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首页> 外文期刊>Advances in space research >Advancements in medium and high resolution Earth observation for land-surface imaging: Evolutions, future trends and contributions to sustainable development
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Advancements in medium and high resolution Earth observation for land-surface imaging: Evolutions, future trends and contributions to sustainable development

机译:用于陆地表面成像的中高分辨率地球观测的进展:演变,未来趋势以及对可持续发展的贡献

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摘要

Technologies for imaging the surface of the Earth, through satellite based Earth observations (EO) have enormously evolved over the past 50 years. The trends are likely to evolve further as the user community increases and their awareness and demands for EO data also increases. In this review paper, a development trend on EO imaging systems is presented with the objective of deriving the evolving patterns for the EO user community. From the review and analysis of medium-to-high resolution EO-based land-surface sensor missions, it is observed that there is a predictive pattern in the EO evolution trends such that every 10-15 years, more sophisticated EO imaging systems with application specific capabilities are seen to emerge. Such new systems, as determined in this review, are likely to comprise of agile and small payload-mass EO land surface imaging satellites with the ability for high velocity data transmission and huge volumes of spatial, spectral, temporal and radiometric resolution data. This availability of data will magnify the phenomenon of "Big Data" in Earth observation. Because of the "Big Data" issue, new computing and processing platforms such as telegeoprocessing and grid-computing are expected to be incorporated in EO data processing and distribution networks. In general, it is observed that the demand for EO is growing exponentially as the application and cost-benefits are being recognized in support of resource management.
机译:在过去的50年中,通过基于卫星的地球观测(EO)对地球表面成像的技术已经发生了巨大的发展。随着用户社区的增加,以及他们对EO数据的认识和需求的增加,趋势可能会进一步发展。在这篇综述文件中,提出了EO成像系统的发展趋势,目的是推导EO用户社区的发展模式。通过对中至高分辨率基于EO的陆面传感器任务的审查和分析,可以观察到EO演化趋势中存在预测模式,因此每10-15年,将有更复杂的EO成像系统投入使用可以看到特定功能的出现。正如本文所确定的那样,这种新系统可能包括敏捷和小型有效载荷质量的EO地面成像卫星,这些卫星具有高速数据传输的能力以及大量的空间,光谱,时间和辐射分辨率数据。数据的可用性将放大地球观测中的“大数据”现象。由于存在“大数据”问题,预计新的计算和处理平台(例如远程地理处理和网格计算)将被合并到EO数据处理和分发网络中。通常,可以看到,随着人们认识到支持资源管理的应用和成本效益,对EO的需求呈指数增长。

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