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[미국특허] Method and apparatus for controlling power in a variable rate communication system 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H04Q-007/30
출원번호 US-0316168 (1994-09-30)
발명자 / 주소
  • English Sean (Del Mar CA) DeJaco Andrew P. (San Diego CA)
출원인 / 주소
  • Qualcomm Incorporated (San Diego CA 02)
인용정보 피인용 횟수 : 144  인용 특허 : 0

초록

A method and apparatus for controlling transmission power in a variable rate communication system is disclosed. The method disclosed provides for a closed loop power control method. A first remote station controls the transmission power of a second remote station by transmitting a rate dependent pow

대표청구항

In a variable rate communication system wherein a first communication device for the transmission of a data packet of variable rate data in a data frame of a predetermined data capacity to a second communication device wherein when said data packet is less than said data capacity generating repeated

이 특허를 인용한 특허 (144) 인용/피인용 타임라인 분석

  1. Bennett, James D., Access point multi-level transmission power and protocol control based on the exchange of characteristics.
  2. Kiran M. Rege, Adaptive symbol error count based technique for CDMA reverse link outer loop power control.
  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. Kim,Youn Sun; Kim,Dae Gyun; Choi,Ho Kyu; Kwon,Hwan Joon; Huh,Hoon; Yun,Yu Suk; Kim,Dong Hee, Apparatus and method for controlling power of reverse channels in a mobile communication system.
  6. Lysejko Martin,GBX, Apparatus and method of transmitting and receiving information in a wireless telecommunications system.
  7. Sabatino, Michael Edward, Apparatus for acquiring and processing of physiological auditory signals.
  8. Sabatino, Michael E., Apparatus for acquiring, processing and transmitting physiological sounds.
  9. Ozluturk, Faith M.; Lomp, Gary R.; Kowalski, John, Apparatus for adaptive reverse power control for spread-spectrum communications.
  10. Ozluturk, Fatih M.; Lomp, Gary R., Apparatus for controlling initial power ramp-up in a CDMA system by using short codes.
  11. Ozluturk, Fatih M.; Lomp, Gary R., Apparatus for controlling initial power ramp-up in a CDMA system by using short codes.
  12. Ozluturk,Fatih M.; Lomp,Gary R.; Kowalski,John, Apparatus for initial power control for spread-spectrum communications.
  13. Gilbert Timothy G., Automatic detection of pots line.
  14. Lomp, Gary R.; Ozluturk, Faith M.; Kowalski, John, Automatic power control system for a code division multiple access (CDMA) communications system.
  15. Lomp,Gary; Ozluturk,Fatih; Kowalski,John, Automatic power control system for a code division multiple access (CDMA) communications system.
  16. Ozluturk, Fatih M.; Lomp, Gary R., Base station for controlling initial power ramp-up using short codes.
  17. Piirainen Olli,FIX, Base station having transmitter power adjustment system.
  18. Uddenfeldt Jan E.,SEX ; Raith Alex K.,SEX, Cellular digital mobile radio system and method of transmitting information in a digital cellular mobile radio system.
  19. Ozluturk, Fatih M.; Lomp, Gary R., Centroid tracking for spread-spectrum communications.
  20. Ozluturk, Fatih M.; Jacques, Alexander M.; Lomp, Gary R.; Kowalski, John, Code division multiple access (CDMA) communication system.
  21. Hosein, Patrick A.; Wu, Tao, Common rate control method for reverse link channels in CDMA networks.
  22. Fong, Mo-Han; Li, Jun; Vrzic, Sophie S.; Iraqi, Ali, Communicating a broadcast message to change data rates of mobile stations.
  23. Fong, Mo-Han; Li, Jun; Vrzic, Sophie S.; Iraqi, Ali, Communicating a broadcast message to change data rates of mobile stations.
  24. Ozluturk,Fatih M.; Lomp,Gary R., Communication unit for access.
  25. Waldroup Anthony B. ; Lyall ; Jr. Robert L. ; Bain Richard I., Comprehensive transmitter power control system for radio telephones.
  26. Honkasalo Zhichun,FIX ; Hamalainen Jari,FIX ; Jokinen Harri,FIX ; Fehlmann Richard,FIX, Control of transmission power in wireless packet data transfer.
  27. Shvodian, William M., Distributed determination of explicit rate in an ATM communication system.
  28. Liebenow, Frank W., Distributed modem for non-cellular cordless/wireless data communication for portable computers.
  29. Lomp, Gary R.; Ozluturk, Faith, Efficient multipath centroid tracking circuit for a code division multiple access (CDMA) system.
  30. Haim, John W., Fast adaptive power control adapter for a variable multirate communication system.
  31. Haim, John W., Fast adaptive power control for a variable multirate communications system.
  32. Haim, John W., Fast adaptive power control for a variable multirate communications system.
  33. Haim, John W., Fast adaptive power control for a variable multirate communications system.
  34. Haim, John W., Fast adaptive power control for a variable multirate communications system.
  35. Haim, John W., Fast adaptive power control for a variable multirate communications system.
  36. Haim, John W., Fast adaptive power control for a variable multirate communications system.
  37. Haim, John W., Fast adaptive power control for a variable multirate communications system.
  38. Haim, John W., Fast adaptive power control for a variable multirate communications system.
  39. Haim, John W., Fast adaptive power control for a variable multirate communications system.
  40. Haim,John W., Fast adaptive power control for a variable multirate communications system.
  41. Balasubramanian,Srinivasan; Comstock,David Reeves; Duan,Long L.; Gholmieh,Ralph; Gopal,Thawatt; Hosein,Patrick Ahamad; Oh,Seong Jun; Soong,Anthony C. K.; Tsai,Shiau He Shawn; Vannithamby,Rath; Wiorek,Jonas; Woo,Hsein; Wu,Tao; Yoon,Young C., Generalized rate control for a wireless communications network.
  42. Jan E. Uddenfeldt SE; Alex K. Raith, Handover method for mobile radio system.
  43. Jan E. Uddenfeldt SE; Alex K. Raith, Handover method for mobile radio system.
  44. Uddenfeldt Jan E.,SEX ; Raith Alex K., Handover method for mobile radio system.
  45. Uddenfeldt Jan-Erik,SEX ; Raith Alex K., Handover method for mobile radio system.
  46. Barlev,Tuvia; Shtayman,Arkady Molev; Kanchuk,Amir; Rozen,Gilad; Ilani,Ishai; Sharon,Ofer; Shilton,Robert, High speed access system over copper cable plant.
  47. Barlev,Tuvia; Shteiman,Arkady Molev; Sharon,Ofer, High speed access system over copper cable plant.
  48. Ozluturk,Fatih M.; Lomp,Gary R.; Kowalski,John, Initial power control for spread-spectrum communications.
  49. Reznik, Alexander, Link-quality estimation method and components for multi-user wireless communication systems.
  50. Lomp,Gary R., Median weighted tracking for spread-spectrum communications.
  51. Razavilar, Javad; Poojary, Neeraj; Connors, Dennis P.; Crawford, James A., Method and apparatus for adaptive QoS-based joint rate and power control algorithm in multi-rate wireless systems.
  52. Ozluturk, Fatih; Lomp, Gary R.; Kowalski, John, Method and apparatus for adaptive power control for spread-spectrum communications.
  53. Shafai, Farhad; Olsson, Fredrik; Gustlin, Mark Andrew, Method and apparatus for adaptive power control in a multi-lane communication channel.
  54. Tiedemann ; Jr. Edward G. ; Gilhousen Klein S. ; Odenwalder Joseph P. ; Zehavi Ephraim ; Levin Jeffrey A. ; Wheatley ; III Charles E., Method and apparatus for controlling power in a variable rate communication system.
  55. Holtzman, Jack M.; Chen, Tao; Razoumov, Leonid, Method and apparatus for controlling transmission power in a CDMA communication system.
  56. Holtzman,Jack M.; Chen,Tao; Razoumov,Leonid, Method and apparatus for controlling transmission power in a CDMA communication system.
  57. Edward G. Tidemann, Jr. ; Yu-Chuan Lin CA, Method and apparatus for decoding variable rate data using hypothesis testing to determine data rate.
  58. Lundby, Stein A.; Razoumov, Leonid; Bao, Gang; Wei, Yongbin, Method and apparatus for determining a data rate in a high rate packet data wireless communications system.
  59. Lundby, Stein A.; Razoumov, Leonid; Bao, Gang, Method and apparatus for high rate packet data and low delay data transmissions.
  60. Padovani, Roberto; Bender, Paul E.; Black, Peter J.; Grob, Matthew S.; Hinderling, Jurg K.; Sindhushayana, Nagabhushana T.; Wheatley, III, Charles E., Method and apparatus for high rate packet data transmission.
  61. Padovani, Roberto; Bender, Paul E.; Black, Peter J.; Grob, Matthew S.; Hinderling, Jurg K.; Sindhushayana, Nagabhushana T.; Wheatley, III, Charles E., Method and apparatus for high rate packet data transmission.
  62. Padovani, Roberto; Bender, Paul E.; Black, Peter J.; Grob, Matthew S.; Hinderling, Jurg K.; Sindhushayana, Nagabhushana T.; Wheatley, III, Charles E., Method and apparatus for high rate packet data transmission.
  63. Padovani, Roberto; Bender, Paul E.; Black, Peter J.; Grob, Matthew S.; Hinderling, Jurg K.; Sindhushayana, Nagabhushana T.; Wheatley, III, Charles E., Method and apparatus for high rate packet data transmission.
  64. Padovani, Roberto; Bender, Paul E.; Black, Peter J.; Grob, Matthew S.; Hinderling, Jurg K.; Sindhushayana, Nagabhushana T.; Wheatley, III, Charles E., Method and apparatus for high rate packet data transmission.
  65. Padovani, Roberto; Bender, Paul E.; Black, Peter J.; Grob, Matthew S.; Hinderling, Jurg K.; Sindhushayana, Nagabhushana T.; Wheatley, III, Charles E., Method and apparatus for high rate packet data transmission.
  66. Padovani, Roberto; Bender, Paul E.; Black, Peter J.; Grob, Matthew S.; Hinderling, Jurg K.; Sindhushayana, Nagabhushana T.; Wheatley, III, Charles E., Method and apparatus for high rate packet data transmission.
  67. Padovani, Roberto; Bender, Paul E.; Black, Peter J.; Grob, Matthew S.; Hinderling, Jurg K.; Sindhushayana, Nagabhushana T.; Wheatley, III, Charles E., Method and apparatus for high rate packet data transmission.
  68. Padovani, Roberto; Bender, Paul E.; Black, Peter J.; Grob, Matthew S.; Hinderling, Jurg K.; Sindhushayana, Nagabhushana T.; Wheatley, III, Charles E., Method and apparatus for high rate packet data transmission.
  69. Padovani, Roberto; Bender, Paul E.; Black, Peter J.; Grob, Matthew S.; Hinderling, Jurg K.; Sindhushayana, Nagabhushana T.; Wheatley, III, Charles E., Method and apparatus for high rate packet data transmission.
  70. Padovani, Roberto; Bender, Paul E.; Black, Peter J.; Grob, Matthew S.; Hinderling, Jurg K.; Sindhushayana, Nagabhushana T.; Wheatley, III, Charles E., Method and apparatus for high rate packet data transmission.
  71. Padovani, Roberto; Bender, Paul E.; Black, Peter J.; Grob, Matthew S.; Hinderling, Jurg K.; Sindhushayana, Nagabhushana T.; Wheatley, III, Charles E., Method and apparatus for high rate packet data transmission.
  72. Padovani, Roberto; Bender, Paul E; Black, Peter J.; Grob, Matthew S.; Hinderling, Jurg K.; Sindhushayana, Nagabhushana T.; Wheatley, III, Charles E., Method and apparatus for high rate packet data transmission.
  73. Padovani,Roberto; Bender,Paul E.; Black,Peter J.; Grob,Matthew S.; Hinderling,Jurg K.; Sindhushayana,Nagabhushana T.; Wheatley, III,Charles E., Method and apparatus for high rate packet data transmission.
  74. Padovani,Roberto; Bender,Paul E.; Black,Peter J.; Grob,Matthew S.; Hinderling,Jurg K.; Sindhushayana,Nagabhushana T.; Wheatley, III,Charles E., Method and apparatus for high rate packet data transmission.
  75. Ozluturk, Fatih; Lomp, Gary R., Method and apparatus for performing an access procedure.
  76. Ozluturk,Fatih; Lomp,Gary R., Method and apparatus for performing an access procedure.
  77. Ozluturk,Fatih; Lomp,Gary R., Method and apparatus for performing an access procedure.
  78. Tiedemann ; Jr. Edward G. ; Chen Tao, Method and apparatus for performing fast power control in a mobile communication system.
  79. Tiedemann, Jr., Edward G.; Chen, Tao, Method and apparatus for performing fast power control in a mobile communication system.
  80. Tiedemann, Jr., Edward G.; Chen, Tao, Method and apparatus for performing fast power control in a mobile communication system.
  81. Tiedemann, Jr., Edward G.; Odenwalder, Joseph P.; Wheatley, III, Charles E.; Padovani, Roberto, Method and apparatus for performing fast power control in a mobile communication system.
  82. Tiedemann, Jr.,Edward G.; Odenwalder,Joseph P.; Wheatley, III,Charles E.; Padovani,Roberto, Method and apparatus for performing fast power control in a mobile communication system.
  83. Sarkar, Sandip; Holtzman, Jack M., Method and apparatus for power control in a wireless communication system.
  84. Chen Tao, Method and apparatus for pre-transmission power control using lower rate for high rate communication.
  85. Chen Tao, Method and apparatus for pre-transmission power control using lower rate for high rate communication.
  86. Holtzman, Jack; Chen, Tao, Method and apparatus for predicting favored supplemental channel transmission slots using transmission power measurements of a fundamental channel.
  87. Saints Keith W. ; Tiedemann ; Jr. Edward G., Method and apparatus for processing power control signals in CDMA mobile telephone system.
  88. Bruckert Eugene J. ; Sexton Thomas A., Method and apparatus for transmission and reception of a transmission rate in a CDMA communication system.
  89. Miska Richard A. ; Myers Albert E., Method and apparatus for transport of communication signals over a public network.
  90. Malladi, Durga Prasad; Willenegger, Serge D., Method and apparatus for uplink rate selection in the presence of multiple transport channels in a wireless communication system.
  91. Malladi, Durga Prasad; Willenegger, Serge D., Method and apparatus for uplink rate selection in the presence of multiple transport channels in a wireless communication system.
  92. Gardner, William R.; Tiedemann, Jr., Edward G., Method and apparatus using a multi-carrier forward link in a wireless communication system.
  93. Ozluturk, Fatih M.; Lomp, Gary R., Method and subscriber unit for performing an access procedure.
  94. Ozluturk,Fatih M.; Lomp,Gary R., Method and subscriber unit for performing an access procedure.
  95. Ozluturk, Fatih; Lomp, Gary, Method and subscriber unit for performing power control.
  96. Saifuddin, Ahmed; Sarkar, Sandip; Tiedemann, Jr., Edward G., Method and system for controlling transmission energy in a variable rate gated communication system.
  97. Saifuddin, Ahmed; Sarkar, Sandip; Tiedemann, Jr., Edward G., Method and system for controlling transmission energy in a variable rate gated communication system.
  98. Ozluturk, Fatih M.; Lomp, Gary R., Method employed by a base station for controlling initial power ramp-up using short codes.
  99. Ozluturk, Fatih M.; Lomp, Gary R., Method employed by a base station for controlling initial power ramp-up using short codes.
  100. Ozluturk,Fatih; Lomp,Gary R., Method employed by a base station for controlling initial power ramp-up using short codes.
  101. Ozluturk, Fatih M.; Lomp, Gary R., Method employed by a subscriber unit for controlling initial power ramp-up using short codes.
  102. Ozluturk, Fatih M.; Lomp, Gary R.; Kowalski, John, Method for adaptive forward power control for spread-spectrum communications.
  103. Ozluturk, Faith M.; Lomp, Gary R.; Kowalski, John, Method for adaptive reverse power control for spread-spectrum communications.
  104. J?rvisalo,Jari; Rimpel?,Riku; Oksala,Jarkko; Aaltonen,Janne U., Method for controlling transmitting power in a wireless communication device.
  105. Kaewell, Jr.,John D., Method for determining signal quality of simultaneously received multiple channels of data.
  106. Ozluturk, Fatih M.; Lomp, Gary R.; Kowalski, John, Method for initial power control for spread-spectrum communications.
  107. Willars Per Hans .ANG.ke,SEX ; Dahlman Erik Bengt Lennart,SEX ; Jamal Karim,JPX, Method for multiplexing of parallel information streams in a CDMA system.
  108. Kaewell, Jr., John D., Method for simultaneously receiving and processing multiple channels of data.
  109. Fatih M. Ozluturk ; Gary R. Lomp, Method of controlling initial power ramp-up in CDMA systems by using short codes.
  110. Ozluturk Fatih M. ; Lomp Gary R., Method of controlling initial power ramp-up in CDMA systems by using short codes.
  111. Fatih M. Ozluturk ; Gary R. Lomp, Method of controlling initial power ramp-up in a CDMA system by using short codes.
  112. Ozluturk, Fatih M.; Lomp, Gary R., Method of controlling initial power ramp-up in a CDMA system by using short codes.
  113. Yoon, Young C.; Balasubramanian, Srinivasan; Comstock, David Reeves; Duan, Long L.; Gholmieh, Ralph; Gopal, Thawatt; Hosein, Patrick A.; Soong, Anthony C. K.; Tsai, Shiau He Shawn; Vannithamby, Rath; Wiorek, Jonas, Method of rate control.
  114. Li Kaiping ; Ong Chung-yen, Mobile station closed loop output power stability system for weak signal conditions.
  115. John D. Kaewell, Jr., Multichannel decoder.
  116. Kaewell ; Jr. John D., Multichannel viterbi decoder.
  117. Breit, Gregory Alan; Vermani, Sameer; Abraham, Santosh Paul; Sampath, Hemanth, Physical layer metrics to support adaptive station-dependent channel state information feedback rate in multi-user communication systems.
  118. Padovani, Roberto; Black, Peter J.; Sindhushayana, Nagabhushana T., Pilot reference transmission for a wireless communication system.
  119. Padovani, Roberto; Black, Peter John; Sindhushayana, Nagabhushana T., Pilot reference transmission for a wireless communication system.
  120. Anthony Peter Hulbert GB, Power control and rate information method for a mobile radio communication system.
  121. Ghosh Amitava (Fort Worth TX) Rohani Kamyar (Grapevine TX), Power control for CDMA communication systems.
  122. Oestreich,Stefan, Power control in mobile radio telephone systems when transmission is interrupted.
  123. Ue, Toyoki; Hiramatsu, Katsuhiko; Kato, Osamu, Radio communication apparatus and transmission rate control method.
  124. Ue, Toyoki; Hiramatsu, Katsuhiko; Kato, Osamu, Radio communication apparatus and transmission rate control method.
  125. Toyoki Ue JP; Katsuhiko Hiramatsu JP; Osamu Kato JP, Radio communication device and method of controlling transmission rate.
  126. Toyoki Ue JP; Katsuhiko Hiramatsu JP; Osamu Kato JP, Radio communication device and method of controlling transmission rate.
  127. Ue, Toyoki; Hiramatsu, Katsuhiko; Kato, Osamu, Radio communication device and method of controlling transmission rate.
  128. Ue, Toyoki; Hiramatsu, Katsuhiko; Kato, Osamu, Radio communication device and method of controlling transmission rate.
  129. Monogioudis, Pantelis; Rege, Kiran M; Sampath, Ashwin, Reverse link outer loop power control with adaptive compensation.
  130. Kaewell, Jr., John D., Spread spectrum base station for simultaneously receiving and processing multiple channels of data.
  131. Richard Robert Shively ; Ranjan V. Sonalkar, Spread spectrum bit allocation algorithm.
  132. Shively Richard Robert ; Sonalkar Ranjan V., Spread spectrum bit allocation algorithm.
  133. Shively Richard Robert ; Sonalkar Ranjan V., Spread spectrum bit allocation algorithm.
  134. Kaewell, Jr., John D., Spread spectrum mobile station for simultaneously receiving and processing multiple channels of data.
  135. Ozluturk, Fatih M.; Lomp, Gary R., Subscriber unit for controlling initial power ramp-up using short codes.
  136. Ozluturk, Fatih M.; Lomp, Gary R., Subscriber unit for controlling initial power ramp-up using short codes.
  137. Ozluturk, Fatih M.; Lomp, Gary R., Subscriber unit for performing an access procedure.
  138. Li Kaiping, Subsequent frame variable data rate indication method for various variable data rate systems.
  139. Hendrichs,Laurent; Scholtz,William, System and method for reducing power consumption by spectral shaping of signals.
  140. Ozluturk,Fatih M.; Lomp,Gary R., System for using rapid acquisition spreading codes for spread-spectrum communications.
  141. Lomp, Gary; Ozluturk, Fatih; Silverberg, Avi, Transferring voice and non-voice data.
  142. Garcia Luna Aceves,J Joaquin; Beyer,David A.; Frivold,Thane J., Unified routing scheme for ad-hoc internetworking.
  143. Bi, Qi; Kamel, Raafat Edward; Rubin, Harvey, Variable rate forward power control for multichannel applications.
  144. Hassan Amer A. ; Karabinis Peter D. ; Rydbeck Nils Rutger, Vocoder apparatus using the link margin.

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