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Performance bounds and associated design principles for multi-cellular wireless OFDMA systems

机译:多蜂窝无线OFDMA系统的性能范围和相关的设计原理

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In this paper, we consider the downlink of large-scale multi-cellular OFDMA-based networks and study performance bounds of the system as a function of the number of users K, the number of base-stations B, and the number of resource-blocks N. Here, a resource block is a collection of subcarriers such that all such collections, that are disjoint have associated independently fading channels. We derive novel upper and lower bounds on the sum-utility for a general spatial geometry of base stations, a truncated path loss model, and a variety of fading models (Rayleigh, Nakagami-m, Weibull, and LogNormal). We also establish the associated scaling laws and show that, in the special case of fixed number of resource blocks, a grid-based network of base stations, and Rayleigh-fading channels, the sum information capacity of the system scales as Θ(B log log K/B) for extended networks, and as O(B log logK) and Ω(log logK) for dense networks. Interpreting these results, we develop some design principles for the service providers along with some guidelines for the regulators in order to achieve provisioning of various QoS guarantees for the end users and, at the same time, maximize revenue for the service providers.
机译:在本文中,我们考虑了基于大规模多蜂窝OFDMA的网络的下行链路,并根据用户数K,基站数B和资源数的函数来研究系统的性能范围。这里,资源块是子载波的集合,使得所有不相交的此类集合具有关联的独立衰落信道。对于基站的一般空间几何,截短的路径损耗模型以及各种衰落模型(Rayleigh,Nakagami-m,Weibull和LogNormal),我们得出了总和效用的新颖上限和下限。我们还建立了相关的缩放定律,并表明,在固定数量的资源块,基站的网格网络和瑞利衰落信道的特殊情况下,系统的总信息容量按Θ(B log log K / B)(对于扩展网络),以及O(B log logK)和Ω(log logK)(对于密集网络)。解释这些结果,我们为服务提供商制定了一些设计原则,并为监管机构制定了一些准则,以便为最终用户提供各种QoS保证,同时使服务提供商的收入最大化。

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