【24h】

Research on hyperspectral dynamic scene and image sequence simulation

机译:高光谱动态场景与图像序列仿真研究

获取原文
获取原文并翻译 | 示例

摘要

This paper presents a simulation method of hyperspectral dynamic scene and image sequence for hyperspectral equipment evaluation and target detection algorithm. Because of high spectral resolution, strong band continuity, anti-interference and other advantages, in recent years, hyperspectral imaging technology has been rapidly developed and is widely used in many areas such as optoelectronic target detection, military defense and remote sensing systems. Digital imaging simulation, as a crucial part of hardware in loop simulation, can be applied to testing and evaluation hyperspectral imaging equipment with lower development cost and shorter development period. Meanwhile, visual simulation can produce a lot of original image data under various conditions for hyperspectral image feature extraction and classification algorithm. Based on radiation physic model and material characteristic parameters this paper proposes a generation method of digital scene. By building multiple sensor models under different bands and different bandwidths, hyperspectral scenes in visible, MWIR, LWIR band, with spectral resolution 0.01 μm, 0.05μm and 0.1μm have been simulated in this paper. The final dynamic scenes have high realtime and realistic, with frequency up to 100 HZ. By means of saving all the scene gray data in the same viewpoint image sequence is obtained. The analysis results show whether in the infrared band or the visible band, the grayscale variations of simulated hyperspectral images are consistent with the theoretical analysis results.
机译:本文提出了一种用于高光谱设备评估和目标检测算法的高光谱动态场景和图像序列的仿真方法。由于光谱分辨率高,频带连续性强,抗干扰等优点,近年来,高光谱成像技术得到了迅速发展,并广泛用于光电目标检测,军事防御和遥感系统等许多领域。数字成像仿真作为硬件在回路仿真中的关键部分,可用于开发成本较低,开发周期较短的高光谱成像设备的测试与评估。同时,视觉仿真可以在各种条件下产生大量原始图像数据,用于高光谱图像特征提取和分类算法。基于辐射物理模型和材料特征参数,提出了一种数字场景生成方法。通过建立不同频段,不同带宽的多个传感器模型,对可见光,MWIR,LWIR波段的高光谱场景进行了模拟,光谱分辨率为0.01μm,0.05μm和0.1μm。最终的动态场景具有很高的实时性和逼真性,频率高达100 HZ。通过将所有场景灰度数据保存在同一视点图像序列中。分析结果表明,无论是在红外波段还是可见波段,模拟的高光谱图像的灰度变化都与理论分析结果一致。

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