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首页> 外文期刊>Lightwave Technology, Journal of >224-Gb/s 10-km Transmission of PDM PAM-4 at 1.3 μm Using a Single Intensity-Modulated Laser and a Direct-Detection MIMO DSP-Based Receiver
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224-Gb/s 10-km Transmission of PDM PAM-4 at 1.3 μm Using a Single Intensity-Modulated Laser and a Direct-Detection MIMO DSP-Based Receiver

机译:使用单个强度调制激光器和基于直接检测MIMO DSP的接收器以1.3μm的速率以224 Gb / s的10 km传输PDM PAM-4

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A polarization-division-multiplexed (PDM) intensity-modulation/direct-detection (IM/DD) system enabled by a novel multiple-input and multiple-output DSP operating in the Stokes space following a DD receiver is demonstrated. Modulating the intensity of the two orthogonal polarization states of a single laser enables doubling the maximum achievable bit rate per wavelength channel, which halves the number of required laser sources in a transceiver using PDM and WDM to achieve an aggregate bit rate compared to using only WDM. Quantitatively, 224 Gb/s is experimentally transmitted over 10 km using a single 1310-nm laser and a silicon photonic intensity modulator using 56-Gbaud PDM PAM-4 with a BER of . Also, PDM enables halving the baud rate needed to achieve 112 Gb/s resulting in 20-km transmission at low BERs (), using either 56-Gbaud PAM-2 or 28-Gbaud PAM-4. These low pre-FEC BERs achieved at 112 Gb/s allow reducing the FEC overhead required compared to a single polarization system that employs twice the baud rate to achieve the same bit rate. Though the transceiver was implemented using discrete components, it can be fully integrated on a SiP chip, enabling its practical realization for short-reach optical interconnects inside datacenters. Finally, in addition to the experimental results, we perform simulations to further investigate the performance of the receiver. In particular, we studied the impact of varying the splitting ratios of the two couplers in the proposed front–end and concluded that using 67/33 couplers instead of 50/50 couplers renders the performance completely independent of the state of polarization of the received signal.
机译:演示了偏振分频多路复用(PDM)强度调制/直接检测(IM / DD)系统,该系统由在DD接收器之后在Stokes空间中运行的新型多输入多输出DSP实现。调制单个激光器的两个正交偏振态的强度可使每个波长通道的最大可实现比特率加倍,与仅使用WDM相比,使用PDM和WDM的收发器中所需的激光源数量减少了一半,以实现总比特率。定量地,使用单个1310 nm激光器和使用56 Gbaud PDM PAM-4且BER为BER的硅光子强度调制器,在10 km上以实验方式传输224 Gb / s。同样,使用56 Gbaud PAM-2或28 Gbaud PAM-4,PDM可以将实现112 Gb / s所需的波特率减半,从而以低BER()传输20公里。与采用两倍波特率实现相同比特率的单极化系统相比,这些低的前FEC BER以112 Gb / s的速度实现,从而减少了所需的FEC开销。尽管收发器是使用分立组件实现的,但它可以完全集成在SiP芯片上,从而可以实现数据中心内部短距离光学互连的实际实现。最后,除了实验结果外,我们还进行了仿真以进一步研究接收器的性能。尤其是,我们研究了在建议的前端中改变两个耦合器的分光比的影响,并得出结论,使用67/33耦合器而不是50/50耦合器可使性能完全独立于接收信号的极化状态。

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