首页> 外文期刊>Journal of industrial and management optimization >PERFORMANCE ANALYSIS OF BINARY EXPONENTIAL BACKOFF MAC PROTOCOL FOR COGNITIVE RADIO IN THE IEEE 802.16E/M NETWORK
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PERFORMANCE ANALYSIS OF BINARY EXPONENTIAL BACKOFF MAC PROTOCOL FOR COGNITIVE RADIO IN THE IEEE 802.16E/M NETWORK

机译:IEEE 802.16E / M网络中用于认知无线电的二进制指数退避MAC协议的性能分析

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摘要

We propose a distributed MAC protocol for cognitive radio when primary network is IEEE 802.16e/m WiMAX. Our proposed MAC protocol is the Truncated Binary Exponential Backoff Algorithm where the backoff window size of algorithm is doubled at each collision, and the backoff counter is operated by frame basis in IEEE 802.16e/m and is freezed at a frame with no idle slots. We model our proposed MAC protocol as a 3-dimensional discrete time Markov chain and obtain steady state probability of the Markov chain by using a censored Markov chain method. Based on this steady state probability, we obtain the throughput, packet loss probability and packet delay distribution of secondary users. Our numerical examples show that the initial contention window size can be determined according to the number of secondary users in order to obtain higher throughput for secondary users, and the maximum backoff window has a large impact on the secondary user's packet loss probability. Secondary users' packet delay distribution is much influenced by the initial contention window size and the number of secondary users.
机译:当主网络为IEEE 802.16e / m WiMAX时,我们提出了一种用于认知无线电的分布式MAC协议。我们提出的MAC协议是截断二进制指数退避算法,其中算法的退避窗口大小在每次冲突时都会加倍,并且退避计数器在IEEE 802.16e / m中以帧为基础进行操作,并冻结在没有空闲时隙的帧中。我们将提出的MAC协议建模为3维离散时间马尔可夫链,并通过使用经过审查的马尔可夫链方法获得马尔可夫链的稳态概率。基于此稳态概率,我们获得了辅助用户的吞吐量,丢包率和包延迟分布。我们的数值示例表明,可以根据二级用户的数量来确定初始争用窗口的大小,以便为二级用户获得更高的吞吐量,并且最大退避窗口对二级用户的丢包概率有很大的影响。辅助用户的数据包延迟分布受初始竞争窗口大小和辅助用户数量的很大影响。

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