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Spatial sampling design based on convex design ideas and using external drift variables for a rainfall monitoring network in Pakistan

机译:基于凸设计思想并使用外部漂移变量的巴基斯坦降雨监测网络的空间采样设计

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Spatial sampling design is concerned with the optimal allocation of samples to spatial coordinates in order to improve in a well-defined sense the estimation and prediction of spatial random fields. Unfortunately, objective functions in spatial sampling design seem to be so complicated so far that most often stochastic search algorithms are used to get these design criteria optimized. Our intention is to show that the minimization of the average kriging variance design criterion shows a mathematically tractable structure when considering the random field as a linear regression model with infinitely many random coefficients. Either the Karhunen-Loeve expansion or the polar spectral representation of the random field may be used to get such a favourable representation. Well-known convex experimental design theory may be applied then to this high dimensional cosine-sine-Bessel surface harmonics random coefficients regression model to calculate spatial sampling designs. We study a monitoring network for rainfall during the monsoon in Pakistan and consider both the optimal deletion and subsequent addition of monitoring stations from/to this network. Only deterministic optimization algorithms and no stochastic search algorithms are used for the task of network optimization. As external drift variables determining the rainfall trend wind, humidity and elevation are considered.
机译:空间采样设计与将样本分配到空间坐标有关,以便在定义明确的意义上改善对空间随机场的估计和预测。不幸的是,到目前为止,空间采样设计中的目标函数似乎是如此复杂,以至于大多数情况下使用随机搜索算法来优化这些设计标准。我们的意图是表明,当将随机字段视为具有无限多个随机系数的线性回归模型时,最小化平均克里金法偏差设计标准显示出数学上易于处理的结构。 Karhunen-Loeve展开或随机场的极谱表示都可以用来获得这种有利表示。然后,可以将众所周知的凸实验设计理论应用于此高维余弦-正弦-贝塞尔表面谐波随机系数回归模型,以计算空间采样设计。我们研究了巴基斯坦季风期间的降雨监测网络,并考虑了从该网络中最佳删除和随后添加监测站的情况。网络确定性任务仅使用确定性优化算法,而没有随机搜索算法。作为确定降雨趋势的外部漂移变量,要考虑风,湿度和海拔高度。

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