量子电子学报 ›› 2025, Vol. 42 ›› Issue (5): 711-721.doi: 10.3969/j.issn.1007-5461.2025.05.013

• 激光应用 • 上一篇    下一篇

星载激光雷达脉冲单模式回波测距阈值优化研究

秦宗锋 1, 高宇琦 1, 周 辉 2, 石 岩 2*   

  1. 1 武汉城市学院信息工程学部, 湖北 武汉 430083; 2 武汉大学电子信息学院, 湖北 武汉 430072
  • 收稿日期:2025-02-14 修回日期:2025-04-22 出版日期:2025-09-28 发布日期:2025-09-28
  • 通讯作者: E-mail: sy@whu.edu.cn E-mail: E-mail: sy@whu.edu.cn
  • 作者简介:秦宗锋 ( 1979 - ), 湖北枣阳人, 硕士, 实验师, 主要从事计算机应用技术、传感器技术及应用方面的研究。E-mail: 65420701@qq.com
  • 基金资助:
    国家自然科学基金 (41971302, 42371440)

Research on threshold optimization for pulse single‑mode echo ranging of spaceborne lidar

QIN Zongfeng1 , GAO Yuqi 1 , ZHOU Hui 2 , SHI Yan2*   

  1. 1 Department of Information Engineering, City University of Wuhan, Wuhan 430083, China; 2 Electronic Information School, Wuhan University, Wuhan 430072, China
  • Received:2025-02-14 Revised:2025-04-22 Published:2025-09-28 Online:2025-09-28

摘要: 波形阈值法是获取线性体制星载激光雷达测距值的重要方式之一, 其测距精度与噪声水平、回波信号波形 展宽以及波形阈值设置等因素有关。根据线性体制星载激光雷达回波信号波形的分布模型和噪声特性, 通过推导波 形阈值对应上升沿时刻的方差分布, 构建了波形阈值法对应的激光测距误差模型。进而以欧洲航天局研制的水星激 光雷达为例, 采用数值仿真的方式, 模拟了不同归一化波形阈值条件下的激光测距误差分布规律。结果表明, 当归一 化波形阈值接近0或1时, 激光测距误差受噪声影响最大而出现极大值; 而当归一化波形阈值取值最优时, 激光测距 误差呈现迅速下降的趋势。此外, 研究发现最佳归一化波形阈值与目标坡度成正相关关系。采用一次分式函数拟合 得到最佳归一化波形阈值的分布模型, 拟合曲线之间残差的均方根误差仅为0.005, 相关系数达到0.99。通过比较最 佳归一化波形阈值与传统50%阈值所得的激光测距误差, 发现最佳归一化波形阈值可以大幅减小大坡度目标对应的 激光测距误差, 这为星载激光雷达测距阈值的优化设置提供了方法支撑。

关键词: 激光技术, 星载激光雷达, 波形阈值, 回波信号波形, 激光测距误差

Abstract: Waveform threshold method is one of the important approaches to obtain the ranging values of linear system spaceborne lidar, and its ranging accuracy is determined by multiple factors such as noise level, pulse broadening and threshold of returned signal waveform. According to the waveform distribution model and noise characteristics of the returned signals of linear system spaceborne lidar, a laser ranging error model based on the waveform threshold method is established by deriving the variance distribution of the rising edge time over the waveform threshold. Furthermore, taking the Mercury lidar developed by the European Space Agency as an example, the distributions of laser ranging error under different normalized waveform thresholds are simulated using numerical simulation. The results demonstrate that when the normalized waveform threshold is close to 0 and 1, the ranging error is most affected by noise and reaches the maximum. However, when the normalized waveform threshold is optimal, the ranging error presents a sharp decrease trend. In addition, it is found that the optimal normalized waveform threshold is proportional to surface slope. The fitting model of the optimal normalized waveform threshold is derived using a linear fractional function, and the root mean square error of the fitted curve residuals is only 0.005 with a correlation coefficient of 0.99. By comparing the laser ranging errors obtained from the optimal normalized waveform threshold with those from the traditional 50% threshold, it is found that the optimal normalized waveform threshold can significantly reduce the laser ranging error for the targets with steep slope, which indicates that the proposed method can provide methodological support for optimizing the ranging threshold of spaceborne lidar.

Key words: laser techniques, spaceborne lidar, waveform threshold, returned signal waveform, laser ranging error

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