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Optimization of jitter configuration for reactive route discovery in wireless mesh networks

机译:无线网状网络中无功路由发现的抖动配置优化

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Jitter is a small, random variation of timing before message emission that is widely used in non-synchronized wireless communication. It is employed to avoid collisions caused by simultaneous transmissions by adjacent nodes over the same channel. In reactive (on-demand) routing protocols, such as AODV and LOADng, it is recommended to use jitter during the flooding of Route Request messages. This paper analyzes the impact of jitter mechanisms in the performance of route discovery procedures of on-demand routing protocols, and examines the drawbacks of the standard and commonly used uniformly distributed jitter. The main studied drawback is denominated delay inversion effect. Two variations on the jitter mechanism-window jitter and adaptive jitter- are proposed to address this effect. Both variations take the presence and the quality of traversed links into consideration to determine the per-hop forwarding delay, and both variations allow to effectively reduce the routing overhead and increase the quality of the computed paths with respect to the standard uniform jitter mechanism. Simulations are performed to compare the performance of different jitter settings in various network scenarios.
机译:抖动是在消息发出之前定时的很小的随机变化,广泛用于非同步无线通信中。它被用来避免由相邻节点在同一信道上同时传输而引起的冲突。在响应式(按需)路由协议(例如AODV和LOADng)中,建议在路由请求消息的泛洪期间使用抖动。本文分析了抖动机制对按需路由协议的路由发现过程性能的影响,并研究了标准和常用的均匀分布抖动的缺点。研究的主要缺点是命名延迟反转效应。为了解决这种影响,提出了两种抖动机制:窗口抖动和自适应抖动。两种变化都考虑了遍历链路的存在和质量来确定每跳转发延迟,并且两种变化都允许有效减少路由开销并相对于标准的统一抖动机制提高计算路径的质量。进行仿真以比较各种网络场景中不同抖动设置的性能。

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