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Information-Theoretic Operating Regimes of Large Wireless Networks

机译:大型无线网络的信息理论操作环境

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In analyzing the point-to-point wireless channel, insights about two qualitatively different operating regimes-bandwidth and power-limited-have proven indispensable in the design of good communication schemes. In this paper, we propose a new scaling law formulation for wireless networks that allows us to develop a theory that is analogous to the point-to-point case. We identify fundamental operating regimes of wireless networks and derive architectural guidelines for the design of optimal schemes. Our analysis shows that in a given wireless network with arbitrary size, area, power, bandwidth, etc., there are three parameters of importance: the short-distance signal-to-noise ratio (SNR), the long-distance SNR, and the power path loss exponent of the environment. Depending on these parameters, we identify four qualitatively different regimes. One of these regimes is especially interesting since it is fundamentally a consequence of the heterogeneous nature of links in a network and does not occur in the point-to-point case; the network capacity is both power and bandwidth limited. This regime has thus far remained hidden due to the limitations of the existing formulation. Existing schemes, either multihop transmission or hierarchical cooperation, fail to achieve capacity in this regime; we propose a new hybrid scheme that achieves capacity.
机译:在分析点对点无线信道时,已证明在良好的通信方案设计中必不可少的对两种质量不同的运行方式(带宽和功率限制)的见解。在本文中,我们提出了一种新的无线网络缩放定律公式,使我们能够开发出一种类似于点对点情况的理论。我们确定了无线网络的基本运行机制,并得出了设计最佳方案的体系结构指南。我们的分析表明,在给定大小,面积,功率,带宽等任意大小的无线网络中,重要的三个参数是:短距离信噪比(SNR),长距离SNR和环境的功率路径损耗指数。根据这些参数,我们确定了四个质量上不同的方案。这些机制之一特别有趣,因为它基本上是网络中链路异构性质的结果,并且在点对点情况下不会发生。网络容量受功率和带宽的限制。由于现有表述的局限性,迄今为止该制度仍然被隐藏。现有的方案,无论是多跳传输还是分层协作,都无法在这种情况下实现容量;我们提出了一种可实现容量的新混合方案。

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