首页> 外文会议>Conference on Laser Radar Technology and Applications VIII Apr 22-25, 2003 Orlando, Florida, USA >A compact 3D imaging laser radar system using Geiger-mode APD arrays: system and measurements
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A compact 3D imaging laser radar system using Geiger-mode APD arrays: system and measurements

机译:使用盖革模式APD阵列的紧凑型3D成像激光雷达系统:系统和测量

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摘要

MIT Lincoln Laboratory continues the development of novel high-resolution 3D imaging laser radar technology and sensor systems. The sensor system described in detail here uses a passively Q-switched solid-state frequency-doubled Nd:YAG laser to transmit short laser pulses (~ 700 ps FWHM) at 532 nm wavelength and derive the range to target surface element by measuring the time-of-flight for each pixel. The single photoelectron detection efficiency has been measured to be > 20% using these Silicon Geiger-mode APDs at room temperature. The pulse out of the detector is used to stop a > 500 MHz digital clock integrated within the focal-plane array. With appropriate optics, the 32x32 array of digital time values represents a 3D spatial image frame of the scene. Successive image frames from the multi-kilohertz pulse repetition rate laser pulses are accumulated into range histograms to provide 3D volume and intensity information. In this paper, we report on a prototype sensor system, which has recently been developed using new 32x32 arrays of Geiger-mode APDs with 0.35 μm CMOS digital timing circuits at each pixel. Here we describe the sensor system development and present recent measurements of laboratory test data and field imagery.
机译:麻省理工学院林肯实验室继续开发新颖的高分辨率3D成像激光雷达技术和传感器系统。此处详细描述的传感器系统使用无源Q开关固态倍频Nd:YAG激光器发射532 nm波长的短激光脉冲(〜700 ps FWHM),并通过测量时间得出目标表面元素的范围每个像素的飞行时间。使用这些Silicon Geiger模式的APD在室温下测得的单光电子检测效率> 20%。来自检测器的脉冲用于停止焦平面阵列内集成的> 500 MHz数字时钟。使用适当的光学元件,数字时间值的32x32数组表示场景的3D空间图像帧。来自多千赫兹脉冲重复频率激光脉冲的连续图像帧被累积到范围直方图中,以提供3D体积和强度信息。在本文中,我们报告了一个原型传感器系统,该传感器系统最近使用在每个像素处具有0.35μmCMOS数字定时电路的盖格模式APD的新32x32阵列开发。在这里,我们描述了传感器系统的发展,并介绍了实验室测试数据和现场图像的最新测量结果。

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