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High-speed data transmission in a digital mobile communication system 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H04J-003/16
출원번호 US-0676024 (1996-07-05)
우선권정보 FI-0004488 (1994-09-27)
발명자 / 주소
  • Hamalainen Jari,FIX
  • Vainikka Jari,FIX
  • Honkasalo Zhi-Chun
  • Jokinen Harri,FIX
  • Posti Harri,FIX
  • Honkasalo Harri
  • Lin David
출원인 / 주소
  • Nokia Telecommunications Oy, FIX
대리인 / 주소
    Pillsbury Madison & Sutro
인용정보 피인용 횟수 : 86  인용 특허 : 7

초록

For data transmission in a digital mobile communication system, in a mobile communication system employing a so-called multi-channel access technique, one or more traffic channels may be allocated to a mobile station for data transfer, in accordance with the data transfer rate required by the applic

대표청구항

[ What is claimed is:] [1.] A method for data transmission in a digital mobile communication system having allocatable resources including a plurality of traffic channels, in which one or more traffic channels can be allocated to a mobile station for data transmission in accordance with requirements

이 특허에 인용된 특허 (7)

  1. Kakuma Satoshi (Kawasaki JPX) Takahashi Atsuhisa (Kawasaki JPX) Uchida Yoshihiro (Kawasaki JPX), Call control system in ATM switch.
  2. Dent Paul W. (Stehags SEX), Cellular/satellite communications system with improved frequency re-use.
  3. Pudney Christopher D. (Smallfield GB2) Owen Frank C. G. (Petts Wood GB2), Communications system for data transmission over a time division duplex frequency channel.
  4. Grover Wayne D. (Edmonton CAX) Fong Tommy (Edmonton CAX) Dubuc Joe P. (Sherwood Park CAX) Krzymien Witold A. (Edmonton CAX) Fraser George D. (Sherwood Park CAX), Method and apparatus for maximizing the transmission capacity of a multi-channel bidirectional communications link.
  5. Rydbeck Nils R. C. (Lund SEX), Method and arrangement for dynamically allocating time slots to connections in a digital mobile radio system.
  6. Ahmadi Hamid (Somers NY) Bar-Noy Amotz (Bronx NY) Kessler Ilan (Bronx NY) Krishna Arvind (Briarcliff Manor NY), Multiaccess scheme for mobile integrated local area networks.
  7. Huang Zheng F. (Fort Lauderdale FL), Stochastic time division multiplexing.

이 특허를 인용한 특허 (86)

  1. Tiedemann, Jr., Edward G.; Wei, Yongbin; Gaal, Peter; Ho, Sai Yiu Duncan, Acknowledging broadcast transmissions.
  2. Tiedemann, Jr., Edward G.; Wei, Yongbin; Gaal, Peter; Ho, Sai Yiu Duncan, Acknowledging broadcast transmissions.
  3. Lomp, Gary R., Adaptive vector correlator for spread-spectrum communications.
  4. Gary R. Lomp, Adaptive vector correlator using weighting signals for spread-spectrum communications.
  5. Chen,Lan; Kayama,Hidetoshi; Umeda,Narumi, Admission control method and device in mobile communication system.
  6. Cai,Jianyong, Apparatus and method for enhancing channel utilization ratio in a CDMA.
  7. Kotzin Michael D. ; Rohani Kamyar ; Rozanski ; Jr. Walter J., Apparatus and method for transmitting signals in a communication system.
  8. Ozluturk, Faith M.; Lomp, Gary R.; Kowalski, John, Apparatus for adaptive reverse power control for spread-spectrum communications.
  9. Ozluturk,Fatih M.; Lomp,Gary R.; Kowalski,John, Apparatus for initial power control for spread-spectrum communications.
  10. Eppstein, Christopher M.; Aziz, Ashar; Markson, Thomas; Patterson, Martin, Approach for allocating resources to an apparatus based on alternative resource requirements.
  11. Lomp, Gary R.; Ozluturk, Faith M.; Kowalski, John, Automatic power control system for a code division multiple access (CDMA) communications system.
  12. Lomp,Gary; Ozluturk,Fatih; Kowalski,John, Automatic power control system for a code division multiple access (CDMA) communications system.
  13. Macridis,Philip; Harper,John Anthony, Bandwidth allocation method and apparatus.
  14. Luddy, Michael J., Base station for supporting communication rate modifications.
  15. Ozluturk, Fatih M., Base station which selectively utilizes B and D channels to support a plurality of communications.
  16. Luddy, Michael J., CDMA communication system which selectively suppresses data transmissions during establishment of a communication channel.
  17. Naguib, Ayman F., CDMA wireless system.
  18. Naguib, Ayman F., CDMA wireless systems.
  19. Naguib,Ayman F., CDMA wireless systems.
  20. Ozluturk, Fatih M.; Lomp, Gary R., Centroid tracking for spread-spectrum communications.
  21. Ozluturk, Fatih M.; Jacques, Alexander M.; Lomp, Gary R.; Kowalski, John, Code division multiple access (CDMA) communication system.
  22. Kazuyuki Sakoda JP; Mitsuhiro Suzuki JP, Communication method, base station and terminal apparatus.
  23. Hayashi, Sadafuku, Communication system, method thereof, switching center thereof and base station control station thereof.
  24. Walden,Michael K., Communication systems and methods for transmitting data in parallel over multiple channels.
  25. Uchida,Yoshinori; Suzuki,Kuniyuki, Data rate change notification for a communication system.
  26. Hur, Kyeong; Kim, Yong suk, Data slot allocation method in distributed wireless personal area networks.
  27. Hamalainen, Jari; Vainikka, Jari; Honkasalo, Zhi-Chun; Jokinen, Harri; Posti, Harri, Data transmission method in a TDMA mobile communication system.
  28. Kim,Yong suk; Cho,Jun haeng, Device in distributed wireless personal area network and data slot allocation method.
  29. Wang, He; Xu, Xin; Fan, Xingjie; Gui, Luoning, Effective dynamic management scheme of HS-DSCH channel codes.
  30. Mack, Paul W. E.; Beard, Paul F., Encoding Viterbi error states into single chip sequences.
  31. Mack,Robert W. E.; Beard,Paul F., Encoding viterbi error states into single chip sequences.
  32. Ozluturk,Fatih M.; Lomp,Gary R.; Kowalski,John, Initial power control for spread-spectrum communications.
  33. Barany, Peter A.; Bontu, Chandra S., Interleaving data over frames communicated in a wireless channel.
  34. Barany, Peter A.; Bontu, Chandra S., Interleaving data over frames communicated in a wireless channel.
  35. Gandham, Shashidhar R.; Chang, Shih-Chun, Keep alive timeslots in a heterogeneous MAC protocol to track handsets in a wireless network.
  36. Kalliokulju, Juha; Oksanen, Lauri; Turunen, Matti, Mechanism to benefit from min and max bitrates.
  37. Lomp,Gary R., Median weighted tracking for spread-spectrum communications.
  38. Ozluturk, Fatih; Lomp, Gary R.; Kowalski, John, Method and apparatus for adaptive power control for spread-spectrum communications.
  39. Macridis,Philip; Harper,John Anthony, Method and apparatus for allocating time slots within a frame of a TDMA frequency channel.
  40. Frederiksen, Frank; Kolding, Troels Emil, Method and apparatus for providing automatic control channel mapping.
  41. Macridis, Philip; Harper, John Anthony, Method and apparatus for registering a communication terminal with a satellite communication system.
  42. Speight,Timothy James, Method and arrangement for allocation of resources in a radio communication system.
  43. Speight,Timothy James, Method and arrangement for allocation of resources in a radio communication system.
  44. Thoma Sebastian,DEX, Method and radio station for the transmission of data by way of a GSM mobile radio network.
  45. Ozluturk, Fatih; Lomp, Gary, Method and subscriber unit for performing power control.
  46. Ozluturk, Fatih M.; Lomp, Gary R.; Kowalski, John, Method for adaptive forward power control for spread-spectrum communications.
  47. Vialén, Jukka; Britschgi, Juhana, Method for connection reconfiguration in cellular radio network.
  48. Ozluturk, Fatih M.; Lomp, Gary R.; Kowalski, John, Method for initial power control for spread-spectrum communications.
  49. Yang, Shin-Hyun, Method for supporting multi-call when interworking between UTRAN and synchronous core network in IMT-2000 system.
  50. Ozluturk, Faith M., Method for using a base station to selectively utilize B and D channels to support a plurality of communications.
  51. Ozluturk, Fatih M., Method for using a base station to selectively utilize B and D channels to support a plurality of communications.
  52. Ozluturk, Fatih M., Method for using a base station to selectively utilize B and D channels to support a plurality of communications.
  53. Ozluturk, Fatih M., Method for using a base station to selectively utilize B and D channels to support a plurality of communications.
  54. Ozluturk, Faith M., Method for using a base station to selectively utilize channels to support a plurality of communications.
  55. Ozluturk, Fatih M., Method for using a base station to selectively utilize channels to support a plurality of communications.
  56. Ozluturk, Fatih M., Method for using a base station to selectively utilize channels to support a plurality of communications.
  57. Ozluturk, Fatih M., Method for using a subscriber unit to selectively utilize B and D channels to support a plurality of communications.
  58. Luddy, Michael J., Method implemented by a base station for selectively suppressing communications.
  59. Luddy, Michael J., Method implemented by a subscriber unit for selectively suppressing communications.
  60. Luddy, Michael J., Method implemented by a subscriber unit for selectively suppressing communications.
  61. Luddy, Michael J., Method implemented by a subscriber unit for selectively suppressing communications.
  62. Luddy, Michael J., Method implemented by a subscriber unit for selectively suppressing communications.
  63. Cloutier, Joseph E.; Patel, Tejaskumar; Kuo, Wen-Yi, Method of queue length based burst management in wireless communication systems.
  64. Fang, Jiayi; Xiao, Guojun; Bao, Wei, Method, system and apparatus for implementing cell handover.
  65. Thoen, Gregory S., Methods for seamlessly providing content to a client system and devices thereof.
  66. Uchida, Yoshinori; Suzuki, Kuniyuki, Mobile communication system.
  67. Uchida,Yoshinori; Suzuki,Kuniyuki, Mobile communication system.
  68. Uchida,Yoshinori; Suzuki,Kuniyuki, Mobile communication system.
  69. Tong, Wen; Strawczynski, Leo L.; Periyalwar, Shalini S.; Royer, Claude, Multi-carrier arrangement for high speed data.
  70. Schilling, Donald L., Multiple-input multiple-output (MIMO) spread-spectrum system and method.
  71. Ferris, James Michael, Staged data migration between data sources and cloud-based storage network.
  72. Luddy, Michael J., Subscriber unit for supporting communication rate modifications.
  73. Ozluturk, Fatih M., Subscriber unit which selectively utilizes B and D channels to support a plurality of communications.
  74. Thoen, Gregory S., System and method for seamlessly providing video content to client systems over a network.
  75. Thoen, Gregory S., System and method for seamlessly providing video content to client systems over a network.
  76. Ozluturk,Fatih M.; Lomp,Gary R., System for using rapid acquisition spreading codes for spread-spectrum communications.
  77. Norman P. Secord CA; Mo-Han Fong CA; Geng Wu CA; Leo Strawczynski CA; Ahmad Jalali ; Robert Matyas CA; Ning Guo CA; Wookwon Lee CA; Amir Bigloo CA, Systems and methods of channel coding and inverse-multiplexing for multi-carrier CDMA systems.
  78. Lomp, Gary; Ozluturk, Fatih; Silverberg, Avi, Transferring voice and non-voice data.
  79. Uchida, Yoshinori; Suzuki, Kuniyuki, Transmission rate switching based on rate switching time information.
  80. Uchida, Yoshinori; Suzuki, Kuniyuki, Transmission rate switching in a mobile communication system.
  81. Gorsuch, Thomas E., Wireless communication system having cell saturation based content delivery.
  82. Gorsuch, Thomas E., Wireless communication system having mobility-based content delivery.
  83. Gorsuch, Thomas E., Wireless communication system having mobility-based content delivery.
  84. Gorsuch, Thomas E., Wireless communication system having mobility-based content delivery.
  85. Gorsuch,Thomas E., Wireless communication system having mobility-based content delivery.
  86. Gorsuch,Thomas E., Wireless communication system having mobility-based content delivery.
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