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On the Convergence and Stability of Data-Driven Link Estimation and Routing in Sensor Networks

机译:传感器网络中数据驱动链路估计和路由的收敛性和稳定性

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The wireless network community has become increasingly aware of the benefits of data-driven link estimation and routing as compared with beacon-based approaches, but the issue of Biased Link Sampling (BLS) estimation has not been well studied even though it affects routing convergence in the presence of network and environment dynamics. Focusing on traffic-induced dynamics, we examine the open, unexplored question of how serious the BLS issue is and how to effectively address it when the routing metric ETX is used. For a wide range of traffic patterns and network topologies and using both node-oriented and network-wide analysis and experimentation, we discover that the optimal routing structure remains quite stable even though the properties of individual links and routes vary significantly as traffic pattern changes. In cases where the optimal routing structure does change, data-driven link estimation and routing is either guaranteed to converge to the optimal structure or empirically shown to converge to a close-to-optimal structure. These findings provide the foundation for addressing the BLS issue in the presence of traffic-induced dynamics and suggest approaches other than existing ones. These findings also demonstrate that it is possible to maintain an optimal, stable routing structure despite the fact that the properties of individual links and paths vary in response to network dynamics.
机译:与基于信标的方法相比,无线网络社区已经越来越意识到数据驱动的链路估计和路由的好处,但是,尽管有偏链路采样(BLS)估计问题影响了路由收敛,但尚未对其进行深入研究。网络和环境动态的存在。着眼于流量引起的动态,我们研究了一个尚未解决的开放性问题,即使用路由度量ETX时BLS问题的严重性以及如何有效解决它。对于各种流量模式和网络拓扑,并同时使用面向节点的和整个网络的分析和实验,我们发现,即使各个链路和路由的属性随着流量模式的变化而显着变化,最佳路由结构仍保持相当稳定。在最佳路由结构确实发生变化的情况下,可以保证数据驱动的链路估计和路由可以收敛到最佳结构,或者可以凭经验显示收敛到接近最佳的结构。这些发现为解决交通诱导的动态问题中的BLS问题提供了基础,并提出了现有方法以外的其他方法。这些发现还表明,尽管各个链接和路径的属性会根据网络动态而变化,但仍然可以保持最佳,稳定的路由结构。

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