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Zero-forcing precoding using generalized inverses for G.fast DSL systems

机译:G.fast DSL系统中使用广义逆的零强制预编码

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Previous work on precoding for G.fast systems focused on linear and non-linear precoding techniques to maximize the overall throughput. It has been shown that the existing algorithms almost achieve the sum capacity. However, the rate region does no longer feature a rectangular shape as for VDSL systems, that motivates the utilization of operating points suboptimal w.r.t. sum rate to meet the individual users demands. In these points, the gap between existing zero-forcing techniques and the corresponding weighted sum capacity is significantly larger. Therefore, we propose to improve the linear zero-forcing precoding by employing generalized inverses, for which we present methods that enable us to cope with the large system size of G.fast systems. Our simulations show that our proposed precoding scheme outperforms linear ZF solutions based on the Moore-Penrose pseudoinverse significantly in scenarios with greatly varying user demands.
机译:以前有关G.fast系统的预编码的工作集中于线性和非线性预编码技术,以最大程度地提高整体吞吐量。已经表明,现有算法几乎达到了求和能力。然而,速率区域不再像VDSL系统那样具有矩形形状,这促使利用了次优w.r.t的工作点。满足个别用户需求的总和。在这些方面,现有的迫零技术与相应的加权和容量之间的差距明显更大。因此,我们建议通过采用广义逆来改进线性迫零预编码,为此,我们提出了使我们能够应对G.fast系统的大系统尺寸的方法。我们的仿真表明,在用户需求变化很大的情况下,我们提出的预编码方案明显优于基于Moore-Penrose伪逆的线性ZF解决方案。

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