CreateWcsWithSipReferenceMatch#

class lsst.meas.astrom.CreateWcsWithSipReferenceMatch#

Bases: pybind11_object

Methods Summary

Methods Documentation

getLinearScatterInPixels(self: lsst.meas.astrom.CreateWcsWithSipReferenceMatch) float#
getLinearScatterOnSky(self: lsst.meas.astrom.CreateWcsWithSipReferenceMatch) lsst.geom.Angle#
getNGrid(self: lsst.meas.astrom.CreateWcsWithSipReferenceMatch) int#
getNPoints(self: lsst.meas.astrom.CreateWcsWithSipReferenceMatch) int#
getNewWcs(self: lsst.meas.astrom.CreateWcsWithSipReferenceMatch) lsst.afw.geom.SkyWcs#
getOrder(self: lsst.meas.astrom.CreateWcsWithSipReferenceMatch) int#
getScatterInPixels(self: lsst.meas.astrom.CreateWcsWithSipReferenceMatch) float#
getScatterOnSky(self: lsst.meas.astrom.CreateWcsWithSipReferenceMatch) lsst.geom.Angle#
getSipA(self: lsst.meas.astrom.CreateWcsWithSipReferenceMatch) Annotated[numpy.typing.NDArray[numpy.float64], '[m, n]']#
getSipAp(self: lsst.meas.astrom.CreateWcsWithSipReferenceMatch) Annotated[numpy.typing.NDArray[numpy.float64], '[m, n]']#
getSipB(self: lsst.meas.astrom.CreateWcsWithSipReferenceMatch) Annotated[numpy.typing.NDArray[numpy.float64], '[m, n]']#
getSipBp(self: lsst.meas.astrom.CreateWcsWithSipReferenceMatch) Annotated[numpy.typing.NDArray[numpy.float64], '[m, n]']#