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Integration of Wireless Sensor Networks into Cyberinfrastructure for Monitoring Hawaiian 'Mountain-to-Sea' Environments

机译:将无线传感器网络集成到网络基础架构中,以监控夏威夷的“山海环境”

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Monitoring the complex environmental relationships and feedbacks of ecosystems on catchment (or mountain)-to-sea scales is essential for social systems to effectively deal with the escalating impacts of expanding human populations globally on watersheds. However, synthesis of emerging technologies into a robust observing platform for the monitoring of coupled human-natural environments on extended spatial scales has been slow to develop. For this purpose, the authors produced a new cyberinfrastructure for environmental monitoring which successfully merged the use of wireless sensor technologies, grid computing with three-dimensional (3D) geospatial data visualization/exploration, and a secured internet portal user interface, into a working prototype for monitoring mountain-to-sea environments in the high Hawaiian Islands. A use-case example is described in which native Hawaiian residents of Waipa Valley (Kauai) utilized the technology to monitor the effects of regional weather variation on surface water quality/quantity response, to better understand their local hydrologic cycle, monitor agricultural water use, and mitigate the effects of lowland flooding.
机译:监测复杂的环境关系和生态系统在集水区(或山地)到海洋规模上的反馈,对于社会系统有效地应对全球人口不断增长对流域的不断升级的影响至关重要。但是,将新兴技术综合到一个健壮的观测平台中以在扩展的空间尺度上监视人与自然环境耦合的研究进展缓慢。为此,作者制作了一种用于环境监测的新型网络基础设施,该基础设施成功地将无线传感器技术的使用,具有三维(3D)地理空间数据可视化/探索功能的网格计算以及安全的互联网门户用户界面合并为一个可工作的原型。用于监视夏威夷高岛上的山海环境。描述了一个用例示例,其中夏威夷怀帕河谷(考艾岛)的当地居民利用该技术监测区域天气变化对地表水质量/数量响应的影响,以更好地了解他们的当地水文循环,监测农业用水,并减轻低地洪水的影响。

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