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Multi-hop Delay Performance in Wireless Mesh Networks

机译:无线网状网络中的多跳延迟性能

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摘要

Wireless Mesh Network (WMN) technology is an attractive solution to meet the demand of broadband network access anywhere and anytime. In order to effectively support delay-sensitive applications such as video streaming and interactive gaming in a WMN, it is crucial to develop feasible methodologies and techniques for accurately analyzing, predicting and guaranteeing end-to-end delay performance over multi-hop wireless communication paths. In this paper, we extend the link-layer effective capacity model and derive a lower bound of delay-bound violation probability, or complementary cumulative distribution function, over multi-hop wireless connections. A fluid traffic model with cross traffic and a Rayleigh fading channel with additive Gaussian noise and Doppler spectrum are considered in our study. The average multi-hop delay and jitter performance bounds are also obtained. Analytical results are verified by extensive computer simulations under different traffic load and wireless channel conditions. We find that multi-hop delay performance is much more sensitive to traffic load and maximum Doppler rate than traffic correlation.
机译:无线网状网络(WMN)技术是一种有吸引力的解决方案,可以随时随地满足宽带网络访问的需求。为了有效地支持对延迟敏感的应用(例如WMN中的视频流和交互式游戏),至关重要的是开发可行的方法和技术,以在多跳无线通信路径上准确分析,预测和保证端到端延迟性能。在本文中,我们扩展了链路层有效容量模型,并得出了多跳无线连接上的延迟约束违规概率或互补累积分布函数的下限。在我们的研究中考虑了具有交叉交通的流体交通模型和具有加性高斯噪声和多普勒频谱的瑞利衰落信道。还可以获得平均多跳延迟和抖动性能范围。通过在不同流量负载和无线信道条件下进行的大量计算机仿真,验证了分析结果。我们发现,与流量相关性相比,多跳延迟性能对流量负载和最大多普勒速率更加敏感。

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