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Markov-Based Optimal Access Probability for Dynamic Spectrum Access in Cognitive Radio Networks

机译:认知无线电网络中基于马尔可夫的动态频谱接入最优接入概率

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Dynamic spectrum access has become a promising approach to fully utilize the scarce spectrum resources. In this paper, two new dynamic spectrum access schemes for secondary users are proposed, which are based on continuous-time Markov chains (CTMC). Both the interactions between primary and secondary users and the effects of imperfect spectrum sensing(i.e. miss-detection and false alarm) are considered in the schemes. Due to the fact that miss-detection would lead to collision between primary and secondary users, we derive the optimal access probabilities for secondary users, so that the QoS of primary users in terms of collision probability is guaranteed. Simulation results show that the proposed dynamic spectrum access approach under proportional fairness criterion achieves much higher fairness over max-throughput criterion. Moreover, the scheme with buffering mechanism can raise the channel occupancy remarkably.
机译:动态频谱访问已成为一种充分利用稀缺频谱资源的有前途的方法。本文基于连续时间马尔可夫链(CTMC),提出了两种针对二级用户的动态频谱接入方案。该方案考虑了主要用户和次要用户之间的交互以及不完善的频谱感测(即漏检和误报警)的影响。由于误检测会导致主要用户和次要用户之间发生冲突,因此我们推导了次要用户的最佳访问概率,从而确保了主要用户的QoS(基于冲突概率)。仿真结果表明,提出的比例公平准则下的动态频谱接入方法比最大吞吐量准则具有更高的公平性。而且,具有缓冲机制的方案可以显着提高信道占用率。

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