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Prototyping Self-Managed Interdependent Networks - Self-Healing Synergies against Cascading Failures

机译:原型自我管理的相互依存网络 - 对级联故障的自我修复协同作用

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The interconnection of networks between several techno-socio-economic sectors such as energy, transport, and communication, questions the manageability and resilience of the digital society. System interdependencies alter the fundamental dynamics that govern isolated systems, which can unexpectedly trigger catastrophic instabilities such as cascading failures. This paper envisions a general-purpose, yet simple prototyping of self-management software systems that can turn system interdependencies from a cause of instability to an opportunity for higher resilience. Such prototyping proves to be challenging given the highly interdisciplinary scope of interdependent networks. Different system dynamics and organizational constraints such as the distributed nature of interdependent networks or the autonomy and authority of system operators over their controlled infrastructure perplex the design for a general prototyping approach, which earlier work has not yet addressed. This paper contributes such a modular design solution implemented as an open source software extension of SFINA, the Simulation Framework for Intelligent Network Adaptations. The applicability of the software artifact is demonstrated with the introduction of a novel self-healing mechanism for interdependent power networks, which optimizes power flow exchanges between a damaged and a healer network to mitigate power cascading failures. Results show a significant decrease in the damage spread by self-healing synergies, while the degree of interconnectivity between the power networks indicates a tradeoff between links survivability and load served. The contributions of this paper aspire to bring closer several research communities working on modeling and simulation of different domains with an economic and societal impact on the resilience of real-world interdependent networks.
机译:诸如能源,运输和通信等多种技术社会经济部门之间的网络互连,质疑数字社会的可管理性和恢复力。系统相互依赖性改变了管理孤立系统的基本动态,这可能意外地触发灾难性的不稳定性,例如级联故障。本文设想了一个通用,但简单的自我管理软件系统原型设计,可以将系统相互依赖的系统变为毫不稳定性,以实现更高的弹性的机会。考虑到相互依存网络的高度学科范围,这种原型制作被证明是挑战。不同的系统动态和组织限制,如相互依存网络的分布性质或系统运营商的自主性和权限在其受控基础架构中困扰着一般原型设计方法,早期工作尚未解决。本文有助于实现作为SFINA的开源软件扩展的模块化设计解决方案,智能网络自适应的仿真框架。通过引入用于相互依存电力网络的新型自我修复机制,证明了软件工件的适用性,该机制优化了损坏和治疗网络之间的功率流量交换,以减轻电力级联故障。结果显示通过自我修复协同效应传播的损坏显着降低,而电力网络之间的互连程度表示链路生存能力和负载之间的权衡。本文的贡献渴望仔细培养若干研究社区,致力于对不同领域的建模和模拟,对现实世界相互依存网络的恢复性的经济和社会影响。

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