Transmitter macrodiversity in radio fibre microcellular networks

I. Rivas, L. Lopes
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引用次数: 7

Abstract

Radio-fibre microcellular networks are composed by small-size cells that make use of a fibre optic network for the conveyance of RF signals from a central controller to remote antennae at cellsite. This structure is particularly suitable to accomplish receiver and transmitter macrodiversity since the same RF channel can be transmitted and received through multiple ports, thus providing a large coverage area in which mobiles do not have to switch channels when roaming. This paper investigates the performance of multitransmitter diversity in fading channels, in noise and interference limited conditions. The problem differs from diversity reception in that signal combining is now non-coherent. Results are presented in terms of radio coverage and cochannel reuse efficiency firstly under Rayleigh fading only and secondly in a city street microcell environment. Simulcasting is an effective shadowing counteraction in noise conditions and achieves similar performance to no diversity in interference conditions.
无线光纤微蜂窝网络中的发射机宏分集
无线纤维微蜂窝网络由小型蜂窝组成,这些蜂窝利用光纤网络将射频信号从中央控制器传输到蜂窝站点的远程天线。这种结构特别适合实现接收和发送宏分集,因为同一个射频信道可以通过多个端口发送和接收,从而提供大的覆盖区域,移动设备在漫游时不必切换信道。本文研究了多发射机分集在衰落信道、噪声和干扰受限条件下的性能。这个问题不同于分集接收,因为信号合并现在是非相干的。首先给出了在瑞利衰落条件下和在城市街道微基站环境下无线电覆盖和同信道复用效率的研究结果。同播在噪声条件下是一种有效的阴影抵消方法,在干扰条件下达到与无分集相当的效果。
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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