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BoofCV is organized into several packages: ''image processing'', ''features'', ''geometric vision'', ''calibration'', ''recognition'',''visualize'', and ''IO''. ''Image processing'' contains commonly used image processing functions which operate directly on pixels. ''Features'' contains feature extraction algorithms for use in higher level operations. ''Calibration'' has routines for determining the camera's intrinsic and extrinsic parameters. ''Recognition'' is for recognition and tracking complex visual objects. ''Geometric vision'' is composed of routines for processing extracted image features using 2D and 3D geometry. ''Visualize'' has routines for rendering and displaying extracted features. ''IO'' has input and output routines for different data structures. | BoofCV is organized into several packages: ''image processing'', ''features'', ''geometric vision'', ''calibration'', ''recognition'',''visualize'', and ''IO''. ''Image processing'' contains commonly used image processing functions which operate directly on pixels. ''Features'' contains feature extraction algorithms for use in higher level operations. ''Calibration'' has routines for determining the camera's intrinsic and extrinsic parameters. ''Recognition'' is for recognition and tracking complex visual objects. ''Geometric vision'' is composed of routines for processing extracted image features using 2D and 3D geometry. ''Visualize'' has routines for rendering and displaying extracted features. ''IO'' has input and output routines for different data structures. | ||
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| <SPAN STYLE="font-size: 12pt">https://youtu.be/MEBsqcBNrys 2020-April: Video Preview of v0.36-SNAPSHOT]</SPAN> | |||
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| <SPAN STYLE="font-size: 12pt">[https://levelup.gitconnected.com/qr-code-scanner-in-kotlin-e15dd9bfbb1f 2020-Feb: Kotlin QR Code Scanning]</SPAN> | | <SPAN STYLE="font-size: 12pt">[https://levelup.gitconnected.com/qr-code-scanner-in-kotlin-e15dd9bfbb1f 2020-Feb: Kotlin QR Code Scanning]</SPAN> | ||
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| <SPAN STYLE="font-size: 12pt">[[Performance:OpenCV:BoofCV|2019-Mar: BoofCV vs OpenCV]]</SPAN> | | <SPAN STYLE="font-size: 12pt">[[Performance:OpenCV:BoofCV|2019-Mar: BoofCV vs OpenCV]]</SPAN> | ||
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Revision as of 13:13, 19 April 2020
BoofCV is an open source library written from scratch for real-time computer vision. Its functionality covers a range of subjects, low-level image processing, camera calibration, feature detection/tracking, structure-from-motion, fiducial detection, and recognition. BoofCV has been released under an Apache 2.0 license for both academic and commercial use. BoofCV is organized into several packages: image processing, features, geometric vision, calibration, recognition,visualize, and IO. Image processing contains commonly used image processing functions which operate directly on pixels. Features contains feature extraction algorithms for use in higher level operations. Calibration has routines for determining the camera's intrinsic and extrinsic parameters. Recognition is for recognition and tracking complex visual objects. Geometric vision is composed of routines for processing extracted image features using 2D and 3D geometry. Visualize has routines for rendering and displaying extracted features. IO has input and output routines for different data structures. |
https://youtu.be/MEBsqcBNrys 2020-April: Video Preview of v0.36-SNAPSHOT] |
2020-Feb: Kotlin QR Code Scanning |
2020-Jan: Android Update: Stereo |
2019-Jun: Self Calibration Explanation |
2019-Mar: BoofCV vs OpenCV |
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Prebuild Stand Alone Applications
Examples / Demonstrations | Example and demonstration applications |
QR Code Generator | Create and print QR Codes |
Square Fiducials | Binary/Image Square Fiducial Generator |
Calibration Targets | Calibration Target Generator |
Calibration | Camera Calibration Application |
Lens Undistortion | Batch Removal of Lens Distortion |
Image Downsize | Batch Image Down Sampling with minimal aliasing |
Capability Summary | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Image Processing | Feature | Recognition | Geometric | Integration | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
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