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Adaptive-Rate Transmission With Opportunistic Scheduling in Wireless Networks

机译:无线网络中具有机会调度的自适应速率传输

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摘要

In this paper, we propose an adaptive-rate transmission scheme with opportunistic scheduling in a two-hop relay network over a Rayleigh fading environment. We assume that only channel state information (CSI) at receivers is available in a decentralized network, where n source-to-destination pairs are completely independent and m half-duplex relays cooperate by exchanging their selected source IDs at the beginning of the two-hop transmission. In the limit of large n and fixed m, the system throughput of the scheme scales as (m/2)log log n. It is shown that this is the same achievable scaling even with perfect CSI assumptions at transmitters and full cooperation among nodes. Furthermore, it is shown that the optimal scaling of m is Θ(log n), under which a linear increase in throughput with m is obtained. A closed-form delay expression of the proposed scheme is also presented.
机译:在本文中,我们提出了在瑞利衰落环境下的两跳中继网络中具有机会调度的自适应速率传输方案。我们假设在分散的网络中只有接收机的信道状态信息(CSI)可用,其中 n 个源到目标对是完全独立的,而 m 个半双工中继通过在两跳传输开始时交换选定的源ID来进行协作。在大 n 和固定 m 的限制下,方案的系统吞吐量按( m / 2)log log n缩放。结果表明,即使在发射机上具有理想的CSI假设以及节点之间的全面协作,这也是可以实现的缩放比例。此外,表明 m 的最佳缩放比例为Θ(log n ),在这种情况下,吞吐量随 m 线性增加。还提出了该方案的闭式延迟表达式。

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