Патент США № | 10042047 |
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Автор(ы) | Stainvas Olshansky и др. |
Дата выдачи | 07 августа 2018 г. |
In an embodiment, a method for processing a sequence of images is provided. The method receives a sequence of images generated by a radar. Each image includes a plurality of pixels. Each pixel includes radial velocity information. The method estimates optical flow for the pixels within an image in the sequence of images by using the radial velocity information for the pixels as a constraint.
Авторы: | Inna Stainvas Olshansky (Modiin, IL), Igal Bilik (Rehovot, IL), Oded Bialer (Petah Tikva, IL) | ||||||||||
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Патентообладатель: |
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Заявитель: | GM GLOBAL TECHNOLOGY OPERATIONS LLC (Detroit, MI) |
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ID семейства патентов | 55444931 | ||||||||||
Номер заявки: | 14/856,612 | ||||||||||
Дата регистрации: | 17 сентября 2015 г. |
Document Identifier | Publication Date | |
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US 20160084956 A1 | Mar 24, 2016 | |
Application Number | Filing Date | Patent Number | Issue Date | ||
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62052696 | Sep 19, 2014 | ||||
Класс патентной классификации США: | 1/1 |
Класс совместной патентной классификации: | G06T 7/269 (20170101); G01S 13/58 (20130101); G01S 13/89 (20130101); G01S 13/50 (20130101); G01S 13/931 (20130101); G06T 2207/10044 (20130101); G06K 9/36 (20130101) |
Класс международной патентной классификации (МПК): | G01S 13/89 (20060101); G01S 13/58 (20060101); G06T 7/269 (20170101); G01S 13/50 (20060101); G06K 9/36 (20060101); G01S 13/93 (20060101) |
4906940 | March 1990 | Greene |
5546084 | August 1996 | Hindman |
6258029 | July 2001 | Guracar et al. |
7054467 | May 2006 | Honda |
7437243 | October 2008 | Fujimoto |
7474039 | January 2009 | Horie |
7667581 | February 2010 | Fujimoto |
7746450 | June 2010 | Willner et al. |
7899211 | March 2011 | Fujimoto |
8102915 | January 2012 | Klein Gunnewiek et al. |
8686326 | April 2014 | Dennison |
8831357 | September 2014 | Rudin et al. |
9565377 | February 2017 | Hamann et al. |
9784829 | October 2017 | Zeng |
2003/0210807 | November 2003 | Sato |
2007/0280507 | December 2007 | Murali |
2009/0252377 | October 2009 | Akita |
2009/0309966 | December 2009 | Chen et al. |
2011/0135159 | June 2011 | Uchida |
2011/0169957 | July 2011 | Bartz |
2011/0239923 | October 2011 | Elmbo |
2012/0314071 | December 2012 | Rosenbaum |
2015/0049168 | February 2015 | Dielacher et al. |
2015/0336547 | November 2015 | Dagan |
2016/0084953 | March 2016 | Stainvas Olshansky |
2016/0084956 | March 2016 | Stainvas Olshansky |
102645679 | Aug 2012 | CN | |||
102681033 | Sep 2012 | CN | |||
20130081643 | Jul 2013 | KR | |||
Chinese Office Action for Application No. 201510940049.X; dated Sep. 30, 2017; 15 pages. cited by applicant . Chinese Office Action for Application No. 201510940150.5; dated Sep. 30, 2017; 17 pages. cited by applicant . Allan Jepson and Michael Black; "Mixture Models for Optical Flow Computation"; Canadian Institute for Advanced Research, and Department of Computer Science, University of Toronto; Xerox PARC; Apr. 1993; 17 pages. cited by applicant . David J. Fleet and Yair Weiss; "Optical Flow Estimation"; Mathmatical Models in Computer Vision: The Handbook, Chapter 15; Springer; 2005; pp. 239-258. cited by applicant . Rafael Alves Bonfim de Queiroz et al.; "Determining Optical Flow Using a Modified Horn and Schunck's Algorithm"; National Laboratory for Scientific Computing--LNCC; Jan. 2010; 6 pages. cited by applicant. |