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Training analysis of adaptive interference suppression for direct-sequence code-division multiple-access systems

机译:直接序列码分多址系统自适应干扰抑制的训练分析

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This paper studies the transient behavior of an adaptive near-far resistant receiver for direct-sequence (DS) code-division multiple-access (CDMA) known as the minimum mean-squared error (MMSE) receiver. This receiver structure is known to be near-far resistant and yet does not require the large amounts of side information that are typically required for other near-far resistant receivers. In fact, this receiver only requires code timing on the one desired signal. The MMSE receiver uses an adaptive filter which is operated in a manner similar to adaptive equalizers. Initially there is a training period where the filter locks onto the signal that is sending a known training sequence. After training, the system can then switch to a decision-directed mode and send actual data. This work examines the length of the training period needed as a function of the number of interfering users and the severity of the near-far problem. A standard least mean-square (LMS) algorithm is used to adapt the filter and so the trade-off between convergence and excess mean-squared error is studied. It is found that in almost all cases a step size near 1.0/(total input power) gives the best speed of convergence with a reasonable excess mean-squared error. Also, it is shown that the MMSE receiver can tolerate a 30-40 dB near-far problem without excessively long convergence time.
机译:本文研究了直接序列(DS)码分多址(CDMA)的自适应近距离抗干扰接收机的瞬态行为,这种接收机称为最小均方误差(MMSE)接收机。已知这种接收器结构是近距离抗性的,但是不需要其他近距离抗性接收器通常需要的大量辅助信息。实际上,该接收器仅需要对一个所需信号进行代码定时。 MMSE接收器使用自适应滤波器,该滤波器的工作方式类似于自适应均衡器。最初有一个训练周期,其中滤波器锁定到发送已知训练序列的信号上。训练后,系统可以切换到决策导向模式并发送实际数据。这项工作根据干扰用户的数量和远近问题的严重性,检查了所需培训时间的长短。使用标准最小均方(LMS)算法来调整滤波器,因此研究了收敛性和超额均方误差之间的权衡。我们发现,几乎在所有情况下,步长接近1.0 /(总输入功率)都能以最佳的收敛速度,并具有合理的均方误差。同样,它表明MMSE接收器可以承受30-40 dB的远距离问题,而不会过长的收敛时间。

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