Improved multi-beam neural network scatterometer forward models


Autoria(s): Cornford, Dan; Nabney, Ian T.; Ramage, Guillaume
Data(s)

2000

Resumo

Current methods for retrieving near surface winds from scatterometer observations over the ocean surface require a foward sensor model which maps the wind vector to the measured backscatter. This paper develops a hybrid neural network forward model, which retains the physical understanding embodied in ¸mod, but incorporates greater flexibility, allowing a better fit to the observations. By introducing a separate model for the mid-beam and using a common model for the fore- and aft-beams, we show a significant improvement in local wind vector retrieval. The hybrid model also fits the scatterometer observations more closely. The model is trained in a Bayesian framework, accounting for the noise on the wind vector inputs. We show that adding more high wind speed observations in the training set improves wind vector retrieval at high wind speeds without compromising performance at medium or low wind speeds.

Formato

application/pdf

Identificador

http://eprints.aston.ac.uk/1289/1/NCRG_2000_008.pdf

Cornford, Dan; Nabney, Ian T. and Ramage, Guillaume (2000). Improved multi-beam neural network scatterometer forward models. Technical Report. Aston University, Birmingham, UK.

Publicador

Aston University

Relação

http://eprints.aston.ac.uk/1289/

Tipo

Monograph

NonPeerReviewed