oemAddOverlappingWindField
- Workspace.oemAddOverlappingWindField(self, jac_targets: JacobianTargets = self.jac_targets, oem: OptimalEstimationData = self.oem, matrix: BlockMatrix, inverse: BlockMatrix = []) None
Set wind field derivative for overlapping fields.
An overlapping field means that the derivative is computed but that the x-component of the jacobian is at the same position as another Jacobian target.
The reason for this method is that it allows representing the (signed) absolute wind speed derivative as a combination of the three wind field components.
To call this method, you first have added 1 component of the wind field derivative, and then you call this method to add the second and third component.
This method wraps
jac_targetsAddOverlappingWindField()together with adding the covariance matrices, tooem.covmat_diagonal_blocksfor assembly byoemFinalizeDiagonal().The input covariance matrices must fit the size of the later computed model state represented by
jac_targets. The inverse block is optional.Warning
Automatic size constraints are not checked for this method. Group-invariant checks on read-only inputs still apply.
Author: Richard Larsson
- Parameters:
jac_targets (~pyarts3.arts.JacobianTargets, optional) – A list of targets for the Jacobian Matrix calculations. Defaults to
self.jac_targets. [INOUT]oem (~pyarts3.arts.OptimalEstimationData, optional) – Numerical problem and results for
oemCalc()andoemCalcReduced(). Defaults toself.oem. [INOUT]matrix (BlockMatrix) – The covariance diagonal block matrix. [IN]
inverse (~pyarts3.arts.BlockMatrix, optional) – The inverse covariance diagonal block matrix. Defaults to
pyarts3.arts.BlockMatrix()[IN]