【24h】

A Imaging Geometry Model of Space Camera

机译:空间相机的成像几何模型

获取原文

摘要

High resolution of remote sensing image is impressible on varying pitch angle of satellite platform on orbit. The geometry uality of image is distorted, and image has geometrical warp. Conse uently, the spatial distribution of image is changed. However, traditional simulation methods of geometric distortion are complex. Traditional methods are based on accurate physical model. The pixel positions of warp image are calculated as one by one pixel. The topological mapping relationship is analy ed, which is between earth coordinate and optical remote sensor coordinate. The method of active points is proposed. Positions of active points are computed through the transform relationship between earth coordinate and optical remote sensor coordinate. Active points are interpolated by polynomial interpolation. The geometrical distortion is sub-pixel precision. Finally, a frame of image is generated. The effective transform reduces vastly amount of computation. The geometry model contains interior and exterior orientation elements of imaging system on satellite platform. The simulation experiment is based on three axes. Various angles of three axes are included by proposed model. As a result, the boundary condition of motion error affecting imaging uality is analy ed. The proposed geometry model not only improves physical information of active points, but also reduces computational complexity of transform between earth coordinate and optical remote sensor coordinate. The result is beneficial to design and optimi e parameters of satellite platform.
机译:在轨道上变化的卫星平台俯仰角上,高分辨率的遥感图像令人印象深刻。图像的几何特性失真,并且图像具有几何变形。因此,图像的空间分布发生了变化。但是,传统的几何失真模拟方法很复杂。传统方法基于准确的物理模型。翘曲图像的像素位置被计算为一像素一像素。分析了地球坐标与光学遥感器坐标之间的拓扑映射关系。提出了有效点法。通过地球坐标和光学遥感器坐标之间的变换关系来计算活动点的位置。活动点通过多项式插值进行插值。几何失真是亚像素精度。最后,生成一帧图像。有效的转换大大减少了计算量。几何模型包含卫星平台上成像系统的内部和外部定向元素。仿真实验基于三个轴。所提出的模型包括三个轴的各种角度。结果,分析了影响成像质量的运动误差的边界条件。提出的几何模型不仅改善了有效点的物理信息,而且降低了地球坐标与光学遥感器坐标之间转换的计算复杂度。结果有利于卫星平台参数的设计和优化。

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