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Adaptive Linear Precoded DMT as an Efficient Resource Allocation Scheme for Power-Line Communications

机译:自适应线性预编码DmT作为电力线通信的有效资源分配方案

摘要

In this paper, we propose to apply adaptive loading principles to linear precoded digital multitone (LP-DMT). This new approach can especially be exploited in the powerline context, since it requires the knowledge of the channel at the transmitter. We first show that maximal waveform capacity is achieved when orthogonal matrices are used to linearly precode the multitone signal. A practical loading algorithm based on tone clustering is then developed to handle the configuration of the system. This algorithm assigns tones, size of precoding matrices, bits and energies in order to maximize the total throughput of the system. The optimization procedure is led under power spectral density (DSP) limitations and finit order modulations constraint. Through simulations over power line channels, it is shown that the new adaptive LP-DMT system takes advantage of the carrier merging effect offered by the precoding function and then outperforms the non-precoded DMT system.
机译:在本文中,我们建议将自适应加载原理应用于线性预编码数字多音(LP-DMT)。这种新方法尤其可以在电力线环境中使用,因为它需要了解发射机处的信道。我们首先表明,当使用正交矩阵对多音频信号进行线性预编码时,可获得最大的波形容量。然后,开发了一种基于音调聚类的实用加载算法来处理系统的配置。该算法分配音调,预编码矩阵的大小,位和能量,以使系统的总吞吐量最大化。优化过程是在功率谱密度(DSP)限制和有限阶调调制约束下进行的。通过对电力线信道的仿真,可以证明新的自适应LP-DMT系统利用了预编码功能提供的载波合并效果,并且性能优于未预编码的DMT系统。

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