Bursty narrowband relay networks in the low-SNR regime

Tony Q. S. Quek, Hyundong Shin
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引用次数: 1

Abstract

In a wireless network, the use of cooperation among nodes can significantly improve capacity and robustness to fading. Node cooperation can take many forms, including relaying and coordinated beamforming. However, many cooperation techniques have been developed for operation in narrowband systems for high signal-to-noise ratio (SNR) applications. It is important to study how relay networks perform in a low-SNR regime, where the available degrees of freedom is large and the resulting SNR per degree of freedom is small. In this paper, we investigate the achievable rates and scaling laws of bursty amplify-and-forward relay networks in the low-SNR regime. Specifically, our results allow us to understand the effect of different system parameters on the achievable rates and scaling laws in the low-SNR regime, and highlight the role of bursty transmissions in this regime. These results entirely depend on the geographic locations of the nodes and are applicable for both fixed and random networks. We identify four scaling regimes that depend on the growth of the number of relay nodes and the increase of burstiness relative to the SNR.
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低信噪比条件下的突发窄带中继网络
在无线网络中,利用节点间的协作可以显著提高网络容量和抗衰落的鲁棒性。节点合作可以采取多种形式,包括中继和协调波束形成。然而,针对高信噪比(SNR)应用的窄带系统,已经开发了许多合作技术。研究中继网络在低信噪比条件下的性能是很重要的,在这种情况下,可用的自由度很大,而每个自由度的信噪比很小。本文研究了低信噪比条件下突发放大转发中继网络的可实现速率和标度规律。具体来说,我们的研究结果使我们能够理解不同系统参数对低信噪比下可实现速率和标度规律的影响,并突出了突发传输在该状态下的作用。这些结果完全取决于节点的地理位置,适用于固定和随机网络。我们确定了四种缩放机制,它们依赖于中继节点数量的增长和相对于信噪比的突发性的增加。
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