飞蜂窝系统中的有线无线:来自室内信道测量的案例研究

J. Gambini, S. Savazzi, P. Castiglione, U. Spagnolini, G. Matz
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引用次数: 5

摘要

在本文中,我们考虑了一个特定的案例研究,其中M个室内飞基站共享相同的无线电资源来与中心局通信。室外宏蜂窝基站增加了同信道干扰(跨层干扰)的水平。对影响多飞蜂窝通信的共层(来自相邻飞蜂窝)和跨层干扰水平的分析是基于2.4GHz无线电测量活动中获得的特定站点多链路信道模型[3]。在这种情况下,我们研究了无线电缆(FemtoWoC)模式的好处,该模式基于将PHY/MAC功能延迟到远程多单元FAP (femtocell接入点)的概念,而将模拟RF处理(放大转发-AF)留给家庭设备。基于特定站点的室内到室内和室外到室内的传播参数,在远程多小区FAP上进行上行链路的干扰缓解,考虑到以下实际设置:i)由于静态多径衰落分量导致室内无线电传播受到时域衰落的损害;ii)电缆上的通信受外来xDSL服务产生的串扰影响;iii)对无线电信道的不完全了解限制了多细胞FAP的抗干扰性能。
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Wireless over cable in femtocell systems: A case study from indoor channel measurements
In this paper we consider a specific case-study where M indoor femtocells share the same radio resources for communicating to the central office. An outdoor macro-cell base station increases the level of co-channel interference (cross-tier interference). Analysis of the co-tier (arising from neighboring femtocells) and cross-tier interference levels affecting the multi-femtocell communications is based on a site-specific multi-link channel model obtained from a radio measurement campaign carried out at 2.4GHz [3]. In this context, we investigate the benefits of the Wireless over Cable (FemtoWoC) paradigm, based on the concept of deferring the PHY/MAC functionalities to a remote multicell FAP (femtocell access point), while leaving to the in-home device only the analog RF processing (amplify-and-forward -AF). Based on site-specific indoor-to-indoor and outdoor-to-indoor propagation parameters, interference mitigation for the uplink is carried out at the remote multicell FAP by taking into account realistic settings where: i) indoor radio propagation is impaired by Rician fading due to static multi-path fading components; ii) communication over the cable is affected by crosstalk produced by alien xDSL services; iii) imperfect knowledge of the radio channel limits the interference rejection performance at the multicell FAP.
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