$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

System and methods for calibration of an array camera using a single captured image 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H04N-017/00
출원번호 US-0792143 (2013-03-10)
등록번호 US-8866912 (2014-10-21)
발명자 / 주소
  • Mullis, Robert
출원인 / 주소
  • Pelican Imaging Corporation
대리인 / 주소
    KPPB LLP
인용정보 피인용 횟수 : 90  인용 특허 : 40

초록

Systems and methods for calibrating an array camera are disclosed. Systems and methods for calibrating an array camera in accordance with embodiments of this invention include the capturing of an image of a test pattern with the array camera such that each imaging component in the array camera captu

대표청구항

1. A method for calibrating an array camera including a plurality of imaging components where the plurality of imaging components include a reference imaging component and a plurality of associate imaging components associated with the reference imaging component, the method comprising: capturing an

이 특허에 인용된 특허 (40)

  1. Wilburn, Bennett; Joshi, Neel; Levoy, Marc C.; Horowitz, Mark, Apparatus and method for capturing a scene using staggered triggering of dense camera arrays.
  2. Adamo, Thomas J.; Montelius, Lars, Apparatus for imaging using an array of lenses.
  3. Montalbano Anthony J. (Lake Barrington Shores IL), Apparatus for making a tool.
  4. Boisvert, David Michael; McMahon, Andrew Kenneth John, CCD output processing stage that amplifies signals from colored pixels based on the conversion efficiency of the colored pixels.
  5. Duparre, Jacques, Capturing and processing of images using monolithic camera array with heterogeneous imagers.
  6. Meyers Mark Marshall, Compact digital camera with segmented fields of view.
  7. Meyers Mark Marshall, Compact image capture device.
  8. Kobayashi, Akio; Okada, Hidefumi, Digital camera which produces a single image based on two exposures.
  9. Yu, Yanbin; Zhang, Zhongxuan, Digital cameras using multiple sensors with multiple lenses.
  10. Kagle, Jonathan C.; Odinak, Gilad, Error calibration for digital image sensors and apparatus using the same.
  11. Grage Ludger (Eichenau DEX) Dato Paul (Emmering DEX), FLIR system with two optical channels for observing a wide and a narrow field of view.
  12. Duparre, Jacques, Fabrication process for mastering imaging lens arrays.
  13. Berestov, Alexander, Fast epipolar line adjustment of stereo pairs.
  14. Ishak, Andrew W.; Haddock, Joshua N.; Kokonaski, William; Duston, Dwight P.; Iyer, Venkatramani S.; Blum, Ronald D.; McGinnis, Sean P.; Packard, Michael B., High performance selective light wavelength filtering providing improved contrast sensitivity.
  15. Jacobowitz,Lawrence; DeCusatis,Casimer, Hybrid optical/electronic structures fabricated by a common molding process.
  16. Suda,Yasuo, Image sensing apparatus and its control method, control program, and storage medium.
  17. Jack Michael D. ; Ray Michael ; Wyles Richard H., Integrated IR, visible and NIR sensor and methods of fabricating same.
  18. Burger Robert J., Lenslet array systems and methods.
  19. Abell Gurdon R. (West Woodstock CT) Cook Francis J. (Topsfield MA) Howes Peter D. (Sudbury MA), Method and apparatus for arraying image sensor modules.
  20. Lelescu, Dan; Mullis, Robert; Rao, Pravin; Venkataraman, Kartik; Lu, Cheng; Chen, Junqing, Method and apparatus for extended depth-of-field image restoration.
  21. Telymonde Timothy D., Method and apparatus for image acquisition from a plurality of cameras.
  22. Sawhney,Harpreet Singh; Tao,Hai; Kumar,Rakesh; Hanna,Keith, Method and apparatus for synthesizing new video and/or still imagery from a collection of real video and/or still imagery.
  23. Schmitt, Peter; Schmidt, Dieter; Kostka, Guenther; Behrendt, Rolf, Method and camera (apparatus) for optically capturing a screen.
  24. Edgar, Albert D., Method and system for enhancing digital images.
  25. Portniaguine, Oleg N.; Zhdanov, Michael S., Method of digital image enhancement and sharpening.
  26. Nishikawa, Takao, Microlens array substrate, method of manufacturing the same, and display device.
  27. Levoy, Marc S.; Ng, Yi-Ren; Horowitz, Mark A., Microscopy arrangements and approaches.
  28. Alexander David H. (Santa Monica CA) Hershman George H. (Carlsbad CA) Jack Michael D. (Carlsbad CA) Koda N. John (Vista CA) Lloyd Randahl B. (San Marcos CA), Monolithic imager for near-IR.
  29. Thompson ; Kenneth B., Optical viewing apparatus.
  30. Tangen, Reidar E.; Gudesen, Hans Gude; Nordal, Per-Erik; Leistad, Geirr I., Optoelectronic camera and method for image formatting in the same.
  31. Dierickx Bart,BEX ; Ricquier Nico,BEX, Pixel structure, image sensor using such pixel structure and corresponding peripheral circuitry.
  32. Gallery Richard D.,GBX ; Bliss Nathan D.,GBX, Post-processing generation of focus/defocus effects for computer graphics images.
  33. Omatsu, Shigeru; Mitsukura, Yasue; Fukumi, Minoru; Mitsukura, Kensuke; Kita, Koji; Kugo, Kouichi, Region detecting method and region detecting apparatus.
  34. Tan, Kar-Han; Xiao, Jing, Small memory footprint light transport matrix capture.
  35. Suda, Yasuo, Structure of semiconductor device with improved reliability.
  36. Bassi, Zorawar; Vakili, Masoud, System and method for automated calibration and correction of display geometry and color.
  37. Joseph, Domenick Montalbo, Use of a lenslet array with a vertically stacked pixel array.
  38. Berezin, Vladimir, Using a single control line to provide select and reset signals to image sensors in two rows of a digital imaging device.
  39. Tan, Kar-Han; Sonehara, Tomio, View projection matrix based high performance low latency display pipeline.
  40. Rieger Albert,DEX ; Barclay David ; Chapman Steven ; Kellner Heinz-Andreas,DEX ; Reibl Michael,DEX ; Rydelek James G. ; Schweizer Andreas,DEX, Watertight body for accommodating a photographic camera.

이 특허를 인용한 특허 (90)

  1. Venkataraman, Kartik; Duparre, Jacques; Mullis, Robert, Array camera architecture implementing quantum dot color filters.
  2. Duparre, Jacques, Array camera architecture implementing quantum film image sensors.
  3. Venkataraman, Kartik; Duparré, Jacques, Array camera configurations incorporating constituent array cameras and constituent cameras.
  4. Venkataraman, Kartik; Duparré, Jacques, Array camera configurations incorporating constituent array cameras and constituent cameras.
  5. Venkataraman, Kartik; Duparré, Jacques, Array camera configurations incorporating multiple constituent array cameras.
  6. Rodda, Errol Mark; Duparré, Jacques, Array camera modules incorporating independently aligned lens stacks.
  7. Rodda, Errol Mark; Duparré, Jacques, Array cameras and array camera modules including spectral filters disposed outside of a constituent image sensor.
  8. Rodda, Errol Mark; Duparré, Jacques, Array cameras incorporating independently aligned lens stacks.
  9. Rodda, Errol Mark; Duparré, Jacques, Array cameras incorporating independently aligned lens stacks.
  10. Duparre, Jacques; Lelescu, Dan; Venkataraman, Kartik, Array cameras incorporating monolithic array camera modules with high MTF lens stacks for capture of images used in super-resolution processing.
  11. Duparre, Jacques; Lelescu, Dan; Venkataraman, Kartik, Array cameras incorporating optics with modulation transfer functions greater than sensor Nyquist frequency for capture of images used in super-resolution processing.
  12. Venkataraman, Kartik; Gallagher, Paul; Jain, Ankit K.; Nisenzon, Semyon; Lelescu, Dan; Ciurea, Florian; Molina, Gabriel, Autofocus system for a conventional camera that uses depth information from an array camera.
  13. Lee, Chi-Feng, Calibration method of an image capture system.
  14. Lee, Chi-Feng, Calibration method of an image capture system.
  15. Nisenzon, Semyon; Venkataraman, Kartik, Camera modules patterned with pi filter groups.
  16. Nisenzon, Semyon; Venkataraman, Kartik, Camera modules patterned with pi filter groups.
  17. Shen, Shizhe, Camera testing using virtual images.
  18. Erickson, Daniel, Capture and render of virtual reality content employing a light field camera array.
  19. Duparre, Jacques, Capturing and processing of images including occlusions captured by heterogeneous camera arrays.
  20. Venkataraman, Kartik; Jabbi, Amandeep S.; Mullis, Robert H.; Duparre, Jacques; Hu, Shane Ching-Feng, Capturing and processing of images including occlusions focused on an image sensor by a lens stack array.
  21. Venkataraman, Kartik; Jabbi, Amandeep S.; Mullis, Robert H.; Duparre, Jacques; Hu, Shane Ching-Feng, Capturing and processing of images including occlusions focused on an image sensor by a lens stack array.
  22. Venkataraman, Kartik; Jabbi, Amandeep S.; Mullis, Robert H.; Duparre, Jacques; Hu, Shane Ching-Feng, Capturing and processing of images using camera array incorperating Bayer cameras having different fields of view.
  23. Mullis, Robert H.; Lelescu, Dan; Venkataraman, Kartik, Extended color processing on pelican array cameras.
  24. Mullis, Robert; Lelescu, Dan; Venkataraman, Kartik, Extended color processing on pelican array cameras.
  25. Lelescu, Dan; Jain, Ankit K., Feature based high resolution motion estimation from low resolution images captured using an array source.
  26. Wajs, Andrew Augustine, Gesture-based user interface.
  27. McMahon, Andrew Kenneth John, Imager array interfaces.
  28. Olson, Edwin B.; Strom, Johannes; Richardson, Andrew, Interactive camera calibration tool.
  29. Rodda, Errol Mark; Duparré, Jacques, Methods of manufacturing array camera modules incorporating independently aligned lens stacks.
  30. Shen, Shizhe, Methods, systems, and apparatus for camera testing using virtual images.
  31. Mullis, Robert, System and methods for calibration of an array camera.
  32. Mullis, Robert, System and methods for calibration of an array camera.
  33. Mullis, Robert, System and methods for calibration of an array camera.
  34. Mullis, Robert, System and methods for calibration of an array camera.
  35. Mullis, Robert, System and methods for calibration of an array camera.
  36. Mullis, Robert, System and methods for calibration of an array camera.
  37. Srikanth, Manohar; Ramamoorthi, Ravi; Venkataraman, Kartik; Chatterjee, Priyam, System and methods for depth regularization and semiautomatic interactive matting using RGB-D images.
  38. Ciurea, Florian; Venkataraman, Kartik; Molina, Gabriel; Lelescu, Dan, System and methods for measuring depth using an array camera employing a bayer filter.
  39. McMahon, Andrew Kenneth John; Venkataraman, Kartik; Mullis, Robert, Systems and method for performing depth based image editing.
  40. McMahon, Andrew Kenneth John, Systems and methods for array camera focal plane control.
  41. Nayar, Shree; Venkataraman, Kartik; Pain, Bedabrata; Lelescu, Dan, Systems and methods for controlling aliasing in images captured by an array camera for use in super resolution processing using pixel apertures.
  42. Lelescu, Dan; Venkataraman, Kartik, Systems and methods for controlling aliasing in images captured by an array camera for use in super-resolution processing.
  43. Duparré, Jacques, Systems and methods for correcting for warpage of a sensor array in an array camera module by introducing warpage into a focal plane of a lens stack array.
  44. Venkataraman, Kartik; Ciurea, Florian, Systems and methods for correcting user identified artifacts in light field images.
  45. Venkataraman, Kartik; Nisenzon, Semyon; Lelescu, Dan, Systems and methods for decoding image files containing depth maps stored as metadata.
  46. Venkataraman, Kartik; Nisenzon, Semyon; Lelescu, Dan, Systems and methods for decoding image files containing depth maps stored as metadata.
  47. Yang, Samuel; Srikanth, Manohar; Lelescu, Dan; Venkataraman, Kartik, Systems and methods for depth-assisted perspective distortion correction.
  48. Duparre, Jacques; McMahon, Andrew Kenneth John; Lelescu, Dan; Venkataraman, Kartik; Molina, Gabriel, Systems and methods for detecting defective camera arrays and optic arrays.
  49. Duparre, Jacques; McMahon, Andrew Kenneth John; Lelescu, Dan; Venkataraman, Kartik; Molina, Gabriel, Systems and methods for detecting defective camera arrays and optic arrays.
  50. Ciurea, Florian; Lelescu, Dan; Chatterjee, Priyam, Systems and methods for dynamic calibration of array cameras.
  51. Lelescu, Dan; Molina, Gabriel; Venkataraman, Kartik, Systems and methods for dynamic refocusing of high resolution images generated using images captured by a plurality of imagers.
  52. Venkataraman, Kartik; Nisenzon, Semyon; Lelescu, Dan, Systems and methods for encoding image files containing depth maps stored as metadata.
  53. Venkataraman, Kartik; Nisenzon, Semyon; Lelescu, Dan, Systems and methods for encoding image files containing depth maps stored as metadata.
  54. Venkataraman, Kartik; Nisenzon, Semyon; Lelescu, Dan, Systems and methods for encoding image files containing depth maps stored as metadata.
  55. Venkataraman, Kartik; Nisenzon, Semyon; Lelescu, Dan, Systems and methods for encoding light field image files.
  56. Ciurea, Florian; Venkataraman, Kartik; Molina, Gabriel; Lelescu, Dan, Systems and methods for estimating depth and visibility from a reference viewpoint for pixels in a set of images captured from different viewpoints.
  57. Ciurea, Florian; Venkataraman, Kartik; Molina, Gabriel; Lelescu, Dan, Systems and methods for estimating depth and visibility from a reference viewpoint for pixels in a set of images captured from different viewpoints.
  58. Venkataraman, Kartik; Duparré, Jacques, Systems and methods for estimating depth from projected texture using camera arrays.
  59. Venkataraman, Kartik; Gallagher, Paul; Jain, Ankit; Nisenzon, Semyon, Systems and methods for estimating depth using ad hoc stereo array cameras.
  60. Venkataraman, Kartik; Gallagher, Paul; Jain, Ankit; Nisenzon, Semyon, Systems and methods for estimating depth using stereo array cameras.
  61. Venkataraman, Kartik; Lelescu, Dan; Molina, Gabriel, Systems and methods for generating compressed light field representation data using captured light fields, array geometry, and parallax information.
  62. Ciurea, Florian; Venkataraman, Kartik; Molina, Gabriel; Lelescu, Dan, Systems and methods for generating depth maps and corresponding confidence maps indicating depth estimation reliability.
  63. Venkataraman, Kartik; Jabbi, Amandeep S.; Mullis, Robert H., Systems and methods for generating depth maps using a camera arrays incorporating monochrome and color cameras.
  64. Venkataraman, Kartik; Jabbi, Amandeep S.; Mullis, Robert H., Systems and methods for generating depth maps using a camera arrays incorporating monochrome and color cameras.
  65. Venkataraman, Kartik; Jabbi, Amandeep S.; Mullis, Robert H., Systems and methods for generating depth maps using images captured by camera arrays incorporating cameras having different fields of view.
  66. Ciurea, Florian; Venkataraman, Kartik, Systems and methods for high dynamic range imaging using array cameras.
  67. Duparre, Jacques; McMahon, Andrew Kenneth John; Lelescu, Dan, Systems and methods for manufacturing camera modules using active alignment of lens stack arrays and sensors.
  68. Duparre, Jacques; McMahon, Andrew Kenneth John; Lelescu, Dan, Systems and methods for manufacturing camera modules using active alignment of lens stack arrays and sensors.
  69. Ciurea, Florian; Venkataraman, Kartik; Molina, Gabriel; Lelescu, Dan, Systems and methods for measuring depth based upon occlusion patterns in images.
  70. Ciurea, Florian; Venkataraman, Kartik; Molina, Gabriel; Lelescu, Dan, Systems and methods for measuring depth in the presence of occlusions using a subset of images.
  71. Ciurea, Florian; Venkataraman, Kartik; Molina, Gabriel; Lelescu, Dan, Systems and methods for measuring depth using an array of independently controllable cameras.
  72. Venkataraman, Kartik; Jabbi, Amandeep S.; Mullis, Robert H., Systems and methods for measuring depth using images captured by a camera array including cameras surrounding a central camera.
  73. Venkataraman, Kartik; Ciurea, Florian, Systems and methods for measuring scene information while capturing images using array cameras.
  74. Venkataraman, Kartik; Huang, Yusong; Jain, Ankit K.; Chatterjee, Priyam, Systems and methods for performing high speed video capture and depth estimation using array cameras.
  75. McMahon, Andrew Kenneth John; Lelescu, Dan; Ciurea, Florian, Systems and methods for photometric normalization in array cameras.
  76. McMahon, Andrew Kenneth John; Lelescu, Dan; Ciurea, Florian, Systems and methods for photometric normalization in array cameras.
  77. Molina, Gabriel, Systems and methods for reducing motion blur in images or video in ultra low light with array cameras.
  78. Molina, Gabriel, Systems and methods for reducing motion blur in images or video in ultra low light with array cameras.
  79. Lelescu, Dan; Molina, Gabriel; Venkataraman, Kartik, Systems and methods for synthesizing high resolution images using a set of geometrically registered images.
  80. Lelescu, Dan; Duong, Thang, Systems and methods for synthesizing high resolution images using image deconvolution based on motion and depth information.
  81. Lelescu, Dan; Molina, Gabriel; Venkataraman, Kartik, Systems and methods for synthesizing high resolution images using images captured by an array of independently controllable imagers.
  82. Venkataraman, Kartik; Nisenzon, Semyon; Chatterjee, Priyam; Molina, Gabriel, Systems and methods for synthesizing images from image data captured by an array camera using restricted depth of field depth maps in which depth estimation precision varies.
  83. McMahon, Andrew Kenneth John; Venkataraman, Kartik; Mullis, Robert, Systems and methods for the manipulation of captured light field image data.
  84. McMahon, Andrew Kenneth John, Systems and methods for transmitting and receiving array camera image data.
  85. McMahon, Andrew Kenneth John, Systems and methods for transmitting and receiving array camera image data.
  86. Venkataraman, Kartik CA; Gallagher, Paul; Lelescu, Dan; McMahon, Andrew Kenneth John; Duparre, Jacques; Pain, Bedabrata, Thin form factor computational array cameras and modular array cameras.
  87. Venkataraman, Kartik; Gallagher, Paul; Lelescu, Dan; McMahon, Andrew Kenneth John; Duparre, Jacques, Thin form factor computational array cameras and modular array cameras.
  88. Venkataraman, Kartik; Gallagher, Paul; Lelescu, Dan; McMahon, Andrew Kenneth John; Duparre, Jacques, Thin form factor computational array cameras and modular array cameras.
  89. Venkataraman, Kartik; Gallagher, Paul; Lelescu, Dan; McMahon, Andrew Kenneth John; Duparre, Jacques, Thin form factor computational array cameras and modular array cameras.
  90. Venkataraman, Kartik; Gallagher, Paul; Lelescu, Dan; McMahon, Andrew Kenneth John; Duparre, Jacques; Pain, Bedabrata, Thin form factor computational array cameras and modular array cameras.
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로