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Delay analysis for cognitive ad hoc networks using multi-channel medium access control

机译:使用多通道媒体访问控制的认知自组织网络的延迟分析

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In this study, the authors analyse the average end-to-end packet delay for a cognitive ad hoc network where multiple secondary nodes randomly contend for accessing the licensed bands of primary users in non-slotted time mode. Before accessing the licensed bands, each node must perform spectrum sensing and collaboratively exchange the sensing results with other nodes of the corresponding communication as a means of improving the accuracy of spectrum sensing. Furthermore, the medium access control with collision avoidance mechanism based distributed coordination function specified by IEEE 802.11 is applied to coordinate spectrum access for this cognitive ad hoc network. To evaluate the system performance, the authors model the considered network as an open G/G/1 queuing network and utilise the method of diffusion approximation to analyse the end-to-end packet delay. The authors' analysis takes into account not only the number of secondary nodes, the arrival rate of primary users and the arrival rate of secondary users but also the effect of the number of licensed bands when assessing the average end-to-end packet delay of the networks.
机译:在这项研究中,作者分析了一个认知自组织网络的平均端到端数据包延迟,在该网络中,多个次节点随机竞争以非时隙时间模式访问主要用户的许可频段。在访问许可频段之前,每个节点必须执行频谱感测,并与相应通信的其他节点协作交换感测结果,以提高频谱感测的准确性。此外,由IEEE 802.11指定的基于冲突避免机制的基于分布式协调功能的媒体访问控制被用于协调此认知自组织网络的频谱访问。为了评估系统性能,作者将考虑的网络建模为开放的G / G / 1排队网络,并使用扩散近似方法分析端到端数据包延迟。作者的分析不但考虑了次节点的数量,主要用户的到达率和次要用户的到达率,还考虑了评估带宽的平均端到端分组延迟时许可频段数量的影响。网络。

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