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High-speed link with trellis-coded modulation and Reed-Solomon coding

机译:具有格子编码调制和簧片芦荟编码的高速链路

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A high-performance low-latency transmission system based on a concatenated code consisting of inner four-dimensional five-level pulse-amplitude-modulation (5-PAM) trellis-coded modulation and an outer Reed-Solomon (RS) code is proposed for a high-speed data link over time-dispersive channels. The implementation of high-speed sequence detection in state-of-the-art technology nodes is enabled by a novel reduced-state Viterbi detector which includes only one addition in the longest path. The bit-error-rate performance of the proposed transmission scheme for a real-world channel model is evaluated by simulations. Compared with the RS-encoded 4-PAM transmission scheme in the IEEE P802.3bj standard, the proposed transmission system achieves a signal-to-noise ratio advantage of 0.7 dB at a bit error rate of 10-6 without expanding the bandwidth.
机译:基于由内部四维五级脉冲幅度调制(5-PAM)网格编码调制和外簧片 - 所罗门(RS)代码组成的高性能低延迟传输系统。随时间分散通道的高速数据链路。在最先进的技术节点中实现高速序列检测的实现由新颖的减速状态维特比检测器能够,该探测器仅包括在最长路径中的一个添加。通过仿真评估所提出的真实频道模型的所提出的传输方案的误差速率性能。与IEEE P802.3BJ标准中的RS编码的4-PAM传输方案相比,所提出的传输系统以10-6的比特误差速率实现0.7dB的信噪比优势,而不扩大带宽。

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