Class cv::CalibrateDebevec#

Inverse camera response function is extracted for each brightness value by minimizing an objective function as linear system. Objective function is constructed using pixel values on the same position in all images, extra term is added to make the result smoother. View details

Collaboration diagram for cv::CalibrateDebevec:

Public Member Functions#

Public Member Functions inherited from cv::CalibrateCRF

Return

Name

Description

void

process(
    InputArrayOfArrays src,
    OutputArray dst,
    InputArray times )

Recovers inverse camera response.

Public Member Functions inherited from cv::Algorithm

Return

Name

Description

Algorithm()

~Algorithm()

void

clear()

Clears the algorithm state.

bool

empty()

Returns true if the Algorithm is empty (e.g. in the very beginning or after unsuccessful read.

String

getDefaultName()

void

read(const FileNode & fn)

Reads algorithm parameters from a file storage.

void

save(const String & filename)

void

write(
    const Ptr< FileStorage > & fs,
    const String & name = String() )

void

write(FileStorage & fs)

Stores algorithm parameters in a file storage.

void

write(
    FileStorage & fs,
    const String & name )

Static Public Member Functions#

Static Public Member Functions inherited from cv::Algorithm

Return

Name

Description

static Ptr< _Tp >

load(
    const String & filename,
    const String & objname = String() )

Loads algorithm from the file.

static Ptr< _Tp >

loadFromString(
    const String & strModel,
    const String & objname = String() )

Loads algorithm from a String.

static Ptr< _Tp >

read(const FileNode & fn)

Reads algorithm from the file node.

Additional Inherited Members#

Protected Member Functions inherited from cv::Algorithm

Return

Name

Description

void

writeFormat(FileStorage & fs)

Detailed Description#

Inverse camera response function is extracted for each brightness value by minimizing an objective function as linear system. Objective function is constructed using pixel values on the same position in all images, extra term is added to make the result smoother.

For more information see DM97 .

Member Function Documentation#

getLambda()#

float cv::CalibrateDebevec::getLambda()

Python:

cv.CalibrateDebevec.getLambda() -> retval

getRandom()#

bool cv::CalibrateDebevec::getRandom()

Python:

cv.CalibrateDebevec.getRandom() -> retval

getSamples()#

int cv::CalibrateDebevec::getSamples()

Python:

cv.CalibrateDebevec.getSamples() -> retval

setLambda()#

void cv::CalibrateDebevec::setLambda(float lambda)

Python:

cv.CalibrateDebevec.setLambda(lambda_)

setRandom()#

void cv::CalibrateDebevec::setRandom(bool random)

Python:

cv.CalibrateDebevec.setRandom(random)

setSamples()#

void cv::CalibrateDebevec::setSamples(int samples)

Python:

cv.CalibrateDebevec.setSamples(samples)

Source file#

The documentation for this class was generated from the following file: