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| BiometOp (double reflMax=-10.0, int maxAltitude=500, double reflDev=5.0, int devAltitude=1000) |
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| DetectorOp (const std::string &name=__FUNCTION__, const std::string &description="", const std::string &echoClass="") |
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| DetectorOp (const DetectorOp &op) |
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virtual const std::string & | getOutputQuantity (const std::string &inputQuantity="") const |
| Returns the quantity name, by default the name of the class in upper case letters. More...
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virtual void | computeProducts (const DataSetMap< PolarSrc > &srcVolume, DataSetMap< PolarDst > &dstVolume) const |
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virtual void | runDetection (const DataSetMap< PolarSrc > &srcVolume, DataSetMap< PolarDst > &dstVolume) const |
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virtual void | runDetection (const DataSet< PolarSrc > &srcDataSet, PlainData< PolarDst > &dstProb, DataSet< PolarDst > &aux) const |
| Process as sweep (data in one elevation angle) More...
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virtual void | processData (const Data< src_t > &srcData, Data< dst_t > &dstData) const |
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| VolumeTraversalOp (const std::string &name, const std::string &description="") |
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virtual void | traverseVolume (const Hi5Tree &src, Hi5Tree &dst) const |
| Base class for radar data processors. More...
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| PolarProductOp (const std::string &name=__FUNCTION__, const std::string &description="") |
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| PolarProductOp (const PolarProductOp &op) |
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| VolumeOp (const std::string &name, const std::string &description="") |
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virtual void | processVolume (const Hi5Tree &src, Hi5Tree &dst) const |
| Traverse through given volume and create new, processed data (volume or polar product). More...
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| BinaryPixelVectorOp (const std::string &name, const std::string &description) |
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virtual void | process (const ImageFrame &src, Image &dst) const |
| Main interface. Typically splits processing to each channel. More...
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virtual void | process (const ImageFrame &src1, const ImageFrame &src2, Image &dst) const |
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virtual void | traverseChannels (const ImageTray< const Channel > &srcTray, ImageTray< Channel > &dstTray) const |
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virtual void | traverseChannels (const ImageTray< const Channel > &src, const ImageTray< const Channel > &src2, ImageTray< Channel > &dst) const |
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void | traverseFrame (const ImageFrame &src1, const ImageFrame &src2, ImageFrame &dst) const |
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virtual void | getDstConf (const ImageConf &srcConf, ImageConf &dstConf) const |
| Given source image, determine respective dest image configuration. More...
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virtual void | process (const ImageFrame &src, const ImageFrame &srcWeight, Image &dst, Image &dstWeight) const |
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virtual void | process (const ImageTray< const Channel > &src, ImageTray< Image > &dst, bool checkOverlap=true) const |
| Run the operator on a series of images. Geometry and type may be changed. UNDER CONSTR. More...
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virtual void | traverseChannel (const Channel &src, Channel &dst) const |
| Apply to single channel.
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virtual void | traverseChannel (const Channel &src, const Channel &srcAlpha, Channel &dst, Channel &dstAlpha) const |
| Apply to single channel with alpha.
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virtual void | makeCompatible (const ImageConf &src, Image &dst) const |
| Depending on the operator, modifies the geometry and type of dst. More...
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virtual void | makeCompatible2 (const ImageFrame &src1, const ImageFrame &src2, Image &dst) const |
| Modifies the geometry and type of dst to fit the computation result.
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virtual void | help (std::ostream &ostr=std::cout) const |
| Prints name, description and parameters using BeanLike::toOStr(). Virtual, so derived classes may extend output.
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virtual int | srcAlpha () const |
| Tell if alpha channel(s) is required in input. More...
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virtual void | process (Image &dst) const |
| Run this modifier for an image. More...
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virtual void | traverseChannels (ImageTray< Channel > &dst) const |
| Run this modifier for a set of channels. More...
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virtual void | traverseChannel (Channel &dst) const |
| Run this modifier for an image frame. More...
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virtual void | traverseChannel (Channel &dst, Channel &dstAlpha) const |
| Run this modifier for an image frame. More...
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virtual void | traverseChannels (ImageFrame &dst) const |
| Converts dst to ImageTray<Channel> and calls traverseFrame(ImageTray<Channel> &) .
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virtual const std::string & | getName () const |
| Return the name of an instance.
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virtual const std::string & | getDescription () const |
| Return a brief description.
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bool | hasParameters () const |
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template<class F > |
F | getParameter (const std::string &p) const |
| Gets a single parameter.
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const ReferenceMap & | getParameters () const |
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ReferenceMap & | getParameters () |
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template<class F > |
void | setParametersFromEntries (const F &args) |
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void | setParameters (std::initializer_list< Variable::init_pair_t > args) |
| Grants access to (if above hidden)
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virtual void | setParameters (const std::string &p, char assignmentSymbol='=', char separatorSymbol=0) |
| Sets comma-separated parameters in a predetermined order "a,b,c" or by specifing them "b=2". More...
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template<class T > |
void | setParameters (const std::map< std::string, T > &args) |
| Set parameters.
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template<class T > |
void | setParameters (const SmartMap< T > &args) |
| Set parameters.
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void | setParameter (const std::string &p, const Castable &value) |
| Sets a single parameter.
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template<class T > |
void | setParameter (const std::string &p, const VariableT< T > &value) |
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template<class F > |
void | setParameter (const std::string &p, const F &value) |
| Sets a single parameter. More...
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template<class F > |
void | setParameter (const std::string &p, std::initializer_list< F > value) |
| Sets a single parameter.
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BeanLike & | operator= (const BeanLike &b) |
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virtual std::ostream & | toStream (std::ostream &ostr, bool compact=true) const |
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| BeanLike (const BeanLike &b) |
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| BeanLike (const std::string &name, const std::string &description="") |
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virtual void | runDetector (const PlainData< PolarSrc > &src, PlainData< PolarDst > &dst) const |
| Process as sweep (data in one elevation angle) More...
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virtual void | initDataDst (const PlainData< PolarSrc > &srcData, PlainData< PolarDst > &dstData, const std::string &quantity="") const |
| If raised, make template? Cf. Volume::initDst ?
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void | storeDebugData (int debugLevel, const ImageFrame &srcImage, const std::string &label) const |
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void | storeDebugData (const ImageFrame &srcImage, PlainData< PolarDst > &dstData, const std::string &quantityLabel) const |
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virtual void | writeHow (PlainData< PolarDst > &dstData) const |
| After running a cmd, write execution details.
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void | _enhanceDirectionally (Image &data, float medianPos, int windowWidth) const |
| Enhances the detection result by reinforcing sectors of strong response, attenuating others. Optional utility for derived classes. More...
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void | _infect (Image &data, int windowWidth, int windowHeight, double enhancement) const |
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Protected Member Functions inherited from AndreOp |
| AndreOp (const std::string &name, const std::string &description) |
| Generally, the whole data structure can be traversed. More...
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virtual void | setGeometry (const PolarODIM &srcODIM, PlainData< PolarDst > &dstData) const |
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void | collect (const Hi5Tree &src, Hi5Tree &dst) const |
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void | copyPolarGeometry (const PolarODIM &srcODIM, PlainData< PolarDst > &dstData) const |
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virtual void | deriveDstGeometry (const DataSetMap< PolarSrc > &srcSweeps, PolarODIM &dstOdim, bool MINIMISE_RSCALE=false) const |
| Based on input data, find geometry that maximises range and ray count. More...
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virtual void | determineMetadata (const DataSetMap< PolarSrc > &srcSweeps, PolarODIM &dstOdim) const |
| Update timestamps etc. More...
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| PixelVectorOp (const std::string &name, const std::string &description) |
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| ImageOp (const std::string &name=__FUNCTION__, const std::string &description="") |
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| ImageOp (const ImageOp &op) |
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virtual bool | processOverlappingWithTemp (const ImageFrame &src, Image &dst) const |
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virtual bool | processOverlappingWithTemp (const ImageTray< const Channel > &src, ImageTray< Image > &dst) const |
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bool | traverseOverlappingWithTemp (const Channel &src, Channel &dst) const |
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bool | traverseOverlappingWithTemp (const Channel &src, const Channel &srcWeight, Channel &dst, Channel &dstWeight) const |
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void | traverseChannelsEqually (const ImageTray< const Channel > &src, ImageTray< Channel > &dst) const |
| Calls processWithTemp() if the frames overlap. More...
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void | traverseChannelsRepeated (const ImageTray< const Channel > &src, ImageTray< Channel > &dst) const |
| Recycle channels until all dst channels completed.
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void | traverseChannelsSeparately (const ImageTray< const Channel > &src, ImageTray< Channel > &dst) const |
| Process each (src,dst) channel pair independently. Raise error if their counts differ. More...
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void | traverseAsChannelTrays (const ImageFrame &src, ImageFrame &dst) const |
| Redirect to processing as trays. This is the opposite of processChannels...() functions.
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void | traverseAsChannelTrays (const ImageFrame &src, const ImageFrame &srcWeight, ImageFrame &dst, ImageFrame &dstWeight) const |
| Redirect to processing as trays. This is the opposite of processChannels...() functions.
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virtual void | initializeParameters (const ImageFrame &src, const ImageFrame &dst) const |
| Set applicable internal parameters before calling traverse().
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virtual void | initializeParameters (const ImageFrame &src, const ImageFrame &src2, const ImageFrame &dst) const |
| Set applicable internal parameters before calling traverse().
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| ImageMod (const std::string &name=__FUNCTION__, const std::string &description="") |
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| ImageMod (const ImageMod &op) |
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virtual void | processChannelsSeparately (ImageTray< Channel > &dst) const |
| Run this modifier by calling traverseChannel(Channel &) for each image.
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virtual void | initialize (Image &dst) const |
| Modifies the geometry and the type of dst such that traverseChannel(Channel &) can be called.
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virtual void | initializeAlpha (const Image &srcAlpha, Image &dstAlpha) const |
| Modifies the geometry and the type of dst such that traverseChannel(Channel &) can be called.
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virtual void | storeLastArguments (const std::string &p) |
| Called after setParameters()
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virtual void | updateBean () const |
| Called after setParameters()
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Detects birds and insects.
The idea behind bird and insect detector hence "biometeor" detector is very simple. It looks for intensities lower than threshold reflMax
and altitudes lower than altitudeMax
(metres). The thresholds have fuzzy steepness parameters: intensity steepness reflDev
and altitude steepness altitudeDev
. The steepness parameters determine "half-widths" of the fuzzy responses (Fuzzy functions ).