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Maximizing data rate by adjusting codes and code rates in CDMA system 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H04L-027/36
출원번호 US-0773253 (2001-01-31)
발명자 / 주소
  • Hoffman, John E.
  • Nelson, Jr., George Rodney
  • Riley, Daniel I.
  • Rouphael, Antoine J.
  • Proctor, Jr., James A.
출원인 / 주소
  • IPR Licensing, Inc.
대리인 / 주소
    Hamilton, Brook, Smith &
인용정보 피인용 횟수 : 29  인용 특허 : 26

초록

The present invention provides for making code rate adjustments and modulation type adjustments in a pseudonoise (PN) encoded CDMA system. Coding rate adjustments may be made by changing the number of information bits per symbol, or Forward Error Code (FEC) coding rate. A forward error correction (F

대표청구항

1. A method for coding channels in a wireless communication system in which a digital signal is communicated from a transmitting station to a receiving station, the method comprising the steps of:grouping the bits of the input signal into blocks, a size of each block being adjustable according to a

이 특허에 인용된 특허 (26)

  1. Guha Aloke (Minneapolis MN), Adaptive forward error correction system and method.
  2. Davidson Grant A. (Oakland CA), Adaptive-block-length, adaptive-transforn, and adaptive-window transform coder, decoder, and encoder/decoder for high-qu.
  3. Kim Kap S. (Gaithersburg MD) Tisdale William R. H. (Baltimore MD) Andrews Bruce S. (Rockville MD) Nash T. Randolph (Rockville MD) Kolodgie Kathleen J. (Rockville MD) Eiserike Steven S. (Rockville MD), All digital IDMA dynamic channel allocated satellite communications system and method.
  4. Dillon Douglas (Gaithersberg MD), Apparatus and method for controlling forward error correction encoding in a very small aperture terminal.
  5. Walker Gordon K. (Escondido CA) Moroney Paul (Olivenhain CA), Automatic adjustment of receiver apparatus based on channel-bit-error-rate-affected parameter measurement.
  6. Taipale Dana John, CDMA communications system having a searcher receiver and method therefor.
  7. West Barry G. (Chelmsford GBX) Sosin Boleslaw M. (Chelmsford GBX) Tolfree Roger K. (Witham GBX), Communication system.
  8. Sato Hiroaki (Chouhu JPX) Yamagishi Katsumi (Hino JPX), Data communication system, apparatus and method which optimize the set value of parameters.
  9. West Barry G. (Chelmsford GBX) Sosin Boleslaw M. (Chelmsford GBX) Tolfree Roger K. (Witham GBX), Dynamic frame length communication system.
  10. Amalfitano Carlo, Dynamic frame size adjustment and selective reject on a multi-link channel to improve effective throughput and bit error rate.
  11. Kant Krishna (Township of Marlboro ; Monmouth County NJ), Error monitoring algorithm for broadband signaling.
  12. Tanaka Hirokazu,JPX ; Saito Tatsunori,JPX, Information communication system using multi-code CDMA mode.
  13. Paik, Woo H.; Lery, Scott A.; Heegard, Chris; Krause, Edward A.; Heller, Jerrold A., Method and apparatus for communicating digital information such as compressed video using treillis coded QAM.
  14. Hang Hsueh-Ming (Howell NJ), Method and apparatus for dynamic channel bandwidth allocation among multiple parallel video coders.
  15. Curry ; Jr. James C. (Lexington SC), Method and apparatus for dynamic data block length adjustment.
  16. Ward Torbjorn (Montreal CAX), Method and apparatus for dynamically selecting the length of mobile station burst communications on the reverse digital.
  17. Wadzinske Paul E. ; Feeney Gregory A. ; Newberg Donald G., Method and apparatus for providing information between communication devices.
  18. Zehavi Ephraim,ILX ; Miller David S. ; LaRocca Judith, Method and apparatus for providing variable rate data in a communications system using non-orthogonal overflow channels.
  19. Hasegawa Makoto (Tokyo JPX) Mimura Masahiro (Tokyo JPX) Hirabayashi Hirohide (Yokohama JPX) Adachi Naoki (Kawasaki JPX) Namura Yasuaki (Yokohama JPX) Sakai Hideko (Yokohama JPX), Mobile unit identifying system and method of demodulating for the same.
  20. Zscheile ; Jr. John W. (West-Farmington UT) Wilson Michael L. (Salt Lake City UT) Saggio Richard J. (Salt Lake City UT) Lundquist Alan E. (Salt Lake City UT), Multiple channel quadrature communication system and method.
  21. Gutleber Frank S. (Little Silver NJ), Orthogonal CDMA system utilizing direct sequence pseudo noise codes.
  22. Ramesh Nallepilli S., Orthogonal modulation scheme.
  23. 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.
  24. Gilhousen Klein S. (San Diego CA) Jacobs Irwin M. (La Jolla CA) Padovani Roberto (San Diego CA) Weaver ; Jr. Lindsay A. (San Diego CA) Wheatley ; III Charles E. (Del Mar CA) Viterbi Andrew J. (La Jol, System and method for generating signal waveforms in a CDMA cellular telephone system.
  25. Kumar Derek D., System and method for multiplexing a spread spectrum communication system.
  26. Kolze Thomas J. ; Anderson Steven E. ; Hou Victor T., Variable length burst transmission over the physical layer of a multilayer transmission format.

이 특허를 인용한 특허 (29)

  1. Pan, Kyle Jung-Lin; Zeira, Ariela, Adaptive uplink/downlink timeslot assignment in a hybrid wireless time division multiple access/code division multiple access communication system.
  2. Pan, Kyle Jung-Lin; Zeira, Ariela, Adaptive uplink/downlink timeslot assignment in a hybrid wireless time division multiple access/code division multiple access communication system.
  3. Zhang, Juntan; Sun, Fengwen, Bit mapping scheme for an LDPC coded 32APSK system.
  4. Katayama, Yasushi, Controlling data transmission on a data storage network by selecting from multiple transmission modes.
  5. Roberts, Lawrence G., Data redirection in a bifurcated communication trunk system and method.
  6. Gorsuch, Thomas E., Dual mode unit for short range, high rate and long range, lower rate data communications.
  7. Gorsuch, Thomas E., Dual mode unit for short range, high rate and long range, lower rate data communications.
  8. Foore, Lawrence R.; Proctor, Jr., James A.; Gorsuch, Thomas E.; Amalfitano, Carlo, Dynamic bandwidth allocation for multiple access communications using buffer urgency factor.
  9. Proctor, Jr., James A.; Foore, Lawrence R.; Gorsuch, Thomas E.; Amalfitano, Carlo, Dynamic bandwidth allocation for multiple access communications using buffer urgency factor.
  10. Gorsuch, Thomas E.; Amalfitiano, Carlo, Dynamic bandwidth allocation to transmit a wireless protocol across a code division multiple access (CDMA) radio link.
  11. Gorsuch, Thomas E.; Amalfitano, Carlo, Dynamic bandwidth allocation to transmit a wireless protocol across a code division multiple access (CDMA) radio link.
  12. Gorsuch, Thomas E.; Amalfitano, Carlo, Dynamic bandwidth allocation to transmit a wireless protocol across a code division multiple access (CDMA) radio link.
  13. Gorsuch, Thomas E.; Amalfitano, Carlo, Dynamic bandwidth allocation to transmit a wireless protocol across a code division multiple access (CDMA) radio link.
  14. Gorsuch,Thomas E.; Amalfitano,Carlo, Dynamic bandwidth allocation to transmit a wireless protocol across a code division multiple access (CDMA) radio link.
  15. Yang, Ming; Zhang, Juntan; Wu, Zhiyong; Sun, Fengwen, Interleaving scheme for an LDPC coded QPSK/8PSK system.
  16. Shida, Masaaki; Hayase, Shigenori; Yamamoto, Keisuke, MIMO wireless data transmission system.
  17. Kim, Soeng-Hun; Choi, Sung-Ho; Song, O-Sok; Van Lieshout, Gert Jan; Van Der Velde, Himke, Method and apparatus for transmitting and receiving status report comprising received status of packet data in a mobile communication system.
  18. Kim, Soeng-Hun; Choi, Sung-Ho; Song, O-Sok; Van Lieshout, Gert Jan; Van Der Velde, Himke, Method and apparatus for transmitting and receiving status report comprising received status of packet data in a mobile communication system.
  19. Roberts, Lawrence G., Multi-trunk data flow regulation system and method.
  20. 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.
  21. Nelson, George R.; Hoffmann, John E.; Proctor, James A.; Rouphael, Antoine J., Qualifying available reverse link coding rates from access channel power setting.
  22. Nelson, George R.; Hoffmann, John E.; Proctor, James A.; Rouphael, Antoine J., Qualifying available reverse link coding rates from access channel power setting.
  23. Nelson, George R.; Hoffmann, John E.; Proctor, James A.; Rouphael, Antoine J., Qualifying available reverse link coding rates from access channel power setting.
  24. Nelson, Jr., George Rodney; Proctor, Jr., James A.; Hoffmann, John E.; Rouphael, Antoine J., Qualifying available reverse link coding rates from access channel power setting.
  25. Birru, Dagnachew, Sub-banded ultra-wideband communication system.
  26. Gorsuch, Thomas E., Subscriber unit for managing dual wireless communication links.
  27. Gorsuch, Thomas E., Subscriber unit for managing dual wireless communication links.
  28. Nieto,John W.; Furman,William N.; Wadsworth,Michael A., System and method for communicating data using constant amplitude equalized waveform.
  29. Pan, Kyle Jung-Lin, Wireless user equipment for use in reducing cross cell interference.
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