光学
激光雷达
雪崩二极管
衰减
光子计数
帧速率
收发机
雪崩光电二极管
探测器
皮秒
图像传感器
单光子雪崩二极管
CMOS传感器
物理
激光器
材料科学
CMOS芯片
光电子学
击穿电压
量子力学
电压
作者
Aurora Maccarone,Kristofer Drummond,Aongus McCarthy,Ulrich Steinlehner,Julián Tachella,Diego Aguirre Garcia,A. Pawlikowska,Robert A. Lamb,Robert Henderson,Stephen McLaughlin,Yoann Altmann,Gerald S. Buller
出处
期刊:Optics Express
[Optica Publishing Group]
日期:2023-04-18
卷期号:31 (10): 16690-16690
被引量:34
摘要
We demonstrate a fully submerged underwater LiDAR transceiver system based on single-photon detection technologies. The LiDAR imaging system used a silicon single-photon avalanche diode (SPAD) detector array fabricated in complementary metal-oxide semiconductor (CMOS) technology to measure photon time-of-flight using picosecond resolution time-correlated single-photon counting. The SPAD detector array was directly interfaced to a Graphics Processing Unit (GPU) for real-time image reconstruction capability. Experiments were performed with the transceiver system and target objects immersed in a water tank at a depth of 1.8 meters, with the targets placed at a stand-off distance of approximately 3 meters. The transceiver used a picosecond pulsed laser source with a central wavelength of 532 nm, operating at a repetition rate of 20 MHz and average optical power of up to 52 mW, dependent on scattering conditions. Three-dimensional imaging was demonstrated by implementing a joint surface detection and distance estimation algorithm for real-time processing and visualization, which achieved images of stationary targets with up to 7.5 attenuation lengths between the transceiver and the target. The average processing time per frame was approximately 33 ms, allowing real-time three-dimensional video demonstrations of moving targets at ten frames per second at up to 5.5 attenuation lengths between transceiver and target.
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