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首页> 外文期刊>Communications Letters, IEEE >Sensing-Throughput Tradeoff in Cognitive Radio With Random Arrivals and Departures of Multiple Primary Users
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Sensing-Throughput Tradeoff in Cognitive Radio With Random Arrivals and Departures of Multiple Primary Users

机译:具有多个主要用户的随机到达和离开的认知无线电中的感知-通量权衡

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摘要

This letter analyzes the sensing-throughput tradeoff for a secondary user (SU) under random arrivals and departures of multiple primary users (PUs). We first study the case where PUs change their status only during SU's sensing period. We then generalize to a case where PUs change status anytime during SU frame, and compare the latter case with the former in terms of the optimal sensing time and SU throughput. We also investigate the effects of PU traffic parameters and the number of PUs on the sensing-throughput tradeoff for SU. Results show that, though the increase in the number of PUs reduces the optimal sensing time for SU, the opportunity to find a vacant PU channel reduces simultaneously, in turn, reducing SU throughput. Finally, we validate the analysis by Monte Carlo simulations.
机译:这封信分析了在多个主要用户(PU)随机到达和离开时,次要用户(SU)的感知吞吐量权衡。我们首先研究PU仅在SU的感应期内改变其状态的情况。然后,我们归纳为PU可以在SU帧中随时更改状态的情况,并根据最佳检测时间和SU吞吐量将后一种情况与前一种情况进行比较。我们还研究了PU流量参数和PU数量对SU的传感吞吐量权衡的影响。结果表明,尽管PU数量的增加减少了SU的最佳检测时间,但找到空闲PU通道的机会同时减少,从而降低了SU吞吐量。最后,我们通过蒙特卡洛模拟对分析进行验证。

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