$\require{mediawiki-texvc}$

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 and system for a channel selective repeater with capacity enhancement in a spread-spectrum wireless network 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H04B-007/26
출원번호 UP-0287225 (2005-11-28)
등록번호 US-7710913 (2010-06-03)
발명자 / 주소
  • Kilfoyle, Daniel B.
  • Slocumb, III, Travis H.
  • Carson, Steven
출원인 / 주소
  • Science Applications International Corporation
대리인 / 주소
    King & Spalding LLP
인용정보 피인용 횟수 : 4  인용 특허 : 92

초록

The present invention relates to a system and method for extending the coverage area and communication capacity of a spread-spectrum based wireless network through the use of intelligent repeaters. The system comprises a wireless communication network augmented with low cost channel selective repeat

대표청구항

The invention claimed is: 1. A method for selectively repeating RF signals communicated between a base station and a plurality of UEs in a wireless network, comprising: receiving an RE signal transmitted from the base station; identifying initial communication channels embedded in the RE signal use

이 특허에 인용된 특허 (92)

  1. Isoda,Hiroshi, AGC amplifier circuit for use in a digital satellite broadcast receiver apparatus.
  2. Matsuoka Hidehiro,JPX ; Shoki Hiroki,JPX ; Tsujimura Akihiro,JPX ; Murakami Yasushi,JPX, Adaptive antenna.
  3. Proctor ; Jr. James A. ; Gainey Kenneth M., Adaptive antenna for use in same frequency networks.
  4. Raleigh Gregory Gene ; Diggavi Suhas Nagraj ; Jones ; IV Vincent Knowles ; Paulraj Arogyaswami Joseph, Adaptive beam forming for transmitter operation in a wireless communication system.
  5. Marsan Mark J. ; Hess Garry C., Adaptive determination of outbound channel quality metrics.
  6. Denenberg Jeffrey N. (345 Putting Green Rd. Trumbull CT 06611) Sabett Randy V. (8908 Liberty Rd. Randallstown MD 21133), Analog noise cancellation system using digital optimizing of variable parameters.
  7. Sabatino, Anthony, Antenna for air-to-ground communication.
  8. Saunders Simon,GBX, Apparatus and method for adaptive beamforming in an antenna array.
  9. Youssefmir Michael ; Trott Mitchell D. ; Karuppiah Kamaraj ; Petrus Paul, Apparatus and method for beamforming in a changing-interference environment.
  10. Johnson Edward R. (1658 Swallow Dr. Sunnyvale CA) Leff Barry J. (2760 Belmont Canyon Rd. Belmont CA), Apparatus and method for expanding cellular system capacity.
  11. Hale Todd B. ; Wicks Michael C. ; Adve Raviraj S., Apparatus and method for two stage hybrid space-time adaptive processing in radar and communication systems.
  12. Kim, Eung-sun; Cho, Myeon-kyun; Kim, Ki-ho; Yim, Chong-dae; Kang, Kyu-min; Im, Gi-hong, Apparatus for receiving digital subscriber line signal having resilience to HAM radio interference and method therefor.
  13. Hoo John, Base station controlled handoff method and apparatus.
  14. Sarath Kumar ; Sanjiv Nanda ; Stanislav Vitebskiy, Burst-level resource allocation in cellular systems.
  15. Egusa Ryoichi,JPX ; Yahagi Masahiko,JPX, CDMA communication system capable of controlling transmission power in each base station without interference.
  16. Carney Ronald R. ; Poor Victor D., Cellular system plan using in band-translators to enable efficient deployment of high capacity base transceiver systems.
  17. Moberg Tommy,SEX ; Pravitz Anders,SEX, Channel selective repeater.
  18. Magnusson Sverker,SEX ; Khan Farooq,SEX ; Persson Magnus,SEX ; Beming Per,SEX, Code allocation in CDMA.
  19. Ozluturk Fatih ; Jacques Alexander ; Lomp Gary ; Kowalski John, Code division multiple access (CDMA) communication system.
  20. I Chih-Lin ; Kumar Sarath ; Nanda Sanjiv, Code division multiple access system providing load and interference based demand assignment service to users.
  21. Suzuki, Mitsuhiro; Kunihiro, Takushi; Yamaura, Tomoya; Sakoda, Kazuyuki, Communication apparatus, communication system, and method of the same.
  22. Van Bezooijen Adrianus,NLX, Communication system, a communication device and a frequency synthesizer.
  23. Sole Geoffrey Charles,GBX, Communications power control.
  24. Kerrebrock Jack L. ; Epstein Alan H., Counter-rotating compressors with control of boundary layers by fluid removal.
  25. Huang Howard C. ; Papadias Constantinos Basil ; Mailaender Laurence Eugene, Detectors for CDMA systems.
  26. Ogata Isao,JPX, Digital radio system including repeater equipment, end equipment and receiver.
  27. Min, Ki Tae, Digital television receiver.
  28. Raleigh Gregory G. ; Pollack Michael A., Distributed microcellular communications system.
  29. Georges John B. ; Cutrer David M. ; Lau Kam Y., Distribution of radio-frequency signals through low bandwidth infrastructures.
  30. Niki Yoshiro,JPX, Duplex RF repeater for personal communications system.
  31. Willars Per,SEX, Forward link transmission mode for CDMA cellular communications system using steerable and distributed antennas.
  32. Newman Edward M. (Nesconset NY) Lopez Alfred R. (Commack NY) Schay Gary A. (Stony Brook NY) Pedersen John F. (Northport NY), High gain antenna systems for cellular use.
  33. Upadhyay Triveni N. ; VanderVelde Wallace E. ; Falcone Kenneth A., Integrated adaptive spatial-temporal system for controlling narrowband and wideband sources of interferences in spread spectrum CDMA receivers.
  34. Bongfeldt, David, Intelligent gain control in an on-frequency repeater.
  35. Minkoff John, Interference rejection by means of null-space transformations.
  36. Uesugi Mitsuru,JPX, Interference signal cancellation system.
  37. Chambers Craig Brent ; Bergen Richard Sammis, Low power microcellular wireless drop interactive network.
  38. Wilson Christopher H. ; Wilson Alan L. ; Gilbert John M., Method and apparatus for a mobile repeater.
  39. Csapo John ; Chen Brian Cheng-Jean ; Hallman Kenneth Blake, Method and apparatus for a radio remote repeater in a digital cellular radio communication system.
  40. Light Jeffrey Ross ; Varvaro Charles, Method and apparatus for achieving antenna receive diversity with wireless repeaters.
  41. Labedz Gerald P., Method and apparatus for adjusting channel powers in a wireless communication system based on a predicted mobile location.
  42. Jay R. Walton ; Mark Wallace ; Jack Holtzman ; Franklin P. Antonio, Method and apparatus for controlling transmissions of a communications systems.
  43. Ramasastry Jayaram, Method and apparatus for diversity enhancement using pseudo-multipath signals.
  44. Parish David M. ; Chiodini Alain M. ; Barratt Craig H. ; Karuppiah Kamaraj, Method and apparatus for estimating parameters of a communication system using antenna arrays and spatial processing.
  45. Agee,Brian G.; Bromberg,Matthew C., Method and apparatus for optimization of wireless multipoint electromagnetic communication networks.
  46. Leung, Nikolai K. N., Method and apparatus for providing real-time packetized voice and data services over a wireless communication network.
  47. Wallerius John Walker ; Walters Andrew John ; Vastano John Andrew, Method and apparatus for wireless communication employing control for confidence metric bandwidth reduction.
  48. Frodigh Magnus,SEX ; Kronestad Fredric,SEX ; Gudmunson Mikael,SEX ; Almgren Magnus,SEX, Method and apparatus forcontrol of base stations in macro diversity radio systems.
  49. Kilfoyle,Daniel B.; Slocumb, III,Travis H.; Carson,Steven, Method and system for a remote downlink transmitter for increasing the capacity and downlink capability of a multiple access interference limited spread-spectrum wireless network.
  50. Kilfoyle,Daniel B., Method and system for a remote downlink transmitter for increasing the capacity of a multiple access interference limited spread-spectrum wireless network.
  51. Tamura,Motoshi; Miki,Mutsumaru; Okamoto,Akiko; Kusunose,Kenya; Uchikoshi,Akihiro; Igarashi,Daisuke; Yamagata,Katsuhiko; Sato,Takaaki; Hagiwara,Junichiro; Watanabe,Yasuyuki; Hamajima,Takuya; Hata,Masafumi; Ishikawa,Nobutaka; Yasuda,Yoshiyuki; Yunoki,Kazufumi; Uchiyama,Nobuhide, Method and system for mobile communications.
  52. Kamel, Raafat Edward; Meyers, Martin Howard; Weaver, Carl Francis; Wu, Xiao Cheng, Method for adjusting the transmit power level during soft handoff in wireless communication systems.
  53. Holma,Harri; Salonaho,Oscar, Method for controlling the transmission power.
  54. Krishnan Kumaran ; Philip Alfred Whiting, Method for partitioning mobile stations of a wireless network between an overlay and an underlay.
  55. Olofsson H.ang.kan Gunnar,SEX ; Thielecke Jorn,DEX, Method for selecting a combination of modulation and channel coding schemes in a digital communication system.
  56. Jeon Bong Shin,KRX, Method for selecting a control channel in a trunked radio system.
  57. Chennakeshu Sandeep ; Ramesh Rajaram ; Bottomley Gregory E. ; Dent Paul W., Methods and apparatus for canceling adjacent channel signals in digital communications systems.
  58. Mast Alan W. ; Shipley John W. ; Heckaman Douglas E. ; Whybrew Walter M., Multi title-configured phased array antenna architecture.
  59. Zhou Changming,JPX ; Shou Guoliang,JPX ; Urabe Kenzo,JPX ; Miyatani Tetsuhiko,JPX, Multi-user demodulator for CDMA spectrum spreading communication.
  60. Takashi Shoji JP, Multi-user interference cancellor with small sized circuits and little quantity of calculation.
  61. Forsythe, Keith W.; Bliss, Daniel W., Multichannel multiuser detection.
  62. Chavez David A. ; Sayers Ian L. ; Sage Gerald F., Multiple antenna cellular network.
  63. Yoshida Shousei,JPX ; Ushirokawa Akihisa,JPX, Multiuser receiving device for use in a CDMA system.
  64. Cook Dean Lawrence ; Andresen Michael J. ; Corman David Warren, Networked repeater.
  65. Fletcher Anthony G. (Corinth MS), Off-load-cellular system for off-loading cellular service from a main cellular system to increase cellular service capac.
  66. Foschini,Gerard J; Papadias,Constantinos B., Open-loop diversity technique for systems employing four transmitter antennas.
  67. Yamamoto, Katsuya; Watanabe, Nobuhiko, Pilot signal detection method and receiver.
  68. Amerga,Messay; Patrick,Christopher; Rick,Roland; Rowitch,Douglas N.; Younis,Saed, Position determination in a wireless communication system with detection and compensation for repeaters.
  69. Laakso Timo,FIX ; Hakkinen Hannu,FIX, Power control method in a cellular communication system, and a receiver.
  70. Scherzer Shimon B., Practical space-time radio method for CDMA communication capacity enhancement.
  71. Serizawa Mutsumu,JPX ; Nakajima Nobuyasu,JPX ; Ogura Koji,JPX ; Namekata Minoru,JPX ; Wakutsu Takashi,JPX ; Mukai Manabu,JPX, Radio communication system including SDL having transmission rate of relatively high speed.
  72. Oh Chang-Heon,KRX ; Kim Sung-Gyu,KRX, Radio signal repeating apparatus of a code division multiple access communication system.
  73. Bi Qi ; Myer Robert Evan, Range repeater for a transmission system.
  74. Adachi Fumiyuki (Yokohama JPX) Sawahashi Mamoru (Yokosuka JPX) Higashi Akihiro (Yokosuka JPX) Ohno Koji (Yokohama JPX) Dohi Tomohiro (Yokohama JPX), Receiver and repeater for spread spectrum communications.
  75. Harrison Robert Mark, Receiver in a wireless communications system for receiving signals having combined orthogonal transmit diversity and adaptive array techniques.
  76. Matsuura, Syuuji, Reduced noise digital tuner.
  77. White Emery A. (Roanoke VA), Repeating station for use in digital data communications link.
  78. Kyeongho Lee KR; Deog-Kyoon Jeong KR; Joonbae Park KR; Wonchan Kim KR, Single chip CMOS transmitter/receiver and method of using same.
  79. Ottersten Bjorn E.,SEX ; Barratt Craig H. ; Parish David M. ; Roy ; III Richard H., Spectrally efficient high capacity wireless communication systems with spatio-temporal processing.
  80. Schilling Donald L. ; Kowalski John ; Moshavi Shimon, Spread spectrum CDMA subtractive interference canceler system.
  81. Schilling Donald L. ; Kowalski John ; Moshavi Shimon, Spread spectrum CDMA subtractive interference canceler system.
  82. 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.
  83. Sallaway, Peter J.; Manickam, Thulasinath G.; Raghavan, Sreen, System and method for adapting an analog echo canceller in a transceiver front end.
  84. Bartelme, Joseph P., System and method for communicating additional data in a data communications system.
  85. Leslie Samuel A. (Forest VA) Gordon Robert T. (Lynchburg VA), System and method for extending cell site coverage.
  86. Weaver ; Jr. Lindsay A. ; Antonio Franklin P. ; Dean Richard F., Time division duplex repeater for use in a CDMA system.
  87. Thomas R. Schmutz ; Michael A. Komara ; John R. Noll, Translating repeater system with improved backhaul efficiency.
  88. Ariyavisitakul Sirikiat ; Woodward Sheryl Leigh, Transmission of CDMA signals over an analog optical link.
  89. Liang Jen-Wei ; Paulraj Arogyaswami, Two-stage CCI/ISI reduction with space-time processing in TDMA cellular networks.
  90. Dong, Sung-Soo; Kang, Se-Jin, Variable channel device for wideband CDMA system.
  91. Proctor, Jr., James A., Variable rate coding for forward link.
  92. Carney Ronald R. ; Schmutz Thomas R. ; Williams Terry L., Wideband wireless base station making use of time division multiple access bus having selectable number of time slots an.

이 특허를 인용한 특허 (4)

  1. Palanki, Ravi; Gore, Dhananjay Ashok; Wei, Yongbin, Method and apparatus of obtaining timing in a repeater.
  2. Bims, Harry, Reconfiguration of a communication system.
  3. Kim, Young-Il, Terminal for repeating through MBS communication network and method of repeating using the same.
  4. Marupaduga, Sreekar; Prock, John W., Wireless communication system to configure resource block usage in a wireless repeater.
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