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Multi-parameter Instrument Array and Control System (MPIACS): A Software Interface Implementation of Real-time Data Acquisition and Visualization for Environmental Monitoring

机译:多参数仪器阵列和控制系统(MPIACS):软件界面实现实时数据采集和环境监控可视化

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Recent developments in sensor technology over the past decade have shifted the paradigm in environmental as well as oceanographic sampling and monitoring. The environmental and oceanography scientific communities continue to deploy more and more in-situ sensors either as single-unit deployments for generation of time-series and vertical profiles or as a towed-array for mapping environmental variables in surface waters in multi-dimensional space. Emergency response activities also are enhanced by way of real-time geo-referenced data acquisition using mobile in-situ sensor arrays. Against this backdrop, we developed a software interface for real-time data acquisition, analysis and visualization from a towed-array of sensors. This is the Multi-parameter Instrument Array and Control System (MPIACS) described in this paper and was used in the fall of 2002 during a mock oil-spill exercise in Corpus Christi Bay, TX under the auspices of the Texas General Land Office (TGLO). The interface is designed for correlative visualization along the transect between as many as six state variables or environmental indicators allowing for the implementation of adaptive sampling schemes. The software can also be used for scheduled sampling of water quality parameters in surface waters.
机译:过去十年传感器技术的最新发展已经改变了环境和海洋采样和监测的范式。环境和海洋学科学社区继续将越来越多的原位传感器部署为单位部署,用于产生时间序列和垂直轮廓或作为牵引阵列,用于在多维空间中映射表面水域中的环境变量。通过使用移动原位传感器阵列的实时地理参考数据采集也增强了应急响应活动。在此背景下,我们开发了一种用于实时数据采集,分析和可视化的软件界面,从传感器阵列。这是本文中描述的多参数仪器阵列和控制系统(MPIACS),并于2002年秋季使用,在Corpus Christi Bay,TX下的德克萨斯州普通土地办公室的主持(TGLO )。该接口沿着多达六个状态变量或环境指示器之间的横频,界面设计用于实现自适应采样方案的相关性可视化。该软件还可用于表面水域中的水质参数的预定采样。

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