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ISI Mitigation Using Bit-Edge Equalization in High-Speed Backplane Data Transmission

机译:高速背板数据传输中使用位边缘均衡的ISI缓解

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This paper presents an improved bit-edge equalization (BEE) method for mitigating intersymbol interference (ISI) in high-speed backplane applications. Using a least-mean-square (LMS) adaptive algorithm as a receiver (RX) error convergence engine, the proposed BEE method is based on equalizing only the edges of data bits with an adjustment of LMS error derivation points, which in turn changes the error information and affects filter coefficients for pulse amplitude modulation. As a result, the received channel far-end 3-level bit-edge eye diagrams can be optimized. This proposed BEE method employs a conventional symbol-spaced FIR (SSF) filter as transmitter (TX) pre-emphasis for bit-edge equalization. With TX data pre-coding, the received channel far-end 3-level signal to 2-level binary decoding only depends on the current received bit. No error propagation occurs. In this work, the proposed BEE method is compared with the bit-center equalization (BCE) method and duobinary signaling method by applying the adjustment of LMS error derivation points in all these methods. 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 simulation results demonstrate that the proposed BEE method is the most effective for mitigating ISI in relatively high-loss channels.
机译:本文提出了一种改进的位边缘均衡(BEE)方法,用于缓解高速背板应用中的符号间干扰(ISI)。通过使用最小均方(LMS)自适应算法作为接收器(RX)误差收敛引擎,提出的BEE方法基于仅对数据位的边缘进行均衡,并调整了LMS误差推导点,从而改变了误差信息,并影响用于脉冲幅度调制的滤波器系数。结果,可以优化接收通道的远端3级比特边缘眼图。提出的BEE方法采用常规的符号间隔FIR(SSF)滤波器作为发射机(TX)预加重,以实现位沿均衡。使用TX数据预编码时,接收通道的远端3级信号到2级二进制解码仅取决于当前接收的位。没有错误传播发生。在这项工作中,通过在所有这些方法中应用LMS误差推导点的调整,将所提出的BEE方法与比特中心均衡(BCE)方法和双二进制信令方法进行了比较。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。仿真结果表明,所提出的BEE方法对于缓解较高损耗信道中的ISI最有效。

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