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Structural and statistical properties of the collocation technique for error characterization

机译:误差表征的并置技术的结构和统计特性

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The validation of geophysical data sets (e.g. derived from models, exploration techniques or remote sensing) presents a formidable challenge as all products are inherently different and subject to errors. The collocation technique permits the retrieval of the error variances of different data sources without the need to specify one data set as a reference. In addition calibration constants can be determined to account for biases and different dynamic ranges. The method is frequently applied to the study and comparison of remote sensing, in-situ and modelled data, particularly in hydrology and oceanography. Previous studies have almost exclusively focussed on the validation of three data sources; in this paper it is shown how the technique generalizes to an arbitrary number of data sets. It turns out that only parts of the covariance structure can be resolved by the collocation technique, thus emphasizing the necessity of expert knowledge for the correct validation of geophysical products. Furthermore the bias and error variance of the estimators are derived with particular emphasis on the assumptions necessary for establishing those characteristics. Important properties of the method, such as the structural deficiencies, dependence of the accuracy on the number of measurements and the impact of violated assumptions, are illustrated by application to simulated data.
机译:地球物理数据集(例如,从模型,勘探技术或遥感获得的数据)的验证提出了巨大的挑战,因为所有产品本质上都是不同的并且容易出错。并置技术允许检索不同数据源的误差方差,而无需指定一个数据集作为参考。另外,可以确定校准常数以解决偏差和不同的动态范围。该方法经常用于遥感,原位和建模数据的研究和比较,特别是在水文学和海洋学中。以前的研究几乎完全集中在三个数据源的验证上。本文展示了该技术如何推广到任意数量的数据集。事实证明,搭配技术只能解决协方差结构的某些部分,从而强调了专家知识对于正确验证地球物理产品的必要性。此外,推导了估计量的偏差和误差方差,其中特别强调了建立这些特征所需的假设。该方法的重要属性,例如结构缺陷,精度对测量次数的依赖性以及违反假设的影响,均通过对模拟数据的应用来说明。

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