源的能量聚集,从而平均了空间中能量产生的变化。分析了两种技术之间存在的权衡,并研究了实现一定电网性能的存储和协作的最佳组合。该问题被表述为一个随机优化问题,其目标是最小化电网内能量交换的时间平均成本。首先,通过研究系统在某些特定情况下的稳态,给出了最优成本的分析模型。然后,提出了一种利用李亚普诺夫优化技术求解成本最小化问题的算法。该算法在美国国家可再生能源实验室(NREL)提供的可再生能源数据上实现。结果表明,在存储设备有限的情况下,电网可以从合作中获得很大的收益,而在存储设备较大的情况下,合作并不能产生很大的收益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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