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Differential MMSE: A Framework for Robust Adaptive Interference Suppression for Direct-Sequence CDMA Over Fading Channels

机译:差分MMSE:用于衰落信道上直接序列CDMA的鲁棒自适应干扰抑制框架

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Differential MMSE: A Framework for Robust Adaptive Interference Suppression for Direct-Sequence CDMA Over Fading Channels The linear minimum mean-squared error (MMSE) criterion is known to provide adaptive algorithms for interference suppression in direct-sequence code-division multiple-access (DS-CDMA) systems. However, standard MMSE adaptation is not robust to fast fading, being unable to compensate for rapid channel variations. In this paper, we provide a framework for deriving robust adaptive algorithms in this setting based on a new differential MMSE (DMMSE) criterion, which is a constrained optimization problem in which the quantity to be tracked is the ratio of the data appearing in two successive observation intervals. When applied to a DS-CDMA system with short spreading waveforms (i.e., with period equal to the symbol interval) operating over a flat fading channel, the DMMSE criterion avoids tracking the fades, exploiting the negligible variation of the fading gain over two consecutive symbols. For frequency-selective fading, the DMMSE criterion is extended to provide a new eigenrake receiver, which provides interference suppression and diversity combining without requiring explicit information regarding the desired user's propagation channel.
机译:差分MMSE:用于衰落信道上直接序列CDMA的鲁棒自适应干扰抑制框架众所周知,线性最小均方误差(MMSE)准则为直接序列码分多址(DS)中的干扰抑制提供了自适应算法。 -CDMA)系统。但是,标准的MMSE自适应对于快速衰落并不稳健,无法补偿快速的信道变化。在本文中,我们提供了一个框架,用于基于新的差分MMSE(DMMSE)准则在这种情况下推导鲁棒的自适应算法,这是一个受约束的优化问题,其中要跟踪的数量是两次连续出现的数据的比率观察间隔。当应用于具有在平坦衰落信道上工作的短扩展波形(即,周期等于符号间隔)的DS-CDMA系统时,DMMSE准则避免了跟踪衰落,利用了两个连续符号上衰落增益的可忽略不计的变化。对于频率选择性衰落,扩展了DMMSE标准以提供一种新的本征接收机,该接收机提供干扰抑制和分集组合,而无需有关所需用户传播信道的明确信息。

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