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System-Level Performance of Antenna Arrays in CDMA-Based Cellular Mobile Radio Systems

机译:基于CDMA的蜂窝移动无线电系统中天线阵列的系统级性能

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Smart antennas exploit the inherent spatial diversity of the mobile radio channel, provide an antenna gain, and also enable spatial interference suppression leading to reduced intracell as well as intercell interference. Especially, for the downlink of future CDMA-based mobile communications systems, transmit beamforming is seen as a well-promising smart antenna technique. The main objective of this paper is to study the performance of diverse antenna array topologies when applied for transmit beamforming in the downlink of CDMA-based networks. In this paper, we focus on uniform linear array (ULA) and uniform circular array (UCA) topologies. For the ULA, we consider three-sector base stations with one linear array per sector. While recent research on downlink beamforming is often restricted to one single cell, this study takes into account the important impact of intercell interference on the performance by evaluating complete networks. Especially, from the operator perspective, system capacity and system coverage are very essential parameters of a cellular system so that there is a clear necessity of intensive system level investigations. Apart from delivering assessments on the performance of the diverse antenna array topologies, in the paper also different antenna array parameters, such as element spacing and beamwidth of the sector antennas, are optimized. Although we focus on the network level, fast channel fluctuations are taken into account by including them analytically into the signal-to-interference calculation.
机译:智能天线利用了移动无线电信道的固有空间分集,提供了天线增益,还实现了空间干扰抑制,从而减少了小区内以及小区间干扰。特别是,对于未来基于CDMA的移动通信系统的下行链路,发射波束成形被视为一种很有前途的智能天线技术。本文的主要目的是研究当应用于基于CDMA网络的下行链路中的发射波束成形时,各种天线阵列拓扑的性能。在本文中,我们专注于统一线性阵列(ULA)和统一圆形阵列(UCA)拓扑。对于ULA,我们考虑三扇区基站,每个扇区具有一个线性阵列。尽管最近对下行链路波束成形的研究通常仅限于一个小区,但这项研究通过评估完整的网络来考虑小区间干扰对性能的重要影响。特别地,从操作者的角度来看,系统容量和系统覆盖范围是蜂窝系统的非常重要的参数,因此显然有必要进行深入的系统级研究。除了对各种天线阵列拓扑的性能进行评估之外,本文还优化了不同的天线阵列参数,例如扇形天线的单元间距和波束宽度。尽管我们专注于网络级别,但通过将其分析性地纳入信号干扰计算中,可以考虑快速信道波动。

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