提高电网可靠性的综合方法:概率风险评估与弹性指标的融合

B. Vaagensmith, T. McJunkin, Kurt Vedros, J. S. Reeves, Jason Wayment, Liam Boire, C. Rieger, J. Case
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引用次数: 14

摘要

系统的弹性常常与其可靠性脱节。对于许多类型的系统来说,牺牲非必要的流程来维护一组有弹性的核心操作是可以接受的。然而,对于电网来说,这通常意味着负荷减少。结合爱达荷国家实验室的概率风险评估工具sapphire和自适应容量测量软件PowDDER,可以为提高电网吸收干扰的能力提供见解。一项对主要停电的快速调查显示,与大风有关的风暴导致电线倒塌和变压器故障是与主要停电最常见的联系。这些发现验证了sapphire在暴风雨场景下为IEEE 14总线模型提供的最关键组件的输出。sapphire提供了关键设备不可用的概率,提供了对特定威胁场景发生可能性的洞察。PowDDER分析显示,通过降低负载10的可靠性(通过减载),可以提高系统整体弹性的敏感性。结合来自PowDDER和sapphire的信息,可以考虑先发制人的策略,同时提高系统的弹性和系统范围的可靠性。
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An Integrated Approach to Improving Power Grid Reliability: Merging of Probabilistic Risk Assessment with Resilience Metrics
The resilience of a system is often disconnected from its reliability. For many types of systems the sacrifice of nonessential processes may be acceptable for maintaining a resilient set of core operations. For the electric grid, however, this often translates to load shedding. Combining Idaho National Laboratory’s probabilistic risk assessment tool SAPHIRE and adaptive capacity measurement software PowDDER can provide insights for improving the electric grids ability to absorb disturbances. A quick survey of major power outages revealed that high wind related storms causing toppled power lines and failed transformers were most commonly associated with major power outages. These findings validated SAPHIRE’s output of most critical components for the IEEE 14 bus model during a windstorm scenario. SAPHIRE provided the probabilities of critical equipment being unavailable, providing insight into the likelihood a particular threat scenario would play out. An analysis of PowDDER revealed sensitivities within the system’s overall resilience could be improved by reducing the reliability of Load 10 (via load shedding). Combining information from both PowDDER and SAPHIRE enables one to consider preemptive strategies that would improve system resilience and system wide reliability simultaneously.
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