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Super-resolution depth information from a short-wave infrared laser gated-viewing system by using correlated double sampling

机译:短波红外激光选通观察系统通过相关双采样获得的超分辨率深度信息

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Primarily, a laser gated-viewing (GV) system provides range-gated 2D images without any range resolution within the range gate. By combining two GV images with slightly different gate positions, 3D information within a part of the range gate can be obtained. The depth resolution is higher (super-resolution) than the minimal gate shift step size in a tomographic sequence of the scene. For a state-of-the-art system with a typical frame rate of 20 Hz, the time difference between the two required GV images is 50 ms which may be too long in a dynamic scenario with moving objects. Therefore, we have applied this approach to the reset and signal level images of a new short-wave infrared (SWIR) GV camera whose read-out integrated circuit supports correlated double sampling (CDS) actually intended for the reduction of kTC noise (reset noise). These images are extracted from only one single laser pulse with a marginal time difference in between. The SWIR GV camera consists of 640 × 512 avalanche photodiodes based on mercury cadmium telluride with a pixel pitch of 15 μm. A Q-switched, flash lamp pumped solid-state laser with 1.57 μm wavelength (OPO), 52 mJ pulse energy after beam shaping, 7 ns pulse length and 20 Hz pulse repetition frequency is used for flash illumination. In this paper, the experimental set-up is described and the operating principle of CDS is explained. The method of deriving super-resolution depth information from a GV system by using CDS is introduced and optimized. Further, the range accuracy is estimated from measured image data.
机译:首先,激光选通观察(GV)系统可提供距离选通的2D图像,而在距离选通范围内则没有任何距离分辨率。通过组合两个栅极位置略有不同的GV图像,可以获得部分测距门内的3D信息。深度分辨率比场景的断层扫描序列中的最小门偏移步长要高(超分辨率)。对于典型帧速率为20 Hz的最新系统,两个所需GV图像之间的时间差为50 ms,这在带有运动对象的动态场景中可能太长。因此,我们将这种方法应用于新型短波红外(SWIR)GV摄像机的复位和信号电平图像,该摄像机的读出集成电路支持相关双采样(CDS),实际上旨在降低kTC噪声(复位噪声) )。这些图像仅从单个激光脉冲中提取,其间存在边际时间差。 SWIR GV相机由640×512个基于碲化汞镉的雪崩光电二极管组成,像素间距为15μm。使用Q开关的闪光灯泵浦固态激光器,该激光器具有1.57μm波长(OPO),光束整形后的脉冲能量为52 mJ,7 ns的脉冲长度和20 Hz的脉冲重复频率,用于闪光照明。本文描述了实验装置,并说明了CDS的工作原理。介绍并优化了利用CDS从GV系统中提取超分辨率深度信息的方法。此外,从测量的图像数据估计范围精度。

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