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On cognitive channels with an oblivion constraint

机译:在带有遗忘约束的认知渠道上

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We consider a Gaussian point-to-point secondary link which co-exists with a Gaussian point-to-point primary link, and is permitted to transmit within the primary user''s interference margin — a simple but realistic channel model for underlay cognitive systems. Under this assumption, we are interested in quantifying the secondary user rate gains when the secondary users have knowledge of the primary link''s codebook. This may be exploited at the secondary transmitter or receiver — we focus on the latter. As first proposed by Popovski et al., this codebook knowledge may be exploited to opportunistically — when channel conditions permit — either fully cancel the primary user interference at the secondary receiver, or otherwise treat it as noise. In this work, we propose an achievable rate region in which the primary user transmits according to an information theoretic broadcast strategy, but otherwise remains oblivious to the secondary user operation. The secondary receiver exploits the primary codebooks, together with its broadcast strategy transmission to decode a portion of the primary message, thereby opportunistically partially canceling the primary user interference seen at the secondary receiver and thus straddles the two extremes between fully decoding and treating the interference as noise as presented by Popovski et al. Interestingly, it is shown that this broadcast strategy does not outperform Popovski et al.''s simple “all or nothing” strategy. We thus seek to tighten outer bounds on the secondary user''s channel capacity. The inclusion of an average power constraint on the secondary link furthermore allows us to develop a new, tighter outer bound for this channel, which is numerically evaluated and compared to the inner bounds.
机译:我们考虑与高斯点对点主链路共存的高斯点对点辅助链路,并允许其在主要用户的干扰余量内传输-一种简单但现实的信道模型,可用于认知系统。在此假设下,当次级用户了解主链路的密码本时,我们有兴趣量化次级用户的速率增益。这可能会在次要发送器或接收器上得到利用-我们重点关注后者。正如Popovski等人首先提出的那样,当信道条件允许时,可以利用这种密码本知识来机会性地完全消除主要用户在次要接收器上的干扰,或者将其视为噪声。在这项工作中,我们提出了一个可达到的速率区域,在该速率区域中,主要用户根据信息理论广播策略进行传输,但在其他方面仍然没有引起次要用户操作的注意。次要接收器利用主要码本及其广播策略传输来解码部分主要消息,从而有机会部分地消除在次要接收器处看到的主要用户干扰,从而跨越了完全解码和将干扰视为干扰之间的两个极端。 Popovski等人提出的噪声。有趣的是,事实证明,这种广播策略并不优于Popovski等人的简单的``全有或全无''策略。因此,我们试图收紧对次要用户的频道容量的限制。此外,在次级链路上包含平均功率约束,使我们能够为此通道开发一个新的,更严格的外部边界,并对其进行数值评估并将其与内部边界进行比较。

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