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Channel quality aware cross-layer design based rate adaptive MAC for improving the throughput capacity of multi-hop ad hoc networks

机译:基于信道质量的跨层设计的速率自适应MAC,用于提高多跳自组织网络的吞吐能力

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摘要

In this paper we address the goal of achieving higher throughput capacity in multi-hop wireless ad hoc networks than estimated by capacity scaling laws of Gupta and Kumar (2000) [1]. By exploiting the implications pointed in earlier research, a cross-layer design based channel quality aware rate adaptive MAC algorithm CQRA-MAC is proposed to achieve this goal. CQRA-MAC dynamically switches the MAC transmission rate on the basis of channel quality experienced at the physical layer. The proposed algorithm is implemented by modifying the IEEE 802.11 model of Qualnet 4.5 simulator and its performance is evaluated in static and mobile network scenarios following the random access transport capacity approach. Experimental results show that CQRA-MAC achieves higher throughput than DCF and ARF. The achieved throughput capacity is quantified in terms of measurable network parameters and thus validates equations of random access transport capacity framework (Andrews et al., 2010) [9]. (C) 2017 Elsevier B.V. All rights reserved.
机译:在本文中,我们解决了比Gupta和Kumar(2000)的容量缩放定律[1]估计的多跳无线ad hoc网络中实现更高吞吐容量的目标。通过利用早期研究中指出的含义,提出了一种基于跨层设计的信道质量感知速率自适应MAC算法CQRA-MAC以实现此目标。 CQRA-MAC根据物理层经历的信道质量动态切换MAC传输速率。通过修改Qualnet 4.5仿真器的IEEE 802.11模型来实现所提出的算法,并根据随机访问传输容量方法在静态和移动网络场景中评估其性能。实验结果表明,CQRA-MAC比DCF和ARF具有更高的吞吐量。通过可测量的网络参数量化获得的吞吐能力,从而验证随机访问传输能力框架的方程式(Andrews等,2010)[9]。 (C)2017 Elsevier B.V.保留所有权利。

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