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Power Grid Reliability Evaluation Considering Wind Farm Cyber Security and Ramping Events

机译:电网可靠性评估考虑风电场网络安全和斜坡事件

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摘要

The cybersecurity of wind farms is an increasing concern in recent years, and its impacts on the power system reliability have not been fully studied. In this paper, the pressing issues of wind farms, including cybersecurity and wind power ramping events (WPRs) are incorporated into a new reliability evaluation approach. Cyber−physical failures like the instantaneous failure and longtime fatigue of wind turbines are considered in the reliability evaluation. The tripping attack is modeled in a bilevel optimal power flow model which aims to maximize the load shedding on the system’s vulnerable moment. The time-varying failure rate of wind turbine is approximated by Weibull distribution which incorporates the service time and remaining life of wind turbine. Various system defense capacities and penetration rates of wind power are simulated on the typical reliability test system. The comparative and sensitive analyses show that power system reliability is challenged by the cybersecurity of wind farms, especially when the installed capacity of wind power continues to rise. The timely patching of network vulnerabilities and the life management of wind turbines are important measures to ensure the cyber−physical security of wind farms.
机译:近年来,风电场的网络安全是一个越来越多的问题,并且没有完全研究其对电力系统可靠性的影响。本文纳入了风电场的压迫问题,包括网络安全和风力升温事件(WPRS)被纳入新的可靠性评估方法。在可靠性评估中考虑了风力涡轮机的瞬时故障和长时间疲劳的网络物理故障。跳闸攻击是在彼得最佳的功率流量模型中建模的,旨在最大限度地提高系统脆弱时刻的负载脱落。通过Weibull分布近似风力涡轮机的时变故障率,其包括风力涡轮机的服务时间和剩余寿命。在典型的可靠性测试系统上模拟了各种系统防御能力和风电的渗透率。比较和敏感的分析表明,电力系统的网络安全性挑战了电力系统的挑战,特别是当风力电力的装机容量继续上升时。网络脆弱性及时修补风力涡轮机的寿命管理是确保风电场的网络实物安全性的重要措施。

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