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An Effect of Route Caching Scheme in DSR for Vehicular Adhoc Networks

机译:路由缓存方案在车载自组网DSR中的作用

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Routing is one of the most significant challenges in Vehicular ad hoc networks and is critical for the basic network operations. Nodes (vehicles) in a Vehicular ad hoc network are allowed to move in an uncontrolled manner. Such node mobility results in a highly dynamic network with rapid topological changes. Caching the routing information can significantly improve the efficiency of routing mechanism in a wireless ad hoc network by reducing the access latency and bandwidth usage. Our work presents an analysis of the effects of route cache for this caching in on-demand routing protocols in Vehicular ad hoc networks. Our analysis is based on the Dynamic Source Routing protocol (DSR), which operates entirely on-demand. Using detailed simulations of Vehicular ad hoc networks, we studied a caching algorithm that utilize cache size as a design choice, and simulated each cache primarily over different movement scenarios drawn from various mobility models. We also evaluated a set of mobility metrics that allow accurate characterization of the relative difficulty that a given movement scenario presents to a Vehicular ad hoc network routing protocol, and we analyze each mobility metric?s ability to predict the actual difficulty in terms of routing overhead and packet delivery ratio experienced by the routing protocol across the highway and city traffic scenarios in our study. Finally we have shown that caching the routing data is beneficial.
机译:路由是车载自组织网络中最重大的挑战之一,对于基本网络操作至关重要。车辆自组织网络中的节点(车辆)被允许以不受控制的方式移动。这样的节点移动性导致具有快速拓扑变化的高度动态的网络。通过减少访问延迟和带宽使用量,缓存路由信息可以显着提高无线自组网中路由机制的效率。我们的工作介绍了在车辆自组织网络中按需路由协议中此缓存的路由缓存效果的分析。我们的分析基于完全按需运行的动态源路由协议(DSR)。通过使用车载ad hoc网络的详细模拟,我们研究了一种将缓存大小用作设计选择的缓存算法,并主要在从各种移动性模型得出的不同移动场景下模拟了每个缓存。我们还评估了一组移动性指标,这些特性可以准确地描述给定运动场景给车辆自组织网络路由协议带来的相对难度,并且我们分析每个移动性指标根据路由开销预测实际难度的能力在我们的研究中,路由协议在高速公路和城市交通场景中所经历的数据包和传输比率。最后,我们证明了缓存路由数据是有益的。

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