$\require{mediawiki-texvc}$

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.

Scheme for managing overlapping wireless computer networks 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G01R-031/08
출원번호 US-0614395 (2000-07-12)
발명자 / 주소
  • Gubbi, Rajugopal R.
  • Ghori, Amar
  • Parks, Gregory H.
출원인 / 주소
  • ShareWave, Inc.
대리인 / 주소
    Murphy James J.
인용정보 피인용 횟수 : 93  인용 특허 : 5

초록

A scheme for sharing a channel during a contention free period of communications between two or more basic service sets (BSSs) including network components in an overlapping region of a wireless computer network. These network components in the overlapping region may be configured to communicate in

대표청구항

1. A method comprising sharing a channel during a contention free period of communication between two or more basic service sets including network components in an overlapping region of a wireless computer network wherein:a first basic service set includes a first point coordinator;a second basic se

이 특허에 인용된 특허 (5)

  1. Baker Murray C. (Toronto CAX) Cheung Roger Y. M. (Scarborough CAX) Perkins Charles E. (Ossining CAX) Reissner Peter E. (Belleville CAX), Access point for mobile wireless network node.
  2. Watanabe Fujio,FIX ; Buot Theodore,FIX ; Kuntze Roland,FIX ; Jokela Jari,FIX, Apparatus, and associated method for selecting a size of a contention window for a packet of data system.
  3. Vesuna Sarosh N., Method and apparatus for determining alternative second stationary access point in response to detecting impeded wireless connection.
  4. Ghori Amar ; White John, Method and system for coupling a personal computer with an appliance unit via a wireless communication link to provide an output display presentation.
  5. Chuah Mooi Choo, Method for admitting new connections based on usage priorities in a multiple access system for communications networks.

이 특허를 인용한 특허 (93)

  1. Ho, Jin-Meng; Lin, Wei, Admission control for QoS-Driven Wireless LANs.
  2. Ho, Jin-Meng; Lin, Wei, Admission control for QoS-driven wireless LANs.
  3. Ho, Jin-Meng; Lin, Wei, Admission control for QoS-driven wireless LANs.
  4. Ho, Jin-Meng; Lin, Wei, Admission control for QoS-driven wireless LANs.
  5. Ho, Jin-Meng; Lin, Wei, Admission control for QoS-driven wireless LANs.
  6. Ho,Jin Meng; Lin,Wei, Admission control for QoS-driven wireless LANs.
  7. Ho, Jin Meng; Lin, Wei, Centralized contention and reservation request for QoS-driven wireless LANs.
  8. Ho, Jin-Meng; Lin, Wei, Centralized contention and reservation request for QoS-driven wireless LANs.
  9. Ho,Jin Meng; Lin,Wei, Centralized contention and reservation request for QoS-driven wireless LANs.
  10. Orlik, Philip; Molisch, Andreas, Coordinating communications in a heterogeneous communications network using different signal formats.
  11. Kwon, Chang yeul; Yang, Chil youl; Rosdahl, Jon, Data transmission method in wireless LAN, access point device and station device.
  12. Ho, Jin-Meng, Enhanced channel access mechanisms for QoS-driven wireless LANs.
  13. Ho, Jin-Meng, Enhanced channel access mechanisms for QoS-driven wireless LANs.
  14. Ho,Jin Meng, Enhanced channel access mechanisms for QoS-driven wireless lans.
  15. Lin,Wei; Sherman,Matthew J., Enhanced channel access mechanisms for a HPNA network.
  16. Lin, Wei; Sherman, Matthew J., Enhanced channel access mechanisms for an HPNA network.
  17. Lin, Wei; Sherman, Matthew J., Enhanced channel access mechanisms for an HPNA network.
  18. Lin, Wei; Sherman, Matthew J., Enhanced channel access mechanisms for an HPNA network.
  19. Lin, Wei; Sherman, Matthew J., Enhanced channel access mechanisms for an HPNA network.
  20. Lin, Wei; Sherman, Matthew J., Enhanced channel access mechanisms for an HPNA network.
  21. Lin,Wei; Sherman,Matthew J., Enhanced channel access mechanisms for an HPNA network.
  22. Lin,Wei; Sherman,Matthew J., Enhanced channel access mechanisms for an HPNA network.
  23. Benveniste, Mathilde, Fixed deterministic post-backoff for cyclic prioritized multiple access (CPMA) contention-free sessions.
  24. Benveniste, Mathilde, Fixed deterministic post-backoff for cyclic prioritized multiple access (CPMA) contention-free sessions.
  25. Cromer, Daryl; Locker, Howard Jeffrey; Octaviano, II, Raymond Gary; Jakes, Philip John, Handling the use of multiple 802.11n channels in a location where there are a small number of available channels.
  26. Benveniste, Mathilde, Hybrid coordination function (HCF) access through tiered contention and overlapped wireless cell mitigation.
  27. Benveniste, Mathilde, Hybrid coordination function (HCF) access through tiered contention and overlapped wireless cell mitigation.
  28. Benveniste, Mathilde, Hybrid coordination function (HCF) access through tiered contention and overlapped wireless cell mitigation.
  29. Benveniste, Mathilde, Hybrid coordination function (HCF) access through tiered contention and overlapped wireless cell mitigation.
  30. Benveniste, Mathilde, Hybrid coordination function (HCF) access through tiered contention and overlapped wireless cell mitigation.
  31. Benveniste, Mathilde, Hybrid coordination function (HCF) access through tiered contention and overlapped wireless cell mitigation.
  32. Benveniste, Mathilde, Hybrid coordination function (HCF) access through tiered contention and overlapped wireless cell mitigation.
  33. Benveniste,Mathilde, Hybrid coordination function (HCF) access through tiered contention and overlapped wireless cell mitigation.
  34. Benveniste, Mathilde, Hybrid coordination function (HCF) access through tired contention and overlapped wireless cell mitigation.
  35. Lin, Wei; Ho, Jin-Meng, In-band QoS signaling reference model for QoS-driven wireless LANs.
  36. Lin,Wei; Ho,Jin Meng, In-band QoS signaling reference model for QoS-driven wireless LANs.
  37. Ho, Jin-Meng; Lin, Wei, In-band QoS signaling reference model for QoS-driven wireless LANs connected to one or more networks.
  38. Sherman, Matthew J., Interference suppression methods for 802.11.
  39. Sherman,Matthew J., Interference suppression methods for 802.11.
  40. Young, Albert; Chen, BoFu; O'Hara, Bob; Nayek, Seema; Schardt, Tim, Method and system for improving throughput over wireless local area networks with a dynamic contention window.
  41. Meckelburg,Hans J��rgen; Horn,Michael, Method for operating an ad-hoc network for the wireless data transmissions of synchronous and asynchronous messages.
  42. Ayyagari, Deepak; Chan, Wai-Chung, Method for transitioning between coordination modes for interfering neighbor networks.
  43. Hiertz, Guido; Otal, Begonya; Habetha, Jörg; Dalmases, Francesc; May, Klaus Peter, Method of distributive reservation of a medium in a radio communications network.
  44. Lee, Ju-han; Lee, Joon-hee; Choi, Jun-hae; Sung, Hyun-ah; Kim, In-hwan; Chang, Seung-gi, Method of joining a cell using a proxy coordinator, and a network therefor.
  45. Del Prado Pavon, Javier; Challapali, Kiran; Zhong, Zhun, Method to achieve coexistence between centralized TDMA MAC and a second MAC in wireless communication systems.
  46. Ayyagari, Deepak; Chan, Wai-Chung, Methods and systems for frequency and time division access.
  47. Ayyagari, Deepak; Chan, Wai-Chung, Methods and systems for frequency and time division access.
  48. Ayyagari, Deepak; Chan, Wai-Chung, Methods and systems for network coordination.
  49. Ho,Jin Meng; Lin,Wei, Multipoll for QoS-Driven wireless LANs.
  50. Ho, Jin-Meng; Lin, Wei, Multipoll for QoS-driven wireless LANs.
  51. Ho, Jin-Meng; Lin, Wei, Multipoll for QoS-driven wireless LANs.
  52. Ophir,Lior; Brecher,Liran, Network manager for a hybrid network environment.
  53. Kwon, Hyoung Jin; Cheong, Min Ho; Lee, Jae Seung; Lee, Sok Kyu, Operating method of access point (AP) and station for coexistence of basic service sets having different bandwidths.
  54. Benveniste, Mathilde, Preemptive packet for maintaining contiguity in cyclic prioritized multiple access (CPMA) contention-free sessions.
  55. Benveniste, Mathilde, Preemptive packet for maintaining contiguity in cyclic prioritized multiple access (CPMA) contention-free sessions.
  56. Benveniste, Mathilde, Preemptive packet for maintaining contiguity in cyclic prioritized multiple access (CPMA) contention-free sessions.
  57. Ho,Jin Meng; Lin,Wei, RSVP/SBM based down-stream session setup, modification, and teardown for QOS-driven wireless lans.
  58. Ho,Jin Meng; Lin,Wei, RSVP/SBM based up-stream session setup, modification, and teardown for QOS-driven wireless LANs.
  59. Ho, Jin Meng; Lin, Wei, RSVP/SBM based up-stream session setup, modification, and teardown for QoS-driven wireless LANs.
  60. Ho, Jin-Meng; Lin, Wei, RSVP/SBM based up-stream session setup, modification, and teardown for QoS-driven wireless LANs.
  61. Ho, Jin-Meng; Lin, Wei, RSVP/SBM based up-stream session setup, modification, and teardown for QoS-driven wireless LANs.
  62. Lin, Wei, Service interface for QOS-driven HPNA networks.
  63. Lin, Wei, Service interface for QoS-driven HPNA networks.
  64. Lin, Wei, Service interface for QoS-driven HPNA networks.
  65. Lin, Wei, Service interface for QoS-driven HPNA networks.
  66. Lin, Wei, Service interface for QoS-driven HPNA networks.
  67. Lin,Wei, Service interface for QoS-driven HPNA networks.
  68. Lin,Wei, Service interface for QoS-driven HPNA networks.
  69. Zhu, Weijun; Duncan, Phillip James; Rachid, Mansour; Pereira, Gaelen Stanislaus; Jiang, Yi, Single transceiver-DSA via MAC-underlay sensing and signaling.
  70. Benveniste, Mathilde, Staggered startup for cyclic prioritized multiple access (CPMA) contention-free sessions.
  71. Amis, Alan D.; Miller, Frank W., System and method for distributed channelized group formation in a mobile wireless communication network.
  72. Shao, Huai-Rong; Ngo, Chiu, System and method for wireless communication network using beamforming and having a multi-cast capacity.
  73. Park, Daniel J.; Ayyagari, Deepak; Peponides, George M.; Petranovich, James E., Systems and methods for dynamic network channel modification.
  74. Park, Daniel J.; Ayyagari, Deepak; Peponides, George M.; Petranovich, James E., Systems and methods for network channel allocation.
  75. Park, Daniel J.; Ayyagari, Deepak; Peponides, George M.; Petranovich, James E., Systems and methods for network channel characteristic measurement and network management.
  76. Narain, Sanjai; Gordon, Samuel, Systems and methods of in-band network configuration.
  77. Benveniste, Mathilde, Tiered contention multiple access (TCMA): a method for priority-based shared channel access.
  78. Benveniste, Mathilde, Tiered contention multiple access (TCMA): a method for priority-based shared channel access.
  79. Ho, Jin-Meng; Lin, Wei, Virtual streams for QoS-driven wireless LANs.
  80. Ho,Jin Meng; Lin,Wei, Virtual streams for QoS-driven wireless LANs.
  81. Ho, Jin-Meng, Voice data integrated multiaccess by self-reservation and contention algorithm.
  82. Ho, Jin-Meng, Voice data integrated multiaccess by self-reservation and contention algorithm.
  83. Ho, Jin-Meng, Voice data integrated multiaccess by self-reservation and contention algorithm.
  84. Ho,Jin Meng, Voice data integrated multiaccess by self-reservation and contention algorithm.
  85. Ho, Jin-Meng, Voice-data integrated multiaccess by self-reservation and stabilized aloha contention.
  86. Ho, Jin-Meng, Voice-data integrated multiaccess by self-reservation and stabilized aloha contention.
  87. Ho, Jin-Meng, Voice-data integrated multiaccess by self-reservation and stabilized aloha contention.
  88. Benveniste, Mathilde, Wireless LANs and neighborhood capture.
  89. Benveniste, Mathilde, Wireless LANs and neighborhood capture.
  90. Noguchi,Shigetaka; Kosaka,Minoru; Machino,Katsuyuki, Wireless communication system.
  91. Benveniste, Mathilde, ‘Shield’: protecting high priority channel access attempts in overlapped wireless cells.
  92. Benveniste, Mathilde, ‘Shield’: protecting high priority channel access attempts in overlapped wireless cells.
  93. Benveniste, Mathilde, “Shield”: protecting high priority channel access attempts in overlapped wireless cells.
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