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Multi-node power supply resiliency of communication networks during extreme events

机译:极端事件期间通信网络的多节点电源弹性

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This paper develops resiliency models for cell sites considering multiple nodes during extreme events. The spatial and temporal resilience characteristics are calculated for different cities across the US. Evaluating local energy storage's impact on uptime and user-cell site connections is done via the developed multi-node resilience models. The multi-node resiliency model provides a broad quantitative view of cell site power supply performance and its impact on communication system performance. Local resilience calculations were used as a building block to calculate the multi-node resiliency. The resilience functions show grid failure, cellular traffic and travel delays concurrently leads to poor single node as well as multi-node resilience in the absence of energy storage. Overall power supply resilience improvement can be observed due to proper energy storage sizing and planning for possible long delays in fuel delivery with larger storage tanks.
机译:本文开发了在极端事件期间考虑多个节点的小区站点弹性模型。计算了美国不同城市的时空弹性特征。通过开发的多节点弹性模型,可以评估本地能量存储对正常运行时间和用户小区站点连接的影响。多节点弹性模型提供了小区站点电源性能及其对通信系统性能影响的广泛定量视图。本地弹性计算被用作构建多节点弹性的基础。弹性功能显示电网故障,蜂窝通信量和旅行延迟同时导致缺乏能量存储的单节点以及多节点弹性。由于适当的能量存储大小和规划较大的储油罐的燃料输送可能会出现长时间的延迟,因此可以观察到整体电源的弹性得到改善。

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