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ESPAS — Near-earth space data infrastructure for e-science

机译:ESPAS - 电子科学的近地空间数据基础设施

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The aim of ESPAS platform is to integrate heterogeneous data from the earth's thermosphere, ionosphere, plasmasphere and magnetosphere. ESPAS supports the systematic exploration of multipoint measurements from the near-Earth space through homogenised access to multi-instrument data. It provides access to more than 40 datasets: Cluster, EISCAT, GIRO, DIAS, SWACI, CHAMP, SuperDARN, FPI, magnetometers INGV, SGO, DTU, IMAGE, TGO, IMAGE/RPI, ACE, SOHO, PROBA2, NOAA/POES, etc. The concept of extensibility to new data sets is an important element in the ESPAS architecture. Within the first year of the project, the main components of the system have been developed, namely, the data model, the XML schemas for metadata exchange format, the ontology, the wrapper installed at the data nodes so that the main platform harvest the metadata, the main platform built on the D-NET framework and the GUI with its designed workflows. The first working prototype supports the search for datasets among a selected number of databases (i.e., EDAM, DIAS, Cluster, SWACI data). The next immediate step would be the implementation of search for characteristics within the datasets. For the second release we are planning to deploy tools for conjunctions between ground-space and space-space and for coincidences. For the final phase of the project the ESPAS infrastructure will be extensively tested through the application of several use cases, designed to serve the needs of the wide interdisciplinary users and producers communities, such as the ionospheric, thermospheric, magnetospheric, space weather and space climate communities, the geophysics community, the space communications engineering, HF users, satellite operators, navigation and surveillance systems, and space agencies. The final ESPAS platform is expected to be delivered in 2015.
机译:ESPAS平台的目的是将异质数据与地球的热圈,电离层,血管层集成在一起。 ESPAS通过均质访问多仪器数据,支持来自近地球空间的多点测量的系统探索。它提供了超过40个数据集的访问:群集,EICAT,GIRO,DIA,SWACI,CHAMP,Superdarn,FPI,磁力计INGV,SGO,DTU,图像,TGO,IMAGE / RPI,ACE,SOHO,PROPA2,NOAA / POES,新数据集的可扩展性的概念是ESPAS架构中的一个重要元素。在该项目的第一年内,系统的主要组成部分已开发,即数据模型,元数据Exchange格式的XML模式,本体,安装在数据节点上的包装器,以便主平台收集元数据,主机在D-NET框架和GUI上建立了设计的工作流程。第一个工作原型支持在所选数据库中搜索数据集(即,埃德拉姆,Dia,群集,Swaci数据)。下一步步骤是在数据集中搜索搜索特征的步骤。对于第二个版本,我们正计划部署地面空间和空间空间和巧合之间的连词。对于该项目的最后阶段,ESPAS基础设施将通过应用若干用例来广泛测试,旨在满足广泛跨学科用户和生产商社区的需求,如电离层,热散,磁体,空气和空间气候社区,地球物理社区,空间通信工程,HF用户,卫星运营商,导航和监测系统以及空间机构。最终的ESPAS平台预计将于2015年交付。

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