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[미국특허] Method of data transmission in a data communication network 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H04L-012/56
출원번호 US-0151994 (1998-09-11)
발명자 / 주소
  • Noah Joseph Breslow
  • Nathan D. T. Boyd
  • Greg A. Torluemke
출원인 / 주소
  • Teledesic LLC
대리인 / 주소
    Christensen O'Connor Johnson Kindness PLLC
인용정보 피인용 횟수 : 47  인용 특허 : 5

초록

A method of data transmission in a data communication network includes negotiating a connection between a source terminal and a destination terminal in the data communication network. During the connection negotiation process, optimal field lengths are determined for recording a source identifier an

대표청구항

1. A method of data transmission in a data communication network, comprising:(a) generating a primary data packet formatted for transmission from a source terminal to a destination terminal in the data communication network, the primary data packet having a header and a payload, the header including

이 특허에 인용된 특허 (5) 인용/피인용 타임라인 분석

  1. Oda Tsuyoshi,JPX ; Miyazawa Satoshi,JPX, Audio and video data transmitting apparatus, system, and method thereof.
  2. Ayerst Douglas Irvin (Delray Beach FL) Khan Malik J. (Boynton Beach FL) Rudowicz Michael James (Delray Beach FL), Method and apparatus for organizing and recovering information communicated in a radio communication system.
  3. Yuan Ruixi ; Akyol Bora ; Strayer William Timothy, Method and system for connectionless communication in a cell relay satellite network.
  4. Sakazaki Yoshihisa (Kanagawa-ken JPX) Abe Shuji (Kanagawa-ken JPX), Recording/reproducing apparatus for data packet stream.
  5. Achilleoudis Nicos,FRX ; Van Driel Carel J. L.,NLX ; Giorgi Sabine V.,FRX ; Van Grinsven Petrus A. M.,NLX ; Teboul Guillene E.,FRX, Transmission system for synchronous and asynchronous data portions.

이 특허를 인용한 특허 (47) 인용/피인용 타임라인 분석

  1. Sohn, Chang-Ho; Choi, Jong-Mu, Apparatus and method for identifying network connection status in portable terminal.
  2. Park, Chul; Yoon, Chul-Sik, Apparatus for reconstructing control message, apparatus for restoring control message, method of reconstructing control message, and method of restoring control message.
  3. Agarwal, Anil, Configurable delay limit for error control communications.
  4. Dirstine, Adam D.; Popp, Christopher Glen, Embedded communication in message based transports.
  5. Agarwal, Anil, Error control terminal discovery and updating.
  6. Shay, A. David; Berger, Joubert; Leima, Patricia Joy; Alexander, Jonathan; Xuan, Chaoting, Establishing secure TCP/IP communications using embedded IDs.
  7. Klein, Israel Jay; Stanwood, Kenneth L.; Pollmann, Steve; Price, Frederick W.; Hadar, Rami; Arviv, Eli; Gazelle, David; Gilbert, Sheldon, Frame structure for an adaptive modulation wireless communication system.
  8. Klein, Israel Jay; Stanwood, Kenneth L.; Pollmann, Steve; Price, Frederick W.; Hadar, Rami; Arviv, Eli; Gazelle, David; Gilbert, Sheldon, Frame structure for an adaptive modulation wireless communication system.
  9. Klein, Israel Jay; Stanwood, Kenneth L.; Pollmann, Steve; Price, Frederick W.; Hadar, Rami; Arviv, Eli; Gazelle, David; Gilbert, Sheldon, Frame structure for an adaptive modulation wireless communication system.
  10. Stanwood, Kenneth L.; Klein, Israel Jay; Lin, George; Chen, An, Framing for an adaptive modulation communication system.
  11. Stanwood, Kenneth L.; Klein, Israel Jay; Lin, George; Chen, An, Framing for an adaptive modulation communication system.
  12. Stanwood, Kenneth L.; Klein, Israel Jay; Lin, George; Chen, An, Framing for an adaptive modulation communication system.
  13. Stanwood, Kenneth L.; Klein, Israel Jay; Lin, George; Chen, An, Framing for an adaptive modulation communication system.
  14. Stanwood, Kenneth L.; Klein, Israel Jay; Lin, George; Chen, An, Framing for an adaptive modulation communication system.
  15. Ghiasi, Ali; Pillai, Velu Chellam, Inband management of ethernet links.
  16. Haney, Richard D., Inter-autonomous networking involving multiple service providers.
  17. Stanford Clark, Andrew James, Method and apparatus for message routing in a computer system.
  18. Lassers, Harold Aaron, Method and apparatus for re-sequencing data packets.
  19. Saha, Abheek; Noerpel, Anthony; Li, Hongjun; Torres, Robert; Verma, Sandeep; Kamath, Mahesh; Schweinhart, Craig, Method and system for centrally exchanging terminal information over a meshed network.
  20. Zimmerman, Ofer; Spinar, Brian; Stanwood, Kenneth L., Method and system for packing management messages in a communication system.
  21. Zimmerman, Ofer; Spinar, Brian; Stanwood, Kenneth L., Method and system for packing management messages in a communication system.
  22. Breslow, Noah J.; Boyd, Nathan D. T.; Torluemke, Greg A., Method of data transmission in a data communication network.
  23. Breslow, Noah Joseph; Boyd, Nathan D. T.; Torluemke, Greg A., Method of data transmission in a data communication network.
  24. O'Toole, Jr., James W.; Jannotti, John J., Methods and apparatus for maintaining a map of node relationships for a network.
  25. Jayam,Ramkumar; Kapatkar,Anil; Munnangi,Sivakumar; Venkataraman,Srinivasan, Methods and apparatus for partially reordering data packets.
  26. Watanabe, Koji; Takahashi, Yousuke, Node device, packet control device, radio communication device, and transmission control method.
  27. Musoll, Enrique; Nemirovsky, Mario; Huynh, Jeffrey, Packet processor that generates packet-start offsets to immediately store incoming streamed packets using parallel, staggered round-robin arbitration to interleaved banks of memory.
  28. Stanwood, Kenneth L.; Wang, Stanley; Johnson, Robert M., Packing source data packets into transporting packets with fragmentation.
  29. Stanwood, Kenneth L.; Wang, Stanley; Johnson, Robert M., Packing source data packets into transporting packets with fragmentation.
  30. Stanwood, Kenneth L.; Wang, Stanley; Johnson, Robert M., Packing source data packets into transporting packets with fragmentation.
  31. Stanwood, Kenneth L.; Wang, Stanley; Johnson, Robert M., Packing source data packets into transporting packets with fragmentation.
  32. Haney, Richard D., Private tunnel usage to create wide area network backbone over the internet.
  33. Fischer, Michael Andrew, Programmable interface controller suitable for spanning clock domains.
  34. Chao, William W., Satellite communication system.
  35. Shay, A. David, System and methods for identification and tracking of user and/or source initiating communication in a computer network.
  36. Visalli, Greg; Morrison, Douglas; Bodayla, Roy, System for an open architecture development platform with centralized synchronization.
  37. Shay, A. David, System, apparatuses, methods and computer-readable media for determining the security status of a computer before establishing a network connection.
  38. Shay, A. David, System, apparatuses, methods and computer-readable media for determining the security status of a computer before establishing connection thereto.
  39. Shay, A. David, System, apparatuses, methods, and computer-readable media using identification data in packet communications.
  40. Haimi-Cohen, Raziel; Jiang, Hong; Liu, Jianwei; Liu, Larry, Systems and methods for transmission of compressive sensing data.
  41. Riedl, Steven E.; Carlucci, John B.; Stebbins, John A.; Friedman, Jo A., Technique for communicating relatively high and low priority data between a terminal and a remote location.
  42. Zhang, Guodong; Terry, Stephen E.; Dick, Stephen G., Uplink radio access network with uplink scheduling.
  43. Haney, Richard D., VPN usage to create wide area network backbone over the internet.
  44. Haney, Richard D., VPN usage to create wide area network backbone over the internet.
  45. Haney,Richard D., Wide area network using internet with high quality of service.
  46. Haney,Richard D., Wide area network using internet with quality of service.
  47. Haney, Richard D., Wide area network with high quality of service.

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