$\require{mediawiki-texvc}$

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.

Method for generating a three-dimensional model of a roof structure 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G06T-017/00
출원번호 UP-0206665 (2005-08-18)
등록번호 US-7728833 (2010-06-22)
발명자 / 주소
  • Verma, Vivek
  • Kumar, Rakesh
  • Hsu, Stephen Charles
  • Sawhney, Harpreet
출원인 / 주소
  • Sarnoff Corporation
대리인 / 주소
    Lowenstein Sandler PC
인용정보 피인용 횟수 : 86  인용 특허 : 5

초록

A method and apparatus for automatically generating a three-dimensional computer model from a “point cloud” of a scene produced by a laser radar (LIDAR) system. Given a point cloud of an indoor or outdoor scene, the method extracts certain structures from the imaged scene, i.e., ceilin

대표청구항

The invention claimed is: 1. A method for generating a three-dimensional model of a roof structure within a target scene, comprising the steps of: identifying a point cloud data set corresponding to the target scene; removing from the point cloud data set data points corresponding to a ground porti

이 특허에 인용된 특허 (5)

  1. Rahmes, Mark Donald; Karp, John Philip, Automated method for making a topographical model and related system.
  2. Corwin Thomas L. (McLean VA) Richardson Henry R. (Alexandria VA) Kuo Stanley D. (Arlington VA) Stefanick Tom A. (Arlington VA) Keeler R. Norris (McLean VA) Pflibsen Kent (Tucson AZ) Calmes Lonnie K. , Automatic target detection process.
  3. Rockwood Alyn P. (Centerville UT), Computer graphics system of general surface rendering by exhaustive sampling.
  4. Ben K. Kacyra ; Jerry Dimsdale ; Christopher Robin Thewalt ; Jonathan Apollo Kung ; Mark Brunkhart, Integrated system for quickly and accurately imaging and modeling three-dimensional objects.
  5. Kraus,Matthew; Graniela,Benito; Pigora,Mary, Virtual environment capture.

이 특허를 인용한 특허 (86)

  1. Ditte, Andreas; Woloschyn, Andreas, 3-D measuring device with battery pack.
  2. Pershing, Chris; Carlson, David P., Aerial roof estimation systems and methods.
  3. Pershing, Chris; Carlson, David P., Aerial roof estimation systems and methods.
  4. Bridges, Robert E.; Atwell, Paul C., Articulated arm coordinate measurement machine having a 2D camera and method of obtaining 3D representations.
  5. Bridges, Robert E.; Atwell, Paul C., Articulated arm coordinate measurement machine having a 2D camera and method of obtaining 3D representations.
  6. Bridges, Robert E.; Atwell, Paul C., Articulated arm coordinate measurement machine having a 2D camera and method of obtaining 3D representations.
  7. Salit, Kenneth; Salit, Mary; Compton, Robert; Ridley, Jeff A.; Nelson, Karl, Atomic referenced optical accelerometer.
  8. Schultz, Stephen L.; Nilosek, David R.; Petterson, David S.; Harrington, Timothy S., Augmented three dimensional point collection of vertical structures.
  9. Schultz, Stephen L.; Nilosek, David R.; Petterson, David S.; Harrington, Timothy S., Augmented three dimensional point collection of vertical structures.
  10. Shimamura, Hideki; Zhu, Lin, Building roof outline recognizing device, building roof outline recognizing method, and building roof outline recognizing program.
  11. Pershing, Chris, Concurrent display systems and methods for aerial roof estimation.
  12. Pershing, Chris, Concurrent display systems and methods for aerial roof estimation.
  13. Bridges, Robert E.; Parker, David H., Coordinate measurement machine with distance meter and camera to determine dimensions within camera images.
  14. Briggs, Clark H.; Bailey, Brent; Campbell, Kenneth, Coordinate measuring machines with dual layer arm.
  15. Giuffrida, Frank; Schultz, Stephen; Gray, Robert; Bradacs, Robert, Cut line steering methods for forming a mosaic image of a geographical area.
  16. Giuffrida, Frank; Schultz, Stephen; Gray, Robert; Bradacs, Robert, Cut-line steering methods for forming a mosaic image of a geographical area.
  17. Neundorf, Christoph; Becker, Reinhard, Device for optically scanning and measuring an environment.
  18. Sun, Shaohui; Pavlidis, Ioannis; Altman, Adam J., Generating 3D building models with ground level and orthogonal images.
  19. Pershing, Chris; Keane, John F., Geometric correction of rough wireframe models derived from photographs.
  20. van der Merwe, Rudolph; Solem, Jan Erik; Waldman, Jaron I.; Kassebaum, John W.; Noble, Samuel G.; Wu, Xiaqing; Liu, Yang, Identifying and parameterizing roof types in map data.
  21. Zweigle, Oliver; Becker, Bernd-Dietmar; Becker, Reinhard, Intermediate two-dimensional scanning with a three-dimensional scanner to speed registration.
  22. Bridges, Robert E.; Becker, Reinhard, Laser scanner having a multi-color light source and real-time color receiver.
  23. Takiguchi, Junichi; Kajiwara, Naoyuki; Shima, Yoshihiro; Kurosaki, Ryujiro; Hashizume, Takumi, Measurement apparatus, measurement method, and feature identification apparatus.
  24. Takiguchi, Junichi; Kajiwara, Naoyuki; Shima, Yoshihiro; Kurosaki, Ryujiro; Hashizume, Takumi, Measurement apparatus, measurement method, and feature identification apparatus.
  25. Takiguchi, Junichi; Kajiwara, Naoyuki; Shima, Yoshihiro; Kurosaki, Ryujiro; Hashizume, Takumi, Measurement apparatus, measurement method, and feature identification apparatus.
  26. Gittinger, Juergen; Becker, Bernd-Dietmar; Becker, Reinhard, Method and an apparatus for capturing three-dimensional data of an area of space.
  27. Schultz, Stephen L.; Giuffrida, Frank D.; Gray, Robert L.; Mondello, Charles, Method and apparatus for capturing, geolocating and measuring oblique images.
  28. Schultz, Stephen L.; Giuffrida, Frank D.; Gray, Robert L.; Mondello, Charles, Method and apparatus for capturing, geolocating and measuring oblique images.
  29. Schultz, Stephen L.; Giuffrida, Frank D.; Gray, Robert L.; Mondello, Charles, Method and apparatus for capturing, geolocating and measuring oblique images.
  30. Schultz, Stephen L., Method and system for displaying room interiors on a floor plan.
  31. Thornberry, Chris T.; Thornberry, Dale R., Method and system for quick square roof reporting.
  32. Savolainen, Pekka; Luukkonen, Heikki; Hyyppa, Juha; Honkavaara, Eija; Yu, Xiaowei; Kukko, Antero, Method for determination of stand attributes and a computer program for performing the method.
  33. York, Frederick John; Bailey, Brent, Method for evaluating mounting stability of articulated arm coordinate measurement machine using inclinometers.
  34. Schultz, Stephen, Method for the automatic material classification and texture simulation for 3D models.
  35. Hyung, Seung Yong; Ahn, Sung Hwan; Roh, Kyung Shik; Yoon, Suk June, Method of mobile platform detecting and tracking dynamic objects and computer-readable medium thereof.
  36. Schultz, Stephen; Giuffrida, Frank; Gray, Robert, Mosaic oblique images and methods of making and using same.
  37. Schultz, Stephen; Giuffrida, Frank; Gray, Robert, Mosaic oblique images and methods of making and using same.
  38. Schultz, Stephen; Giuffrida, Frank; Gray, Robert, Mosaic oblique images and methods of making and using same.
  39. Schultz, Stephen; Giuffrida, Frank; Gray, Robert, Mosaic oblique images and methods of making and using same.
  40. Chen, Qi; Friend, Paul Russell, Motion estimation systems and methods.
  41. Pershing, Chris, Pitch determination systems and methods for aerial roof estimation.
  42. Pershing, Chris, Pitch determination systems and methods for aerial roof estimation.
  43. Briggs, Clark H.; York, Frederick, Portable articulated arm coordinate measuring machine with optical communications bus.
  44. Brown, Brian Gammon; Fan, Zhe; Reinhardt, Tilman, Pose data via user interaction.
  45. Pershing, Chris, Property management on a smartphone.
  46. Zweigle, Oliver; Becker, Bernd-Dietmar; Becker, Reinhard, Registration calculation between three-dimensional (3D) scans based on two-dimensional (2D) scan data from a 3D scanner.
  47. Zweigle, Oliver; Becker, Bernd-Dietmar; Becker, Reinhard, Registration calculation of three-dimensional scanner data performed between scans based on measurements by two-dimensional scanner.
  48. Wheeler, Mark Damon; Li, Zhiyun; Kazhiyur-Mannar, Ramakrishnan; Wallace, William Edward, Smart picking in 3D point clouds.
  49. Loveland, James Edward; Taylor, Jeffrey Clayton; Lewis, Jeffery Devon; Childs, Bradley McKay; Reed, Corey David; Robertson, Jared William, System and method for construction estimation using aerial images.
  50. Taylor, Jeffrey; Webecke, Edmund, System and method for detecting features in aerial images using disparity mapping and segmentation techniques.
  51. Giuffrida, Frank D.; Skolny, Chad; Adams, Steve; Gray, Robert; Schnaufer, Chris, System and method for early access to captured images.
  52. Giuffrida, Frank D.; Skolny, Chad; Adams, Steve; Gray, Robert; Schnaufer, Chris, System and method for early access to captured images.
  53. Tiwari, Ankit; Alberola, Rodolfo De Paz; Villaverde, Berta Carballido; Mukherjee, Kushal; Soldner, Nicholas C.; Ramoutar, Michael, System and method for energy harvesting system planning and performance.
  54. Furukawa, Yasutaka; de Silveira Cabral, Ricardo, System and method for floorplan reconstruction and three-dimensional modeling.
  55. Schultz, Stephen L.; Giuffrida, Frank, System and method for performing sensitive geo-spatial processing in non-sensitive operator environments.
  56. Marra, Martin; Smyth, James F., System and method for structural inspection and construction estimation using an unmanned aerial vehicle.
  57. Schultz, Stephen L.; Giuffrida, Frank D. R.; Gray, Robert, System and process for color-balancing a series of oblique images.
  58. Thornberry, Dale R.; Thornberry, Chris T.; Garringer, Mark F., System and process for roof measurement using aerial imagery.
  59. Thornberry, Dale R.; Thornberry, Chris T.; Garringer, Mark F., System and process for roof measurement using aerial imagery.
  60. Giuffrida, Frank; Schultz, Stephen, System for detecting image abnormalities.
  61. Giuffrida, Frank; Schultz, Stephen, System for detecting image abnormalities.
  62. Giuffrida, Frank; Schultz, Stephen, System for detecting image abnormalities.
  63. Giuffrida, Frank; Schultz, Stephen, System for detecting image abnormalities.
  64. Pytel, Rachel Z.; Jacobs, Gregory F.; Jenkins, Robert L; Nash, Alex C.; Jouanin, Anthony; Dubost, Brice; Mazoyer, Simon; Apelian, Minas R.; McDonald, Conor P., System for visualization of a building material.
  65. Pershing, Chris, Systems and methods for estimation of building floor area.
  66. Pershing, Chris, Systems and methods for estimation of building wall area.
  67. Pershing, Chris, Systems and methods for estimation of building wall area.
  68. Pershing, Chris; Ishikawa, Randall, Systems and methods for performing a risk management assessment of a property.
  69. Freund, Joseph G.; Gal, Ran, Systems and methods for rapid three-dimensional modeling with real facade texture.
  70. Freund, Joseph G.; Gal, Ran, Systems and methods for rapid three-dimensional modeling with real facade texture.
  71. Freund, Joseph G.; Gal, Ran, Systems and methods for rapid three-dimensional modeling with real facade texture.
  72. Freund, Joseph G.; Gal, Ran, Systems and methods for rapid three-dimensional modeling with real facade texture.
  73. Freund, Joseph G.; Gal, Ran, Systems and methods for rapid three-dimensional modeling with real facade texture.
  74. Freund, Joseph G.; Gal, Ran, Systems and methods for rapid three-dimensional modeling with real facade texture.
  75. Schultz, Stephen L.; Monaco, John, Unmanned aircraft obstacle avoidance.
  76. Schultz, Stephen L.; Monaco, John, Unmanned aircraft structure evaluation system and method.
  77. Schultz, Stephen L.; Monaco, John, Unmanned aircraft structure evaluation system and method.
  78. Schultz, Stephen L.; Monaco, John, Unmanned aircraft structure evaluation system and method.
  79. Schultz, Stephen L.; Monaco, John, Unmanned aircraft structure evaluation system and method.
  80. Schultz, Stephen L.; Monaco, John, Unmanned aircraft structure evaluation system and method.
  81. Schultz, Stephen L.; Monaco, John, Unmanned aircraft structure evaluation system and method.
  82. Zweigle, Oliver; Becker, Bernd-Dietmar; Becker, Reinhard, Using a two-dimensional scanner to speed registration of three-dimensional scan data.
  83. Zweigle, Oliver; Becker, Bernd-Dietmar; Becker, Reinhard, Using a two-dimensional scanner to speed registration of three-dimensional scan data.
  84. Zweigle, Oliver; Becker, Bernd-Dietmar; Becker, Reinhard, Using depth-camera images to speed registration of three-dimensional scans.
  85. Zweigle, Oliver; Becker, Bernd-Dietmar; Becker, Reinhard, Using two-dimensional camera images to speed registration of three-dimensional scans.
  86. Schultz, Stephen L.; Kennedy, David Arthur; Smyth, James, Virtual property reporting for automatic structure detection.
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