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Optimizing fixed observational assets in a coastal observatory

机译:优化沿海天文台的固定观测资产

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Proliferation of coastal observatories necessitates an objective approach to managing of observational assets. In this article, we used our experience in the coastal observatory for the Columbia River estuary and plume to identify and address common problems in managing of fixed observational assets, such as salinity, temperature, and water level sensors attached to pilings and moorings. Specifically, we addressed the following problems: assessing the quality of an existing array, adding stations to an existing array, removing stations from an existing array, validating an array design, and targeting of an array toward data assimilation or monitoring. Our analysis was based on a combination of methods from oceanographic and statistical literature, mainly on the statistical machinery of the best linear unbiased estimator. The key information required for our analysis was the covariance structure for a field of interest, which was computed from the output of assimilated and non-assimilated models of the Columbia River estuary and plume. The network optimization experiments in the Columbia River estuary and plume proved to be successful, largely withstanding the scrutiny of sensitivity and validation studies, and hence providing valuable insight into optimization and operation of the existing observational network. Our success in the Columbia River estuary and plume suggest that algorithms for optimal placement of sensors are reaching maturity and are likely to play a significant role in the design of emerging ocean observatories, such as the United State's ocean observation initiative (OOI) and integrated ocean observing system (LOOS) observatories, and smaller regional observatories. (C) 2008 Elsevier Ltd. All rights reserved.
机译:沿海天文台的扩散需要一种客观的方法来管理观测资产。在本文中,我们利用我们在哥伦比亚河河口和羽流海岸天文台的经验,确定并解决了固定观测资产管理中的常见问题,例如盐分,温度和附着在桩和系泊设备上的水位传感器。具体来说,我们解决了以下问题:评估现有阵列的质量,将工作站添加到现有阵列,从现有阵列中删除工作站,验证阵列设计以及将阵列面向数据同化或监视。我们的分析基于海洋学和统计文献的方法组合,主要是基于最佳线性无偏估计量的统计机制。我们分析所需要的关键信息是感兴趣区域的协方差结构,该结构是从哥伦比亚河口和羽流的同化和非同化模型的输出中计算出来的。事实证明,在哥伦比亚河河口和羽流中进行的网络优化实验是成功的,在很大程度上经受了敏感性和验证研究的审查,因此为现有观测网络的优化和运行提供了宝贵的见识。我们在哥伦比亚河河口和羽流中的成功表明,传感器最佳放置的算法已经成熟,并且可能在新兴海洋观测站的设计中发挥重要作用,例如美国的海洋观测计划(OOI)和综合海洋观测系统(LOOS)观测站和较小的区域观测站。 (C)2008 Elsevier Ltd.保留所有权利。

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