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Optimal cognitive transmission exploiting redundancy in the primary ARQ process

机译:最佳认知传输在主ARQ过程中利用冗余

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Cognitive radio technology enables the coexistence of Primary (PUs) and Secondary Users (SUs) in the same spectrum. In this work, it is assumed that the PU implements a retransmission-based error control technique (ARQ). This creates an inherent redundancy in the interference created by primary transmissions to the SU. We investigate secondary transmission policies that take advantage of this redundancy. The basic idea is that, if a Secondary Receiver (SR) learns the Primary Message (PM) in a given primary retransmission, then it can use this knowledge to cancel the primary interference in the subsequent slots in case of primary retransmissions, thus achieving a larger secondary throughput. This gives rise to interesting trade-offs in the design of the secondary policy. In fact, on the one hand, a secondary transmission potentially increases the secondary throughput but, on the other, causes interference to the reception of the PM at the Primary Receiver (PR) and SR. Such interference may induce retransmissions of the same PM, which plays to the advantage of the secondary user, while at the same time making decoding of the PM more difficult also at the SR and reducing the available margin on the given interference constraint at the PR. It is proved that the optimal secondary strategy prioritizes transmissions in the states where the PM is known to the SR, due to the ability of the latter to perform interference mitigation and obtain a larger secondary throughput. Moreover, when the primary constraint is sufficiently loose, the Secondary Transmitter should also trasmit when the PM is unknown to the SR. The structure of the optimal policy is found, and the throughput benefit of the proposed technique is shown by numerical results.
机译:认知无线电技术能够在相同频谱中共存(PUS)和二级用户(SUS)的共存。在这项工作中,假设PU实现了一种基于重传的错误控制技术(ARQ)。这在由主要传输到SU创建的干扰中创造了固有的冗余。我们调查利用此冗余的二次传输策略。基本思想是,如果辅助接收器(SR)在给定的主要重传中将主消息(PM)学习,则它可以使用此知识在主重传的情况下取消后续时隙中的主要干扰,从而实现了一个较大的二次吞吐量。这引起了次要政策的设计中有趣的权衡。实际上,一方面,二次传输可能增加次级吞吐量,而是在另一个上导致对主接收器(PR)和SR处的PM接收的干扰。这种干扰可以诱导相同PM的重传,该PM播放辅助用户的优点,而同时也在SR处更加困难地进行解码,并在PR处减少给定的干扰约束上的可用余量。事实证明,由于后者进行干扰缓解的能力并获得较大的二次产量,最佳二级策略优先考虑PM对SR已知的状态的变速器。此外,当主要约束足够松动时,次级发射器还应当PM对SR未知时,也应该是TRAMIT。找到最佳策略的结构,并且通过数值结果显示了所提出的技术的吞吐量益处。

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