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Development of an Uncertainty Propagation Equation for Scalar Fields

机译:标量场不确定性传播方程的发展

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The uncertainty of a scalar field is essential structuring information for any estimation problem. Establishing the uncertainty in a dense gridded product from sparse or random uncertainty-attributed input data is not, however, routine. This manuscript develops an equation that propagates the uncertainty of individual observations, arbitrarily distributed in http://www.w3.org/1999/, to a common estimation location at which they can be used to determine the composite uncertainty of the output field. The equation includes the effect of the distance between the observation and estimation locations, the field and horizontal uncertainty of the observation, and user-parameters to control the expected variability in the field as a function of distance. Two computational versions of the equation, a lower cost conservative approach and a higher cost mean-distance approach, are developed and evaluated for computational cost and resulting accuracy in numerical experiments over simulated bathymetric data. The mean-distance approach is more accurate, but more costly; suitable numerical approximations are proposed to control computational costs. A benefit of the work described is flexibility and enhancement for applications of the model, such as the Combined Uncertainty and Bathymetry Estimator algorithm, which is used as a demonstration of the difference between the two versions of the equation.
机译:标量场的不确定性对于任何估计问题都是必不可少的结构信息。但是,根据稀疏或随机不确定性归因的输入数据来确定密集网格产品的不确定性不是常规操作。该手稿提出了一个方程,该方程将在http://www.w3.org/1999/中任意分布的单个观测值的不确定性传播到一个通用的估计位置,在该位置可以使用它们确定输出场的复合不确定性。该方程式包括观测和估计位置之间的距离,观测的场和水平不确定性的影响,以及根据距离来控制场中预期变化的用户参数。方程的两个计算版本,一种低成本的保守方法和一种成本更高的平均距离方法,被开发出来并评估了在模拟测深数据上的数值实验中的计算成本和精度。平均距离方法更准确,但成本更高;提出了合适的数值近似来控制计算成本。所描述的工作的好处是模型应用的灵活性和增强性,例如不确定性和测深联合估算器算法,该算法被用来证明等式两个版本之间的差异。

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