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Hard-Decision Coded Modulation for High-Throughput Short-Reach Optical Interconnect

机译:用于高吞吐量短到达光学互连的硬判决编码调制

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摘要

Coded modulation (CM), a combination of forward error correction (FEC) and high order modulation formats, has become a key part of modern optical communication systems. Designing CM schemes with strict complexity requirements for optical communications (e.g., data center interconnects) is still challenging mainly because of the expected low latency, low overhead, and the stringent high data rate requirements. In this paper, we propose a CM scheme with bit-wise hard-decision FEC and geometric shaping. In particular, we propose to combine the recently introduced soft-aided bit-marking decoding algorithm for staircase codes (SCCs) with geometrically-shaped constellations. The main goal of this CM scheme is to jointly boost the coding gain and provide shaping gain, while keeping the complexity low. When compared to existing CM systems based on M-ary quadrature-amplitude modulation (MQAM, M=64,128,256) and conventional decoding of SCCs, the proposed scheme shows improvements of up to 0.83 dB at a bit-error rate of 10−6 in the additive white Gaussian noise channel. For a nonlinear optical fiber system, simulation results show up to 24% reach increase. In addition, the proposed CM scheme enables rate adaptivity in single-wavelength systems, offering six different data rates between 450 Gbit/s and 666 Gbit/s.
机译:编码调制(cm),正向纠错(FEC)和高阶调制格式的组合已成为现代光学通信系统的关键部分。设计具有严格的光通的复杂性要求的CM方案(例如,数据中心互连)仍然挑战,主要是因为预期的低延迟,低开销和严格的高数据速率要求。在本文中,我们提出了一种具有比特 - 明智的硬判决FEC和几何整形的CM方案。特别地,我们建议将最近引入的软辅助位标记解码算法与几何形状的星座组合起来的楼梯码(SCC)。该CM方案的主要目的是共同提升编码增益并提供成型增益,同时保持复杂性低。与基于M-ARY正交调制调制(MQAM,M = 64,128,256)的现有CM系统相比和SCC的传统解码时,所提出的方案显示在误码率为10-6的误码率最高为0.83dB的改进添加剂白色高斯噪声通道。对于非线性光纤系统,仿真结果显示出高达24%的达到增加。此外,所提出的CM方案使得在单波长系统中能够速率适应性,提供450 Gbit / s和666 Gbit / s之间的六种不同的数据速率。

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