DTN MapEx:在容延迟网络上通过分布式计算实现的灾区映射

E. M. Trono, Yutaka Arakawa, M. Tamai, K. Yasumoto
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引用次数: 34

摘要

灾区地图的生成和共享对灾害应对行动至关重要。然而,在灾后环境中,由于网络挑战,基于云的地图服务和数据可能不可用。为了在挑战网络中实现数据共享,提出了容中断网络(DTN)架构。然而,考虑到单个DTN节点有限的计算资源,地图生成可能过于复杂。为了生成和共享灾区地图,我们提出了DTN MapEx,这是一个在DTN上运行的分布式计算系统。DTN MapEx将灾难地图数据和地图生成任务分配到多个节点,以最大限度地减少单个计算负载。在系统中,响应者和志愿者充当移动传感节点。他们记录他们走过的路径的GPS轨迹,并收集灾区地图数据,如坐标、图像和兴趣点的评估。然后,移动节点通过DTN将收集到的数据和任务请求路由到预部署的固定计算节点。计算节点聚合数据以生成地图,并偶然地将其路由回网络。为了降低复杂性,映射任务和数据根据当前计算负载在计算节点之间进行划分。计算节点定时更新DTN当前负载信息。移动节点使用这些更新来决定在哪里分配任务请求和数据。在本文中,我们提出了DTN MapEx的设计,并对其在灾害场景中的可行性进行了初步评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DTN MapEx: Disaster area mapping through distributed computing over a Delay Tolerant Network
Disaster area map generation and sharing are critical to disaster response operations. In post-disaster contexts however, cloud-based mapping services and data may be unavailable because of network challenges. Disruption Tolerant Network (DTN) architectures have been proposed for data sharing in challenged networks. However, map generation may be too complex for individual DTN nodes given their limited computing resources. To generate and share maps of disaster areas, we present DTN MapEx, a distributed computing system for mapping that operates over a DTN. DTN MapEx distributes disaster map data and map generation tasks to multiple nodes to minimize individual computational loads. In the system, responders and volunteers act as mobile sensing nodes. They log the GPS traces of their traversed paths and collect disaster area map data such as the coordinates, images, and assessments of points-of-interest. The mobile nodes then route their collected data and a task request through the DTN to pre-deployed, fixed Computing Nodes. The Computing Nodes aggregate the data to generate a map and opportunistically route it back to the network. To reduce complexity, mapping tasks and data are divided amongst Computing Nodes based on their current computational load. Computing Nodes periodically update the DTN about their current loads. Mobile nodes use these updates in deciding where to allocate their task requests and data. In this paper, we present the design of DTN MapEx and perform initial evaluations on its feasibility in disaster scenarios.
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