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首页> 外文期刊>IEEE Transactions on Signal Processing >Low-Complexity Variable Step-Size Mechanisms for Stochastic Gradient Algorithms in Minimum Variance CDMA Receivers
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Low-Complexity Variable Step-Size Mechanisms for Stochastic Gradient Algorithms in Minimum Variance CDMA Receivers

机译:最小方差CDMA接收机中随机梯度算法的低复杂度可变步长机制

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摘要

In this paper, the performance of blind adaptive receivers for direct sequence code division multiple access (DS-CDMA) systems that employ stochastic gradient (SG) algorithms with variable step size mechanisms is investigated. Two low complexity variable step size mechanisms are proposed for estimating the parameters of linear CDMA receivers that operate with SG algorithms. For multipath channels the novel adaptation mechanisms are also incorporated in the channel estimation algorithms, whereas for the single-path case the novel techniques are restricted to the linear receiver parameter vector estimation. Analytical expressions for the excess mean squared error (MSE) are derived and a convergence analysis of the proposed adaptation techniques is carried out for both frequency selective and flat scenarios. Finally, numerical experiments are presented for nonstationary environments, showing that the new mechanisms achieve superior performance to previously reported methods at a reduced complexity.
机译:本文研究了采用具有可变步长机制的随机梯度(SG)算法的直接序列码分多址(DS-CDMA)系统的盲自适应接收机的性能。提出了两种低复杂度的可变步长机制,用于估计使用SG算法工作的线性CDMA接收机的参数。对于多径信道,新的自适应机制也被合并到信道估计算法中,而对于单径情况,新技术仅限于线性接收机参数矢量估计。推导了过量均方误差(MSE)的解析表达式,并针对频率选择和平坦场景对提出的自适应技术进行了收敛分析。最后,提出了针对非平稳环境的数值实验,表明新机制以较低的复杂度实现了优于以前报道的方法的性能。

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