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On the design and performance of cognitive packets over wired networks and mobile ad hoc networks.

机译:关于有线网络和移动自组织网络上的认知数据包的设计和性能。

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This dissertation studied cognitive packet networks (CPN) which build networked learning systems that support adaptive, quality of service-driven routing of packets in wired networks and in wireless, mobile ad hoc networks.; The first part of this study completed the design of the CPN algorithm for wired systems by revisiting the decision making procedure employed by smart packets in the former initiative. To conduct evaluation studies, this work proposed two implementation architectures, both of which were integrated into the Linux 2.4 kernel.; The second part of this dissertation extended CPN to ad hoc networks by introducing mechanisms to handle node mobility with a new quality-of-service metric that makes better use of the limited resources typically present in such networks. In ad hoc CPN (AHCPN), path availability quantifies a path via the probability to find nodes and links available for routing; it is defined as a function of battery lifetime at nodes and signal-to-noise ratio of communication channels. As a result, nodes which have low power are able to extend their working lifetime and routes are selected based on power considerations, leading to the establishment of more robust communication paths over time.; This research included the deployment of three network testbeds and extensive experimentation to verify the performance of both CPN and AHCPN. In addition, a simulation model of AHCPN was developed using Network Simulator 2 (NS-2). Measurements on real systems and simulations revealed great capacity for adaptability and successful performance of both CPN and AHCPN under different network conditions.
机译:本文研究了认知分组网络(CPN),该网络构建了网络学习系统,该系统支持有线网络和无线,移动自组织网络中的自适应,服务质量驱动的分组路由。本研究的第一部分通过回顾前一项计划中的智能数据包所采用的决策程序,完成了有线系统CPN算法的设计。为了进行评估研究,这项工作提出了两种实现体系结构,这两种体系结构都已集成到Linux 2.4内核中。本文的第二部分通过引入机制来处理节点移动性,并采用一种新的服务质量指标来更好地利用此类网络中通常存在的有限资源,从而将CPN扩展到自组织网络。在临时CPN(AHCPN)中,路径可用性通过查找可用于路由的节点和链接的概率来量化路径。它的定义是节点处的电池寿命和通信通道的信噪比的函数。结果,具有低功率的节点能够延长其工作寿命,并且基于功率的考虑来选择路由,从而随着时间的流逝建立更健壮的通信路径。这项研究包括部署三个网络测试平台,并进行了广泛的实验以验证CPN和AHCPN的性能。另外,使用网络模拟器2(NS-2)开发了AHCPN的模拟模型。在真实系统上的测量和模拟显示,在不同的网络条件下,CPN和AHCPN都具有很大的适应能力和成功的性能。

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