首页> 外文会议>ISPRS Geospatial Week >CONSIDERING TIME IN ORTHOPHOTOGRAPHY PRODUCTION: FROM A GENERAL WORKFLOW TO A SHORTENED WORKFLOW FOR A FASTER DISASTER RESPONSE
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CONSIDERING TIME IN ORTHOPHOTOGRAPHY PRODUCTION: FROM A GENERAL WORKFLOW TO A SHORTENED WORKFLOW FOR A FASTER DISASTER RESPONSE

机译:考虑到矫正器生产中的时间:从一般工作流程到缩短工作流程,以获得更快的灾难响应

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This article overall deals with production time with orthophoto imagery with medium size digital frame camera. The workflow examination follows two main parts: data acquisition and post-processing. The objectives of the research are fourfold: 1/ gathering time references for the most important steps of orthophoto production (it turned out that literature is missing on this topic); these figures are used later for total production time estimation; 2/ identifying levers for reducing orthophoto production time; 3/ building a simplified production workflow for emergency response: less exigent with accuracy and faster; and compare it to a classical workflow; 4/ providing methodical elements for the estimation of production time with a custom project. In the data acquisition part a comprehensive review lists and describes all the factors that may affect the acquisition efficiency. Using a simulation with different variables (average line length, time of the turns, flight speed) their effect on acquisition efficiency is quantitatively examined. Regarding post-processing, the time references figures were collected from the processing of a 1000 frames case study with 15 cm GSD covering a rectangular area of 447 km2; the time required to achieve each step during the production is written down. When several technical options are possible, each one is tested and time documented so as all alternatives are available. Based on a technical choice with the workflow and using the compiled time reference of the elementary steps, a total time is calculated for the post-processing of the 1000 frames. Two scenarios are compared as regards to time and accuracy. The first one follows the "normal" practices, comprising triangulation, orthorectification and advanced mosaicking methods (feature detection, seam line editing and seam applicator); the second is simplified and make compromise over positional accuracy (using direct geo-referencing) and seamlines preparation in order to achieve orthophoto production faster. The shortened workflow reduces the production time by more than three whereas the positional error increases from 1 GSD to 1.5 GSD. The examination of time allocation through the production process shows that it is worth sparing time in the post-processing phase.
机译:本文整体处理生产时间与具有中等尺寸数字框架摄像头的矫形器图像。工作流程检查遵循两个主要部分:数据采集和后处理。该研究的目标是四倍:1 /收集时间参考,以获得正弦生产最重要的步骤(事实证明,该主题缺失文献);这些数字以后用于总生产时间估计; 2 /识别杆,用于减少正射点生产时间; 3 /构建简化的应急响应的生产工作流程:以准确性和更快的速度较少;并将其与古典工作流程进行比较; 4 /提供具有自定义项目的生产时间的有条件元素。在数据采集部分中,全面的审查列表并描述了可能影响采集效率的所有因素。使用具有不同变量的模拟(平均线长度,转弯时间,飞行速度)定量地检查了对采集效率的影响。关于后处理,从1000帧壳体研究的处理中收集时间参考数字,其中15cm GSD覆盖447 km2的矩形区域;在生产过程中实现每一步所需的时间被写入。当有几种技术选项是可能的时,每个都会测试并记录时间,以便所有替代品都可用。基于具有工作流程的技术选择,并使用基本步骤的编译时参考,计算1000帧的后处理的总时间。在时间和准确性方面比较了两种情况。第一个遵循“正常”实践,包括三角测量,矫正和先进的镶嵌方法(特征检测,缝线编辑和缝涂器);第二种是简化并通过位置精度(使用直接地理参考)和Seamlines准备来妥协,以便更快地实现正交产生。缩短的工作流程将生产时间减少三个以上,而位置误差从1 GSD增加到1.5 GSD。通过生产过程的时间分配检查表明,在后处理阶段值得保留时间。

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