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A risk-averse security-constrained optimal power flow for a power grid subject to hurricanes

机译:遭受飓风袭击的电网的风险规避安全约束的最优潮流

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摘要

During the course of a hurricane, many components in the power grid may be affected. In particular, loss of transmission lines and/or towers due to excess wind conditions may adversely impact the operation of the grid and force a re-dispatch of the generation units. However, large generation units have considerable ramp rates and usually are not able to vary their outputs fast enough. This might lead to temporary imbalances between load and generation that, if not resolved quickly, may result in more severe cascading failures. When a large scale disturbance such as a hurricane is forthcoming it is most beneficial to proactively dispatch the grid so as to minimize the likelihood of future failures. To assist the operator in proactively responding to an imminent event such as a hurricane, a risk-averse generation dispatch model is presented in this paper based on security-constrained AC optimal power flow. To perform (N-k) contingency analysis, a geospatial model of the power grid is developed that allows for the computation of outage probabilities of the transmission lines affected by the hurricane wind fields. Statistical analysis has been performed on the historical data on the past hurricane events in the US in order to simulate realistic hurricane scenarios. The IEEE 118-bus test system has been mapped onto the map of the state of Texas in order to provide a realistic test bed. The proposed algorithm takes into account the cost of operation, as well as the risks associated with overload and over/undervoltage conditions. Moreover, it allows for preventive as well as corrective dispatch of the power grid.
机译:在飓风期间,电网中的许多组件可能会受到影响。特别地,由于过度的风力条件而导致的输电线路和/或塔架的损失可能不利地影响电网的运行并迫使发电单元的重新调度。但是,大型发电机组的斜率很高,通常无法足够快地改变其输出。这可能会导致负载和发电之间的暂时失衡,如果不能迅速解决,则可能导致更严重的级联故障。当即将发生大规模飓风等飓风时,主动调度电网以最大程度地降低未来发生故障的可能性是最有益的。为了帮助操作员主动响应飓风等即将发生的事件,本文基于安全受限的交流最优潮流,提出了一种规避风险的发电调度模型。为了执行(N-k)权变分析,开发了电网的地理空间模型,该模型可以计算受飓风场影响的输电线路的断电概率。为了模拟现实的飓风情景,已经对美国过去飓风事件的历史数据进行了统计分析。 IEEE 118总线测试系统已映射到德克萨斯州的地图上,以提供一个逼真的测试台。所提出的算法考虑了操作成本以及与过载和过压/欠压状况相关的风险。此外,它允许对电网进行预防性和纠正性调度。

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