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System and method for coding in a telecommunications environment using orthogonal and near-orthogonal codes

국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H04B-007/216
출원번호 US-0248506 (1999-02-10)
발명자 / 주소
  • Kumar Balachandran
  • Rajaram Ramesh
  • Havish Koorapaty
  • Eric Wang
  • Sandeep Chennakeshu
  • Amer Hassan
출원인 / 주소
  • Ericsson, Inc.
대리인 / 주소
    Moore & Van Allen, PLLC
인용정보 피인용 횟수 : 87  인용 특허 : 8

초록

A system and method for permitting variable information rates and improved error performance using orthogonal or near-orthogonal codes is disclosed. This is achieved by simultaneously transmitting two or more Walsh code words from a given orthogonal code set and/or by transmitting multiple shorter o

대표청구항

1. A method of encoding an original information word having K bits that improves the coding efficiency and bandwidth utilization of a telecommunications channel using orthogonal codes, said method comprising the steps of:splitting the original information word into M part words, each of said M part

이 특허에 인용된 특허 (8)

  1. Derek D. Kumar, AM- compatible digital broadcasting method and system.
  2. Kawauchi Tetsuya,JPX, Data encoding device, data decoding device, data encoding method and data decoding method.
  3. Sung Kwon Hong KR; Sung Lark Kwon KR; Young Woo Yun KR; Ki Jun Kim KR, Method for improving TFCI transportation performance.
  4. Stein Jeremy M.,ILX, Method for selecting cyclic redundancy check polynomials for linear coded systems.
  5. Akagiri Kenzo,JPX, Methods and apparatus for quantizing, encoding and decoding and recording media therefor.
  6. Turban Karl-Albert (Leonberg DEX), Process, transmitter and receiver for data transmission with variable traffic volume and a control station for coordinat.
  7. Betts William Lewis ; Bremer Gordon, Simultaneous analog and digital communication using fractional rate encoding.
  8. Su Chun-Meng (Lafayette CA) Behtash Saman (Berkeley CA) Jarett Keith (Oakland CA) Lu Huihung (Danville CA) Flores Christopher (Oakland CA) Messerschmitt David G. (Moraga CA) Chien Edward (Fremont CA), Wireless communication system.

이 특허를 인용한 특허 (87)

  1. Seo,Kyung Sam; Park,Dong Jo, Apparatus and method for generating scrambling code in mobile communication system.
  2. Ulrich, Roger; Shokrollahi, Amin, Bus reversable orthogonal differential vector signaling codes.
  3. Ulrich, Roger; Shokrollahi, Amin, Bus reversible orthogonal differential vector signaling codes.
  4. Ulrich, Roger; Hunt, Peter, Circuits for efficient detection of vector signaling codes for chip-to-chip communication.
  5. Ulrich, Roger; Hunt, Peter, Circuits for efficient detection of vector signaling codes for chip-to-chip communication.
  6. Ulrich, Roger; Hunt, Peter, Circuits for efficient detection of vector signaling codes for chip-to-chip communication.
  7. Simpson, Richard; Stewart, Andrew Kevin John; Hormati, Ali, Clock data alignment system for vector signaling code communications link.
  8. Shokrollahi, Amin; Holden, Brian; Simpson, Richard, Clock-embedded vector signaling codes.
  9. Shokrollahi, Amin; Holden, Brian; Simpson, Richard, Clock-embedded vector signaling codes.
  10. Gorokhov, Alexei Y.; Palanki, Ravi, Code interleaving for a structured code.
  11. Simpson, Richard; Ulrich, Roger, Control loop management and vector signaling code communications links.
  12. Ulrich, Roger, Data-driven voltage regulator.
  13. Cronie, Harm; Shokrollahi, Amin, Differential vector storage for dynamic random access memory.
  14. Tajalli, Armin; Cronie, Harm; Shokrollahi, Amin, Efficient processing and detection of balanced codes.
  15. Tajalli, Armin; Cronie, Harm; Shokrollahi, Amin, Efficient processing and detection of balanced codes.
  16. Tajalli, Armin, Enhanced phase interpolation circuit.
  17. Shokrollahi, Amin; Ulrich, Roger, Fault tolerant chip-to-chip communication with advanced voltage.
  18. Tajalli, Armin, High performance phase locked loop.
  19. Hormati, Ali; Tajalli, Armin; Shokrollahi, Amin, High speed communications system.
  20. Tajalli, Armin, Lock detector for phase lock loop.
  21. Shokrollahi, Amin; Chiurtu, Nicolae, Low EMI signaling for parallel conductor interfaces.
  22. Hormati, Ali, Low power chip-to-chip bidirectional communications.
  23. Amiri, Omid Talebi; Simpson, Richard, Low power multilevel driver.
  24. Proctor, James A.; Alapuranen, Pertti O., Method and apparatus for allowing soft handoff of a CDMA reverse link utilizing an orthogonal channel structure.
  25. Proctor, Jr., James A.; Alapuranen, Pertti O., Method and apparatus for allowing soft handoff of a CDMA reverse link utilizing an orthogonal channel structure.
  26. Shokrollahi, Amin; Ulrich, Roger, Method and apparatus for high speed chip-to-chip communications.
  27. Shokrollahi, Amin; Ulrich, Roger, Method and apparatus for high speed chip-to-chip communications.
  28. Ketchum, John W., Method and system for increased bandwidth efficiency in multiple input—multiple output channels.
  29. Berthet,Antoine; Visoz,Rapha?l, Method and system of iterative coding/decoding of digital data streams coded by spatio-temporal combinations, in multiple transmission and reception.
  30. Oki,Noboru, Method of multiplexing information in mobile communications, method and apparatus for decoding transport format combination indicator, and mobile station apparatus, base station apparatus and mobile communication system.
  31. Fox, John; Holden, Brian; Hunt, Peter; Keay, John D.; Shokrollahi, Amin; Simpson, Richard; Singh, Anant; Stewart, Andrew Kevin John; Surace, Giuseppe, Methods and systems for chip-to-chip communication with reduced simultaneous switching noise.
  32. Simpson, Richard; Stewart, Andrew Kevin John; Holden, Brian; Shokrollahi, Amin, Methods and systems for energy-efficient communications interface.
  33. Fox, John; Holden, Brian; Hunt, Peter; Keay, John D.; Shokrollahi, Amin; Stewart, Andrew Kevin John; Surace, Giuseppe; Ulrich, Roger; Simpson, Richard, Methods and systems for high bandwidth chip-to-chip communcations interface.
  34. Fox, John; Holden, Brian; Hunt, Peter; Keay, John D.; Shokrollahi, Amin; Stewart, Andrew Kevin John; Surace, Giuseppe; Ulrich, Roger; Simpson, Richard, Methods and systems for high bandwidth chip-to-chip communications interface.
  35. Fox, John; Holden, Brian; Hormati, Ali; Hunt, Peter; Keay, John D.; Shokrollahi, Amin; Simpson, Richard; Singh, Anant; Stewart, Andrew Kevin John; Surace, Giuseppe; Ulrich, Roger, Methods and systems for high bandwidth communications interface.
  36. Fox, John; Holden, Brian; Hormati, Ali; Hunt, Peter; Keay, John D.; Shokrollahi, Amin; Simpson, Richard; Singh, Anant; Stewart, Andrew Kevin John; Surace, Giuseppe; Ulrich, Roger, Methods and systems for high bandwidth communications interface.
  37. Cronie, Harm; Shokrollahi, Amin, Methods and systems for low-power and pin-efficient communications with superposition signaling codes.
  38. Fox, John; Holden, Brian; Shokrollahi, Amin; Singh, Anant; Surace, Giuseppe, Methods and systems for pin-efficient memory controller interface using vector signaling codes for chip-to-chip communication.
  39. Shokrollahi, Amin, Methods and systems for reduction of nearest-neighbor crosstalk.
  40. Shokrollahi, Amin, Methods and systems for reduction of nearest-neighbor crosstalk.
  41. Holden, Brian; Shokrollahi, Amin, Methods and systems for selection of unions of vector signaling codes for power and pin efficient chip-to-chip communication.
  42. Holden, Brian; Shokrollahi, Amin; Singh, Anant, Methods and systems for skew tolerance in and advanced detectors for vector signaling codes for chip-to-chip communication.
  43. Holden, Brian; Shokrollahi, Amin; Singh, Anant, Methods and systems for skew tolerance in and advanced detectors for vector signaling codes for chip-to-chip communication.
  44. McFarland, William J.; Green, Michael R., Methods for implementing a dynamic frequency selection (DFS) and a temporary channel selection feature for WLAN devices.
  45. McFarland, William J.; Green, Michael R., Methods for implementing a dynamic frequency selection (DFS) feature for WLAN devices.
  46. Tajalli, Armin, Multi-stage sampler with increased gain.
  47. Hormati, Ali; Shokrollahi, Amin, Multidrop data transfer.
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  49. Hormati, Ali; Shokrollahi, Amin, Multidrop data transfer.
  50. Ulrich, Roger, Multilevel driver for high speed chip-to-chip communications.
  51. Ulrich, Roger, Multilevel driver for high speed chip-to-chip communications.
  52. Ulrich, Roger, Multilevel driver for high speed chip-to-chip communications.
  53. Walter, Christoph, Multiwire linear equalizer for vector signaling code receiver.
  54. Kim,Younglok; Pan,Jung Lin, OVSF code system and methods for CDMA stations.
  55. Cronie, Harm; Shokrollahi, Amin, Orthogonal differential vector signaling.
  56. Holden, Brian; Shokrollahi, Amin, Orthogonal differential vector signaling codes with embedded clock.
  57. Holden, Brian; Shokrollahi, Amin, Orthogonal differential vector signaling codes with embedded clock.
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  59. Shokrollahi, Amin, Orthogonal differential vector signaling codes with embedded clock.
  60. Quick, Jr., Roy Franklin, Orthogonal modulation using M-sequences and Hadamard transforms.
  61. Amiri, Omid Talebi; Tajalli, Armin, Phase interpolation circuit.
  62. Tajalli, Armin; Shokrollahi, Amin, Quadrature and duty cycle error correction in matrix phase lock loop.
  63. Dabak, Anand G., Random access preamble coding for initiation of wireless mobile communications sessions.
  64. Proctor, Jr., James A., Receiving and transmitting reverse link signals from subscriber units.
  65. Tajalli, Armin, Sampler with low input kickback.
  66. Kleider, John Eric; Arneson, Steve Henry; Chuprun, J. Scott; Nolan, Keith Matthew; Hughes, Derrick Duane, Signal acquisition methods and apparatus in wireless communication systems.
  67. McCloskey, E. Daniel; Gossett, C Philip, Simultaneous use of multiple radio frequency channels.
  68. Shokrollahi, Amin; Wang Johnston, Margaret, Skew-resistant multi-wire channel.
  69. Cronie, Harm; Holden, Brian, Sorting decoder.
  70. Cronie, Harm; Shokrollahi, Amin, Storage method and apparatus for random access memory using codeword storage.
  71. Cronie, Harm; Shokrollahi, Amin, Storage method and apparatus for random access memory using codeword storage.
  72. Tajalli, Armin, Symmetric linear equalization circuit with increased gain.
  73. Tajalli, Armin, Symmetric linear equalization circuit with increased gain.
  74. Chang, Soo-Young, System and method for wireless communications.
  75. Stauffer, David R.; Stewart, Andrew Kevin John; Keay, John D., System for generating a test pattern to detect and isolate stuck faults for an interface using transition coding.
  76. Proctor, James A.; Alapuranen, Pertti O., Use of orthogonal or near orthogonal codes in reverse link.
  77. Proctor, James A.; Alapuranen, Pertti O., Use of orthogonal or near orthogonal codes in reverse link.
  78. Proctor, Jr., James A.; Alapuranen, Pertti O., Use of orthogonal or near orthogonal codes in reverse link.
  79. Proctor, Jr., James A.; Alapuranen, Pertti O., Use of orthogonal or near orthogonal codes in reverse link.
  80. Shokrollahi, Amin, Vector signaling code with improved noise margin.
  81. Shokrollahi, Amin, Vector signaling codes with high pin-efficiency for chip-to-chip communication and storage.
  82. Shokrollahi, Amin; Ulrich, Roger, Vector signaling codes with increased signal to noise characteristics.
  83. Shokrollahi, Amin, Vector signaling with reduced receiver complexity.
  84. Shokrollahi, Amin, Vector signaling with reduced receiver complexity.
  85. Shokrollahi, Amin, Vector signaling with reduced receiver complexity.
  86. Guo, Dongning, Virtual full duplex network communications.
  87. Tajalli, Armin, Voltage sampler driver with enhanced high-frequency gain.
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