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A simulation study of table-driven and on-demand routing protocols for mobile ad hoc networks

机译:移动自组织网络中表驱动和按需路由协议的仿真研究

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摘要

Bandwidth and power constraints are the main concerns in current wireless networks because multihop ad hoc mobile wireless networks rely on each node in the network to act as a router and packet forwarder. This dependency places bandwidth, power, and computation demands on mobile hosts which must be taken into account when choosing the best routing protocol. In previous years, protocols that build routes based on demand have been proposed. The major goal of on-demand routing protocols is to minimize control traffic overhead. We perform a simulation and performance study on some routing protocols for ad hoc networks. The distributed Bellman-Ford (1957, 1962), a traditional table-driven routing algorithm, is simulated to evaluate its performance in multihop wireless network. In addition, two on-demand routing protocols (dynamic source routing and associativity-based routing) with distinctive route selection algorithms are simulated in a common environment to quantitatively measure and contrast their performance. The final selection of an appropriate protocol will depend on a variety of factors, which are discussed in this article.
机译:带宽和功率限制是当前无线网络中的主要问题,因为多跳自组织移动无线网络依赖于网络中的每个节点充当路由器和分组转发器。这种依赖关系对移动主机提出了带宽,功率和计算要求,在选择最佳路由协议时必须考虑这些要求。在前几年,已经提出了基于需求来构建路由的协议。按需路由协议的主要目标是最大程度地减少控制流量开销。我们对ad hoc网络的某些路由协议进行了仿真和性能研究。对分布式的Bellman-Ford(1957,1962),一种传统的表驱动路由算法进行了仿真,以评估其在多跳无线网络中的性能。此外,在通用环境中模拟了两种具有独特路由选择算法的按需路由协议(动态源路由和基于关联性的路由),以定量地测量和对比其性能。适当协议的最终选择将取决于多种因素,本文将对此进行讨论。

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