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Access Delay of Cognitive Radio Networks Based on Asynchronous Channel-Hopping Rendezvous and CSMA/CA MAC

机译:基于异步信道跳交会和CSMA / CA MAC的认知无线电网络的接入时延

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As a promising approach to the rendezvous problem in cognitive radio networks (CRNs), a blind rendezvous paradigm has recently spawned various asynchronous channel-hopping (CH) rendezvous schemes that enable any two neighboring secondary users to meet among multiple channels within a finite time, even with no synchronization. However, the rendezvous delay that was derived in existing work is unable to reflect the actual channel access delay performance in multiuser CRNs, as it only relies on hopping patterns of the elaborately designed CH sequences (CHSs) and ignores the impact of network factors (e.g., channel availability and multiuser contention). In this paper, channel access delay is investigated by jointly considering asynchronous CH rendezvous schemes, channel availability, and a medium-access control (MAC) protocol in a single-hop multiuser CRN. To coordinate multiuser contention, a carrier sense multiple access with collision avoidance (CSMA/CA) MAC is adopted by tailoring the IEEE 802.11 distributed coordination function (DCF) properly to the operation features of existing asynchronous CH rendezvous schemes. The channel access delay is analyzed based on a modified Bianchi model and an absorbing Markov chain model, which captures the aggregate effect of hopping patterns of CHSs, the dynamic nature of channel availability, and the behavior of the MAC protocol. The analytical results are verified through extensive simulations. Both simulation and analytical results reveal that the rendezvous delay in existing asynchronous CH rendezvous schemes is insufficient to ensure satisfactory channel access delay in multiuser CRNs.
机译:作为解决认知无线电网络(CRN)中的集合点问题的一种有前途的方法,盲点集合范例最近产生了各种异步信道跳变(CH)集合点方案,这些方案使任意两个相邻的辅助用户都可以在有限的时间内在多个信道之间进行会合,即使没有同步。但是,现有工作中得出的集合延迟无法反映多用户CRN中的实际信道访问延迟性能,因为它仅依赖精心设计的CH序列(CHS)的跳变模式,而忽略了网络因素的影响(例如, ,渠道可用性和多用户竞争)。在本文中,通过共同考虑单跳多用户CRN中的异步CH会合方案,信道可用性和媒体访问控制(MAC)协议,研究了信道访问延迟。为了协调多用户竞争,通过适当地将IEEE 802.11分布式协调功能(DCF)调整为适合现有异步CH会合方案的操作特征,可以采用载波侦听多址避免冲突(CSMA / CA)MAC。基于改进的Bianchi模型和吸收马尔可夫链模型对信道访问延迟进行了分析,该模型捕获了CHS的跳频模式的综合效应,信道可用性的动态特性以及MAC协议的行为。通过大量的模拟验证了分析结果。仿真和分析结果均表明,现有异步CH交会方案中的交会时延不足以确保多用户CRN中令人满意的信道访问时延。

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