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On the analytical evaluation of closed-loop power-control error statistics in DS-CDMA cellular systems

机译:DS-CDMA蜂窝系统中闭环功率控制误差统计量的分析评估

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摘要

This paper proposes an analytical study that aims at evaluating the power-control error statistics in wireless direct-sequence code-division multiple-access (DS-CDMA) cellular systems based on an ideal variable step closed-loop power-control scheme. In particular, the cumulative distribution function and the correlation coefficient of the power-control error are derived through a first-order Taylor expansion of the received signal envelope. A novel power-control scheme that exploits the autocorrelation properties of the fading is also proposed, and its performance is analyzed in terms of power-control error statistics. Rayleigh and Rice frequency-selective channel models, which involve the use of a diversity RAKE receiver at the base station, have been taken into account. The proposed analytical approach specifically applies to CDMA systems. A method that aims at estimating the capacity of a DS-CDMA cellular network is also given.
机译:本文提出了一项分析研究,旨在评估基于理想变步长闭环功率控制方案的无线直接序列码分多址(DS-CDMA)蜂窝系统中的功率控制误差统计量。特别地,通过接收信号包络的一阶泰勒展开来导出功率控制误差的累积分布函数和相关系数。还提出了一种利用衰落自相关特性的新型功率控制方案,并从功率控制误差统计的角度分析了其性能。已经考虑了瑞利和赖斯频率选择信道模型,其中涉及在基站使用分集RAKE接收机。所提出的分析方法特别适用于CDMA系统。还给出了一种旨在估计DS-CDMA蜂窝网络的容量的方法。

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