首页> 外文会议>Conference on electro-optical remote sensing XI >Super-resolution depth information from a short-wave infrared laser gated-viewing system by using correlated double sampling
【24h】

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

机译:通过使用相关的双采样,来自短波红外激光门控系统的超级分辨率深度信息

获取原文

摘要

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:主要是,激光门控观察(GV)系统提供范围门控2D图像,而没有在范围门内的任何范围分辨率。通过组合具有略微不同的栅极位置的两个GV图像,可以获得范围门的一部分内的3D信息。深度分辨率比场景的断层序列中的最小栅极换档步长尺寸更高(超分辨率)。对于具有20Hz的典型帧速率的最先进的系统,所需的GV图像之间的时间差是50ms,其在具有移动物体的动态场景中可能太长。因此,我们已经将这种方法应用于新的短波红外(SWIR)GV摄像机的复位和信号电平图像,其读出集成电路支持实际用于降低KTC噪声的相关双采样(CD)(复位噪声)。这些图像仅从一个单一的激光脉冲中提取,其间之间的边际时间差。 SWIR GV摄像机由基于汞碲化镉的640×512雪崩光电二极管组成,碲化镉具有15μm的像素间距。 Q开关,闪光灯泵浦固态激光器,带有1.57μm波长(OPO),52 MJ脉冲能量在光束整形后,7 ns脉冲长度和20 Hz脉冲重复频率用于闪光灯照明。在本文中,描述了实验组,并说明了CD的操作原理。引入并优化了通过使用CDS从GV系统中推导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。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号