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SWDM PAM4 Transmission Over Next Generation Wide-Band Multimode Optical Fiber

机译:下一代宽带多模光纤上的SWDM PAM4传输

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摘要

Two system transmission experiments are reported which indicate the feasibility of transmitting an aggregated speed of >200 Gb/s over a single next-generation wide-band multimode optical fiber (NG-WBMMF) using a shortwave wavelength division multiplexing (SWDM) and a four-level pulse amplitude modulation (PAM4), using optics rated for 25 Gb/s NRZ operation. The first experiment leverages predistorted KR4 51.5625 Gb/s electrical PAM4 signaling generated by an arbitrary waveform generator to drive SWDM TOSAs at 850, 880, 910, and 940 nm. The received optical PAM4 signals are then post processed offline with linear equalizers to improve the eye quality. Detailed analysis of the height and width of the received optical eyes indicates an aggregated 206.25 Gb/s speed is achievable on a single NG-WBMMF beyond 150 m. In the second experiment, a commercial PAM4 IC evaluation kit with real-time digital signal processing is adopted to generate and detect PAM4 signals at KP4 FEC rate of 53.125 Gb/s per wavelength. The SWDM wavelength range is extended with additional tests at 980 nm. Pre-FEC BER below threshold of 2.4×10−4 is achieved up to 300 m across all five wavelengths demonstrating an aggregated speed of 265.625 Gb/s over a single MMF.
机译:报告了两个系统传输实验,这些实验表明使用短波波分复用(SWDM)在单个下一代宽带多模光纤(NG-WBMMF)上传输聚合速度> 200 Gb / s的可行性和四个级脉冲幅度调制(PAM4),使用额定用于25 Gb / s NRZ操作的光学器件。第一个实验利用由任意波形发生器生成的预失真KR4 51.5625 Gb / s电PAM4信令来驱动850、880、910和940 nm的SWDM TOSA。然后,使用线性均衡器离线处理接收到的PAM4光学信号,以改善眼图质量。对接收到的光学眼的高度和宽度的详细分析表明,在超过150 m的单个NG-WBMMF上,可以实现总计206.25 Gb / s的速度。在第二个实验中,采用具有实时数字信号处理功能的商用PAM4 IC评估套件,以每波长53.125 Gb / s的KP4 FEC速率生成和检测PAM4信号。通过在980 nm处进行附加测试,扩展了SWDM波长范围。在所有五个波长上,最长300 m都可实现低于2.4×10-4阈值的FEC前BER,这表明在单个MMF上的总速度为265.625 Gb / s。

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