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Adaptive sensing scheduling for cognitive radio systems

机译:认知无线电系统的自适应传感调度

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摘要

In cognitive radio (CR) systems, the efficiency of primary user (PU) detection scheme directly affects the system performance. In this paper, we propose an adaptive sensing scheduling scheme for CR networks with a central controller, which is based on the partially observable Markov decision process (POMDP) framework. With the proposed scheme, the CR system detects the PU activation by using one or more energy detections followed by zero or one feature detection, and protects the PU by using the channel switching. In the proposed scheme, the energy/feature detections and the channel switching are adaptively scheduled according to the number of active CR nodes, the received signal power from a PU, and the degree of noise uncertainty. Simulation results show that the proposed scheme provides very high maximum channel utilization to CR nodes while protecting the PU effectively, under time-varying network environment.
机译:在认知无线电(CR)系统中,主要用户(PU)检测方案的效率直接影响系统性能。在本文中,我们基于局部可观察的马尔可夫决策过程(POMDP)框架,提出了一种具有中央控制器的CR网络的自适应传感调度方案。利用所提出的方案,CR系统通过使用一个或多个能量检测,随后是零或一个特征检测来检测PU激活,并且通过使用信道切换来保护PU。在提出的方案中,能量/特征检测和信道切换是根据活动CR节点的数量,从PU接收的信号功率以及噪声不确定性程度进行自适应调度的。仿真结果表明,在时变网络环境下,该方案为CR节点提供了很高的最大信道利用率,同时有效地保护了PU。

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