随机对偶动态规划的条件切割

IF 2.6 Q2 OPERATIONS RESEARCH & MANAGEMENT SCIENCE
W. van Ackooij , X. Warin
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引用次数: 7

摘要

多阶段随机程序出现在工程中的许多应用中,每当需要对一组库存或库存进行估值时。在水力管理中,一组级联水库链的季节性储存评估就是这种情况。一种流行的方法是随机对偶动态规划(SDDP),特别是当问题的维数较大且动态规划不再是一种选择时。SDDP的通常假设是不确定性是阶段独立的,从实际的角度来看,这是高度限制性的。如果可能,通常的补救措施是增加状态空间,以解释某种程度的依赖性。在应用程序中,这可能是不可能的,或者它可能会过多地增加状态空间。在本文中,我们提出了一种基于在动态规划方程中与条件期望相关的SDDP-cuts中保持函数依赖的替代方案。我们的方法基于数学金融中流行的方法,由于优越的数值性能,它逐渐取代了情景树。我们在一组数值示例上展示了将这种处理不确定性和SDDP依赖关系的方法结合起来的兴趣。我们的方法很容易在开源软件包StOpt中获得。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On conditional cuts for stochastic dual dynamic programming

Multistage stochastic programs arise in many applications from engineering whenever a set of inventories or stocks has to be valued. Such is the case in seasonal storage valuation of a set of cascaded reservoir chains in hydro management. A popular method is stochastic dual dynamic programming (SDDP), especially when the dimensionality of the problem is large and dynamic programming is no longer an option. The usual assumption of SDDP is that uncertainty is stage-wise independent, which is highly restrictive from a practical viewpoint. When possible, the usual remedy is to increase the state-space to account for some degree of dependency. In applications, this may not be possible or it may increase the state-space by too much. In this paper, we present an alternative based on keeping a functional dependency in the SDDP—cuts related to the conditional expectations in the dynamic programming equations. Our method is based on popular methodology in mathematical finance, where it has progressively replaced scenario trees due to superior numerical performance. We demonstrate the interest of combining this way of handling dependency in uncertainty and SDDP on a set of numerical examples. Our method is readily available in the open-source software package StOpt.

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来源期刊
EURO Journal on Computational Optimization
EURO Journal on Computational Optimization OPERATIONS RESEARCH & MANAGEMENT SCIENCE-
CiteScore
3.50
自引率
0.00%
发文量
28
审稿时长
60 days
期刊介绍: The aim of this journal is to contribute to the many areas in which Operations Research and Computer Science are tightly connected with each other. More precisely, the common element in all contributions to this journal is the use of computers for the solution of optimization problems. Both methodological contributions and innovative applications are considered, but validation through convincing computational experiments is desirable. The journal publishes three types of articles (i) research articles, (ii) tutorials, and (iii) surveys. A research article presents original methodological contributions. A tutorial provides an introduction to an advanced topic designed to ease the use of the relevant methodology. A survey provides a wide overview of a given subject by summarizing and organizing research results.
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