$\require{mediawiki-texvc}$

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.

Multi-rate spread system 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H04L-009/00
  • H04L-027/30
출원번호 US-0024931 (1993-03-02)
발명자 / 주소
  • Higgins Robert P. (Seattle WA) Nitardy John H. (Seattle WA)
출원인 / 주소
  • The Boeing Company (Seattle WA 02)
인용정보 피인용 횟수 : 143  인용 특허 : 0

초록

Apparatus and a method for transmitting a direct sequence, spread spectrum communication system signal. A transmitter (10) that receives a variable data rate information bearing input signal from a digital data source (12) includes a forward error correction encoder (80) that provides redundancy and

대표청구항

A transmitter for a direct sequence, spread spectrum communication system, the transmitter comprising: (a) means for receiving an information-bearing input signal at a variable data rate; (b) means for producing a code signal comprising a pseudorandom sequence of chips at a chip rate; (c) DS modulat

이 특허를 인용한 특허 (143)

  1. Niesen,Joseph W., Adaptable forward link data rates in communications systems for mobile platforms.
  2. Lomp Gary ; Ozluturk Fatih ; Silverberg Avi, Adaptive matched filter and vector correlator for a code division multiple access (CDMA) modem.
  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. Tabeta, Hideya, Apparatus and method for changing clock frequency and modulation method based on current state.
  6. Lipa Robert A., Apparatus and method for determining transmitted modulation symbols.
  7. Ozluturk, Faith M.; Lomp, Gary R.; Kowalski, John, Apparatus for adaptive reverse power control for spread-spectrum communications.
  8. Ozluturk,Fatih M.; Lomp,Gary R.; Kowalski,John, Apparatus for initial power control for spread-spectrum communications.
  9. Barham, Steven T.; Kingston, Samuel; Sylvester, Randal R.; Leahy, Ronald, Apparatus for rapid PN code acquisition.
  10. Durrant Randolph L. ; Burbach Mark, Apparatus for receiving and correlating a spread spectrum signal.
  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. Lomp, Gary; Ozluturk, Fatih; Kowalski, John, Automatic power control system for a code division multiple access (CDMA) communications system.
  14. Lomp,Gary; Ozluturk,Fatih; Kowalski,John, Automatic power control system for a code division multiple access (CDMA) communications system.
  15. Lomp Gary ; Kowalski John ; Ozluturk Fatih ; Silverberg Avi ; Regis Robert ; Luddy Michael ; Marra Alexander ; Jacques Alexander, Bearer channel modification system for a code division multiple access (CDMA) communication system.
  16. Feher, Kamilo, Bit rate agile third-generation wireless CDMA, GSM, TDMA and OFDM system.
  17. Lomp Gary ; Kowalski John ; Ozluturk Fatih ; Silverberg Avi ; Regis Robert ; Luddy Michael ; Marra Alexander ; Jacques Alexander, Capacity management method for a code division multiple access (CDM) communication system.
  18. Trompower Michael L., Cellular communication system with dedicated repeater channels.
  19. Trompower Michael L. ; Shah Nainesh P., Cellular communication system with dedicated repeater channels.
  20. Trompower Michael L. ; Struhsaker Paul F., Cellular communication system with dynamically modified data transmission parameters.
  21. Trompower Michael L. ; Struhsaker Paul F. ; Grim ; III George L. ; Holt James K. ; Paulsen Victor K., Cellular communication system with dynamically modified data transmission parameters.
  22. Ozluturk, Fatih M.; Lomp, Gary R., Centroid tracking for spread-spectrum communications.
  23. Ozluturk Fatih ; Jacques Alexander ; Lomp Gary ; Kowalski John, Code division multiple access (CDMA) communication system.
  24. Ozluturk, Fatih M.; Jacques, Alexander M.; Lomp, Gary R.; Kowalski, John, Code division multiple access (CDMA) communication system.
  25. Ozukturk Fatih ; Jacques Alexander ; Lomp Gary ; Kowalski John, Code division multiple access (CDMA) communication system.
  26. Ozukturk, Fatih; Jacques, Alexander; Lomp, Gary; Kowalski, John, Code division multiple access (CDMA) communication system.
  27. Lomp Gary ; Ozluturk Fatih ; Silverberg Avi, Code sequence generator in a CDMA modem.
  28. Lomp Gary ; Ozluturk Fatih ; Silverberg Avi, Code sequence generator in a CDMA modem.
  29. Sakoda, Kazuyuki; Suzuki, Mitsuhiro, Communication method, transmission and reception apparatuses, and cellular radio communication system.
  30. Scott Logan ; Williams Claude M., Cyclic time hopping in time division multiple access communication system.
  31. Kim, Beong-Jo; Kim, Min Goo; Kim, Se-Hyoung; Choi, Soon-Jae; Lee, Young-Hwan, Data rate detection device and method for a mobile communication system.
  32. Hottinen Ari,FIX, Data transmission method, transmitter, and receiver.
  33. Piret Philippe,FRX, Device and method for transmitting information device and method for processing information.
  34. James P. Stephens, Sr. ; Robert S. Parks, Direct sequence spread spectrum using non-antipodal phase shift keying.
  35. Gary Lomp ; Fatih Ozluturk, Efficient multipath centroid tracking circuit for a code division multiple access (CDMA) system.
  36. Lomp, Gary R.; Ozluturk, Faith, Efficient multipath centroid tracking circuit for a code division multiple access (CDMA) system.
  37. Lomp, Gary; Ozluturk, Fatih, Efficient multipath centroid tracking circuit for a code division multiple access (CDMA) system.
  38. Hohberger, Clive Paul; Turner, Christopher Gordon Gervase, Electronic identification system with forward error correction system.
  39. Hohberger, Clive Paul; Turner, Christopher Gordon Gervase, Electronic identification system with forward error correction system.
  40. Hohberger,Clive P; Turner,Christopher Gordon Gervase, Electronic identification system with forward error correction system.
  41. Hu,Yi Kwang; Yang,Jin Bin; Chang,Hsi Chia, Encoding method and apparatus for cross interleaved cyclic codes.
  42. Caffrey, Michael Paul; Palmer, Joseph McRae, Energy efficiency in wireless communication systems.
  43. Odenwalder, Joseph P., High data CDMA wireless communication system using variable sized channel codes.
  44. Joseph P. Odenwalder, High data rate CDMA wireless communication system.
  45. Joseph P. Odenwalder ; Yu-Cheun Jou ; Edward G. Tiedemann, Jr., High data rate CDMA wireless communication system.
  46. Odenwalder Joseph P. ; Jou Yu-Cheun ; Tiedemann ; Jr. Edward G., High data rate CDMA wireless communication system.
  47. Odenwalder, Joseph P., High data rate CDMA wireless communication system.
  48. Odenwalder, Joseph P., High data rate CDMA wireless communication system using variable sized channel codes.
  49. Odenwalder, Joseph P., High data rate CDMA wireless communication system using variable sized channel codes.
  50. Odenwalder, Joseph P., High data rate CDMA wireless communication system using variable sized channel codes.
  51. Odenwalder, Joseph P., High rate CDMA wireless communication system using variable sized channel codes.
  52. Fredrickson,Lisa; Yang,Bomey, High throughput Reed-Solomon encoder.
  53. Ozluturk,Fatih M.; Lomp,Gary R.; Kowalski,John, Initial power control for spread-spectrum communications.
  54. Gunnarsson,Staffan, Interference protection.
  55. 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.
  56. Hoffmann, John E.; Nelson, George Rodney; Riley, Daniel I.; Rouphael, Antoine J.; Proctor, James A., Maximizing data rate by adjusting codes and code rates.
  57. Lomp,Gary R., Median weighted tracking for spread-spectrum communications.
  58. Ozluturk, Fatih; Lomp, Gary R.; Kowalski, John, Method and apparatus for adaptive power control for spread-spectrum communications.
  59. Durrant Randolph L. ; Burbach Mark, Method and apparatus for coherent correlation of a spread spectrum signal.
  60. Durrant Randolph L. ; Burbach Mark, Method and apparatus for coherent serial correlation of a spread spectrum signal.
  61. Kurtz, Scott David, Method and apparatus for compressing and transmitting ultra high speed data.
  62. Kurtz, Scott David, Method and apparatus for compressing and transmitting ultra high speed data.
  63. Scott Logan, Method and apparatus for controlling the modulation index of continuous phase modulated (CPM) signals.
  64. Durrant Randolph L. ; Burbach Mark, Method and apparatus for correlating a continuous phase modulated spread spectrum signal.
  65. Gold Robert ; Dixon Robert C., Method and apparatus for despreading spread spectrum signals.
  66. Durrant Randolph L. (Colorado Springs CO) Burbach Mark T. (Peyton CO) Hoyt Eugene P. (Colorado Springs CO), Method and apparatus for differential phase encoding and decoding in spread-spectrum communication systems with continuo.
  67. Durrant Randolph L. (Colorado Springs CO) Burbach Mark (Peyton CO), Method and apparatus for noncoherent reception and correlation of a continous phase modulated signal.
  68. Durrant Randolph L. ; Burbach Mark, Method and apparatus for parallel noncoherent correlation of a spread spectrum signal.
  69. Tiedemann ; Jr. Edward G. ; Chen Tao, Method and apparatus for performing fast power control in a mobile communication system.
  70. Tiedemann, Jr., Edward G.; Chen, Tao, Method and apparatus for performing fast power control in a mobile communication system.
  71. Tiedemann, Jr., Edward G.; Chen, Tao, Method and apparatus for performing fast power control in a mobile communication system.
  72. 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.
  73. Sarkar, Sandip; Holtzman, Jack M., Method and apparatus for power control in a wireless communication system.
  74. Saints Keith W. ; Tiedemann ; Jr. Edward G., Method and apparatus for processing power control signals in CDMA mobile telephone system.
  75. Durrant Randolph L. (Colorado Springs CO) Burbach Mark (Peyton CO), Method and apparatus for receiving and despreading a continuous phase-modulated spread spectrum signal using self-synchr.
  76. Durrant Randolph L. (Colorado Springs CO) Burbach Mark (Peyton CO), Method and apparatus for reception and noncoherent serial correlation of a continuous phase modulated signal.
  77. Tiedemann, Jr., Edward G., Method and apparatus for transmitting and receiving high speed data using code division multiple access channels.
  78. Tiedemann, Jr., Edward G., Method and apparatus for transmitting and receiving high speed data using code division multiple access channels.
  79. Tiedemann, Jr., Edward G., Method and apparatus for transmitting and receiving high speed data using code division multiple access channels.
  80. Tiedemann, Jr.,Edward G., Method and apparatus for transmitting and receiving high speed data using code division multiple access channels.
  81. Durrant Randolph L. ; Burbach Mark, Method and apparatus for wireless spread spectrum communication with preamble sounding gap.
  82. Hakkinen Hannu,FIX ; Rikkinen Kari,FIX ; Pehkonen Kari,FIX, Method and equipment for multirate coding and detection in a multiple access mobile communication system.
  83. Ozluturk, Fatih; Lomp, Gary, Method and subscriber unit for performing power control.
  84. Starr, Thomas J J, Method and system for adaptive interleaving.
  85. Starr, Thomas J J, Method and system for adaptive interleaving.
  86. Starr, Thomas J. J., Method and system for controlling an interleaver.
  87. Starr, Thomas J. J., Method and system for controlling an interleaver.
  88. Griswold, Mark; Yen, Jen-Tien, Method and system for verifying a source-synchronous communication interface of a device.
  89. Ozluturk, Fatih M.; Lomp, Gary R.; Kowalski, John, Method for adaptive forward power control for spread-spectrum communications.
  90. Ozluturk, Faith M.; Lomp, Gary R.; Kowalski, John, Method for adaptive reverse power control for spread-spectrum communications.
  91. Ozluturk, Fatih M.; Lomp, Gary R.; Kowalski, John, Method for initial power control for spread-spectrum communications.
  92. Jack K. Holmes ; Gee L. Lui ; Chit-Sang Tsang, Method of determining the carrier reference phase of coherent demodulation of frequency hopped continuous phase modulated signals with synch words arbitrarily located within the hop.
  93. Seshadri Nambirajan ; Sundberg Carl-Erik Wilhelm, Methods of and devices for enhancing communications that use spread spectrum technology by using variable power techniques.
  94. Tuttle John R. ; Hoyt Eugene P. ; Springett James C., Modulated spread spectrum in RF identification systems method.
  95. Tuttle John R. ; Hoyt Eugene P. ; Springett James C., Modulated spread spectrum in RF identification systems method.
  96. Tuttle John R. ; Hoyt Eugene P. ; Springett James C., Modulated spread spectrum in RF identification systems method.
  97. Feher,Kamilo, Modulation and demodulation format selectable system.
  98. Smith Douglas G. (Arlington VA) Dixon Robert C. (Palmer Lake CO) Vanderpool Jeffrey S. (Colorado Springs CO), Multi-band, multi-mode spread-spectrum communication system.
  99. Smith Douglas G. ; Dixon Robert C. ; Vanderpool Jeffrey S., Multi-band, multi-mode spread-spectrum communication system.
  100. Smith Douglas G. ; Dixon Robert C. ; Vanderpool Jeffrey S., Multi-band, multi-mode spread-spectrum communication system.
  101. Smith Douglas G. ; Dixon Robert C. ; Vanderpool Jeffrey S., Multi-band, multi-mode spread-spectrum communication system.
  102. Durrant Randolph L. (Colorado Springs CO) Burbach Mark T. (Peyton CO), Multi-bit correlation of continuous phase modulated signals.
  103. Moore, III, Timothy F., Noise shaping technique for spread spectrum communications.
  104. Moore, III,Timothy F., Noise shaping technique for spread spectrum communications.
  105. Moore, III,Timothy F., Noise shaping technique for spread spectrum communications.
  106. Feher,Kamilo, OFDM, CDMA, spread spectrum, TDMA, cross-correlated and filtered modulation.
  107. Manninen,Antti; Frederiksen,Frank, Partially filling block interleaver for a communication system.
  108. Lomp Gary ; Ozluturk Fatih ; Silverberg Avi, Pilot adaptive vector correlator.
  109. Lomp,Gary; Kowalski,John; Ozluturk,Fatih; Silverberg,Avi; Regis,Robert; Luddy,Michael; Marra,Alexander; Jacques,Alexander, Rapid acquisition spreading codes for spread-spectrum communications.
  110. Odenwalder, Joseph P.; Jou, Yu-Cheun; Tiedemann, Jr., Edward G., Receiver method and apparatus with complex pilot filter.
  111. Odenwalder, Joseph P.; Jou, Yu-Cheun; Tiedemann, Jr., Edward G., Receiver method and apparatus with complex pilot filter.
  112. Odenwalder Joseph P., Reduced peak-to-average transmit power high data rate CDMA wireless communication system.
  113. Takahashi Kenichi,JPX ; Takeishi Minako,JPX ; Onishi Hiroshi,JPX, Signal processing circuit for spread spectrum communications.
  114. Atmur, Robert J.; Hunt, Jeffrey H., Spread polarization transmitter and associated system and method of operation.
  115. Monroe Robert, Spread spectrum codes for use in communication.
  116. Eto Yoshizumi,JPX ; Asahina Takashi,JPX, Spread spectrum communication method and system wherein data rate of data to be transmitted is changed in accordance with transmission quality.
  117. Scott Logan, Spread spectrum correlation using saw device.
  118. Lomp, Gary; Kowalski, John; Ozluturk, Fatih; Silverberg, Avi; Regis, Robert; Luddy, Michael; Marra, Alexander; Jacques, Alexander, Spread spectrum system assigning information signals to message-code signals.
  119. Durrant Randy (Colorado Springs CO) Burbach Mark (Peyton CO), Spread spectrum transmitter.
  120. Gold Robert ; Dixon Robert C., Spread spectrum transmitter and communications system using multiple spreading codes.
  121. Feher,Kamilo, Spread spectrum, cross-correlated and filtered modulated systems.
  122. Lomp, Gary; Kowalski, John; Ozluturk, Fatih; Silverberg, Avi; Regis, Robert; Luddy, Michael; Marra, Alexander; Jacques, Alexander, Spread-spectrum system for assigning information signals having different data rates.
  123. 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.
  124. Durrant Randolph L. (Colorado Springs CO) Burbach Mark (Peyton CO), Synchronization apparatus and method for spread spectrum receiver.
  125. Howard, Paul, Synchronization in a flexible bandwidth wireless network.
  126. Howard, Paul, Synchronization in a flexible bandwidth wireless network.
  127. Rahman Mohamed Anisur, System and method for allocating channel elements in a code division multiple access radio telecommunications network.
  128. Furman,William N.; Nieto,John W.; Wadsworth,Michael A., System and method for communicating data using constant amplitude waveform with hybrid orthogonal and MSK or GMSK modulation.
  129. Mahany, Ronald L., System and method for determining data rate.
  130. Feher, Kamilo, System and method for interoperable multiple-standard modulation and code selectable Feher's GMSK, enhanced GSM, CSMA, TDMA, OFDM, and third-generation CDMA, W-CDMA and B-CDMA.
  131. Rahman Mohamed Anisur, System and method for secondary traffic charging in a radio telecommunications network.
  132. Rahman Mohamed Anisur, System and method of dynamically increasing the capacity of a code division multiple access radio telecommunications network.
  133. Ozluturk,Fatih M.; Lomp,Gary R., System for using rapid acquisition spreading codes for spread-spectrum communications.
  134. Yang Jian, System, device and method of FEC coding and interleaving for variable length burst transmission.
  135. Finnigan, Paul F., Telephonic voice message transmission control method.
  136. Lomp, Gary; Ozluturk, Fatih; Silverberg, Avi, Traffic lights in a code division multiple access (CDMA) modem.
  137. Lomp, Gary; Ozluturk, Fatih; Silverberg, Avi, Transferring voice and non-voice data.
  138. Proctor, Jr., James A., Variable rate coding for a forward and reverse link.
  139. Ferguson, Dennis D.; Proctor, Jr., James A., Variable rate coding for enabling high performance communication.
  140. Ferguson, Dennis D.; Proctor, Jr., James A., Variable rate coding for enabling high performance communication.
  141. Ferguson, Dennis D.; Proctor, Jr., James A., Variable rate coding for enabling high performance communication.
  142. Proctor, Jr., James A., Variable rate coding for forward and reverse link.
  143. Okumura, Yukihiko; Adachi, Fumiyuki, Variable rate transmission and reception methods, and variable rate transmission and reception devices.
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