面向延迟容忍用户的高效可再生能源分配算法

M. Neely, Arash Saber Tehrani, A. Dimakis
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引用次数: 206

摘要

我们研究了电力市场中可再生能源分配给灵活消费者的问题。我们假设有一个可再生能源供应商,根据时变(可能不可预测)的供应过程提供能源。发电厂必须在指定的延迟窗口内为消费者服务,如果自己的供应不足以满足最后期限,就会产生从其他(可能是不可再生的)来源获取能源的成本。我们提出了两个随机优化问题:第一个寻求最小化使用其他资源的时间平均成本(从而争取最有效地利用可再生能源)。第二种方法允许可再生能源为其服务动态设定价格,并寻求最大化由此产生的平均利润。通过李亚普诺夫优化技术解决了这些问题。我们的结果算法不需要时变供需过程的统计知识,并且对任意样本路径变化具有鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient Algorithms for Renewable Energy Allocation to Delay Tolerant Consumers
We investigate the problem of allocating energy from renewable sources to flexible consumers in electricity markets. We assume there is a renewable energy supplier that provides energy according to a time-varying (and possibly unpredictable) supply process. The plant must serve consumers within a specified delay window, and incurs a cost of drawing energy from other (possibly non-renewable) sources if its own supply is not sufficient to meet the deadlines. We formulate two stochastic optimization problems: The first seeks to minimize the time average cost of using the other sources (and hence strives for the most efficient utilization of the renewable source). The second allows the renewable source to dynamically set a price for its service, and seeks to maximize the resulting time average profit. These problems are solved via the Lyapunov optimization technique. Our resulting algorithms do not require knowledge of the statistics of the time-varying supply and demand processes and are robust to arbitrary sample path variations.
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