Powers Michael A, Davis Christopher C
General Dynamics, Westminster, Maryland 21157, USA.
Appl Opt. 2012 Apr 1;51(10):1468-78. doi: 10.1364/AO.51.001468.
We present the concept and experimental results for Spectral LADAR, an augmented LADAR imager combining three-dimensional (3D) time-of-flight ranging with active multispectral sensing in the shortwave infrared (1080-1620 nm). The demonstrated technique is based on a nanosecond regime pulsed supercontinuum transmitter and spectrally multiplexed receiver that computes a high-resolution range value for each of 25 spectral bands. A low frame-rate prototype unit is described. Results demonstrating 3D imaging and material type classification of objects, especially those obscured by camouflage, are shown at effective stand-off ranges exceeding 40 m. These capabilities and the highly eye safe wavelengths at which the system operates make it suitable for applications in military imaging and robotic perception.
我们介绍了光谱激光雷达(Spectral LADAR)的概念和实验结果,这是一种增强型激光雷达成像仪,它将三维(3D)飞行时间测距与短波红外(1080 - 1620纳米)的有源多光谱传感相结合。所展示的技术基于一个纳秒级脉冲超连续谱发射器和光谱复用接收器,该接收器能为25个光谱波段中的每一个计算出高分辨率距离值。文中描述了一个低帧率原型装置。结果表明,在超过40米的有效远距离范围内,该装置能够对物体进行3D成像和材料类型分类,尤其是那些被伪装遮挡的物体。这些能力以及系统运行时的高眼安全波长使其适用于军事成像和机器人感知应用。