Motion tracking and cloud height assignment methods for Himawari-8 AMV
Motion tracking and cloud height assignment methods for Himawari-8 AMV
复制标题
Himawari-8 AMV 的运动跟踪和云高分配方法
DOI:
--
复制
发表时间:
2014
期刊:
影响因子:
--
通讯作者:
Kazuki Shimoji
中科院分区:
文献类型:
--
作者:
Kazuki Shimoji
Japanese next-generation Himawari-8/9 satellites will carry Advanced Himawari Imager (AHI) units capable of producing full-disk images every 10 minutes with 16 channels. The spatial resolution at the sub satellite point (SSP) is 2 km for IR channels. The use of observation data from these satellites is expected to enable the output of advanced products based on data with high temporal, spatial and spectral resolutions. The Meteorological Satellite Centre of the Japan Meteorological Agency (JMA/MSC) is developing new tracking and height estimation algorithm for Himawari-8 Atmospheric Motion Vector (AMV). The new algorithm is designed for effective utilization of high spatial temporal and spectral resolutions of AHI. Major changes of the algorithm are applied to cloud feature tracking and cloud height estimation process. In the tracking method, small and large target boxes are prepared respectively for computing two correlation surfaces. Correlation surface from small target box is used as prior information for estimating wind vector, and another correlation surface derived from large target box is used as auxiliary information for determining optimal wind vector which is consistent with both of small and large scale atmospheric motion. Approach to height estimation method for Himawari-8 AMV is based on optimal estimation to minimize the difference between observed radiance values and the theoretical ones determined from cloud assignment and radiative transfer model parameters using three or more channels. The method will be applied to upper-, medium and low-level clouds for Himawari-8/9 IR/WV wind vectors.