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Hardware abstraction layer for a robot 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G05B-019/04
  • G05B-019/18
출원번호 US-0307199 (2002-11-27)
발명자 / 주소
  • Murray, IV, Thomas J.
  • Pham, Baoquoc N.
  • Pirjanian, Paolo
출원인 / 주소
  • Evolution Robotics, Inc.
대리인 / 주소
    Knobbe, Martens, Olson &
인용정보 피인용 횟수 : 56  인용 특허 : 12

초록

Methods and apparatus that provide a hardware abstraction layer (HAL) for a robot are disclosed. A HAL can reside as a software layer or as a firmware layer residing between robot control software and underlying robot hardware and/or an operating system for the hardware. The HAL provides a relativel

대표청구항

1. A method in a robot of providing hardware abstraction for robot control software, the method comprising:providing a plurality of resource drivers for the robot, where the plurality of resource drivers includes resource drivers for which no corresponding hardware is present on the robot; detecting

이 특허에 인용된 특허 (12)

  1. Tow Robert F., Affect-based robot communication methods and systems.
  2. Tow Robert F., Affect-based robot communication methods and systems.
  3. Jewitt James W., Application program interface to physical devices.
  4. Fujita, Masahiro; Sakamoto, Takayuki; Sabe, Kotaro; Takagi, Tsuyoshi, Arithmetic processing device, object-to-object communication method and robot.
  5. Tomoaki Kasuga JP; Ayako Okita JP, Authoring system and method, and storage medium used therewith.
  6. Brown, David W.; Clark, Jay S., Distribution of motion control commands over a network.
  7. Zweig, Stephen Eliot, Mobile robotic with web server and digital radio links.
  8. Brown David W. (White Salmon WA) Clark Jay S. (Seattle WA), Motion control systems.
  9. Brown David W. ; Clark Jay S., Motion control systems.
  10. Brown, David W.; Clark, Jay S., Motion control systems.
  11. Brown David W. ; Clark Jay S., Motion control systems using communication map to facilitating communication with motion control hardware.
  12. David W. Brown ; Jay S. Clark, Systems and methods for generating and communicating motion data through a distributed network.

이 특허를 인용한 특허 (56)

  1. Trytten, Chad D.; Angerilli, Anthony J. V.; Mackay, Kenneth J., Application-independent and component-isolated system and system of systems framework.
  2. Romanov, Nikolai; Dooley, Michael; Pirjanian, Paolo, Articulated joint and three areas of contact.
  3. Bruemmer, David J.; Few, Douglas A., Autonomous navigation system and method.
  4. Sakagami,Yoshiaki; Matsunaga,Shinichi; Sumida,Naoaki, Autonomously moving robot management system.
  5. Smith, Fraser M., Coordinated robotic control.
  6. Brown, David W.; Clark, Jay S., Data routing systems and methods.
  7. Brown, David W.; Clark, Jay S., Database event driven motion systems.
  8. Shah, Pankaj; Konolige, Kurt; Augenbraun, Joe; Donaldson, Nick; Fiebig, Charles; Liu, Yuming; Khan, Hassaan Moin; Pinzarrone, Joseph; Salinas, Leo; Tang, Hua; Taylor, Rafael, Distance sensor system and method.
  9. Kantorowitz, Ellezer; Lyakas, Alexander, Environment-independent software.
  10. Ng Thow Hing,Victor; Drumwright,Evan, Extensible task engine framework for humanoid robots.
  11. Krinke, II, Thomas L.; Boehm, Brian E., External device support for device abstraction layer.
  12. Perrone, Paul J., General purpose robotics operating system.
  13. Perrone, Paul J., General purpose robotics operating system with unmanned and autonomous vehicle extensions.
  14. Bruemmer, David J.; Few, Douglas A., Generic robot architecture.
  15. Murray, IV, Thomas J.; Pham, Baoquoc N.; Pirjanian, Paolo, Hardware abstraction layer (HAL) for a robot.
  16. Murray, IV,Thomas J.; Pham,Baoquoc N.; Pirjanian,Paolo, Hardware abstraction layer (HAL) for a robot.
  17. Murray, IV,Thomas J.; Pham,Baoquoc N.; Pirjanian,Paolo, Hardware abstraction layer (HAL) for a robot.
  18. Uchiyama, Naoya, Image processing apparatus, image processing system, image processing method, and computer program.
  19. Uchiyama, Naoya, Image processing apparatus, image processing system, image processing method, and computer program.
  20. Gonzalez-Banos, Hector H.; Ng-Thow-Hing, Victor; Yang, Allen Y., Interface for robot motion control.
  21. Gonzalez-Banos, Hector H.; Wormer, Joel A.; Guan, Li, Interface for sensor query and control.
  22. Tischer,Steve, Method and system for customizing voice translation of text to speech.
  23. Jacobsen, Stephen C.; Olivier, Marc X.; Pensel, Ralph W.; Smith, Fraser M., Method and system for deploying a surveillance network.
  24. Pikulski, Joseph L., Mobilized cooler device with fork hanger assembly.
  25. Jacobsen, Stephen C.; Olivier, Marc X., Modular robotic crawler.
  26. Bruemmer, David J., Modular robotic manipulation.
  27. Bruemmer, David J., Modular robotic manipulation.
  28. Augenbraun, Joe; Hirschhorn, Linda; Shah, Pankaj; Donaldson, Nick; Jayne, William; Gomez, Juan B.; Pinzarrone, Joseph, Multi-function robotic device.
  29. Bruemmer, David J.; Few, Douglas A., Occupancy change detection system and method.
  30. Jacobsen, Stephen C.; Olivier, Marc X., Point and go navigation system and method.
  31. Versteeg, Roelof J.; Few, Douglas A.; Kinoshita, Robert A.; Johnson, Doug; Linda, Ondrej, Real time explosive hazard information sensing, processing, and communication for autonomous operation.
  32. Versteeg, Roelof J.; Few, Douglas A.; Kinoshita, Robert A.; Johnson, Douglas; Linda, Ondrej, Real time explosive hazard information sensing, processing, and communication for autonomous operation.
  33. Brown, Stephen J.; Brown, David W., Remote generation and distribution of command programs for programmable devices.
  34. Kim, Hong-Ryeol; Kim, Dae-Won; Park, Hong-Seong; Kim, Hong-Seok; Lee, Ho-Gil, Robot control software framework in open distributed process architecture.
  35. Kim, Yoon Soo, Robot control system and method.
  36. Romanov, Nikolai; Dooley, Michael; Pirjanian, Paolo, Robotic floor cleaning apparatus with shell connected to the cleaning assembly and suspended over the drive system.
  37. Bruemmer,David J.; Anderson,Matthew O., Robotic follow system and method.
  38. Bruemmer, David J., Robotic guarded motion system and method.
  39. Bruemmer, David J., Robotic intelligence kernel.
  40. Bruemmer, David J.; Few, Douglas A.; Walton, Miles C., Robotics virtual rail system and method.
  41. Nielsen, Curtis W.; Bruemmer, David J.; Walton, Miles C.; Hartley, Robert S.; Gertman, David I.; Kinoshita, Robert A.; Whetten, Jonathan, Robots, systems, and methods for hazard evaluation and visualization.
  42. Nahill, James; Wilz, David; Amundsen, Thomas; Franz, Dwight; Hernandez, Mark; Edmonds, Shane Michael; Gloeckner, Sarah; Beiler, John; Meagher, Mark; Cairns, James A.; Cavanaugh, Glenn Alan, Scanner with wake-up mode.
  43. Pensel, Ralph W., Serpentine robotic crawler.
  44. Smith, Fraser M., Serpentine robotic crawler.
  45. Smith, Fraser M.; Olivier, Marc; McCullough, John, Serpentine robotic crawler for performing dexterous operations.
  46. Nielsen, Curtis; Bruemmer, David; Few, Douglas; Walton, Miles, System and method for seamless task-directed autonomy for robots.
  47. Gal, Ehud; Berinsky, Gennadiy; Wolf, Yosi, System for extending the observation, surveillance, and navigational capabilities of a robot.
  48. Furlong, John A.; Hernandez, Mark Jose Antonio; Koch, Craig; Nahill, James; Cunningham, IV, Charles Joseph; Kearney, Sean Philip; Smith, Taylor, System having imaging assembly for use in output of image data.
  49. Takano,Yosuke, System, method, and program for robot control.
  50. Reger, Bernard D., Trainer for robotic vehicle.
  51. Dooley, Michael; Romanov, Nikolai; Pirjanian, Paolo, Transferable intelligent control device.
  52. Dooley, Michael; Romanov, Nikolai; Pirjanian, Paolo, Transferable intelligent control device.
  53. Jacobsen, Stephen C.; Marceau, David P., Two-dimensional layout for use in a complex structure.
  54. Bruemmer, David J.; Nielsen, Curtis W.; Hardin, Benjamin C.; Whetten, Jonathan M., Universal payload abstraction.
  55. Bruemmer, David J.; Hartley, R. Scott, Vehicle management system.
  56. Bruemmer, David J.; Hartley, R. Scott, Vehicle management system.
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