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Optical phase-locked loop (OPLL) for an amplitude modulated communications link using solid-state lasers

机译:光学锁相环(OPLL),用于使用固态激光器的调幅通信链路

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Theoretical analysis is formulated for a solid state laser based optical phase-locked loop (OPLL) disturbed by shot noise, amplitude modulated noise, and frequency noise. The frequency noise spectral density of solid state lasers is modeled to contain a white component, a 1/f component, and a strong 1/f/sup 2/ component at the laser output. This model is verified and the spectral content of each component is measured using an open-loop RF frequency discriminator. The choice of loop filter is made by considering the frequency noise components, transient effects, and the loop damping factor /spl zeta/. The total phase error variance as a function of loop bandwidth is displayed for several values of carrier signal-to-noise ratio for the measured frequency noise spectrum. Optimal loop bandwidth is also calculated as a function of carrier signal-to-noise ratio. An OPLL experiment is performed, and measured phase error variance is compared with the theoretical predictions using the measured frequency noise spectrum. The results show that the measured phase error variance closely matches the theoretical predictions.
机译:对基于固态激光器的光学锁相环(OPLL)进行了理论分析,该光学锁相环受到散粒噪声,调幅噪声和频率噪声的干扰。对固态激光器的频率噪声频谱密度进行建模,使其在激光器输出处包含白色分量,1 / f分量和强1 / f / sup 2 /分量。验证了该模型,并使用开环RF鉴频器测量了每个组件的频谱含量。环路滤波器的选择要考虑频率噪声成分,瞬态效应和环路阻尼因子/ spl zeta /。对于所测量的频率噪声频谱,对于载波信噪比的几个值,显示了作为环路带宽的函数的总相位误差方差。还根据载波信噪比来计算最佳环路带宽。进行OPLL实验,并使用测得的频率噪声频谱将测得的相位误差方差与理论预测值进行比较。结果表明,测得的相位误差方差与理论预测值非常接近。

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