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CASeS: Concurrent Contingency Analysis-Based Security Metric Deployment for the Smart Grid

机译:案例:智能电网的基于同时的应急分析的安全性度量部署

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摘要

Security metric deployment is of immense importance for power utilities especially in future smart grids, which are being actively pursued in smart cities initiatives around the world. Through these metrics, utilities attain real-time awareness of the grid's security posture. In this paper, we propose a contingency analysis based security evaluation framework for smart grid systems - CASeS. Based on the power flow equations of the grid, communication network characteristics, and concurrent power contingencies, CASeS leverages Markovian Decison Processes (MDP) to quantify the smart grid security. The security index delivered through CASeS emerges as a novel solution for concurrent power contingency consideration, and allows for the preparation of corrective actions to address the quantified grid criticality level. We evaluate CASeS on the standard IEEE 14-Bus and 39-Bus systems. The collected results demonstrate the usefulness of CASeS in quantifying the security of those systems.
机译:安全公制部署对电力公用事业有巨大的重要性,特别是在未来的智能网格中,在世界各地的智慧城市举措中正在积极追求。通过这些指标,公用事业公司对网格安全姿势的实时意识。本文提出了一种基于智能电网系统的安全性评估框架的应急分析 - 案例。基于电网的电流方程,通信网络特性和并发功率常规,案例利用Markovian Decison进程(MDP)来量化智能电网安全性。通过案例提供的安全指数出现为并发的电力应急考虑的新型解决方案,并允许准备纠正措施来解决量化的网格临界水平。我们评估标准IEEE 14总线和39母线系统的案例。收集的结果展示了量化这些系统安全性的情况的有用性。

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