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Feasible Modified Subgradient Method for Solving the Thermal Unit Commitment Problem as a New Approach

机译:解决热机组承诺问题的可行改进次梯度法

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摘要

The Lagrangian relaxation- (LR-) based methods are commonly used to solve the thermal unit commitment (UC) problem which is an important subject in power system engineering. The main drawback of this group of methods is the difference between the dual and the primal solutions which gives some significant problems on the quality of the feasible solutions. In this paper, a new approach, feasible modified subgradient (F-MSG) method which does not require finding an unconstrained global minimum of the Lagrangian function and knowing an optimal value of the problem under consideration in order to update dual variables at the each iteration, is firstly used for solving the thermal UC problem. The major advantage of the proposed approach is that it guarantees the zero duality gap and convergence independently from the size of the problem. In order to discuss the advantages of this method, the four-unit Tuncbilek thermal plant, which is located in Kutahya region in Turkey, is chosen as a small test system. The numerical results show that F-MSG gives better solutions as compared to the standard LR method.
机译:基于拉格朗日松弛法(LR-)的方法通常用于解决热量单位承诺(UC)问题,这是电力系统工程中的重要课题。这组方法的主要缺点是对偶解和原始解之间的差异,这给可行解的质量带来了一些重大问题。在本文中,一种新的方法,可行的改进的次梯度(F-MSG)方法,该方法不需要找到拉格朗日函数的无约束全局最小值,也不需要知道所考虑问题的最佳值,以便在每次迭代时更新对偶变量,首先用于解决热UC问题。所提出的方法的主要优点是,它确保零对偶间隙和收敛独立于问题的大小。为了讨论此方法的优点,选择了位于土耳其库塔赫亚地区的四单元Tuncbilek热电厂作为小型测试系统。数值结果表明,与标准的LR方法相比,F-MSG提供了更好的解决方案。

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  • 来源
    《Mathematical Problems in Engineering》 |2010年第2期|p.14.1-14.11|共11页
  • 作者单位

    Department of Electrical and Electronics Engineering, Anadolu University, 26555 Eskisehir, Turkey;

    Department of Electrical and Electronics Engineering, Anadolu University, 26555 Eskisehir, Turkey;

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