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HETEROGENEOUS ACCESS AND PROCESSING OF EO-DATA ON A CLOUD BASED INFRASTRUCTURE DELIVERING OPERATIONAL PRODUCTS

机译:基于云基础设施的EO数据的异构访问与处理运输产品

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To address the challenges of effective data handling faced by Small and Medium Sized Enterprises (SMEs) a cloud-based infrastructure for accessing and processing of Earth Observation (EO)-data has been developed within the project APPS4GMES (www.apps4gmes.de). To gain homogenous multi mission data access an Input Data Portal (IDP) been implemented on this infrastructure. The IDP consists of an Open Geospatial Consortium (OGC) conformant catalogue, a consolidation module for format conversion and an OGC-conformant ordering framework. Metadata of various EO-sources and with different standards is harvested and transferred to an OGC conformant Earth Observation Product standard and inserted into the catalogue by a Metadata Harvester. The IDP can be accessed for search and ordering of the harvested datasets by the services implemented on the cloud infrastructure. Different land-surface services have been realised by the project partners, using the implemented IDP and cloud infrastructure. Results of these are customer ready products, as well as pre-products (e.g. atmospheric corrected EO data), serving as a basis for other services. Within the IDP an automated access to ESA's Sentinel-1 Scientific Data Hub has been implemented. Searching and downloading of the SAR data can be performed in an automated way. With the implementation of the Sentinel-1 Toolbox and own software, for processing of the datasets for further use, for example for Vista's snow monitoring, delivering input for the flood forecast services, can also be performed in an automated way. For performance tests of the cloud environment a sophisticated model based atmospheric correction and pre-classification service has been implemented. Tests conducted an automated synchronised processing of one entire Landsat 8 (LS-8) coverage for Germany and performance comparisons to standard desktop systems. Results of these tests, showing a performance improvement by the factor of six, proved the high flexibility and computing power of the cloud environment. To make full use of the cloud capabilities a possibility for automated upscaling of the hardware resources has been implemented. Together with the IDP infrastructure fast and automated processing of various satellite sources to deliver market ready products can be realised, thus increasing customer needs and numbers can be satisfied without loss of accuracy and quality.
机译:为了解决中小企业面临的有效数据处理的挑战(中小企业),在项目APPS4GMES(www.apps4gmes.de)中开发了基于云的访问和处理地球观测(EO)-Data的基础设施。为了获得同质的多项任务数据,访问该基础架构的输入数据门户网站(IDP)已实现。 IDP由开放的地理空间联盟(OGC)符合性目录,一个用于格式转换的整合模块和OGC符合命令框架。收获各种EO源和不同标准的元数据,并转移到OGC一致性地球观察产品标准,并通过元数据收割机插入目录中。可以通过在云基础架构上实现的服务来访问IDP的搜索和排序所收获的数据集。项目合作伙伴已经实现了不同的土地面服务,使用已实施的IDP和云基础架构实现。这些结果是客户准备的产品,以及产品前(例如大气纠正的EO数据),作为其他服务的基础。在IDP中,已经实施了对ESA的Sentinel-1科学数据集线器的自动访问。搜索和下载SAR数据可以以自动化方式执行。随着Sentinel-1工具箱和自己的软件的实现,为了进一步使用的数据集,例如Vista的雪监测,提供洪水预测服务的输入,也可以以自动化的方式进行。对于云环境的性能测试,已经实施了基于复杂的基于型号的大气校正和预分类服务。测试对德国的一个整个Landsat 8(LS-8)覆盖的自动同步处理和标准桌面系统的性能比较。这些测试的结果,表现出六因素的性能提高,证明了云环境的高灵活性和计算能力。为了充分利用云功能,已经实现了硬件资源自动上升的可能性。与IDP基础设施的快速和自动化处理各种卫星源以提供市场准备的产品,可以实现,从而提高客户需求和数字,无需精度和质量损失。

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