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A Novel Straightforward Unit Commitment Method for Large-Scale Power Systems

机译:大型电力系统的简单直接机组组合方法

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摘要

In this paper, a novel fast straightforward method for thermal generating units scheduling is presented. The new method decomposes the solution of the unit commitment (UC) problem into three subproblems. In the first subproblem, the quadratic cost functions of units are linearized and hourly optimum solution of UC is obtained considering all constraints except the minimum up/down time constraints. In the second subproblem, the minimum up/down times are enforced through a novel optimization process by modifying the schedule obtained in the first step. Finally, in the third subproblem, the extra reserve is minimized using a new decommitment algorithm. For testing the proposed method, the conventional ten-unit test system and its multiples with 24-h scheduling horizon have been solved. Comparison of results with those of other methods justifies the effectiveness of the proposed method with regards to minimizing both the total operation cost and execution time. Also, the IEEE 118-bus system with 54 units and a practical large-scale system including 358 units have been analyzed to exhibit the superiority of the proposed approach.
机译:在本文中,提出了一种新颖快速的热力机组调度方法。新方法将单元承诺(UC)问题的解决方案分解为三个子问题。在第一个子问题中,单位的二次成本函数被线性化,并且考虑了除最小上/下时间约束之外的所有约束,从而获得了每小时的UC最优解。在第二个子问题中,通过修改第一步中获得的计划,通过新颖的优化过程来强制执行最小上/下时间。最后,在第三个子问题中,使用新的去授权算法将额外的保留减到最少。为了测试所提出的方法,解决了常规的十单元测试系统及其具有24小时调度范围的倍数。将结果与其他方法的结果进行比较,证明了所建议方法在最小化总运行成本和执行时间方面的有效性。此外,已经分析了具有54个单元的IEEE 118总线系统和包括358个单元的实际大规模系统,以展示所提出方法的优越性。

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