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A Wavelet-Based Reduced Rank Kalman Filter for Assimilation of Stratospheric Chemical Tracer Observations

机译:基于小波的降阶卡尔曼滤波器用于平流层化学示踪剂观测的同化

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A suboptimal Kalman filter system that evolves error covariances in terms of a truncated set of wavelet coefficients has been developed for the assimilation of chemical tracer observations of CH_4. The truncation is carried out in such a way that the resolution of the error covariance is reduced only in the zonal direction, where gradients are smaller. Assimilation experiments, which lasted 24 days and used different degrees of truncation, were carried out. These experiments reduced the number of elements in the covariance matrix by 90%, 97%, and 99% and the computational cost of covariance propagation by 80%, 93%, and 96%, respectively. The difference in both error covariance and the tracer field between the truncated and full systems over this period was not found to be growing, after about 5 days of assimilation. The largest errors in the tracer fields were found to occur in regions of largest zonal gradients at times when observations were made in the immediate vicinity.
机译:已开发出次优卡尔曼滤波系统,该系统可根据截短的小波系数集发展误差协方差,以吸收CH_4的化学示踪剂。以这样的方式执行截断,使得误差协方差的分辨率仅在梯度较小的区域方向上减小。进行了持续24天并使用了不同程度的截短的同化实验。这些实验分别将协方差矩阵中的元素数量减少了90%,97%和99%,并将协方差传播的计算成本分别减少了80%,93%和96%。在同化大约5天后,未发现截短系统和完整系统之间的误差协方差和示踪剂场的差异正在增大。发现示踪剂场中最大的误差发生在最大距离梯度梯度的区域中,这是在紧邻附近进行观测时发生的。

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