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An Approach for Integrated Generation and Transmission Maintenance Scheduling Considering N-1 Contingencies

机译:考虑N-1突发事件的发电与输电维修一体化调度方法。

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This paper presents an approach for integrated generation and transmission maintenance scheduling model (IMS) that takes into consideration N-1 contingencies. The objective is to maximize the maintenance preference of facility owners while satisfying N-1 security and other constraints. To achieve this goal, Benders decomposition is employed to decompose the problem into a master problem and several sub-problems. A Relaxation Induced (RI) algorithm is proposed to efficiently solve the large mixed integer programming (MIP) master problem. This algorithm is based on the solution of the linear relaxed problem. It is demonstrated that the proposed algorithm can efficiently reach a near-optimal solution that is usually satisfactory. If this near-optimal solution is not acceptable, it is used as the initial solution to fast start the solution of the original IMS problem. The performance of the proposed method is demonstrated using a modified version of the IEEE 30-bus system and a model of the power system of a Chinese province. Case studies show that the proposed algorithm can improve the computational efficiency by more than an order of magnitude.
机译:本文提出了一种综合发电和输电维护调度模型(IMS)的方法,该方法考虑了N-1突发事件。目的是在满足N-1安全性和其他约束的同时,最大化设施所有者的维护偏好。为了实现此目标,使用Benders分解将问题分解为一个主要问题和几个子问题。提出了一种松弛诱导(RI)算法,以有效解决大型混合整数规划(MIP)主问题。该算法基于线性松弛问题的解决方案。证明了所提出的算法可以有效地达到通常令人满意的近似最佳解决方案。如果此最佳解决方案不可接受,则将其用作初始解决方案以快速启动原始IMS问题的解决方案。通过使用IEEE 30总线系统的修改版本和中国省级电力系统的模型,证明了该方法的性能。案例研究表明,该算法可以将计算效率提高一个数量级以上。

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