$\require{mediawiki-texvc}$

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.

Multiplexed Bragg grating sensors 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G01K-003/00
  • G01K-011/00
  • G01J-003/50
출원번호 US-0127389 (1993-09-27)
발명자 / 주소
  • Dunphy James R. (Glastonbury CT) Falkowich Kenneth P. (Coventry CT)
출원인 / 주소
  • United Technologies Corporation (Hartford CT 02)
인용정보 피인용 횟수 : 126  인용 특허 : 0

초록

A measurement system for fiber sensors includes a broadband light source 11 providing continuous light which is launched into a fiber 20 having a plurality (or string) of Bragg grating sensors 24, 28, 34. Each sensor has a predetermined central reflection wavelength which shifts as a function of app

대표청구항

A measurement system for optical sensors, comprising: light source means for providing a continuous broadband light, said broadband light being launched into an optical waveguide; a sensor string comprising a plurality of sensors disposed in the path of said broadband light, each sensor providing a

이 특허를 인용한 특허 (126)

  1. Jones Richard T. ; Maron Robert J. ; Daigle Guy A., Accelerometer featuring fiber optic bragg grating sensor for providing multiplexed multi-axis acceleration sensing.
  2. Sondhi, Amit, Alternative gauging system for production well testing and related methods.
  3. Gysling,Daniel L., Apparatus and method for measuring multi-Phase flows in pulp and paper industry applications.
  4. Froggatt, Mark E.; Moore, Jason P., Apparatus and method for measuring strain in optical fibers using rayleigh scatter.
  5. Schmidt-Hattenberger, Cornelia, Apparatus and method for wavelength detection with fiber bragg grating sensors.
  6. Davis, Allen R.; Gysling, Daniel L.; Winston, Charles R.; Faustino, John M.; McGuinn, Rebecca S., Apparatus for sensing fluid in a pipe.
  7. Hay Arthur D., Bolt, stud or fastener having an embedded fiber optic Bragg Grating sensor for sensing tensioning strain.
  8. Kraemmer, Peter; Willsch, Michael, Bragg grating device for measuring an acceleration.
  9. Alan D. Kersey ; Robert A. Rubino ; James R. Dunphy, Bragg grating sensor system with spectral response or code division multiplexing.
  10. Quigley, Peter A.; Nolet, Stephen C.; Wideman, Thomas W., Buoyancy control systems for tubes.
  11. Quigley, Peter A.; Nolet, Stephen C.; Wideman, Thomas W., Buoyancy control systems for tubes.
  12. Quigley,Peter A.; Nolet,Stephen C.; Wideman,Thomas W., Buoyancy control systems for tubes.
  13. Quigley,Peter A.; Nolet,Stephen C.; Wideman,Thomas W., Buoyancy control systems for tubes.
  14. Allin, D. Kelly, Composite coiled tubing connectors.
  15. Brotzell, Arthur D.; Fowler, Stewart H.; Tho, Chanthol, Composite coiled tubing end connector.
  16. Ogle Peter C. ; Hay Arthur D. ; Kersey Alan D., Composite form as a component for a pressure transducer.
  17. Quigley, Peter A.; Nolet, Stephen C.; Williams, Jerry G., Composite spoolable tube.
  18. Quigley, Peter A.; Nolet, Stephen C.; Williams, Jerry G., Composite spoolable tube.
  19. Quigley, Peter A.; Nolet, Stephen C.; Williams, Jerry G., Composite spoolable tube.
  20. Quigley, Peter A.; Nolet, Stephen C.; Williams, Jerry G., Composite spoolable tube.
  21. Quigley, Peter A.; Nolet, Stephen C.; Williams, Jerry G., Composite spoolable tube.
  22. Peter A. Quigley ; Stephen C. Nolet, Composite spoolable tube with sensor.
  23. Quigley Peter A. ; Nolet Stephen C., Composite spoolable tube with sensor.
  24. Quigley, Peter A.; Nolet, Stephen C., Composite spoolable tube with sensor.
  25. Dunphy James R. ; Rukus Robert M. ; Ha Jong-Min,KRX, Composite structure resin cure monitoring apparatus using an optical fiber grating sensor.
  26. Quigley, Peter A.; Nolet, Stephen C.; Wideman, Thomas W.; Feechan, Michael, Composite tubing.
  27. Moon, John A.; Putnam, Martin A.; Kersey, Alan D.; Fournier, David; Pinto, Joseph, Composition including an item and an encoded optical substrate and a method for identifying an item.
  28. Gerstel,Ornan; Viscardi,Valerio; Piciaccia,Stefano; Barozzi,Gianpaolo, Coupler add/drop node WDM network architecture with periodic cleanup.
  29. Gysling,Daniel L.; Ferguson,Stuart E., Deployable mandrel for downhole measurements.
  30. Magne Sylvain,FRX ; Ferdinand Pierre,FRX ; Grand Gilles,FRX, Device for demultiplexing light paths contained in an optical spectrum.
  31. Magne, Sylvain; Ferdinand, Pierre; Grand, Gilles, Device for reading spectral lines contained in an optical spectrum.
  32. Moon,John A.; Putnam,Martin A., Diffraction grating-based encoded micro-particles for multiplexed experiments.
  33. Daniel L. Gysling, Displacement based pressure sensor measuring unsteady pressure in a pipe.
  34. Perez Ignacio, Distributed fiber optic laser ultrasonic system.
  35. Gysling, Daniel L.; Myers, Mark R., Distributed sound speed measurements for multiphase flow measurement.
  36. Gysling, Daniel L.; Myers, Mark R., Distributed sound speed measurements for multiphase flow measurement.
  37. Quigley, Peter A.; Feechan, Michael, Downhole fluid separation.
  38. Kersey, Alan D.; Moon, John A.; Putnam, Martin A., Elongated microparticles having an optically detectable code configured to at least one of reflect or filter light.
  39. Kersey, Alan D.; Moon, John A.; Putnam, Martin A., Encoded microparticles and a method for fabricating.
  40. Moon, John A.; Putnam, Martin A., Encoded particle having a grating with variations in the refractive index.
  41. Bao Yufei ; Daugherty David ; Hsu Kevin ; Li Tom Q. Y. ; Miller Calvin M. ; Miller Jeffrey W., Fabry Perot/fiber Bragg grating multi-wavelength reference.
  42. Bao Yufei ; Daugherty David ; Hsu Kevin ; Li Tom Q. Y. ; Miller Jeffrey W. ; Miller Calvin M., Fabry Perot/fiber Bragg grating multi-wavelength reference.
  43. Bao Yufei ; Daugherty David ; Hsu Kevin ; Li Tom Q. Y. ; Miller Jeffrey W. ; Miller Calvin M., Fabry-perot fiber bragg grating multi-wavelength reference.
  44. Meyer,A. Douglas, Fiber optic accelerometer.
  45. Childers, Brooks A.; Gifford, Dawn K.; Duncan, Roger G.; Raum, Matthew T.; Vercellino, Michael E.; Froggatt, Mark E., Fiber optic position and shape sensing device and method relating thereto.
  46. Charles R. Winston ; Daniel L. Gysling ; Mark R. Myers ; Alan D. Kersey ; Rebecca S. McGuinn, Fiber optic pressure sensor for DC pressure and temperature.
  47. Haake John M. (St. Charles MO), Fiber optic sensor having a multicore optical fiber and an associated sensing method.
  48. Quigley, Peter A.; Feechan, Michael; Wideman, Thomas, Fiber reinforced spoolable pipe.
  49. Quigley, Peter A.; Feechan, Michael; Wideman, Thomas W., Fiber reinforced spoolable pipe.
  50. Quigley, Peter A.; Feechan, Michael; Wideman, Thomas W., Fiber reinforced spoolable pipe.
  51. Jones, Richard T., Flow meter using an expanded tube section and sensitive differential pressure measurement.
  52. Jones, Richard T., Flow meter using an expanded tube section and sensitive differential pressure measurement.
  53. Jones,Richard T., Flow meter using an expanded tube section and sensitive differential pressure measurement.
  54. Gysling, Daniel L.; Bryant, Rebecca S.; Winston, Charles R., Flow rate measurement using unsteady pressures.
  55. Gysling, Daniel L., Fluid density measurement in pipes using acoustic pressures.
  56. Gysling, Daniel L.; Kersey, Alan D.; Paduano, James D., Fluid parameter measurement in pipes using acoustic pressures.
  57. Quigley, Peter A.; Feechan, Michael, Heated pipe and methods of transporting viscous fluid.
  58. Kersey, Alan; Moon, John A.; Putnam, Martin A., Holographically encoded elements for microarray and other tagging labeling applications, and method and apparatus for making and reading the same.
  59. Niezgorski, Richard M.; Ogle, Peter C., Housing on the exterior of a well casing for optical fiber sensors.
  60. Kersey Alan D. ; Patrick Heather J., Hybrid fiber bragg grating/long period fiber grating sensor for strain/temperature discrimination.
  61. Moon, John A.; Kersey, Alan D.; Putnam, Martin A.; Li, Tuo, Hybrid random bead/chip based microarray.
  62. Nakamura, Noritsugu; Ogisu, Toshimichi; Takeda, Nobuo, Impact detection system with three or more optical fiber sensors.
  63. Kersey,Alan D.; Moon,John A.; Putnam,Martin A., Lithographically fabricated holographic optical identification element.
  64. Ogle Peter C. ; Gysling Daniel L., Mandrel-wound fiber optic pressure sensor.
  65. DiFoggio, Rocco; Walkow, Arnold; Bergren, Paul, Method and apparatus for a derivative spectrometer.
  66. DiFoggio,Rocco; Walkow,Arnold; Bergren,Paul, Method and apparatus for a high resolution downhole spectrometer.
  67. Moon,John; Putnam,Martin A.; Li,Tuo; Traynor,Joseph, Method and apparatus for aligning microbeads in order to interrogate the same.
  68. Moon, John A.; Putnam, Martin A.; Kersey, Alan; Fournier, David; Pinto, Joseph, Method and apparatus for drug product tracking using encoded optical identification elements.
  69. Kersey, Alan D.; Davis, Allen R.; Fernald, Mark R.; Winston, Charles R.; Bailey, Timothy J., Method and apparatus for interrogating fiber optic sensors.
  70. Moon, John A.; Putnam, Martin A.; Kersey, Alan D.; Szczepanek, Paul, Method and apparatus for labeling using optical identification elements characterized by X-ray diffraction.
  71. Zhao, Xiaomin; Bostick, Francis X.; Wu, Jian-Qun; Gysling, Daniel L.; Ogle, Peter C.; Davis, Allen R.; Kersey, Alan D.; Hardage, Bob A., Method and apparatus for seismically surveying an earth formation in relation to a borehole.
  72. Becker, Edwin, Method and device for dynamic measurement of the radial deformation of a rolling bearing ring.
  73. Putnam,Martin A.; Moon,John; Szczepanek,Paul S.; Li,Tuo; Rauseo,Anthony; Traynor,Joseph, Method of manufacturing of a diffraction grating-based optical identification element.
  74. Schäfer, Lutz; Schuster, Dietwald, Methods and devices for image processing with higher harmonics of an illumination grating.
  75. Moon, John A.; Kersey, Alan D.; Putnam, Martin A.; Li, Tuo, Methods of identifying an analyte and nucleic acid analysis.
  76. Moon, John A.; Kersey, Alan D.; Putnam, Martin A.; Li, Tuo, Methods of identifying analytes and using encoded particles.
  77. Alan Malvern GB; Thomas Allsop GB; Ronald Neal GB, Modulated fibre bragg grating strain gauge assembly for absolute gauging of strain.
  78. Feechan, Michael; Quigley, Peter A., Multi-cell spoolable composite pipe.
  79. Waagaard,Ole Henrik; Ronnekleiv,Erlend, Multi-pulse heterodyne sub-carrier interrogation of interferometric sensors.
  80. Udd Eric (2555 NE. 205th Ave. Troutdale OR 97060), Multiparameter sensor system using a multiple grating fiber optic birefringent fiber.
  81. Philippe Bousselet FR; Serge Artigaud FR; Jean-Luc Beylat FR, Multiple wavelength source.
  82. Skinner Neal G., Multiplexed fiber optic transducer for use in a well and method.
  83. Hay Arthur D., Oil and gas well packer having fiber optic Bragg Grating sensors for downhole insitu inflation monitoring.
  84. Hjort, Thomas; Glavind, Lars, Optical fiber grating sensor system and method comprising plural optical gratings having partially overlapping operating ranges.
  85. Tsuda,Hiroshi, Optical fiber strain sensor device and strain detection method.
  86. Gysling, Daniel L.; McGuinn, Rebecca S.; Winston, Charles R., Optical flow rate measurement using unsteady pressures.
  87. Putnam, Martin A.; Moon, John A., Optical identification element having a non-waveguide substrate.
  88. Putnam,Martin A.; Moon,John A., Optical identification element having non-waveguide photosensitive substrate with diffraction grating therein.
  89. Moon,John A.; Fournier,David R.; Putnam,Martin A.; Kersey,Alan D.; Li,Tuo, Optical reader for diffraction grating-based encoded optical identification elements.
  90. Putnam, Martin A.; Lemoine, Richard L., Optical reader for reading encoded microparticles.
  91. Moon, John A.; Fournier, David R.; Putnam, Martin A.; Kersey, Alan D; Li, Tuo, Optical reader system for substrates having an optically readable code.
  92. Moon, John A.; Fournier, David R., Optical scanner with improved scan time.
  93. Johnson, Gregg A.; Todd, Michael D.; Althouse, Bryan L.; Chang, Chia-Chen, Optical sensing device containing fiber Bragg gratings.
  94. Moon, John A.; Putnam, Martin A., Optical system and method for reading encoded microbeads.
  95. Moon, John A.; Putnam, Martin A., Optical system and method for reading encoded microbeads.
  96. Taverner,Domino, Optical wavelength determination using multiple measurable features.
  97. Townley Smith,Paul A.; Hellman,Scott; Kondis,John; Ranalli,Eliseo Romolo, Perimeter detection using fiber optic sensors.
  98. Gysling,Daniel L., Phase flow measurement in pipes using a density meter.
  99. Bohnert, Klaus; Brandle, Hubert; Bodor, Patrick, Pressure sensor with fibre-integrated bragg grating, comprising an integrated temperature sensor with fibre-integrated bragg grating.
  100. Miller Calvin M. ; Miller Jeffrey W. ; Hsu Kevin ; Bao Yufei ; Li Tom Q.Y., Reference system for optical devices including optical scanners and spectrum analyzers.
  101. Wideman, Thomas W.; Quigley, Peter A., Reinforcing matrix for spoolable pipe.
  102. Gysling, Daniel L.; Loose, Douglas H., Sand monitoring within wells using acoustic arrays.
  103. Gysling,Daniel L.; Loose,Douglas H., Sand monitoring within wells using acoustic arrays.
  104. Kersey, Alan; Moon, John A., Scanner having spatial light modulator.
  105. Siems, Lee E.; Knapp, Grevson; Maida, John, Seismic optical acoustic recursive sensor system.
  106. Ferguson,Stephen K., Selectable and tunable ferrule holder for a fiber Fabry-Perot filter.
  107. Kersey Alan D., Selective aperture arrays for seismic monitoring.
  108. Park, Chang-Soo; Kim, Young-Bok; Jeon, Sie-Wook, Sensing apparatus.
  109. Lee, Ho-Joon, Signal processing system of multiplexed fiber bragg grating sensor using CDMA.
  110. Johansen,Espen S., Sonar sand detection.
  111. Morrow Alan John ; Roth Richard, Switchable wavelength add/drop component.
  112. Quigley, Peter A.; Feechan, Michael, System and methods for removing fluids from a subterranean well.
  113. Quigley, Peter A.; Feechan, Michael, System and methods for removing fluids from a subterranean well.
  114. Vidal,Jose Luiz Arias; J��nior,Manoel Feliciano da Silva; Freitas,Ricardo Munoz; Ferreira,Lincoln Homero Thom��, System for the measurement and data acquisition for optical fiber sensors.
  115. Quigley, Peter A.; Feechan, Michael, Systems and methods for pipeline rehabilitation.
  116. Quigley, Peter A.; Feechan, Michael, Systems and methods for pipeline rehabilitation.
  117. Quigley,Peter A.; Feechan,Michael, Systems and methods for pipeline rehabilitation.
  118. Quigley,Peter A.; Feechan,Michael, Systems and methods for pipeline rehabilitation.
  119. Gysling, Daniel L., Venturi augmented flow meter.
  120. Sapack Michael A., Vertical seismic profiling system having vertical seismic profiling optical signal processing equipment and fiber Bragg grafting optical sensors.
  121. Victor Mizrahi ; Stephen R. Harmon, WDM optical communication systems with wavelength-stabilized optical selectors.
  122. Victor Mizrahi ; Stephen R. Harmon, WDM optical communication systems with wavelength-stabilized optical selectors.
  123. Bao, Yufei; Ferguson, Stephen K.; Snyder, Donald Q., Waferless fiber Fabry-Perot filters.
  124. Hay Arthur D., Washer having fiber optic Bragg Grating sensors for sensing a shoulder load between components in a drill string.
  125. Quigley, Peter A.; Feechan, Michael, Weighted spoolable pipe.
  126. Ogle, Peter C., Well integrity monitoring system.
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