An experimental hardware prototype for fixed wireless broadband access at 60-400 Mbit/sec in 4.6 MHz

M. Martone
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Abstract

While the race for a ubiquitous, reliable and cost effective wireless broadband system has generated intense competition, the fundamental problem afflicting the wireless industry is the cost of the transceiver hardware. We describe and discuss the results of some experimental outdoor field trials which demonstrate - for the first time - the hardware feasibility of fixed broadband wireless radio links with spectral efficiencies in excess of 50 bit/s/Hz in severe multipath frequency selective environments (non line-of-sight). Custom cost-effective hardware has allowed data transmission in the range 60-200 Mbit/s occupying a bandwidth of 2-4/5 MHz at MMDS frequencies (/spl sime/2.5 GHz). We also introduce a new modeling methodology inspired by basic theoretical physics which gives a different and practical perspective to the spatio-temporal transmission problem. We exploit the idea that extra-dimensionality can be created by properly sampling the wavefield space created by multipath propagation. Previously reported hardware experiments using the same concept have addressed the simpler problem of indoor communications in a 30 kHz cellular channel. The developed technology has the potential of making practical and cost effective the deployment of high capacity microwave data communications equipment for point to point and point to multipoint systems.
在4.6 MHz中以60- 400mbit /s速率进行固定无线宽带接入的实验硬件原型
虽然对无所不在、可靠且具有成本效益的无线宽带系统的争夺已经引发了激烈的竞争,但困扰无线行业的根本问题是收发器硬件的成本。我们描述并讨论了一些实验性户外现场试验的结果,这些试验首次证明了在严重的多径频率选择环境(非视距)中,频谱效率超过50 bit/s/Hz的固定宽带无线无线电链路的硬件可行性。定制的经济高效的硬件允许60- 200mbit /s范围内的数据传输,占用MMDS频率(/spl /2.5 GHz)的2-4/ 5mhz带宽。我们还介绍了一种受基础理论物理启发的新的建模方法,为时空传输问题提供了一个不同的和实用的视角。我们利用了通过对多径传播产生的波场空间进行适当采样可以产生额外维度的想法。先前报道的使用相同概念的硬件实验已经解决了30khz蜂窝信道中室内通信的简单问题。所开发的技术具有在点对点和点对多点系统中部署高容量微波数据通信设备的实用性和成本效益的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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