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Hydrologic information systems: Advancing cyberinfrastructure for environmental observatories.

机译:水文信息系统:推进环境观测站的网络基础设施。

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Recently, community initiatives have emerged for the establishment of large-scale environmental observatories. Cyberinfrastructure is the backbone upon which these observatories will be built, and scientists' ability to access and use the data collected within observatories to address research questions will depend on the successful implementation of cyberinfrastructure. The research described in this dissertation advances the cyberinfrastructure available for supporting environmental observatories. This has been accomplished through both development of new cyberinfrastructure components as well as through the demonstration and application of existing tools, with a specific focus on point observations data. The cyberinfrastructure that was developed and deployed to support collection, management, analysis, and publication of data generated by an environmental sensor network in the Little Bear River environmental observatory test bed is described, as is the sensor network design and deployment. Results of several analyses that demonstrate how high-frequency data enable identification of trends and analysis of physical, chemical, and biological behavior that would be impossible using traditional, low-frequency monitoring data are presented. This dissertation also illustrates how the cyberinfrastructure components demonstrated in the Little Bear River test bed have been integrated into a data publication system that is now supporting a nationwide network of 11 environmental observatory test bed sites, as well as other research sites within and outside of the United States. Enhancements to the infrastructure for research and education that are enabled by this research are impacting a diverse community, including the national community of researchers involved with prospective Water and Environmental Research Systems (WATERS) Network environmental observatories as well as other observatory efforts, research watersheds, and test beds. The results of this research provide insight into and potential solutions for some of the bottlenecks associated with design and implementation of cyberinfrastructure for observatory support.
机译:最近,为建立大型环境观测站而出现了社区倡议。网络基础设施是建立这些观测站的基础,科学家访问和使用观测站内收集的数据来解决研究问题的能力将取决于网络基础设施的成功实施。本文所描述的研究进展了可用于支持环境观测站的网络基础设施。这是通过开发新的网络基础设施组件以及通过演示和应用现有工具来实现的,其中特别关注点观测数据。描述了为支持收集,管理,分析和发布Little Bear River环境观测台试验台中的环境传感器网络生成的数据而开发的网络基础设施,以及传感器网络的设计和部署。提出了一些分析结果,这些结果表明了高频数据如何能够识别趋势以及对物理,化学和生物学行为进行分析,而使用传统的低频监测数据则无法实现这些分析。本论文还说明了小熊河试验台上展示的网络基础设施组件如何被集成到数据发布系统中,该系统现在正在支持由11个环境观测台试验台站点以及该站点内外的其他研究站点组成的全国性网络。美国。这项研究促成的研究和教育基础设施的增强,正在影响着一个多元化的社区,包括与预期的水和环境研究系统(WATERS)网络环境观测站以及其他观测站工作,研究分水岭,和测试床。这项研究的结果为与网络基础设施的设计和实施相关的某些瓶颈提供了见解,并为解决方案提供了潜在的解决方案。

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