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Performance evaluation of multiple-rate mobile ad hoc networks

机译:多速率移动自组织网络的性能评估

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摘要

Existing wireless networks usually provide multiple data transmission rates. This paper presents a simulation study of the performance of multiple-rate mobile ad hoc networks (MANETs), based on an evolved ns-2 simulator. At the physical layer, realistic models such as the Walfisch-Ikagami radio propagation model and lognormal fading are implemented. At the link layer, a link adaptation algorithm is implemented to select an appropriate data transmission rate based on the receiving signal-to-noise ratio. At the transport and application layers, different data traffics, including constant bit rate, TCP, voice over IP, and video, are generated. We study the network performance such as throughput, delivery ratio, and end-to-end delay when position-based routing is used. We also study how node mobility and position error affect the performance. In addition, we investigate the impact of the link distance, namely the geographic distance for a hop, on the end-to-end network throughput. This work is a comprehensive simulation study on the impact of various factors on the performance of MANETs. It also provides guidelines for future protocol and algorithm design.
机译:现有的无线网络通常提供多种数据传输速率。本文介绍了基于改进的ns-2模拟器的多速率移动自组织网络(MANET)性能的模拟研究。在物理层上,实现了逼真的模型,例如Walfisch-Ikagami无线电传播模型和对数正态衰落。在链路层,实施链路自适应算法,以基于接收信噪比选择合适的数据传输速率。在传输和应用程序层,会生成不同的数据流量,包括恒定比特率,TCP,IP语音和视频。当使用基于位置的路由时,我们研究网络性能,例如吞吐量,传递比率和端到端延迟。我们还研究了节点移动性和位置误差如何影响性能。另外,我们研究了链路距离(即一跳的地理距离)对端到端网络吞吐量的影响。这项工作是对各种因素对MANETs性能的影响的综合模拟研究。它还为将来的协议和算法设计提供了指导。

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