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Power System Reliability Evaluation Incorporating Dynamic Thermal Rating and Network Topology Optimization

机译:结合动态热额定值和网络拓扑优化的电力系统可靠性评估

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摘要

The electrical power grid is a critical infrastructure that plays a key role in supporting modern society. The reliability of power systems needs to be continuously maintained to deliver high-quality electric services. Due to the tremendous amounts of potential investment demanded for constructing new electricity transmission facilities, electric utilities need economical solutions that can enable them to supply electricity to their customers in a cost-effective and reliable way. Dynamic thermal rating (DTR) and network topology optimization (NTO) technologies aim to maximize the use of existing transmission assets and to provide flexible ways to enhance reliability of the power system. In this study, the DTR and NTO are incorporated into the power grid reliability assessment procedure using the sequential Monte Carlo simulation. Multiple case studies are carried out based on the modified IEEE RTS-79 and IEEE RTS-96 systems, accounting for long-term multiarea weather conditions. The numerical results indicate that with the incorporation of DTR and NTO, the reliability of power systems can be improved. The effect of these methods is especially significant for power grids with lower electricity delivery capabilities.
机译:电网是至关重要的基础设施,在支持现代社会中起着关键作用。电力系统的可靠性需要不断维护,以提供高质量的电力服务。由于建设新的输电设施需要大量潜在投资,因此电力公司需要经济的解决方案,以使它们能够以经济高效且可靠的方式向客户供电。动态热额定值(DTR)和网络拓扑优化(NTO)技术旨在最大程度地利用现有的传输资产,并提供灵活的方法来增强电力系统的可靠性。在这项研究中,使用顺序蒙特卡洛模拟将DTR和NTO纳入电网可靠性评估程序。基于修改后的IEEE RTS-79和IEEE RTS-96系统进行了多个案例研究,考虑了长期的多区域天气状况。数值结果表明,通过结合DTR和NTO,可以提高电力系统的可靠性。这些方法的效果对于输电能力较低的电网尤其重要。

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