...
首页> 外文期刊>Journal of Lightwave Technology >Disaster-Aware Submarine Fiber-Optic Cable Deployment for Mesh Networks
【24h】

Disaster-Aware Submarine Fiber-Optic Cable Deployment for Mesh Networks

机译:用于网状网络的具有灾难意识的海底光缆部署

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

With the increasing social and economic reliance on the Internet and the significant monetary and non-monetary societal cost associated with service interruption, network survivability is an important element in telecommunication network design. A major cause of Internet service interruption is breakage of fiber-optic cables due to man-made or natural disasters such as earthquakes. In addition to the societal cost, there is also cost of repairing damaged cables paid by the cable owner. A disaster-resilient submarine cable deployment can achieve significant cost saving when disaster strikes. In this study, we investigate a disaster-aware submarine fiber-optic cable deployment optimization problem to minimize such expected costs in case of a disaster. While selecting paths for the cables, our approach aims to minimize the expected cost for both cable owner and the affected society, considering that submarine fiber-optic cables may break because of natural disasters, subject to limitation of available deployment budget and other constraints. In our approach, localized disaster-unrelated potential disconnection (e.g., due to shark bites) are avoided by providing a backup cable along with primary cable. We consider a mesh topology network with multiple nodes located at different sea/ocean shores, submarine fiber-optic cables of irregular shape, and a topography of undersea environment. We present an Integer Linear Program to address the problem, together with illustrative numerical examples. Finally, we validate our approach by applying it to a case study of an existing cable system in the Mediterranean Sea, and the results show that we can significantly reduce overall expected cost at a slight increase in deployment cost. The results demonstrate a potential saving of billions of US dollars for the society in case of a future disaster. In order to achieve such large savings, cable companies may require to lay somewhat longer cables to avoid potential disaster areas, which may increase deployment cost that is relatively smaller compared to potential savings in case of a disaster. Understanding such trade-offs is important for stakeholders, including government agencies, cable industry, and insurance companies, which may have different objectives, but can work together for the overall benefit of the society.
机译:随着对互联网的社会和经济依赖的增加以及与服务中断相关的大量金钱和非金钱社会成本,网络生存能力是电信网络设计中的重要元素。 Internet服务中断的主要原因是由于人为或自然灾害(例如地震)而导致的光缆断裂。除了社会成本外,还有修理费用,由电缆拥有者支付。当灾难来袭时,具有抗灾能力的海底电缆部署可以节省大量成本。在这项研究中,我们调查了具有灾难意识的海底光缆部署优化问题,以将发生灾难时的此类预期成本降至最低。在选择电缆路径时,考虑到可用部署预算和其他限制,考虑到自然灾害,海底光缆可能会断裂,因此,我们的方法旨在将电缆所有者和受影响的社会的预期成本降至最低。在我们的方法中,通过与主电缆一起提供备用电缆,可以避免与灾难无关的局部潜在断开连接(例如,由于鲨鱼叮咬造成的断开连接)。我们考虑一个网格拓扑网络,该网络具有位于不同海洋海岸的多个节点,不规则形状的海底光缆以及海底环境的地形。我们提供了一个整数线性程序来解决该问题,并提供了说明性的数值示例。最后,我们通过将其应用于地中海现有电缆系统的案例研究中验证了我们的方法,结果表明,在略微增加部署成本的情况下,我们可以显着降低总体预期成本。结果表明,在将来发生灾难时,可以为社会节省数十亿美元。为了实现如此大的节省,电缆公司可能需要铺设更长的电缆以避免潜在的灾区,这可能会增加部署成本,与发生灾难时的潜在节省相比,部署成本相对较小。对于利益相关者(包括政府机构,电缆行业和保险公司)而言,了解这种取舍非常重要,这些利益相关者可能有不同的目标,但可以共同为社会带来整体利益。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号