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A Low-Complexity Decision Feedforward Equalizer Architecture for High-Speed Receivers on Highly Dispersive Channels

机译:适用于高分散信道上高速接收器的低复杂度决策前馈均衡器架构

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摘要

This paper presents an improved decision feedforward equalizer (DFFE) for high speed receivers in the presence of highly dispersive channels. This decision-aided equalizer technique has been recently proposed for multigigabit communication receivers, where the use of parallel processing is mandatory. Well-known parallel architectures for the typical decision feedback equalizer (DFE) have a complexity that grows exponentially with the channel memory. Instead, the new DFFE avoids that exponential increase in complexity by using tentative decisions to cancel iteratively the intersymbol interference (ISI)- Here, we demostrate that the DFFE not only allows to obtain a similar performance to the typical DFE but it also reduces the compelxity in channels with large memory. Additionally, we propose a theoretical approximation for the error probability in each iteration. In fact, when the number of iteration increases, the error probability in the DFFE tends to approach the DFE. These benefits make the DFFE an excellent choice for the next generation of high-speed receivers.
机译:本文针对存在高度分散信道的高速接收机提出了一种改进的判决前馈均衡器(DFFE)。最近已为强制使用并行处理的多千兆位通信接收机提出了这种决策辅助均衡器技术。典型判决反馈均衡器(DFE)的众所周知的并行体系结构具有随通道存储器成指数增长的复杂性。相反,新的DFFE通过使用临时决策来迭代地消除符号间干扰(ISI),避免了复杂性的指数增长-在这里,我们演示了DFFE不仅允许获得与典型DFE相似的性能,而且还降低了复杂性在具有大内存的通道中。此外,我们提出了每次迭代中错误概率的理论近似值。实际上,当迭代次数增加时,DFFE中的错误概率趋向于接近DFE。这些优点使DFFE成为下一代高速接收器的绝佳选择。

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  • 来源
    《Journal of electrical and computer engineering》 |2013年第2013期|24.1-24.10|共10页
  • 作者单位

    Laboratorio de Comunicaciones Digitales, Universidad National de Cordoba, CONICET, Avenida Velez Sarsfield 1611, Cordoba X5016GCA, Argentina;

    Universidad National del Sur, IIIE, CONICET, Avenida Alem 1253, Bahia Blanca B8000CPB, Argentina;

    ClariPhy Communications, Inc., 7585 Irvine Center Drive, Suite 100, Irvine, CA 92618, USA;

    Laboratorio de Comunicaciones Digitales, Universidad National de Cordoba, CONICET, Avenida Velez Sarsfield 1611, Cordoba X5016GCA, Argentina;

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