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A meta-analysis and review of unmanned aircraft system (UAS) imagery for terrestrial applications

机译:用于地面应用的无人机系统(UAS)图像的元分析和审查

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摘要

Over the past decade, the remote-sensing community has eagerly adopted unmanned aircraft systems (UAS) as a cost-effective means to capture imagery at spatial and temporal resolutions not typically feasible with manned aircraft and satellites. The rapid adoption has outpaced our understanding of the relationships between data collection methods and data quality, causing uncertainties in data and products derived from UAS and necessitating exploration into how researchers are using UAS for terrestrial applications. We synthesize these procedures through a meta-analysis of UAS applications alongside a review of recent, basic science research surrounding theory and method development. We performed a search of the Web of Science (WoS) database on 17 May 2017 using UAS-related keywords to identify all peer-reviewed studies indexed by WoS. We manually filtered the results to retain only terrestrial studies () and further categorized results into basic theoretical studies (), method development (), and applications (). After randomly selecting a subset of applications (), we performed an in-depth content analysis to examine platforms, sensors, data capture parameters (e.g. flight altitude, spatial resolution, imagery overlap, etc.), preprocessing procedures (e.g. radiometric and geometric corrections), and analysis techniques. Our findings show considerable variation in UAS practices, suggesting a need for establishing standardized image collection and processing procedures. We reviewed basic research and methodological developments to assess how data quality and uncertainty issues are being addressed and found those findings are not necessarily being considered in application studies.
机译:在过去的十年中,遥感界急切地采用无人机系统(UAS)作为一种具有成本效益的手段,以通常在载人飞机和卫星上不可行的时空分辨率捕获图像。快速采用已经超出了我们对数据收集方法与数据质量之间关系的理解,导致从UAS衍生的数据和产品存在不确定性,因此有必要探索研究人员如何将UAS用于地面应用。我们通过对UAS应用程序的荟萃分析以及对有关理论和方法开发的最新基础科学研究的综述来综合这些程序。我们于2017年5月17日使用与UAS相关的关键字对Web of Science(WoS)数据库进行搜索,以识别由WoS索引的所有同行评审研究。我们手动过滤了结果以仅保留地面研究(),并将结果进一步分类为基础理论研究(),方法开发()和应用()。在随机选择应用程序的一个子集()之后,我们进行了深入的内容分析,以检查平台,传感器,数据捕获参数(例如,飞行高度,空间分辨率,图像重叠等),预处理程序(例如,辐射和几何校正) )和分析技术。我们的发现表明,UAS做法存在很大差异,这表明需要建立标准化的图像收集和处理程序。我们回顾了基础研究和方法学的发展,以评估如何解决数据质量和不确定性问题,发现应用研究中不一定要考虑这些发现。

著录项

  • 来源
    《International journal of remote sensing》 |2018年第16期|5078-5098|共21页
  • 作者单位

    North Carolina State Univ, Ctr Geospatial Analyt, Raleigh, NC USA;

    Oklahoma State Univ, Dept Geog, Ctr Applicat Remote Sensing, 337 Murray Hall, Stillwater, OK 74078 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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