Патент США № | 8184044 |
---|---|
Автор(ы) | Capron и др. |
Дата выдачи | 22 мая 2012 г. |
A system, method, and apparatus for a super resolution radar image extraction procedure are disclosed. The super-resolution imaging radar (SRIR) system involves a pulse signal generator, an array bucket detector, an ancilla beam detector, and a coincidence circuit. The pulse signal generator propagates N number of bursts of radio frequency (RF) energy, where each burst contains M number of dithered pulses. The pulses are propagated towards an object of interest and the ancilla beam detector. The array bucket detector collects pulses that are reflected from the object. The ancilla beam detector scans in a direction of the dithered pulses, and collects the dithered pulses. The coincidence circuit calculates a cross-time correlation function from the pulses that are collected by the array bucket detector and the ancilla beam detector. The coincidence circuit sums cross-time correlation function results to generate pixels of an image of the object.
Авторы: | Barbara A. Capron (Sammamish, WA), Claudio Gilbert Parazzoli (Seattle, WA) |
---|---|
Заявитель: | The Boeing Company (Chicago, IL) |
ID семейства патентов | 46061270 |
Номер заявки: | 13/103,907 |
Дата регистрации: | 09 мая 2011 г. |
Application Number | Filing Date | Patent Number | Issue Date | ||
---|---|---|---|---|---|
12723098 | Mar., 2010 | ||||
Класс патентной классификации США: | 342/179; 342/175 |
Класс международной патентной классификации (МПК): | G01S 13/00 |
Класс совместной патентной классификации: | G01S 13/30 (20130101); G01S 13/89 (20130101) |
Область поиска: | 342/175,179 |
3720950 | March 1973 | Vehrs, Jr. |
3851299 | November 1974 | Wood |
4608569 | August 1986 | Dickey et al. |
4716414 | December 1987 | Luttrell et al. |
4768156 | August 1988 | Whitehouse et al. |
4963877 | October 1990 | Wood et al. |
5227801 | July 1993 | Pierce |
5243351 | September 1993 | Rafanelli et al. |
5774091 | June 1998 | McEwan |
5805110 | September 1998 | McEwan |
6088295 | July 2000 | Altes |
6163293 | December 2000 | Sezai |
6344893 | February 2002 | Mendlovic et al. |
6777684 | August 2004 | Volkov et al. |
7003177 | February 2006 | Mendlovic et al. |
7339521 | March 2008 | Scheidemann et al. |
7385552 | June 2008 | Archer et al. |
7450470 | November 2008 | Wilson |
7609198 | October 2009 | Chang |
7843379 | November 2010 | Menzer et al. |
7889120 | February 2011 | Flasza |
7978120 | July 2011 | Longstaff |
8022860 | September 2011 | Mukai et al. |
8102299 | January 2012 | Young et al. |
Basano, Lorenzo and Ottonello, Pasquale, "A conceptual experiment on single-beam coincidence detection with pseudothermal light," Optics Express, Sep. 17, 2007, vol. 15, No. 19. cited by other . Chan, Kam Wai Clifford, et al., "High-Order Thermal Ghost Imaging," The Institute of Optics, University of Rochester, 2009, Rochester, New York. cited by other . Chen, Xi-Hao, et al., "Lenseless ghost imaging with true thermal light," Optics Letters, Mar. 1, 2009, pp. 695-697, vol. 34, No. 5. cited by other . Shih, Yanhua, "Ghost imaging," Quantum Communications and Quantum Imaging at the SPIE Optics + Photonics Symposium, Aug. 2009, San Diego, California. DOI: 10.1117/2.1200907.1717. cited by other . Bromberg, Yaron, et al., "Ghost imaging with a single detector," Physical Review A, May 2009, vol. 79, No. 5. DOI: 10.1103/PhysRevA.79.053840. cited by other . Freeman, Tony, "What is Imaging Radar?" Jet Propulsion Laboratory, Jan. 26, 1996, retrieved from http://southport.jpl.nasa.gov/desc/imagingradarv3.html Feb. 17, 2010. cited by other . "Synthetic aperture radar," Wikipedia, the free encyclopedia, retrieved from http://en.wikipedia.org/wiki/Synthetic.sub.--aperture.sub.--radar Feb. 17, 2010. cited by other . "Inverse synthetic aperture radar," Wikipedia, the free encyclopedia, retrieved from http://en.wikipedia.org/wiki/Inverse.sub.--synthetic.sub.--aperture.sub.-- -radar Feb. 17, 2010. cited by other. |