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Fast Adaptive Blind Beamforming Algorithm for Antenna Array in CDMA Systems

机译:CDMA系统中天线阵列的快速自适应盲波束成形算法

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摘要

In this paper, the maximum signal-to-interference-plus-noise ratio (MSINR) beamforming problem in antenna-array CDMA systems is considered. In this paper, a modified MSINR criterion presented in a previous paper is interpreted as an unconstrained scalar cost function. By applying recursive least squares (RLS) to minimize the cost function, a novel blind adaptive beamforming algorithm to estimate the beamforming vector, which optimally combines the desired signal contributions from different antenna elements while suppressing noise and interference, is derived. Neither the knowledge of the channel conditions (fading coefficients, signature sequences and timing of interferers, statistics of other noises, etc.) nor training sequence is required. Compared with previously published adaptive beamforming algorithms based on the stochastic-gradient method, it has faster convergence and better tracking capability in the time-varying environment. Simulation results in various signal environments are presented to show the performance of the proposed algorithm.
机译:本文考虑了天线阵列CDMA系统中的最大信号干扰加噪声比(MSINR)波束成形问题。在本文中,先前论文中提出的经修改的MSINR准则被解释为无约束标量成本函数。通过应用递归最小二乘(RLS)来最小化代价函数,可以得出一种新颖的盲自适应波束成形算法来估计波束成形矢量,该算法可以最佳地组合来自不同天线元件的所需信号贡献,同时抑制噪声和干扰。既不需要知道信道状况(衰落系数,签名序列和干扰源的定时,其他噪声的统计信息等),也不需要训练序列。与以前发布的基于随机梯度法的自适应波束成形算法相比,该算法在时变环境下具有更快的收敛速度和更好的跟踪能力。给出了在各种信号环境下的仿真结果,以证明所提算法的性能。

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