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Sensitivity degradation with laser wavelength chirp for direct-detection optical receivers

机译:直接检测光接收器的激光波长chi灵敏度降低

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Long-span high-speed direct-detection optical fibre systems can be impaired by interactions between fibre chromatic dispersion and nonlinear data-dependent laser modulation phenomena such as frequency chirp and patterning. Strategies are outlined enabling system performance degradation in the presence of such impairments to be estimated, extending previous work to specific consideration of APD receivers. A SPICE2 equivalent-circuit model of a single-frequency laser transmitter is used to obtain optical power and wavelength chirp waveforms for pseudorandom data sequences. These are then used with two models for chirp-dispersion interaction to obtain distorted optical power waveforms at the receiver input. A comprehensive performance analysis for pin and APD receivers in the presence of laser chirp is presented, taking into account the various different noise components associated with the detection process. The results show that APD receivers are more sensitive to chirp than are pin receivers, and that this effect is more pronounced for high APD gains and large ionisation rate ratios. It is noted, however, that an overall improvement in receiver sensitivity may still be achieved with APD receivers.
机译:大跨度高速直接检测光纤系统可能会受到光纤色散与非线性数据相关的激光调制现象(例如频率线性调频和图案化)之间相互作用的影响。概述了在存在此类损害的情况下能够使系统性能下降的策略,从而将先前的工作扩展到了APD接收机的特殊考虑。单频激光发射器的SPICE2等效电路模型用于获得伪随机数据序列的光功率和波长线性调频波形。然后将它们与两个模型进行chi色散相互作用,以在接收器输入端获得失真的光功率波形。考虑到与检测过程相关的各种不同噪声成分,对存在激光chi声的引脚和APD接收器进行了全面的性能分析。结果表明,APD接收器对线性调频脉冲的灵敏度高于引脚接收器,并且对于高APD增益和大电离率比,这种影响更为明显。但是,应注意,使用APD接收机仍可以实现接收机灵敏度的整体提高。

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