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Corrective Transmission Switching for N-1-1 Contingency Analysis

机译:用于N-1-1权变分析的纠正性传输切换

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System operators are required to serve the load in the most cost-effective way while maintaining the integrity of the system and heeding reliability requirements. In the day-ahead market, operators acquire reserves in an attempt to guarantee N-1 reliability; yet, reserve deliverability is not guaranteed. Prior research has shown that the use of transmission switching, or topology control, may help improve reserve deliverability. In this paper, transmission switching is used as a corrective mechanism to help the system achieve N-1-1 reliability, where not only has the system lost a single element, but also it experiences the loss of a second major element after an adjustment period. In an attempt to preserve N-1-1 reliability, for this paper, a day-ahead unit commitment model that acquires supplementary reserves is solved. The day-ahead market solution is then tested for N-1-1 reliability using contingency analysis models with and without transmission switching. The methodology can be employed at the day-ahead time stage to ensure the system has acquired sufficient supplemental reserves. The results demonstrate that not only can corrective transmission switching be beneficial post-contingency without inhibiting the ability to return to N-1 reliability, but it can also help obtain an N-1-1 reliable solution.
机译:在保持系统完整性和注意可靠性要求的同时,系统操作员需要以最具成本效益的方式为负载提供服务。在日前的市场中,运营商获得储备以试图保证N-1的可靠性。但是,不能保证储备的可交付性。先前的研究表明,使用传输切换或拓扑控制可能有助于提高备用容量。在本文中,传输切换被用作一种校正机制,以帮助系统实现N-1-1可靠性,不仅系统损失了一个要素,而且在调整期后还经历了第二个主要要素的损失。为了保持N-1-1的可靠性,本文解决了获取补充储备的超前单位承诺模型。然后使用具有和不具有传输切换的应变分析模型对日前市场解决方案的N-1-1可靠性进行测试。该方法可以在提前时间阶段使用,以确保系统已获得足够的补充储备。结果表明,不仅在不影响返回N-1可靠性的能力的情况下,正确的传输切换在事后应急中是有益的,而且还可以帮助获得N-1-1可靠的解决方案。

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