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Delay Analysis of Multichannel Opportunistic Spectrum Access MAC Protocols

机译:多通道机会频谱接入MAC协议的时延分析

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We provide a comprehensive delay and queueing analysis for two baseline medium access control protocols for multi-user cognitive radio networks with homogeneous users and channels and investigate the impact of different network parameters on the system performance. In addition to an accurate Markov chain, which follows the queue status of all users, several lower complexity queueing theory approximations are provided. Accuracy and performance of the proposed analytical approximations are verified with extensive simulations. It is observed that using an Aloha-type access to the control channel, a buffering MAC protocol, where in case of interruption the CR user waits for the primary user to vacate the channel before resuming the transmission, outperforms a switching MAC protocol, where the CR user vacates the channel in case of appearance of primary users and then compete again to gain access to a new channel. The reason is that the delay bottleneck for both protocols is the time required to successfully access the control channel, which occurs more frequently for the switching MAC protocol. It is thus shown that a clustering approach, where users are divided into clusters with a separate control channel per cluster, can significantly improve the performance by reducing the competitions over control channel.
机译:我们为具有同构用户和信道的多用户认知无线电网络的两个基准媒体访问控制协议提供了全面的延迟和排队分析,并研究了不同网络参数对系统性能的影响。除了遵循所有用户的队列状态的精确马尔可夫链之外,还提供了几种较低复杂度的排队理论近似值。所提出的解析近似的准确性和性能已通过广泛的模拟进行了验证。可以看出,使用Aloha类型的控制信道访问权,即缓冲MAC协议,在中断的情况下,CR用户在恢复传输之前等待主用户腾出该信道,其性能优于交换MAC协议,其中CR用户在出现主要用户的情况下腾出该频道,然后再次竞争以获取对新频道的访问权限。原因是两种协议的延迟瓶颈都是成功访问控制信道所需的时间,这对于交换MAC协议来说更常见。因此表明,将用户划分为每个群集具有独立控制通道的群集的群集方法可以通过减少对控制通道的竞争来显着提高性能。

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