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首页> 外文期刊>AEU: Archiv fur Elektronik und Ubertragungstechnik: Electronic and Communication >Optimal equalization for reducing the impact of channel group delay distortion on high-speed backplane data transmission
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Optimal equalization for reducing the impact of channel group delay distortion on high-speed backplane data transmission

机译:最佳均衡以减少通道群延迟失真对高速背板数据传输的影响

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摘要

Channel group delay distortion represents the transmission channel's phase dispersion, which results in signal distortion and adds intersymbol interference (ISI) to the received data eyes in addition to amplitude attenuation. Despite the fact that channel group delay distortion is especially critical in high-speed backplane applications, its effects have not been discussed in detail previously in the literature. This paper presents a study of the impacts of channel group delay distortion on high-speed backplane data transmissions. Equalization strategies for reducing the impact of group delay distortion are explored. A unique bit-edge equalization (BEE) scheme is presented that reduces the impact of channel group delay distortion by compressing the data spectrum in conjunction with optimizing the sampling phase. With transmitter (TX) pre-coding, the proposed BEE employs a 5-post-tap conventional symbol-spaced FIR (SSF) filter as the TX pre-emphasis, eliminates the need for a "delay and add" duobinary filter as in the conventional duobinary transceiver, and is more compatible with the bit-centre equalization (BCE) scheme. In this work, a typical Tyco 34-inch FR4 backplane channel is used as the comparison benchmark. A Matlab script based link simulation tool is used to evaluate the link performance. The optimality of the proposed BEE in reducing the impact of channel group delay distortion and mitigating ISI is demonstrated at a data rate as high as 12 Gbps.
机译:通道组延迟失真代表传输通道的相位色散,这会导致信号失真,并且除了幅度衰减外,还会对接收到的数据眼增加符号间干扰(ISI)。尽管通道组延迟失真在高速背板应用中尤为重要,但其影响尚未在文献中进行过详细讨论。本文介绍了信道群延迟失真对高速背板数据传输的影响的研究。探索了减少群时延失真影响的均衡策略。提出了一种独特的比特边缘均衡(BEE)方案,该方案通过压缩数据频谱以及优化采样相位来减少信道组延迟失真的影响。通过发射机(TX)预编码,建议的BEE采用5个抽头后的常规符号间隔FIR(SSF)滤波器作为TX预加重,从而消除了对“延迟加法”双二进制滤波器的需求。传统的双二进制收发器,并且与位中心均衡(BCE)方案更兼容。在这项工作中,典型的Tyco 34英寸FR4背板通道用作比较基准。基于Matlab脚本的链接仿真工具用于评估链接性能。在高达12 Gbps的数据速率下,证明了所提出的BEE在减少信道群延迟失真和减轻ISI方面的最优性。

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