According to the inefficiency of MODIS evapotranspiration inversion
a parallel processing method is proposed based on computational grid to improve the accuracy and timeliness of hydrological forecasting. A formal definition of atom is given
and then the MODIS evapotranspiration inversion algorithm is split into atoms that can be scheduled and executed on grid. Standard relations and arrangement mechanism of parameters are established and the inversion task graph is constructed based on the principle of the earth's surface energy balance. The schedule of the task is made by particles with small size
task topological structure and node state. Experimental results show that the algorithm has good characteristics of high-performance
fast and stable inversion
and reasonable use of node computing resources.
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references
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