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FIL.FitArcToStripe_Direct

Namespace:FilNet
Assembly:FIL.NET.dll

Syntax

C++
C#
 
public static void FitArcToStripe_Direct
(
	FilNet.Image inImage,
	FilNet.ArcFittingField inFittingField,
	FilNet.CoordinateSystem2D? inFittingFieldAlignment,
	int inScanCount,
	int inScanWidth,
	FilNet.SamplingParams inSamplingParams,
	FilNet.StripeScanParams inStripeScanParams,
	FilNet.Selection inStripeSelection,
	FilNet.LocalBlindness? inLocalBlindness,
	float inMaxIncompleteness,
	FilNet.CircleFittingMethod inFittingMethod,
	FilNet.MEstimator? inOutlierSuppression,
	out FilNet.Arc2D? outArc,
	out FilNet.Arc2D? outInnerArc,
	out FilNet.Arc2D? outOuterArc,
	IList<NullableRef<FilNet.Stripe1D>> outStripes,
	IList<FilNet.Point2D> outStripePoints,
	INullable<FilNet.Profile> outDeviationProfile,
	out FilNet.ArcFittingField outAlignedFittingField,
	IList<FilNet.Profile> outBrightnessProfiles,
	IList<FilNet.Profile> outResponseProfiles,
	IList<FilNet.Segment2D> diagScanSegments,
	IList<FilNet.Rectangle2D> diagSamplingAreas
)

Parameters

Name Type Range Default Description
inImageFilNet.ImageInput image to fit arc to
inFittingFieldFilNet.ArcFittingFieldArc fitting field
inFittingFieldAlignmentFilNet.CoordinateSystem2D?Adjusts the fitting field to the position of the inspected object
inScanCountint<3, INF>10The number of points that will be searched to estimate the position of the arc
inScanWidthint<1, INF>5The width of each scan field (in pixels)
inSamplingParamsFilNet.SamplingParamsParameters controlling the sampling process
inStripeScanParamsFilNet.StripeScanParamsStripeScanParams ( ProfileInterpolation: Quadratic4 SmoothingStdDev: 0.6f MinMagnitude: 5.0f MaxInnerEdgeMagnitude: Nil StripePolarity: Dark MinStripeWidth: 0.0f MaxStripeWidth: Nil )Parameters controlling the stripe extraction process
inStripeSelectionFilNet.SelectionSelection mode of stripe
inLocalBlindnessFilNet.LocalBlindness?Defines conditions in which weaker edges can be detected in the vicinity of stronger edges
inMaxIncompletenessfloat<0.0f, 0.999f>0.1fMaximal fraction of stripe points not found
inFittingMethodFilNet.CircleFittingMethodAlgebraicTaubinMethod used to fit an arc
inOutlierSuppressionFilNet.MEstimator?Selects a method for ignoring incorrectly detected points
outArcFilNet.Arc2D?Fitted arc in the middle of found stripe
outInnerArcFilNet.Arc2D?Fitted inner arc
outOuterArcFilNet.Arc2D?Fitted outer arc
outStripesSystem.Collections.Generic.IList<FilNet.NullableRef<FilNet.Stripe1D>>Found stripes
outStripePointsSystem.Collections.Generic.IList<FilNet.Point2D>Extracted points of middle arc of an image stripe
outDeviationProfileFilNet.INullable<FilNet.Profile>Profile of distances between the actual arc points and the corresponding reference arc points
outAlignedFittingFieldFilNet.ArcFittingFieldFitting field used; in the image coordinate system
outBrightnessProfilesSystem.Collections.Generic.IList<FilNet.Profile>Extracted image profiles
outResponseProfilesSystem.Collections.Generic.IList<FilNet.Profile>Profiles of the edge (derivative) operator response
diagScanSegmentsSystem.Collections.Generic.IList<FilNet.Segment2D>Segments along which the scans were run
diagSamplingAreasSystem.Collections.Generic.IList<FilNet.Rectangle2D>Areas from which the input image is sampled

Description

The operation tries to fit a given arc to stripe present in the inImage image. Internally, it performs a series of scans with the ScanSingleStripe_Direct filter along inScanCount specific scan segments which length is always equal to the inFittingField width and cannot be less than 4. The found points are then used to determine the actual position of the arc in the image. Only inMaxIncompleteness fraction of these scans may fail. If the fitting according to the given parameters is not possible, outArc is set to Nil.

Examples

Fitting an arc to the dark stripe formed on one side of a hole
(inStripeScanParams.Polarity = Dark).

Remarks

Read more about Local Coordinate Systems in Machine Vision Guide: Local Coordinate Systems.

This filter is a part of the Shape Fitting toolset. To read more about this technique, one can refer to the Shape Fitting chapter of our Machine Vision Guide

Hardware Acceleration

This operation supports automatic parallelization for multicore and multiprocessor systems.

Hardware acceleration settings may be manipulated with Settings class.

Function Overrides

See also