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GPU-BASED ORTHORECTIFICATION OF DIGITAL AIRBORNE CAMERA IMAGES IN REAL TIME

机译:基于GPU的数字空气传播相机图像实时矫正

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The usage of airborne camera systems for near real time applications will increase in the near future. This paper purposes a new hardware/software architecture to establish real time computation of images obtained from the DLR wide area airborne 3K-camera system. The main applications of our system are e.g. to monitor automotive traffic, to determine the workload of public road networks during mass events, or to obtain a survey of damages in disaster areas in real time. Therefore, many different image processing tasks have to be executed in real time. Orthorectification of images is necessary prior to all other processing tasks, e.g. before mapping data from street data bases into images or before tracking of vehicles. Nowadays, the calculation becomes possible due to fast graphic processing units (GPU) and with the support of a distributed real time system. In order to achieve real time image processing, we suggest a GPU-based algorithm for image orthorectification. The GPS/IMU-system provides the position and orientation of the aircraft with 128Hz quite accurately. Assuming synchronized measurements with the camera system and given camera calibration, direct orthorectification is implemented using OpenGL. Therewith, we are able to process high resolution images consisting of 16 MPixels with a frame rate of 3 Hz. This paper describes the implementation of the real time algorithm and gives first results.
机译:空中相机系统的使用近实时应用将在不久的将来增加。本文目的是一种新的硬件/软件架构,可以建立从DLR广域机载3K相机系统获得的图像的实时计算。我们的系统的主要应用是如此。为了监控汽车流量,确定群众活动期间公共道路网络的工作量,或实时获取灾区损害的调查。因此,必须实时执行许多不同的图像处理任务。在所有其他处理任务之前,例如,在所有其他处理任务之前都需要邻接图像。在将数据从街道数据库映射到图像中或在跟踪车辆之前。如今,由于快速图形处理单元(GPU)和分布式实时系统的支持,计算变得可能。为了实现实时图像处理,我们建议一种基于GPU的图像逆变算法。 GPS / IMU系统提供128Hz的飞机的位置和方向非常准确。假设使用相机系统和给定摄像机校准的同步测量,使用OpenGL实现直接矫正。从而,我们能够处理由16个MMIXELS组成的高分辨率图像,其帧速率为3 Hz。本文介绍了实时算法的实现并提供了第一个结果。

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