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LADAR range image interpolation exploiting pulse width expansion

机译:利用脉冲宽度扩展的LADAR距离图像插值

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Laser radar (LADAR) systems produce both a range image and an intensity image. When the transmitted LADAR pulse strikes a sloped surface, the returned pulse is expanded temporally. This makes it possible to estimate the gradient of a surface, pixel by pixel. This paper seeks to find the gradient of the surface of an object from a realistic LADAR return pulse that includes probabilistic noise models. Additionally, optimal and computationally simple interpolation niters are each derived to recover Nyquist-sampled data from data spatially sampled below the Nyquist rate. The niters will then be applied to the embedded information in the gradient to allow the sampling density in the spatial domain to be taken at below the Nyquist criterion while still facilitating an effective 3D reconstruction of an image.
机译:激光雷达(LADAR)系统可产生距离图像和强度图像。当发射的LADAR脉冲撞击倾斜表面时,返回的脉冲会暂时扩展。这使得可以逐像素地估计表面的梯度。本文力图从包含概率噪声模型的实际LADAR返回脉冲中找到物体表面的梯度。另外,每个优化和计算简单的插值分类器都可以从低于奈奎斯特速率的空间采样数据中恢复奈奎斯特采样数据。然后,将分类器应用于渐变中的嵌入信息,以允许在奈奎斯特标准以下以空间域的方式进行采样密度,同时仍然有助于图像的有效3D重建。

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