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Experimental Study of 1.55-μm EML-Based Optical IM/DD PAM-4/8 Short Reach Systems

机译:基于1.55μmEmL的光学Im / DD pam-4/8短距离系统的实验研究

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摘要

We experimentally evaluate high-speed intensity modulation/direct detection (IM/DD) transmissions with a 1.55-μm broadband electro-absorption modulated laser and pulse amplitude modulations (PAM). We demonstrate 80 Gb/s/λ PAM-4 and 96 Gb/s/λ PAM-8 transmissions with low-complexity digital equalizers at the receiver. Performance comparison with different types of equalizers are performed, including linear symbol-spaced feed-forward equalizer (FFE), fractional (half-symbol) spaced FFE and decision feedback equalizer (DFE), with different tap number. It is found that for both cases, a 6-tap symbol-spaced FFE is sufficient to achieve a stable performance with bit-error-rate below the 7% overhead hard decision forward error correction (7%-OH HD-FEC) threshold over a 4 km standard single mode fiber link. Practical considerations including comparison between adaptive and static equalizer implementation and tolerable fiber chromatic dispersion are discussed.
机译:我们用1.55μm宽带电吸收调制激光器和脉冲幅度调制(PAM)实验性地评估了高速强度调制/直接检测(IM / DD)传输。我们在接收机上演示了具有低复杂度数字均衡器的80 Gb / s /λPAM-4和96 Gb / s /λPAM-8传输。使用不同类型的均衡器进行性能比较,包括具有不同抽头数的线性符号间隔前馈均衡器(FFE),小数(半符号)间隔FFE和判决反馈均衡器(DFE)。发现对于这两种情况,6抽头的符号间隔FFE足以实现稳定的性能,且误码率低于7%开销硬决策前向纠错(7%-OH HD-FEC)门限超过4公里标准单模光纤链路。讨论了一些实际的考虑因素,包括自适应和静态均衡器实现之间的比较以及可容忍的光纤色散。

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