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Mathematical Modeling and Analysis Methodology for Opportunistic Routing in Wireless Multihop Networks

机译:无线多跳网络中机会路由的数学建模和分析方法

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摘要

Modeling the forwarding feature and analyzing the performance theoretically for opportunistic routing in wireless multihop network are of great challenge. To address this issue, a generalized geometric distribution (GGD) is firstly proposed. Based on the GGD, the forwarding probability between any two forwarding candidates could be calculated and it can be proved that the successful delivery rate after several transmissions of forwarding candidates is irrelevant to the priority rule. Then, a discrete-time queuing model is proposed to analyze mean end-to-end delay (MED) of a regular opportunistic routing with the knowledge of the forwarding probability. By deriving the steady-state joint generating function of the queue length distribution, MED for directly connected networks and some special cases of nondirectly connected networks could be ultimately determined. Besides, an approximation approach is proposed to assess MED for the general cases in the nondirectly connected networks. By comparing with a large number of simulation results, the rationality of the analysis is validated. Both the analysis and simulation results show that MED varies with the number of forwarding candidates, especially when it comes to connected networks; MED increases more rapidly than that in nondirectly connected networks with the increase of the number of forwarding candidates.
机译:在无线多跳网络中,对转发特征进行建模并从理论上分析性能,以实现机会路由。为了解决这个问题,首先提出了广义几何分布(GGD)。基于GGD,可以计算出任意两个转发候选之间的转发概率,可以证明转发候选多次传输后的成功传递率与优先级规则无关。然后,提出了一种离散时间排队模型,用于在了解转发概率的情况下分析规则机会路由的平均端到端延迟(MED)。通过推导队列长度分布的稳态联合生成函数,可以最终确定直连网络和一些非直连网络特殊情况的MED。此外,提出了一种近似方法来评估非直接连接网络中一般情况的MED。通过与大量仿真结果进行比较,验证了分析的合理性。分析和仿真结果均表明,MED随转发候选的数量而变化,尤其是在连接网络方面。随着转发候选者数量的增加,MED比非直接连接的网络增长更快。

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  • 来源
    《Mathematical Problems in Engineering》 |2015年第4期|521861.1-521861.12|共12页
  • 作者单位

    Beijing Univ Posts & Telecommun, Lab Network Syst Architecture & Convergence, Beijing 100876, Peoples R China.;

    Beijing Univ Posts & Telecommun, Lab Network Syst Architecture & Convergence, Beijing 100876, Peoples R China.;

    Beijing Univ Posts & Telecommun, Lab Network Syst Architecture & Convergence, Beijing 100876, Peoples R China.;

    Beijing Univ Posts & Telecommun, Lab Network Syst Architecture & Convergence, Beijing 100876, Peoples R China.;

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