A constraint logic programming algorithm for solving thermal unit commitment problem

Hong-Tzer Yang, Kun-Yuan Huang, C. Huang
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Abstract

This paper presents a constraint logic programming (CLP) algorithm to solve the thermal unit commitment (UC) problem. The CLP algorithm provides an efficient and flexible solution method for the UC problem. Constraints satisfaction techniques are used to prune the search space a priori. The solutions that can not appear as a feasible one are removed from further evaluation. These techniques propagate the constraints as much as possible, and assume the values of some variables of the unit on/off schedule until the infeasible solutions are excluded. After pruning the infeasible solutions, branch and bound approach is then employed to find the minimum operation cost from the feasible domains. The algorithm has been implemented to solve the practical Taiwan power 38-unit thermal system UC problem. Results are compared to those of the Lagrangian relaxation (LR) method to demonstrate the feasibility and effectiveness of the proposed approach to solving the thermal UC problem.
一种求解热机组投入问题的约束逻辑规划算法
提出了一种约束逻辑规划(CLP)算法来求解热力机组调度问题。CLP算法为UC问题提供了一种高效、灵活的求解方法。约束满足技术用于先验地修剪搜索空间。不能作为一个可行的解决方案被排除在进一步的评估之外。这些技术尽可能多地传播约束,并假设机组开/关计划的一些变量的值,直到排除不可行的解决方案。在对不可行解进行剪枝后,采用分支定界法在可行域内求出最小的运行代价。该算法已用于解决台湾电力38机组热力系统的UC问题。结果与拉格朗日松弛(LR)方法的结果进行了比较,证明了该方法解决热UC问题的可行性和有效性。
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