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Annual coordinated generation and transmission maintenance scheduling considering network constraints and energy not supplied

机译:考虑网络约束和未提供能源的年度协调发电和传输维护计划

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Most generation and transmissionmaintenance scheduling (GTMS) packages consider preventive maintenance scheduling over a 1- or 2-year time horizon to lessen the total operation costs while fulfilling system energy requirements. This paper proposes a security-constrained model for the GTMS problem. For a more realistic study, system reliability indices such as amount of not supplied energy are taken into account. The impact of load curve on the GTMS problemis investigated by a penalty factor. Unlike some previous studies that consider a fixed period for all unit maintenance windows, here various maintenance windows are considered for the system that is more realistic. Considering the problem that contains integer variables and taking into account the proposed model that is based on optimal generation and maintenance costs, mixed integer programming is employed to obtain the most accurate results by branch-and-bound algorithm. An IEEE 24-bus reliability test system is employed for simulation and to show the accuracy of results. As demonstrated, system’s security and reliability constraints like penalty factor, transmission safety, and energy not supplied may affect GTMS and alter system maintenance and operation costs. These strategies may lead to increases in unit operation or maintenance costs while varying units and transmission maintenance scheduling. Copyright © 2014 JohnWiley & Sons, Ltd.
机译:大多数发电和传输维护计划(GTMS)软件包都考虑在1年或2年时间范围内进行预防性维护计划,以降低总运营成本,同时满足系统能源需求。本文为GTMS问题提出了一种安全约束模型。为了进行更实际的研究,应考虑系统可靠性指标,例如未提供的能量。负荷曲线对GTMS问题的影响通过惩罚因子进行研究。与以前的一些研究对所有单元维护窗口都考虑固定期限的研究不同,这里为系统考虑了各种维护窗口,这更为现实。考虑到包含整数变量的问题,并考虑了基于最佳生成和维护成本的建议模型,采用混合整数规划通过分支定界算法获得最准确的结果。采用IEEE 24总线可靠性测试系统进行仿真并显示结果的准确性。如图所示,系统的安全性和可靠性约束(例如惩罚因子,传输安全性和未提供的能源)可能会影响GTMS,并改变系统维护和运营成本。这些策略可能导致单元运行或维护成本增加,同时改变单元和变速器维护计划。版权所有©2014 JohnWiley&Sons,Ltd.

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