论文标题

基于相互依存的城市公用网络的基于异函数图理论模型的鲁棒性评估

Robustness Assessment of Hetero-Functional Graph Theory Based Model of Interdependent Urban Utility Networks

论文作者

Munikoti, Sai, Lai, Kexing, Natarajan, Balasubramaniam

论文摘要

不断增长的城市人口对支持基础设施(例如电力,水,供暖,天然气,道路运输等)造成了巨大的负担。本文为这些集成的基础设施提供了异性函数功能图理论(HFGT)的建模框架,并对网络鲁棒性进行了分析。考虑了支持基础设施以及基础设施维修设施。与传统的图表表示相反,加权HFGT模型用于捕获资源之间的系统过程和相互依赖性。为了评估相互依存网络的鲁棒性,量化了完整/部分和随机/靶向攻击的影响。具体而言,模拟了各种应急方案,并评估网络的漏洞。此外,提出了一些鲁棒性指标,以提供对系统鲁棒性的全面评估。提出的加权HFGT建模和鲁棒性评估方法是使用合成相互依赖的网络测试的,包括电力系统,水网络,区域加热网络,天然气系统和道路运输网络。结果表明,可以通过确保系统信息并减轻攻击强度来增强系统鲁棒性。

The increasing urban population imposes a substantial and growing burden on the supporting infrastructure, such as electricity, water, heating, natural gas, road transportation, etc. This paper presents a Hetero-functional graph theory (HFGT) based modeling framework for these integrated infrastructures followed by an analysis of network robustness. The supporting infrastructures along with the infrastructure repair facilities are considered. In contrast to conventional graph representations, a weighted HFGT model is used to capture the system processes and mutual dependencies among resources. To assess robustness of the inter-dependent networks, impacts of complete/partial and random/targeted attacks are quantified. Specifically, various contingency scenarios are simulated and the vulnerability of the network is evaluated. Additionally, several robustness metrics are proposed to provide a comprehensive evaluation of system robustness. The proposed weighted HFGT modeling and robustness assessment approach is tested using a synthetic interdependent network, comprising of an electrical power system, a water network, a district heating network, a natural gas system and a road transportation network. Results demonstrate that system robustness can be enhanced via securing system information and mitigating attack strength.

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