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Uplink Co-Channel Interference Analysis and Cancellation in Femtocell Based Distributed Antenna System

机译:基于毫微微小区的分布式天线系统中的上行同频干扰分析和抵消

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In wireless systems, coverage and capacity is a major challenge especially in high buildings. The need to reuse the limited available spectrum results in cochannel interference. Cochannel interference is a very critical factor affecting system performance. It limits the uplink coverage and capacity of wireless networks such as femtocells. Joint processing of the received signal among cochannel receivers has recently been shown to be very beneficial from an interference cancellation point of view. This paper proposes a femtocell based distributed antenna system (DAS) for uplink transmission in high buildings where distributed antenna units deployed on each floor of the building are connected to femto base stations (BS). The femto BSs can cooperate through joint signal processing for all cells in order to estimate the received signal, reduce cochannel interference introduced by frequency reuse among the femtocells and maintain high spectral efficiency. Analysis and numerical results show remarkable gains especially when interference cancellation is employed at each cooperative femto BS, leading to many more simultaneous users being supported on the same frequency and resulting in large capacity increase when compared with the traditional system with no interference cancellation technique.
机译:在无线系统中,覆盖范围和容量是主要挑战,尤其是在高层建筑中。重用有限的可用频谱的需求导致同信道干扰。同频道干扰是影响系统性能的非常关键的因素。它限制了诸如毫微微小区之类的无线网络的上行链路覆盖范围和容量。从干扰消除的观点来看,近来在同信道接收机之间对接收信号的联合处理已被证明是非常有益的。本文提出了一种基于飞蜂窝的分布式天线系统(DAS),用于高层建筑中的上行传输,其中部署在建筑物各层上的分布式天线单元连接到毫微微基站(BS)。毫微微BS可以通过针对所有小区的联合信号处理来协作,以估计接收到的信号,减少由毫微微小区之间的频率复用所引入的同信道干扰,并维持高频谱效率。分析和数值结果显示出显着的收益,特别是当在每个协作的毫微微BS采用干扰消除时,与没有干扰消除技术的传统系统相比,导致更多的同时用户在相同的频率上得到支持,并导致容量增加。

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