$\require{mediawiki-texvc}$

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.

Satellite communications systems and methods with distributed and/or centralized architecture including ground-based beam forming 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H04B-007/185
  • H04B-007/19
  • H04B-007/14
출원번호 UP-0374191 (2006-03-13)
등록번호 US-7627285 (2009-12-16)
발명자 / 주소
  • Karabinis, Peter D.
출원인 / 주소
  • ATC Technologies, LLC
대리인 / 주소
    Myers Bigel Sibley & Sajovec, P.A.
인용정보 피인용 횟수 : 32  인용 특허 : 80

초록

A space-based component (SBC) of a communications system includes a service link subsystem including a plurality of service link antenna elements configured to provide service links with radioterminals and a feeder link subsystem configured to provide respective feeder links to/from respective proce

대표청구항

What is claimed is: 1. A space-based component (SBC) of a communications system, the SBC comprising: a plurality of service link antenna elements configured to transmit/receive information to/from radioterminals; a plurality of feeder links each providing information to/from a respective processing

이 특허에 인용된 특허 (80)

  1. Karabinis,Peter D.; Nguyen,Serge, Additional systems and methods for monitoring terrestrially reused satellite frequencies to reduce potential interference.
  2. Tawil Carmen ; Tawil Saleem, Apparatus and method for reusing satellite broadcast spectrum for terrestrially broadcast signals.
  3. Tawil Carmen ; Tawil Saleem, Apparatus and method for transmitting terrestrial signals on a common frequency with satellite transmissions.
  4. Fairholm Daniel Wayne ; Whitaker Dennis Clifton, Architecture for an integrated mobile and fixed telecommunications system including a spacecraft.
  5. Wiedeman Robert A. ; Sites Michael J., Automatic satellite terrestrial mobile terminal roaming system and method.
  6. Dent Paul W. (Stehags SEX), Cellular/satellite communications system with improved frequency re-use.
  7. Dent Paul W. (Stehags SEX), Cellular/satellite communications system with improved frequency re-use.
  8. Dent Paul W.,SEX, Cellular/satellite communications system with improved frequency re-use.
  9. Dent Paul W.,SEX, Cellular/satellite communications system with improved frequency re-use.
  10. Dent Paul W.,SEX, Cellular/satellite communications systems with improved frequency re-use.
  11. Wiedeman Robert A. (Los Altos CA) Sites Michael J. (Fremont CA), Closed loop power control for low earth orbit satellite communications system.
  12. Wiedeman Robert A. ; Sites Michael J., Closed loop power control for low earth orbit satellite communications system.
  13. Wiedeman Robert A. ; Sites Michael J., Closed loop power control for low earth orbit satellite communications system.
  14. Mayfield, William W.; Chang, Donald C. D.; Novak, III, John I., Communication system employing reuse of satellite spectrum for terrestrial communication.
  15. Goerke Thomas,GBX, Communications apparatus and method.
  16. Young Eddy Ka Ping,GBX ; Lu Sze-Ching,GBX, Communications apparatus and method for mobile platforms having a plurality of users.
  17. Haber William Joe, Communications network node with switched channelizer architecture.
  18. Mallinckrodt Albert J., Communications system.
  19. Mallinckrodt Albert J., Communications system including control means for designating communication between space nodes and surface nodes.
  20. Mallinckrodt Albert J., Controller for cellular communications system.
  21. Karabinis, Peter D.; Singh, Rajendra; Olexa, George Ronald; Badipour, Bahman, Coordinated satellite-terrestrial frequency reuse.
  22. Sasaki Takao,JPX ; Katoh Tadayoshi,JPX, Dual layer satellite communications system and geostationary satellite therefor.
  23. Karabinis Peter D. ; Rydbeck Nils Rutger Carl ; Kornby Michael, Dual-mode satellite/cellular phone architecture with physically separable mode.
  24. Karabinis, Peter D., Filters for combined radiotelephone/GPS terminals.
  25. Karabinis Peter D., Fixed and mobile satellite radiotelephone systems and methods with capacity sharing.
  26. Otten, David D., Hybrid satellite communications system.
  27. Mallinckrodt Albert J. (14141 Stratton Way Santa Ana CA 92705-3299), Integrated cellular communications system.
  28. Mallinckrodt Albert J. (Santa Ana CA), Integrated cellular communications system.
  29. Mallinckrodt Albert J. (Santa Ana CA), Integrated cellular communications system.
  30. Karabinis, Peter D.; Singh, Rajendra, Integrated or autonomous system and method of satellite-terrestrial frequency reuse using signal attenuation and/or blockage, dynamic assignment of frequencies and/or hysteresis.
  31. Wiedeman Robert A, Interactive fixed and mobile satellite network.
  32. Chambers Paul,GBX, Interworking between telecommunications networks.
  33. Wiedeman Robert A ; Monte Paul A, Low earth orbit distributed gateway communication system.
  34. Wiedeman Robert A. ; Monte Paul A., Low earth orbit distributed gateway communication system.
  35. Curello, Charles; Barnes, Scott P.; Fishman, Barry; Rosen, Harold A., Low-cost multi-mission broadband communications payload.
  36. Ramasastry Jayaram, Method and apparatus for diversity enhancement using pseudo-multipath signals.
  37. Santoru, Joseph, Method and apparatus for reducing interference between terrestrially-based and space-based broadcast systems.
  38. Dillon Douglas M. ; Gupta Vivek, Method and apparatus for selectively retrieving information from a source computer using a terrestrial or satellite int.
  39. Martinez ReneD. (Newfield NY) Compton Richard C. (Ithaca NY), Method and apparatus for spectrum sharing between satellite and terrestrial communication services using temporal and sp.
  40. Youssefzadeh Emil ; Luecke James R. ; Serafinko Robert E., Method and system for providing rural subscriber telephony service using an integrated satellite/cell system.
  41. S. Lynne Wainfan ; Ellen K. Wesel ; Michael S. Pavloff ; Arthur W. Wang, Method and system for providing wideband communications to mobile users in a satellite-based network.
  42. Bella Luigi,NLX, Method and system for transmitting radio signals between a fixed terrestrial station and user mobile terminals via a n.
  43. Vasudevan Mini ; Lin Sheng-Chou ; Tseng Stone H., Method for optimizing spectral re-use.
  44. Karabinis,Peter D., Methods and systems for modifying satellite antenna cell patterns in response to terrestrial reuse of satellite frequencies.
  45. Zhao,Wei; Noerpel,Anthony; Saha,Abheek; Verma,Sandeep; Peters,Tom, Mobility management state transition system and method for handling dark beam scenarios.
  46. Sherman Richard H. ; Gallagher Vijaya ; Huang John J. Y., Multiple satellite system power allocation by communication link optimization.
  47. Robert A Wiedeman, Multiple vocoder mobile satellite telephone system.
  48. Freeburg Thomas A. (Arlington Heights IL), Networked satellite and terrestrial cellular radiotelephone systems.
  49. Otten David D., Position determination for reducing unauthorized use of a communication system.
  50. Mallinckrodt Albert Jack, Power control of an integrated cellular communications system.
  51. Mallinckrodt Albert Jack, Power control of an integrated cellular communications system.
  52. Grybos David P. ; Marshall James M., Radio frequency sharing methods for satellite systems.
  53. Gerald J. Adams ; Paul D. Tarbuck ; Robert E. Vaughan ; Shih-Chang Wu ; Thomas S. La France ; Sudhakar K. Rao, Reconfigurable multibeam communications satellite having frequency channelization.
  54. Dutta, Santanu; Karabinis, Peter D., SYSTEMS AND METHODS FOR HANDOVER BETWEEN SPACE BASED AND TERRESTRIAL RADIOTERMINAL COMMUNICATIONS, AND FOR MONITORING TERRESTRIALLY REUSED SATELLITE FREQUENCIES AT A RADIOTERMINAL TO REDUCE POTENTIAL.
  55. Wiedeman Robert A. (Los Altos CA), Satellite beam steering reference using terrestrial beam steering terminals.
  56. Hirschfield Edward ; Wiedeman Robert A. ; Canter Stanley, Satellite communication power management system.
  57. Monte Paul A ; Hirshfield Edward, Satellite communication service with non-congruent sub-beam coverage.
  58. Wiedeman, Robert A; Monte, Paul A, Satellite communication system providing multi-gateway diversity and improved satellite loading.
  59. Wiedeman Robert A. ; Monte Paul A, Satellite communications system having distributed user assignment and resource assignment with terrestrial gateways.
  60. Dent, Paul W., Satellite communications system using multiple earth stations.
  61. Dent,Paul W., Satellite communications system using multiple earth stations.
  62. Karabinis Peter D., Satellite system utilizing a plurality of air interface standards and method employing same.
  63. Karabinis Peter D., Satellite telecommunications repeaters and retransmission methods.
  64. Wiedeman Robert A. (Los Altos CA) Monte Paul A. (San Jose CA), Satellite telecommunications system using network coordinating gateways operative with a terrestrial communication syste.
  65. Wyrwas Richard,GBX ; Mullins Dennis Roy,GBX, Satellite terminal position determination.
  66. Karabinis,Peter D.; Agnew,Carson E., Space-based network architectures for satellite radiotelephone systems.
  67. Karabinis,Peter D., Spatial guardbands for terrestrial reuse of satellite frequencies.
  68. Gilhousen Klein S. (San Diego CA) Jacobs Irwin M. (La Jolla CA) Weaver ; Jr. Lindsay A. (San Diego CA), Spread spectrum multiple access communication system using satellite or terrestrial repeaters.
  69. Otten David D. (Redondo Beach CA), System and method for mobile communications in coexistence with established communications systems.
  70. David De Sales Otten, System for mobile communications in coexistence with communication systems having priority.
  71. Hogberg Shawn Wesley ; Emmons ; Jr. Thomas Peter ; Smith Robert H., Systems and method for use in a dual mode satellite communications system.
  72. Karabinis,Peter D.; Churan,Gary G., Systems and methods for monitoring terrestrially reused satellite frequencies to reduce potential interference.
  73. Karabinis, Peter D., Systems and methods for reducing satellite feeder link bandwidth/carriers in cellular satellite systems.
  74. Karabinis, Peter D., Systems and methods for terrestrial reuse of cellular satellite frequency spectrum.
  75. King Janet L. ; Deininger Richard C. ; Grzemski Kenneth C. ; Hayden Thomas L. ; Sturza Mark A., Technique for sharing radio frequency spectrum in multiple satellite communication systems.
  76. Wolcott James L. ; Faris Alan E., Telecommunications satellite channelizer.
  77. Helm Jim E. ; Magee Steve ; Bishop ; Jr. James William, Terrestrial and satellite cellular network interoperability.
  78. Karabinis, Peter D., Wireless communications systems and methods using satellite-linked remote terminal interface subsystems.
  79. Wiedeman Robert A. (Los Altos CA), Wireless telephone/satellite roaming system.
  80. Mallinckrodt Albert J. (Santa Ana CA), position determination in an integrated cellular communications system.

이 특허를 인용한 특허 (32)

  1. Zheng, Dunmin; Karabinis, Peter D., Adaptive beam forming with multi-user detection and interference reduction in satellite communication systems and methods.
  2. Dankberg, Mark D.; Miller, Mark J.; Jaska, Kristi; Wilson, Robert, Adaptive use of satellite uplink bands.
  3. Churan, Gary G., Antenna beam forming systems, methods and devices using phase adjusted least squares beam forming.
  4. Churan, Gary G., Antenna beam forming systems/methods using unconstrained phase response.
  5. Chang, Donald C. D., Apparatus and method for remote beam forming for DBS satellites.
  6. Karabinis, Peter D., Apparatus and methods for power control in satellite communications systems with satellite-linked terrestrial stations.
  7. Karabinis, Peter D., Apparatus and methods for power control in satellite communications systems with satellite-linked terrestrial stations.
  8. Karabinis, Peter D., Broadband wireless communications systems and methods using multiple non-contiguous frequency bands/segments.
  9. Levin, Lon C.; Karabinis, Peter D., Communications systems and methods including emission detection.
  10. Karabinis, Peter D.; Zheng, Dunmin, Communications systems including adaptive antenna systems and methods for inter-system and intra-system interference reduction.
  11. Dutta, Santanu, Frequency division duplex (FDD) return link transmit diversity systems, methods and devices using forward link side information.
  12. Dankberg, Mark D.; Miller, Mark J.; Jaska, Kristi; Wilson, Robert, Frequency re-use for service and gateway beams.
  13. Dankberg, Mark D.; Miller, Mark J.; Jaska, Kristi; Wilson, Robert, Frequency re-use for service and gateway beams.
  14. Dankberg, Mark D.; Miller, Mark J.; Jaska, Kristi; Wilson, Robert, Frequency re-use for service and gateway beams.
  15. Karabinis, Peter D.; Singh, Rajendra, Integrated or autonomous system and method of satellite-terrestrial frequency reuse using signal attenuation and/or blockage, dynamic assignment of frequencies and/or hysteresis.
  16. Zheng, Dunmin, Iterative antenna beam forming systems/methods.
  17. Dankberg, Mark D.; Miller, Mark J.; Hart, Steven R.; Jaska, Kristi; Wilson, Robert, Placement of gateways away from service beams.
  18. Miller, Mark J., Placement of gateways near service beams.
  19. Levin, Lon C.; Karabinis, Peter D., Radioterminals and associated operating methods that transmit position information responsive to rate of change of position.
  20. Karabinis, Peter D., Radioterminals and operating methods that receive multiple measures of information from multiple sources.
  21. Jacks, Eric Claudis, Retaining traffic channel assignments for satellite terminals to provide lower latency communication services.
  22. Dankberg, Mark D.; Miller, Mark J.; Hart, Steven R.; Jaska, Kristi; Wilson, Robert, Satellite architecture.
  23. Karabinis, Peter D.; Dutta, Santanu, Satellite-band spectrum utilization for reduced or minimum interference.
  24. Zheng, Dunmin, Systems and methods for adaptive interference cancellation beamforming.
  25. Karabinis, Peter D., Systems and methods for inter-system sharing of satellite communications frequencies within a common footprint.
  26. Dutta, Santanu, Systems and methods for mobility management in overlaid mobile communications systems.
  27. Dutta, Santanu, Systems and methods for mobility management in overlaid mobile communications systems.
  28. Ansari, Arif; Bories, Jean-Michel; Cohen, Michel; Corbel, Erwan, Systems and methods for orthogonal frequency division multiple access (OFDMA) communications over satellite links.
  29. Karabinis, Peter D.; Churan, Gary G., Systems and methods for terrestrial reuse of cellular satellite frequency spectrum in a time-division duplex and/or frequency-division duplex mode.
  30. Karabinis, Peter D., Systems and methods for terrestrial reuse of cellular satellite frequency spectrum in a time-division duplex mode.
  31. Karabinis, Peter D., Systems and methods with different utilization of satellite frequency bands by a space-based network and an ancillary terrestrial network.
  32. Nguyen, Serge; Dutta, Santanu, Systems, methods and network components that provide different satellite spot beam return carrier groupings and reuse patterns.
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