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Efficient reduced complexity windowed optimal time domain equalizer for discrete multitone-based DSL modems

机译:高效的降低复杂度的基于窗口的最佳时域均衡器,用于基于离散多音的DSL调制解调器

摘要

An algorithm for computing an efficient, reduced complexity, windowed optimal linear time domain equalizer for a dispersive channel comprises the steps of determining a window of maximum energy in the impulse response of length equal to or less than a number of cyclic prefix samples associated with a received digital data signal, computing the corresponding inside and outside matrices, performing an inverse Cholesky decomposition of the inside matrix, creating a resultant matrix as the product of the outer and the upper and lower square root inner matrix, followed by Householder reduction and QL transformation to thereby compute the time domain equalizer as the linear transformation of the eigenvector corresponding to the smallest eigenvalue at the receiver. The smallest eigenvalue is determined using the aforementioned orthogonal transformations without determining all the eigenvalues efficiently but without the loss accuracy associated with iterative methods like the conventional power method. The algorithm may be most conveniently implemented, for example, in the form of a thirty-two bit digital signal processor at a data receiver.
机译:一种用于计算用于色散信道的有效的,降低了复杂度的,加窗的最佳线性时域均衡器的算法,包括以下步骤:确定长度等于或小于与α相关联的循环前缀样本的数量的脉冲响应中的最大能量的窗。接收到的数字数据信号,计算相应的内部和外部矩阵,对内部矩阵进行逆Cholesky分解,创建一个结果矩阵,作为外部与上下平方根内部矩阵的乘积,然后进行Householder归约和QL变换从而将时域均衡器计算为对应于接收器最小特征值的特征向量的线性变换。使用上述正交变换来确定最小特征值,而不有效地确定所有特征值,而没有与诸如传统幂方法的迭代方法相关联的损失精度。该算法可以以例如在数据接收器处的三十二位数字信号处理器的形式最方便地实现。

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