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Network adaptability from disaster disruptions and cascading failures

机译:网络适​​应灾难中断和级联故障的能力

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摘要

Disasters can cause severe service disruptions due to large-scale correlated cascading failures in telecom networks. Major network disruptions due to disasters ??? both natural (e.g., Hurricane Sandy, 2011 Japan Tsunami) and human-made (e.g., 9/11 terrorist attack) ??? deprive the affected population of essential network services for weeks and severely hamper rescue operations. Many techniques exist to provide fast network protection, but they are optimized for limited faults without addressing the extent of disaster failures. Thus, there is a pressing need for novel robust survivability methods to mitigate the effects of disasters on telecom networks. While researchers in climatology, geology, and environmental science have been studying how to predict disasters and assess disaster risks for certain regions, networking research can exploit this information to develop novel methods to prepare networks to handle disasters with the knowledge of risky regions and to better prepare them for a predicted disaster. The events during the aftermath of a disaster should also be considered. For instance, methods to re-arrange network resources and services on a partially damaged network, which is the property of a self-organizing network, should be developed, and new algorithms to manage the post-disaster traffic deluge and to relieve the rescue operations after a disaster, with the knowledge of the post-disaster failures, should be investigated. Since cloud services today are an integral part of our society and massive amounts of content/services have been created and shared over the cloud, loss/disruption of critical content/ services caused by disasters can significantly affect the security and economic well being of our society. As the network is becoming increasingly an end-to-content (vs. end-toend) connection provider, we have to ensure reachability of content from any point of a network, which we call content connectivity (in contrast to network connectivity) after di- aster failures. This article presents the nature of possible disruptions in telecom networks caused by disaster events, and sheds light on how to prepare the network and cloud services against disasters, and adapt them for disaster disruptions and cascading failures.
机译:由于电信网络中大规模相关的级联故障,灾难可能导致严重的服务中断。灾难造成的主要网络中断???天然的(例如,桑迪飓风,2011年日本海啸)和人为的(例如,9/11恐怖袭击)?剥夺了受影响人群基本网络服务的时间,并严重阻碍了救援行动。存在许多提供快速网络保护的技术,但是它们针对有限的故障进行了优化,而没有解决灾难故障的程度。因此,迫切需要新颖的鲁棒的生存能力方法以减轻灾难对电信网络的影响。气候学,地质学和环境科学的研究人员一直在研究如何预测某些地区的灾害并评估灾害风险,而网络研究可以利用这些信息来开发新颖的方法,以利用危险地区的知识来准备应对灾害的网络,从而更好地应对灾害。让他们为预计的灾难做好准备。还应考虑灾难后发生的事件。例如,应该开发在部分受损的网络上重新安排网络资源和服务的方法(这是自组织网络的属性),并开发新的算法来管理灾后交通流量并减轻救援工作灾难发生后,应了解灾难后的故障情况。由于当今的云服务已成为我们社会不可分割的一部分,并且已在云上创建和共享了大量内容/服务,因此,灾难造成的关键内容/服务的丢失/中断会严重影响我们社会的安全和经济状况。随着网络越来越成为端到端(相对于端到端)连接提供者,我们必须确保从网络的任何点到内容的可访问性,在网络中断之后,我们称之为内容连接(与网络连接相反) -翠菊故障。本文介绍了由灾难事件引起的电信网络可能中断的性质,并阐明了如何为灾难准备网络和云服务,并使它们适应灾难中断和级联故障。

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