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首页> 外文期刊>Photonics Journal, IEEE >Control Bandwidth Promotion of Adaptive Fiber-Optics Collimator and Its Application in Coherent Beam Combination
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Control Bandwidth Promotion of Adaptive Fiber-Optics Collimator and Its Application in Coherent Beam Combination

机译:自适应光纤准直器的控制带宽提升及其在相干光束组合中的应用

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摘要

Adaptive fiber-optics collimator (AFOC) plays an important role in the coherent beam combining (CBC) systems. To improve the control bandwidth, the frequency characteristics of AFOC are measured, and an accurate transfer function model is established. Through the analysis of this model, we find that the resonance and the inherent response delay are the main limiting factors. To solve these two problems, an active resonance suppression method based on biquad filters and an improved control algorithm named precise-delayed stochastic parallel gradient descent (PD-SPGD) is proposed. The resonance suppression experiment shows that when the frequency is within 10 kHz, the fluctuation in the AFOC's amplitude-frequency characteristic is suppressed within ±3 dB by the biquad filters, and the phase-frequency characteristic is compensated to be similar to a pure delay element (with inherent response delay of about 88 μs). The two-channel CBC experiment shows that the algorithm's iteration rate increased from 1.6 to 6 kHz and the convergence time decreased from 5.63 to 1.83 ms when the biquad filters and PD-SPGD are used together, which indicate that the AFOC's actual control bandwidth is about 3.1 times higher than before.
机译:自适应光纤准直器(AFOC)在相干光束合并(CBC)系统中起着重要作用。为了提高控制带宽,测量了AFOC的频率特性,并建立了精确的传递函数模型。通过对该模型的分析,我们发现共振和固有响应延迟是主要的限制因素。为了解决这两个问题,提出了一种基于双二阶滤波器的有源谐振抑制方法和一种改进的控制算法,称为精确延迟随机平行梯度下降法(PD-SPGD)。谐振抑制实验表明,当频率在10 kHz以内时,双二阶滤波器将AFOC幅频特性的波动抑制在±3 dB之内,并且补偿了相频特性,使其类似于纯延迟元件。 (固有响应延迟约为88μs)。两通道CBC实验表明,当双二阶滤波器和PD-SPGD一起使用时,该算法的迭代速率从1.6 kHz增加到6 kHz,收敛时间从5.63 ms减少到1.83 ms,这表明AFOC的实际控制带宽约为比以前高3.1倍。

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