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60-GHz Millimeter-wave Over Fiber with Directly Modulated Dual-mode Laser Diode

机译:具有直接调制的双模激光二极管的60-GHz毫米波通过光纤

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摘要

A directly modulated dual-mode laser diode (DMLD) with third-order intermodulation distortion (IMD3) suppression is proposed for a 60-GHz millimeter-wave over fiber (MMWoF) architecture, enabling new fiber-wireless communication access to cover 4-km single-mode-fiber (SMF) and 3-m wireless 16-QAM OFDM transmissions. By dual-mode injection-locking, the throughput degradation of the DMLD is mitigated with saturation effect to reduce its threshold, IMD3 power and relative intensity noise to 7.7?mA, -85?dBm and -110.4?dBc/Hz, respectively, providing huge spurious-free dynamic range of 85.8?dB/Hz(2/3). This operation suppresses the noise floor of the DMLD carried QPSK-OFDM spectrum by 5?dB. The optical receiving power is optimized to restrict the power fading effect for improving the bit error rate to 1.9?×?10(-3?)and the receiving power penalty to 1.1?dB. Such DMLD based hybrid architecture for 60-GHz MMW fiber-wireless access can directly cover the current optical and wireless networks for next-generation indoor and short-reach mobile communications.
机译:对于具有三阶互调失真(IMD3)抑制的直接调制的双模激光二极管(DMLD)是针对光纤(MMWOF)架构的60-GHz毫米波(MMWOF)架构,实现了新的光纤无线通信访问,以覆盖4公里单模光纤(SMF)和3-M无线16-QAM OFDM传输。通过双模注射锁定,DMLD的吞吐量降低分别减轻了DMLD的逐次效应,以将其阈值,IMD3功率和相对强度噪声降低至7.7?mA,-85?DBM和-110.4?DBC / HZ,提供巨大的无杂散动态范围为85.8?DB / Hz(2/3)。该操作抑制DMLD的噪声底板携带的QPSK-OFDM光谱5?DB。优化光接收电源以限制用于将钻头误差率提高到1.9≤1≤10(-3?)和1.1?dB的接收功率损失的功率衰减效果。对于60GHz MMW光纤无线接入的这种基于DMLD的混合架构可以直接覆盖下一代室内和短途移动通信的当前光学和无线网络。

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