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A simple priority scheme with spectrum partition for multiuser opportunistic spectrum access in cognitive radio networks

机译:一种简单的优先级方案,具有用于认知无线电网络中的多用户机会频谱访问的频谱分区

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In this paper, a multiuser optimal stopping strategy for Opportunistic Spectrum Access (OSA) is proposed. In practical cognitive radio networks (CRNs), secondary users (SUs) usually have their own priorities of spectrum occupation, that is, SU with higher priority has a better chance to access idle channels in the spectrum. Since all SUs share the same spectrum information, throughput of the SUs with low priorities will be quite low even null if idle channels are always allocated to the SUs with high priorities. In another aspect, even if the SUs with low priorities also have chance to access idle channels, collisions will happen because of the competition among SUs. In order to increase system throughput of all SUs and avoid such collisions, we formulate this problem as an optimal stopping problem and propose an effective priority scheme with spectrum partition. In view of users' priorities, spectrum is partitioned completely into several channel sets, the amount of which equals to that of SUs. Thus, the problem can be simplified into multiple single-user cases. In each slot, each SU utilizes optimal stopping rule to determine which channel to access in consideration of channel states and exploration overhead. Simulation results show the effectiveness of the proposed strategy.
机译:本文提出了一种用于机会主义频谱接入(OSA)的多用户最优停止策略。在实用认知无线电网络(CRNS)中,二级用户(SUS)通常具有自己的频谱占用优先级,即SU,具有更高优先级的SU有更好的机会在频谱中访问空闲通道。由于所有SUS共享相同的频谱信息,因此如果始终将空闲通道始终分配给SUS,则SUS具有低优先级的吞吐量甚至是均匀的。在另一方面,即使SUS具有低优先级的机会也有机会访问空闲通道,碰撞将是由于SUS之间的竞争而发生的。为了提高所有SU的系统吞吐量并避免这种碰撞,我们将该问题作为最佳停止问题,提出了一种具有频谱分区的有效优先级方案。鉴于用户的优先事项,频谱完全分配到几个通道集中,其数量等于SUS的数量。因此,可以简化到多个单用户案例中的问题。在每个时隙中,每个SU利用最佳停止规则来确定考虑信道状态和探索开销的访问的通道。仿真结果表明了拟议策略的有效性。

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