Multistage stochastic programming model for electric power capacity expansion problem

被引:0
|
作者
Takayuki Shiina
John R. Birge
机构
[1] Central Research Institute of Electric Power Industry,Communication and Information Research Laboratory
[2] McCormick School of Engineering and Applied Science,Department of Industrial Engineering and Management Sciences
[3] Northwestern University,undefined
关键词
stochastic programming; optimization under uncertainty; electric power capacity expansion problem; L-shaped method; block separable recourse;
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摘要
This paper is concerned with power system expansion planning under uncertainty. In our approach, integer programming and stochastic programming provide a basic framework. We develop a multistage stochastic programming model in which some of the variables are restricted to integer values. By utilizing the special property of the problem, called block separable recourse, the problem is transformed into a two-stage stochastic program with recourse. The electric power capacity expansion problem is reformulated as the problem with first stage integer variables and continuous second stage variables. We propose an L-shaped algorithm to solve the problem.
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页码:379 / 397
页数:18
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