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Ad-hoc multicast routing on resource-limited sensor nodes

机译:资源受限的传感器节点上的即席多播路由

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摘要

Many emerging sensor network applications involve mobile nodes with communication patterns requiring any-to-any routing topologies. We should be able to build upon the MANET work to implement these systems. However, translating these protocols into real implementations on resource-constrained sensor nodes raises a number of challenges. In this paper, we present the lessons learned from implementing one such protocol, Adaptive Demand-driven Multicast Routing (ADMR), on CC2420-based motes using the TinyOS operating system. ADMR was chosen because it supports multicast communication, a critical requirement for many pervasive and mobile applications. To our knowledge, ours is the first non-simulated implementation of ADMR. Through extensive measurement on Motelab, we present the performance of the implementation, TinyADMR, under a wide range of conditions. We highlight the real-world impact of path selection metrics, radio link asymmetry, protocol overhead, and limited routing table size.
机译:许多新兴的传感器网络应用都涉及具有通信模式的移动节点,这些通信模式需要任何到任何路由拓扑。我们应该能够基于MANET的工作来实现这些系统。但是,将这些协议转换为资源受限的传感器节点上的实际实现会带来许多挑战。在本文中,我们介绍了使用TinyOS操作系统在基于CC2420的节点上实现一种这样的协议(自适应需求驱动的组播路由(ADMR))的经验教训。之所以选择ADMR,是因为它支持多播通信,这是许多普及和移动应用程序的关键要求。据我们所知,我们是ADMR的第一个非模拟实现。通过在 Motelab 上进行广泛的测量,我们介绍了TinyADMR在多种条件下的性能。我们重点介绍了路径选择指标,无线链路不对称,协议开销和有限的路由表大小对现实世界的影响。

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