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Cognitive Multi-Channel MAC Protocols with Perfect and Imperfect Sensing

机译:认知多通道MAC协议具有完美和不完美的感应

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Analytical formulations of the throughput of cognitive multi-channel MACs with perfect and imperfect sensing are presented. Both imperfect concurrent sensing and imperfect sequential sensing schemes are considered. A discrete time Markov chain is used to model the number of communicating node pairs in the MAC protocols. The throughput of the MAC protocol with perfect sensing is expressed as a function of the number of available data channels, the channel transmission rate, the average utilization per channel, the steady state probability of having a number of available data channels, while the throughput of the MAC protocol with imperfect sensing is expressed as a function of the number of available data channels, the channel transmission rate, the average utilization per channel, the steady state probability of having a number of available data channels, probability of false alarm and probability of misdetection. The results also clearly demonstrate the advantage of our proposed MAC protocol with imperfect concurrent sensing having low probability of misdetection but high probability of false alarm.
机译:提出了具有完美和不完美感测的认知多通道MAC的吞吐量的分析制剂。考虑不完美的并发感测和不完全顺序传感方案。离散时间马尔可夫链用于模拟MAC协议中的通信节点对的数量。具有完美感测的MAC协议的吞吐量被表示为可用数据信道的数量,信道传输速率,每个通道的平均利用率,具有多个可用数据通道的稳态概率,而吞吐量具有不完美感测的MAC协议被表示为可用数据信道的数量,信道传输速率,每个信道的平均利用率,具有多个可用数据信道的稳态概率,误报的概率和概率误解。结果还清楚地展示了我们所提出的MAC协议的优势,其具有不完美的并发感测具有低误区概率但误报概率很高。

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