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Dynamic frame length communication system 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H04J-003/16
출원번호 US-0125469 (1987-11-27)
우선권정보 GB-0028497 (1986-11-28)
발명자 / 주소
  • West Barry G. (Chelmsford GBX) Sosin Boleslaw M. (Chelmsford GBX) Tolfree Roger K. (Witham GBX)
출원인 / 주소
  • The Marconi Company Limited of the Grove (Stanmore GBX 03)
인용정보 피인용 횟수 : 89  인용 특허 : 5

초록

A dynamic frame length slotted ALOHA communication system has a central station which monitors the traffic congestion and determines the optimum frame length. This is transmitted to the sub-stations in the form of a service information message when there is to be a change in the frame length but not

대표청구항

A communication system comprising a number of substations each designed to transmit communication messages in a sequential series of frames, wherein each frame contains a variable number of time slots and each communication message is transmitted in a selected time slot, a central station comprising

이 특허에 인용된 특허 (5)

  1. Barzilai Tsipora P. (Millwood NY) Bird Raymond F. (Durham NC) Gray James P. (Chapel Hill NC) Kadaba Bharath K. (Peekskill NY) Kalmbach ; Jr. James B. (Raleigh NC) Knauth Jeffrey G. (Raleigh NC) Pozef, Adaptive session-level pacing.
  2. Schoute Frederik C. (Hilversum NLX), Method for the transmission of data packets.
  3. Ball Diana M. (Farnham GB2) Mabey Peter J. (Cambridge GB2) Stein Paul J. (Crawley GB2), Multiple access communications system.
  4. Davis Christopher K. (Cambridge GB2) Stein Paul J. (Crawley GB2) Ball Diana M. (Horley GB2), Multiple-access communications system.
  5. Lahti, Mauritz J. B., Telecommunication system for transmitting data information by means of a digital exchange.

이 특허를 인용한 특허 (89)

  1. Bayley Gwain, Adaptive reacquisition time in a slotted paging environment.
  2. Farley, Kevin L.; Proctor, James A., Alternate channel for carrying selected message types.
  3. Farley, Kevin L.; Proctor, Jr., James A., Alternate channel for carrying selected message types.
  4. Proctor, Jr., James A., Antenna control system and method.
  5. Proctor, Jr., James A., Antenna control system and method.
  6. Proctor, Jr., James A., Antenna control system and method.
  7. Proctor, Jr., James A., Antenna control system and method.
  8. Proctor, Jr., James A., Antenna control system and method.
  9. Johnson, Kevin P., Automatic reverse channel assignment in a two-way TDM communication system.
  10. Johnson, Kevin P., Automatic reverse channel assignment in a two-way TDM communication system.
  11. Johnson, Kevin P., Automatic reverse channel assignment in a two-way TDM communication system.
  12. Johnson, Kevin P., Automatic reverse channel assignment in a two-way TDM communication system.
  13. Johnson, Kevin P., Automatic uplink channel assignment.
  14. Johnson, Kevin P., Automatic uplink channel assignment.
  15. Gorsuch, Thomas E., Dual mode unit for short range, high rate and long range, lower rate data communications.
  16. Gorsuch, Thomas E., Dual mode unit for short range, high rate and long range, lower rate data communications.
  17. Foore, Lawrence R.; Proctor, Jr., James A.; Gorsuch, Thomas E.; Amalfitano, Carlo, Dynamic bandwidth allocation for multiple access communications using buffer urgency factor.
  18. Proctor, Jr., James A.; Foore, Lawrence R.; Gorsuch, Thomas E.; Amalfitano, Carlo, Dynamic bandwidth allocation for multiple access communications using buffer urgency factor.
  19. Gorsuch, Thomas E.; Amalfitiano, Carlo, Dynamic bandwidth allocation to transmit a wireless protocol across a code division multiple access (CDMA) radio link.
  20. Gorsuch, Thomas E.; Amalfitano, Carlo, Dynamic bandwidth allocation to transmit a wireless protocol across a code division multiple access (CDMA) radio link.
  21. Gorsuch, Thomas E.; Amalfitano, Carlo, Dynamic bandwidth allocation to transmit a wireless protocol across a code division multiple access (CDMA) radio link.
  22. Gorsuch, Thomas E.; Amalfitano, Carlo, Dynamic bandwidth allocation to transmit a wireless protocol across a code division multiple access (CDMA) radio link.
  23. Gorsuch,Thomas E.; Amalfitano,Carlo, Dynamic bandwidth allocation to transmit a wireless protocol across a code division multiple access (CDMA) radio link.
  24. Amalfitano Carlo, Dynamic frame size adjustment and selective reject on a multi-link channel to improve effective throughput and bit error rate.
  25. Benveniste, Mathilde, Emergency call handling in contention-based wireless local-area networks.
  26. Proctor, Jr., James A., Fast acquisition of traffic channels for a highly variable data rate reverse link of a CDMA wireless communication system.
  27. Proctor, Jr., James A., Fast acquisition of traffic channels for a highly variable data rate reverse link of a CDMA wireless communication system.
  28. Proctor, Jr.,James A., Fast acquisition of traffic channels for a highly variable data rate reverse link of a CDMA wireless communication system.
  29. Proctor, Jr., James A., Forward error correction scheme for high rate data exchange in a wireless system.
  30. Proctor, Jr., James A., Forward error correction scheme for high rate data exchange in a wireless system.
  31. Proctor, Jr., James A., Forward error correction scheme for high rate data exchange in a wireless system.
  32. Proctor, Jr.,James A., Forward error correction scheme for high rate data exchange in a wireless system.
  33. Shaw, Venson M.; He, Jin, Intelligent network diagnosis and evaluation via operations, administration, and maintenance (OAM) transport.
  34. Shaw, Venson M.; He, Jin, Intelligent network diagnosis and evaluation via operations, administration, and maintenance (OAM) transport.
  35. Nelson, Jr.,G. Rodney; Hoffmann,John E.; Rouphael,Antoine J.; Proctor, Jr.,James A., Maintenance link using active/standby request channels.
  36. Ferguson, Charles T.; Gorsuch, Thomas, Maintenance of channel usage in a wireless communication system.
  37. Ferguson, Charles T.; Gorsuch, Thomas, Maintenance of channel usage in a wireless communication system.
  38. Ferguson, Charles T.; Gorsuch, Thomas, Maintenance of channel usage in a wireless communication system.
  39. Ferguson, Charles T.; Gorsuch, Thomas, Maintenance of channel usage in a wireless communication system.
  40. Hoffman, John E.; Nelson, Jr., George Rodney; Riley, Daniel I.; Rouphael, Antoine J.; Proctor, Jr., James A., Maximizing data rate by adjusting codes and code rates.
  41. Hoffmann, John E.; Nelson, George Rodney; Riley, Daniel I.; Rouphael, Antoine J.; Proctor, James A., Maximizing data rate by adjusting codes and code rates.
  42. Hoffmann,John E.; Nelson, Jr.,George Rodney; Riley,Daniel I.; Rouphael,Antoine J.; Proctor, Jr.,James A., Maximizing data rate by adjusting codes and code rates.
  43. Hoffman, John E.; Nelson, Jr., George Rodney; Riley, Daniel I.; Rouphael, Antoine J.; Proctor, Jr., James A., Maximizing data rate by adjusting codes and code rates in CDMA system.
  44. Hoffmann,John E.; Nelson, Jr.,George Rodney; Riley,Daniel I.; Rouphael,Antoine J.; Proctor, Jr.,James A., Maximizing data rate by adjusting codes and code rates in CDMA system.
  45. Zijderhand Frans (Eindhoven NLX), Method and arrangement for channel allocation for data transmission between a main station and a plurality of substation.
  46. Jimmy W. Cadd ; Juan Carlos Palacios, Method for accessing a communication medium.
  47. Proctor, Jr., James A., Methods, apparatuses and systems for selective transmission of traffic data using orthogonal sequences.
  48. Nelson, Jr., G. Rodney; Hoffmann, John E.; Rouphael, Antoine J.; Proctor, Jr., James A., Minimal maintenance link to support sychronization.
  49. Nelson, Jr., G. Rodney; Hoffmann, John E.; Rouphael, Antoine J.; Proctor, James A., Minimal maintenance link to support synchronization.
  50. Nelson, Jr., G. Rodney; Hoffmann, John E.; Rouphael, Antoine J.; Proctor, James A., Minimal maintenance link to support synchronization.
  51. Nelson, Jr., G. Rodney; Hoffmann, John E.; Rouphael, Antoine J.; Proctor, Jr., James A., Minimal maintenance link to support synchronization.
  52. Proctor, Jr., James A., Multi-detection of heartbeat to reduce error probability.
  53. Proctor, Jr., James A., Multi-detection of heartbeat to reduce error probability.
  54. Proctor, Jr.,James A., Multi-detection of heartbeat to reduce error probability.
  55. Gorsuch, Thomas E.; Amalfitano, Carlo, Protocol conversion and bandwidth reduction technique providing multiple NB+D ISDN basic rate interface links over a wireless code division multiple access communication system.
  56. Proctor, Jr., James A., Signaling for wireless communications.
  57. Proctor, Jr., James A., Signaling for wireless communications.
  58. Proctor, Jr., James A., Signaling for wireless communications.
  59. Proctor, Jr.,James A., Staggering forward and reverse wireless channel allocation timing.
  60. Hoffman, John E.; Nelson, Jr., George Rodney; Riley, Daniel I.; Rouphael, Antoine J.; Proctor, Jr., James A., Subscriber unit and method for variable forward error correction (FEC) decoding.
  61. Gorsuch, Thomas E., Subscriber unit for managing dual wireless communication links.
  62. Gorsuch, Thomas E., Subscriber unit for managing dual wireless communication links.
  63. Proctor, Jr., James A.; Ferguson, Dennis D., Subscriber-controlled registration technique in a CDMA system.
  64. Proctor, Jr.,James A., System and method for controlling signal strength over a reverse link of a CDMA wireless communication system.
  65. Proctor, Jr., James A., System and method for maintaining timing of synchronization messages over a reverse link of a CDMA wireless communication system.
  66. Proctor, Jr., James A., System and method for maintaining wireless channels over a reverse link of a CDMA wireless communication system.
  67. Proctor, Jr., James A., System and method for maintaining wireless channels over a reverse link of a CDMA wireless communication system.
  68. Proctor, Jr., James A., System and method for maintaining wireless channels over a reverse link of a CDMA wireless communication system.
  69. Proctor, Jr., James A., System and method for maintaining wireless channels over a reverse link of a CDMA wireless communication system.
  70. Heidemann Rolf,DEX ; Krimmel Heinz,DEX ; Otterbach Jurgen,DEX, Time-division-multiplexing method and apparatus.
  71. Proctor, Jr., James A., Transmittal of heartbeat signal at a lower level than heartbeat request.
  72. Proctor, Jr.,James A., Transmittal of heartbeat signal at a lower level than heartbeat request.
  73. Proctor, Jr., James A., Transmitting acknowledgement messages using a staggered uplink time slot.
  74. Proctor, Jr., James A., Transmitting acknowledgement messages using a staggered uplink time slot.
  75. Proctor, Jr., James A., Use of correlation combination to achieve channel detection.
  76. Proctor, Jr., James A., Use of correlation combination to achieve channel detection.
  77. Proctor, Jr., James A., Variable rate coding for a forward and reverse link.
  78. Ferguson, Dennis D.; Proctor, James A., Variable rate coding for enabling high performance communication.
  79. Ferguson, Dennis D.; Proctor, Jr., James A., Variable rate coding for enabling high performance communication.
  80. Ferguson, Dennis D.; Proctor, Jr., James A., Variable rate coding for enabling high performance communication.
  81. Ferguson, Dennis D.; Proctor, Jr., James A., Variable rate coding for enabling high performance communication.
  82. Proctor, Jr., James A., Variable rate coding for forward and reverse link.
  83. Proctor, Jr., James A., Variable rate coding for forward link.
  84. Proctor, Jr.,James A., Variable rate coding for forward link.
  85. Ferguson, Dennis D.; Proctor, Jr., James A., Variable rate forward error correction for enabling high performance communication.
  86. Farley, Kevin L.; Proctor, Jr., James A., Wireless channel allocation in a base station processor.
  87. Farley, Kevin L.; Proctor, Jr., James A., Wireless channel allocation in a base station processor.
  88. Farley, Kevin L.; Proctor, Jr., James A., Wireless channel allocation in a base station processor.
  89. Haugli, Hans Christian; Seed, William Robert, Wireless packet data distributed communications system.
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