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Convergence analysis of chip- and fractionally spaced LMS adaptive multiuser CDMA detectors

机译:芯片和分数间隔LMS自适应多用户CDMA检测器的收敛性分析

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摘要

This paper analyzes the convergence behavior of the least mean square (LMS) filter when used in an adaptive code division multiple access (CDMA) detector consisting of a tapped delay line with adjustable tap weights. The sampling rate may be equal to or higher than the chip rate, and these correspond to chip-spaced (CS) and fractionally spaced (FS) detection, respectively. It is shown that CS and FS detectors with the same time-span exhibit identical convergence behavior if the baseband received signal is strictly bandlimited to half the chip rate. Even in the practical case when this condition is not met, deviations from this observation are imperceptible unless the initial tap-weight vector gives an extremely large mean squared error (MSE). This phenomenon is carefully explained with reference to the eigenvalues of the correlation matrix when the input signal is not perfectly bandlimited. The inadequacy of the eigenvalue spread of the tap-input correlation matrix as an indicator of the transient behavior and the influence of the initial tap weight vector on convergence speed are highlighted. Specifically, a initialization within the signal subspace or to the origin leads to very much faster convergence compared with initialization in the a noise subspace.
机译:本文分析了最小均方(LMS)滤波器在由分接权重可调的抽头延迟线组成的自适应码分多址(CDMA)检测器中使用时的收敛性能。采样率可以等于或高于码片率,并且它们分别对应于码片间隔(CS)和分数间隔(FS)检测。结果表明,如果将基带接收信号严格限制为码片速率的一半,则具有相同时间跨度的CS和FS检测器会表现出相同的收敛行为。即使在不满足此条件的实际情况下,也不会察觉到与该观察值的偏差,除非初始抽​​头权重矢量给出非常大的均方误差(MSE)。当输入信号不是完美的带宽限制时,将参考相关矩阵的特征值仔细解释这种现象。突出显示了抽头输入相关矩阵的特征值扩展不足以指示瞬态行为,以及初始抽头权重向量对收敛速度的影响。具体地说,与噪声子空间中的初始化相比,信号子空间中或原点的初始化导致非常快的收敛。

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