基于 632 nm 调频连续波激光器的近空/海面同步速度和距离测量实验研究

IF 4.3 2区 综合性期刊 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Xinyu Zhang;Lili Jiang;Ran Song;Zhijun Zhang;Bingbing Li;Juan Su;Chi Wu
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引用次数: 0

摘要

在高海况和复杂环境下,为了实现无人飞行器(UAV)在无人水面飞行器(USV)上的安全着陆,有必要同时精确测量 UAV 与 USV 之间的距离和速度。针对这一要求,本文提出了一种频率调制连续波(FMCW)激光雷达系统,该系统采用在潮湿环境中吸收率较低的可见光波长(632 nm),可同时测量速度和距离。该系统用三角波电流调制信号直接调制 632 nm 半导体分布式布拉格反射器 (DBR) 激光器。调制后的激光输出具有连续频率调节功能,并分为两束。一束作为参考光,另一束作为检测光,入射到测量目标上。目标反射(散射)的探测光由光电探测器(PD)收集,并与参考光混合,进行相干外差探测。跳动信号包含目标的距离和速度信息。经实验验证,该系统可同时测量 5-350 厘米探测范围内的距离和 0.5-850 厘米/秒速度范围内的速度。此外,还证明了该系统在潮湿条件下同时测量距离和速度的能力。该激光雷达系统将广泛应用于在潮湿环境中同时精确测量距离和速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Study of Simultaneous Velocity and Distance Measurement Near Air/Sea Surface Based on 632 nm Frequency Modulated Continuous Wave Laser
In high sea conditions and complex environments, for the safe landing of unmanned aerial vehicles (UAVs) on unmanned surface vehicles (USVs), it is necessary to accurately measure the distance and speed between UAV and USV simultaneously. In response to this requirement, this article proposes a frequency modulated continuous wave (FMCW) lidar system that uses a visible light wavelength (632 nm), which is low absorption in humid environments, enabling simultaneous measurement of speed and distance. The system directly modulates a 632 nm semiconductor distributed Bragg reflector (DBR) laser with a triangular wave current modulation signal. The modulated laser output features continuous frequency tuning and is divided into two beams. One beam serves as the reference light, while the other beam is used as the detection light and incident on the measurement target. The detection light reflected (scattered) by the target is collected by a photodetector (PD) and mixed with the reference light for coherent heterodyne detection. The beating signal carries information about the distance and velocity of the target. The system has been experimentally verified to simultaneously measure distance within a detection range of 5–350 cm and a velocity range of 0.5–850 cm/s. Moreover, the system’s capability for simultaneous distance and velocity measurement under humid conditions has also been demonstrated. This lidar system would have broad application in the precise measurement of distance and velocity simultaneously in humid environment.
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来源期刊
IEEE Sensors Journal
IEEE Sensors Journal 工程技术-工程:电子与电气
CiteScore
7.70
自引率
14.00%
发文量
2058
审稿时长
5.2 months
期刊介绍: The fields of interest of the IEEE Sensors Journal are the theory, design , fabrication, manufacturing and applications of devices for sensing and transducing physical, chemical and biological phenomena, with emphasis on the electronics and physics aspect of sensors and integrated sensors-actuators. IEEE Sensors Journal deals with the following: -Sensor Phenomenology, Modelling, and Evaluation -Sensor Materials, Processing, and Fabrication -Chemical and Gas Sensors -Microfluidics and Biosensors -Optical Sensors -Physical Sensors: Temperature, Mechanical, Magnetic, and others -Acoustic and Ultrasonic Sensors -Sensor Packaging -Sensor Networks -Sensor Applications -Sensor Systems: Signals, Processing, and Interfaces -Actuators and Sensor Power Systems -Sensor Signal Processing for high precision and stability (amplification, filtering, linearization, modulation/demodulation) and under harsh conditions (EMC, radiation, humidity, temperature); energy consumption/harvesting -Sensor Data Processing (soft computing with sensor data, e.g., pattern recognition, machine learning, evolutionary computation; sensor data fusion, processing of wave e.g., electromagnetic and acoustic; and non-wave, e.g., chemical, gravity, particle, thermal, radiative and non-radiative sensor data, detection, estimation and classification based on sensor data) -Sensors in Industrial Practice
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