首页> 外文期刊>Optical engineering >Analysis on error of laser frequency locking for fiber optical receiver in direct detection wind lidar based on Fabry-Perot interferometer and improvements
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Analysis on error of laser frequency locking for fiber optical receiver in direct detection wind lidar based on Fabry-Perot interferometer and improvements

机译:基于法布里-珀罗干涉仪的直接探测风激光雷达中光纤接收机激光锁频误差分析及改进

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摘要

Direct detection Doppler wind lidar (DWL) has been demonstrated for its capability of atmospheric wind detection ranging from the troposphere to stratosphere with high temporal and spatial resolution. We design and describe a fiber-based optical receiver for direct detection DWL. Then the locking error of the relative laser frequency is analyzed and the dependent variables turn out to be the relative error of the calibrated constant and the slope of the transmission function. For high accuracy measurement of the calibrated constant for a fiber-based system, an integrating sphere is employed for its uniform scattering. What is more, the feature of temporally widening the pulse laser allows more samples be acquired for the analog-to-digital card of the same sampling rate. The result shows a relative error of 0.7% for a calibrated constant. For the latter, a new improved locking filter for a Fabry-Perot Interferometer was considered and designed with a larger slope. With these two strategies, the locking error for the relative laser frequency is calculated to be about 3 MHz, which is equivalent to a radial velocity of about 0.53 m/s and demonstrates the effective improvements of frequency locking for a robust DWL.
机译:直接探测多普勒测风激光雷达(DWL)具有从对流层到平流层的大气风探测能力,具有很高的时空分辨率。我们设计并描述了用于直接检测DWL的基于光纤的光接收器。然后,分析相对激光频率的锁定误差,结果将因变量变为校准常数和传递函数斜率的相对误差。为了对基于光纤的系统的校准常数进行高精度测量,采用了积分球以实现均匀散射。而且,脉冲激光器在时间上加宽的特征允许以相同的采样率为模数卡采集更多的样本。结果显示校准常数的相对误差为0.7%。对于后者,考虑了一种用于法布里-珀罗干涉仪的新型改进型锁定滤波器,并设计了较大的斜率。通过这两种策略,相对激光频率的锁定误差被计算为大约3 MHz,相当于大约0.53 m / s的径向速度,并证明了稳健DWL的频率锁定的有效改进。

著录项

  • 来源
    《Optical engineering》 |2014年第12期|124102.1-124102.8|共8页
  • 作者单位

    Chinese Academy of Science, Key Laboratory of Geospace Environment, No. 96, Jinzhhai Road, Baohe District, Hefei 230026, China,University of Science and Technology of China, School of Earth and Space Science, No. 96, Jinzhhai Road, Baohe District, Hefei 230026, China;

    Chinese Academy of Science, Key Laboratory of Geospace Environment, No. 96, Jinzhhai Road, Baohe District, Hefei 230026, China,University of Science and Technology of China, School of Earth and Space Science, No. 96, Jinzhhai Road, Baohe District, Hefei 230026, China;

    Chinese Academy of Science, Key Laboratory of Geospace Environment, No. 96, Jinzhhai Road, Baohe District, Hefei 230026, China,University of Science and Technology of China, School of Earth and Space Science, No. 96, Jinzhhai Road, Baohe District, Hefei 230026, China;

    Chinese Academy of Science, Key Laboratory of Geospace Environment, No. 96, Jinzhhai Road, Baohe District, Hefei 230026, China,University of Science and Technology of China, School of Earth and Space Science, No. 96, Jinzhhai Road, Baohe District, Hefei 230026, China;

    Chinese Academy of Science, Key Laboratory of Geospace Environment, No. 96, Jinzhhai Road, Baohe District, Hefei 230026, China,University of Science and Technology of China, School of Earth and Space Science, No. 96, Jinzhhai Road, Baohe District, Hefei 230026, China;

    Chinese Academy of Science, Key Laboratory of Geospace Environment, No. 96, Jinzhhai Road, Baohe District, Hefei 230026, China,University of Science and Technology of China, School of Earth and Space Science, No. 96, Jinzhhai Road, Baohe District, Hefei 230026, China;

    Chinese Academy of Science, Key Laboratory of Geospace Environment, No. 96, Jinzhhai Road, Baohe District, Hefei 230026, China,University of Science and Technology of China, School of Earth and Space Science, No. 96, Jinzhhai Road, Baohe District, Hefei 230026, China;

    Chinese Academy of Science, Key Laboratory of Geospace Environment, No. 96, Jinzhhai Road, Baohe District, Hefei 230026, China,University of Science and Technology of China, School of Earth and Space Science, No. 96, Jinzhhai Road, Baohe District, Hefei 230026, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    wind; lidar; Fabry-Perot interferometer; edge technique; frequency locking;

    机译:风;激光雷达法布里-珀罗干涉仪;边缘技术频率锁定;

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