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Maximum Achievable Throughput in Multiband Multiantenna Wireless Mesh Networks

机译:多频带多天线无线网状网络中的最大可实现吞吐量

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摘要

We have recently witnessed a rapidly increasing demand for, and hence, a shortage of, wireless network bandwidth due to rapidly growing wireless services and applications. It is, therefore, important to develop an efficient way of utilizing this limited bandwidth resource. Fortunately, recent technological advances have enabled software-defined radios (SDRs) to switch from one frequency band to another at minimum cost, thereby making dynamic multiband access and sharing possible. On the other hand, recent advances in signal processing combined with those in antenna technology provide multiple-input multiple-output (MIMO) capabilities, thereby creating opportunities for enhancing the throughput of wireless networks. Both SDRs and MIMO together enable next-generation wireless networks, such as mesh networks, to support dynamic and adaptive bandwidth sharing along time, frequency, and space. In this paper, we develop a new framework that 1) identifies the limits and potential of SDRs and MIMO in terms of achievable network throughput and 2) provides guidelines for designers to determine the optimal parameters of wireless mesh networks equipped with multiband and multiantenna capabilities.
机译:由于无线服务和应用的快速增长,我们最近目睹了对无线网络带宽的快速增长的需求,因此,无线网络带宽短缺。因此,重要的是开发一种有效利用这种有限带宽资源的方法。幸运的是,最近的技术进步已使软件无线电(SDR)能够以最小的成本从一个频带切换到另一个频带,从而使动态多频带访问和共享成为可能。另一方面,与天线技术相结合的信号处理的最新进展提供了多输入多输出(MIMO)功能,从而为增强无线网络的吞吐量创造了机会。 SDR和MIMO共同使下一代无线网络(例如网状网络)能够支持沿时间,频率和空间的动态和自适应带宽共享。在本文中,我们开发了一个新框架,该框架包括:1)根据可实现的网络吞吐量确定SDR和MIMO的局限性和潜力,以及2)为设计人员确定具有多频带和多天线功能的无线网格网络的最佳参数提供指导。

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