在高分区自组织网络中作为分组传输机制的可穿戴计算机

J. Davis, A. Fagg, B. Levine
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引用次数: 291

摘要

可穿戴计算机和移动传感器的尺寸和成本不断下降,为网络部署带来了新的挑战和机遇。现有的网络路由协议在节点之间提供可靠的通信,并允许移动性,甚至是临时部署。然而,它们依赖于网络中节点密集分散和端到端连接的假设。在本文中,我们讨论了在零星连接和永远存在的网络分区条件下对ad-hoc无线网络的路由支持。这项工作提出了一个代理移动和通信的一般框架,其中移动计算机物理地跨网络分区携带数据包。然后,我们提出了利用固定设备的相对位置和网络中移动代理运动的非随机性的算法。通过仿真,我们评估了这些算法及其在高分区网络中有效路由数据包的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wearable computers as packet transport mechanisms in highly-partitioned ad-hoc networks
The decreasing size and cost of wearable computers and mobile sensors is presenting new challenges and opportunities for deploying networks. Existing network routing protocols provide reliable communication between nodes and allow for mobility and even ad-hoc deployment. They rely, however on the assumption of a dense scattering of nodes and end-to-end connectivity in the network. In this paper we address routing support for ad-hoc, wireless networks under conditions of sporadic connectivity and ever-present network partitions. This work proposes a general framework of agent movement and communication in which mobile computers physically carry packets across network partitions. We then propose algorithms that exploit the relative position of stationary devices and non-randonmess in the movement of mobile agents in the network. The learned structure of the network is used to inform an adaptive routing strategy With a simulation, we evaluate these algorithms and their ability to route packets efficiently through a highly-partitioned network.
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