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Optimal sensor placement and measurement of wind for water quality studies in urban reservoirs

机译:用于城市水库水质研究的传感器最佳放置和风的测量

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We collaborate with environmental scientists to study the hydrodynamics and water quality in an urban district, where the surface wind distribution is an essential input but undergoes high spatial and temporal variations due to the complex urban landform created by surrounding buildings. In this work, we study an optimal sensor placement scheme to measure the wind distribution over a large urban reservoir with a limited number of wind sensors. Unlike existing sensor placement solutions that assume Gaussian process of target phenomena, this study measures the wind which inherently exhibits strong non-Gaussian yearly distribution. By leveraging the local monsoon characteristics of wind, we segment a year into different monsoon seasons which follow a unique distribution respectively. We also use computational fluid dynamics to learn the spatial correlation of wind in the presence of surrounding buildings. The output of sensor placement is a set of the most informative locations to deploy the wind sensors, based on the readings of which we can accurately predict the wind over the entire reservoir surface in real time. 10 wind sensors are finally deployed around or on the water surface of an urban reservoir. The in-field measurement results of more than 3 months suggest that the proposed sensor placement and spatial prediction approach provides accurate wind measurement which outperforms the state-of-the-art Gaussian model based or interpolation based approaches.
机译:我们与环境科学家合作研究市区的水动力和水质,在市区,地表风的分布是必不可少的输入,但由于周围建筑物形成的复杂城市地貌,其时空变化很大。在这项工作中,我们研究了一种最佳的传感器布置方案,该方案可在风力传感器数量有限的情况下测量大型城市水库中的风分布。与现有的假设目标现象为高斯过程的传感器放置解决方案不同,本研究测量的是固有表现出强非高斯年度分布的风。通过利用当地的季风特性,我们将一年分为不同的季风季节,分别遵循独特的分布。我们还使用计算流体动力学来了解周围建筑物存在时风的空间相关性。传感器放置的输出是部署风传感器的一组最有用的位置,根据这些读数,我们可以实时准确地预测整个储层表面的风。最终,在城市水库的水面周围或上方部署了10个风传感器。超过3个月的现场测量结果表明,建议的传感器放置和空间预测方法可提供精确的风测量,其性能优于基于最新高斯模型或基于插值的方法。

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