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An Overview of Sealing Laws in Ad Hoc and Cognitive Radio Networks

机译:Ad Hoc和认知无线电网络中的密封法概述

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Currently, wireless communications are changing along the lines of three main thrusts. The first is the introduction of secondary spectrum licensing (SSL). Regulations on the usage of licensed spectra are being loosened, encouraging unused primary spectrum to be licensed, often in an opportunistic manner, to secondary devices. The second is the introduction of cognitive radios. These wireless devices are able to sense and adapt in a "smart" manner to their wireless environment, making them prime candidates to becoming secondary users in SSL initiatives. Finally, as we approach the communication limits of point-to-point channels, and as wireless devices become cheap and ubiquitous, the focus is shifting from single to multiple communication links, or networks. In this paper, we provide an overview of the recently established theoretical limits, in the form of sum-rates, or throughput, of two main types of networks: ad hoc networks, in which the devices are homogeneous, and cognitive networks, in which a mixture of primary and secondary (or cognitive) devices are present. We summarize and provide intuition on how the throughput of a network scales with its number of nodes n, as n → ∞, under different network and node capability assumptions.
机译:当前,无线通信正沿着三个主要方向变化。首先是引入二级频谱许可(SSL)。放宽了许可频谱使用的法规,鼓励未使用的主频谱通常以机会主义的方式许可给次要设备。第二是引入认知无线电。这些无线设备能够以“智能”方式感知并适应其无线环境,使其成为SSL计划中的次要用户的主要候选人。最后,随着我们接近点对点通道的通信限制,并且随着无线设备变得便宜且普遍存在,重点正在从单条通信链路转移到多条通信链路或网络。在本文中,我们以两种速率的总和或吞吐量的形式,概述了最近建立的两种理论上的理论极限网络:设备是同质的自组织网络和认知网络,其中存在主要和次要(或认知)设备的混合物。我们总结并提供了直觉,说明在不同的网络和节点能力假设下,网络的吞吐量如何随其节点数n(n→∞)扩展。

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