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Joint Window and Time Domain Equalizer Design for Bit Rate Maximization in DMT-Receivers

机译:DMT接收机中比特率最大化的联合窗口和时域均衡器设计

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In discrete multitone (DMT) receivers, as for instance in asymmetric digital subscriber lines (ADSLs), the classical equalizer structure consists of a (real) time domain equalizer (TEQ) combined with complex 1-tap frequency domain equalizers (FEQs). Additionally, receiver windowing can be applied to mitigate the bad spectral containment of the demodulating DFT sidelobes. In this paper, we focus on a combined equalizer and windowing design procedure to maximize the achievable bit rate in DMT-based modems. Whereas the combination of a TEQ with a single window treats all the data carrying tones in a common way, the presented design method can also be used in a "per group" fashion, where smaller groups of tones receive each a different equalizer-window pair. When such groups contain only one single tone, the design procedure can be linked to the performance of an unbiased minimum mean square error (MMSE) per tone equalizer (PTEQ), which then also implicitly implements a per tone window. The general framework introduced in this paper allows us to treat equalizer-only and window-only designs as well, which appear as special cases in a natural way. This set of bit rate maximizing techniques can serve either as practical design methods or as upper bounds for existing (suboptimal) methods. We will also show that for the same achievable bit rate, equalizer taps can be exchanged for windowing coefficients to reduce complexity during data transmission.
机译:在离散多音(DMT)接收器中,例如在非对称数字用户线(ADSL)中,经典的均衡器结构由(实)时域均衡器(TEQ)与复数1抽头频域均衡器(FEQ)组成。另外,可以应用接收器窗口来减轻解调DFT旁瓣的不良频谱约束。在本文中,我们集中于均衡器和窗口设计的组合过程,以最大化基于DMT的调制解调器中可实现的比特率。尽管TEQ与单个窗口的组合以一种通用方式处理所有承载音频的数据,但本设计方法也可以“每组”方式使用,其中较小的音频组分别接收不同的均衡器-窗口对。当此类组仅包含一个音调时,可以将设计过程与每个音调均衡器(PTEQ)的无偏最小均方误差(MMSE)的性能联系起来,然后,该均衡器还隐含地实现每个音调窗口。本文介绍的通用框架使我们也可以处理仅均衡器和仅窗口设计,这些设计以特殊方式自然出现。这组比特率最大化技术既可以用作实际设计方法,也可以用作现有(次优)方法的上限。我们还将表明,对于相同的可实现比特率,均衡器抽头可以交换为开窗系数,以降低数据传输期间的复杂度。

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