...
首页> 外文期刊>ISPRS Journal of Photogrammetry and Remote Sensing >Self-calibration dense bundle adjustment of multi-view Worldview-3 basic images
【24h】

Self-calibration dense bundle adjustment of multi-view Worldview-3 basic images

机译:自校准密集束调整多视图WorldView-3基本图像

获取原文
获取原文并翻译 | 示例
           

摘要

Very high-resolution satellite images (VHRSIs) with improved spatial resolution provide unprecedented opportunities to explore the geometric and semantic information of the world. Accordingly, to compensate for the bias of exterior orientation parameters, bundle adjustment of VHRSIs is required. Owing to the sparse points, the bundle adjustment of a few VHRSIs omits high-frequency errors and attitude jitters; therefore, the rational function model (RFM) can achieve an accuracy comparable to that of a rigorous sensor model (RSM), despite the significant difference between the RSM and RFM. In this study, we provide insight into the role of RSM in modeling attitude jitters for the Worldview-3 basic imagery product. Penalized splines were proposed to model the attitude jitters. After correcting the photogrammetric refraction using Saastamoinen's model and light aberration, the RSM was built for agile satellites. The difference between RSM and RFM is consistent with attitude jitters, which is calculated using the penalized splines model and third-degree polyniomials. To fully explore the attitude jitters, a dense bundle adjustment was proposed to process 47 scenes of the Worldview-3 basic product imagery, which was provided by Johns Hopkins University Applied Physics Laboratory for the "Multi-View Stereo 3D Challenge." Pairwise feature matching and feature tracking were adopted to generate over 16 000 tie-points (TPs), which were detected in an average of 9.38 images. The bundle adjustment residuals with RFM exhibited distortions similar to those of the attitude jitter. The experiments verified that the bundle adjustment with RFM introduced significant errors triggered by attitude jitters, with a maximum of over 5.0 pixels. The bundle adjustment with RSM could eliminate significant errors caused by attitude jitters and reduce the root mean square errors (RMSEs) from 1.12 pixels to 0.61 pixels. However, the basic product imagery of Worldview-3 exhibited errors in the interior orientation parameters. After analyzing the physical meanings of bias compensation, a self-calibration model was proposed. After comparing the shift compensation, affine compensation, self-calibration, temporal self-calibration, second-degree self-calibration, and second-degree polynomial models, the dense bundle adjustment with self-calibration was suggested because it could compensate for errors in the interior orientation parameters (IOPs) and obtain an accuracy similar to that of high-degree models. Thus, a selfcalibration dense bundle adjustment with RSM compensates for the attitude jitters and errors in the IOPs, and achieves a remarkable accuracy of 0.49 pixels in the image coordinates.
机译:具有改善的空间分辨率的非常高分辨率的卫星图像(VHRSIS)提供了前所未有的机会探索世界的几何和语义信息。因此,为了补偿外部取向参数的偏差,需要横向调整VHRSIS。由于稀疏点,若干VHRSIS的捆绑调整省略了高频误差和态度钝化;因此,尽管RSM和RFM之间存在显着差异,但Rational函数模型(RFM)可以实现与严格的传感器模型(RSM)相当的精度。在这项研究中,我们提供了对RSM在世界观 - 3基本意象产品的建模态度困境中的作用。提出了惩罚的花键来模仿态度乱七八糟的态度。使用SaastamoInen的模型和轻差距纠正摄影测量折射后,RSM为敏捷卫星建造。 RSM和RFM之间的差异与态度简洁的差异一致,其使用惩罚的样条模型和三度多项式来计算。为了充分探索骚动者的态度,提出了一个密集的捆绑调整,以处理由约翰霍普金斯大学应用物理实验室提供的WorldView-3基本产品图像的47个场景,为“多视图立体三维挑战”提供。采用成对特征匹配和特征跟踪来生成超过16 000个TIE点(TPS),其平均检测为9.38图像。具有RFM的捆绑调整残差表现出与姿态抖动相似的扭曲。实验证明,RFM的捆绑调整引入了态度抖动引发的显着误差,最多超过5.0像素。与RSM的捆绑调整可以消除由姿态抖动引起的显着误差,并将1.12像素的根均方误差(RMSE)从1.12像素减少到0.61像素。但是,WorldView-3的基本产品图像在内部方向参数中表现出错误。在分析偏置补偿的物理含义之后,提出了一种自校准模型。比较换档补偿,仿射补偿,自校准,时间自校准,二级自校准和二级多项式模型后,提出了具有自校准的密集束调节,因为它可以补偿误差内部方向参数(IOPS)并获得类似于高级模型的精度。因此,具有RSM的自脱频致密束调节补偿了IOPS中的姿态抖动和误差,并在图像坐标中实现了0.49像素的显着精度。

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