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Method and apparatus for admission management in wireless communication systems 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G08C-015/00
출원번호 US-0569911 (2000-05-11)
발명자 / 주소
  • Gopalakrishnan,Nandu
  • Hu,Teck H.
  • Rudrapatna,Ashok N.
  • Zhu,Pengfei
출원인 / 주소
  • Lucent Technologies Inc.
인용정보 피인용 횟수 : 39  인용 특허 : 13

초록

A method and apparatus are provided for dynamically controlling a high speed wireless communication system to optimize utilization of system resources and increase system throughput. The invention operates to determine an allocation of wireless transmission resources to each user application served

대표청구항

What is claimed is: 1. In a wireless communication system having a transmitter and at least one receiver coupled via a communication channel and operable to provide a communications path for at least one user application, a method of admission control for a user requesting access to said communicat

이 특허에 인용된 특허 (13)

  1. Naor Zohar,ILX ; Levy Hanoch,ILX, Adaptive threshold scheme for tracking and paging mobile users.
  2. Perreault John A. ; Picker Dennis J. ; Menon Sunil K., Apparatus and method for spectrum management in a multipoint communication system.
  3. Ayyagari Deepak ; Resheff Samuel ; Ephremides Anthony, Capacity enhancement for multi-code CDMA with integrated services through quality of services and admission control.
  4. Berger Arthur W. (Fair Haven NJ) Milito Rodolfo A. (Piscataway NJ) Whitt Ward (Basking Ridge NJ), Efficient, rate-base multiclass access control.
  5. Labonte Sylvain,CAX ; Turcotte Eric,CAX, Estimation of radio channel bit error rate in a digital radio telecommunication network.
  6. Nieczyporowicz Leon L ; Giallorenzi Thomas R ; Stephenson Philip L ; Sylvester Randal R, Fixed wireless loop system having adaptive system capacity based on estimated signal to noise ratio.
  7. Jay R. Walton ; Mark Wallace ; Jack Holtzman ; Franklin P. Antonio, Method and apparatus for controlling transmissions of a communications systems.
  8. Rezaiifar, Ramin; Holtzman, Jack, Method and apparatus for distributed optimal reverse link scheduling of resources, such as a rate and power in a wireless communication system.
  9. Lu, Ming; Rudrapatna, Ashok N.; Zhu, Pengfei, Method and apparatus for multi-user resource management in wireless communication systems.
  10. Faerber Michael,DEX ; Hoefer Bruno,DEX, Method for assigning radio resources to a plurality of transmission devices of a base station within a radio communicati.
  11. Sourani, Sason; Litvak, Oleg, Method for managing varying traffic loads in a telecommunication network.
  12. Quick ; Jr. Roy F. (San Diego CA), Random access communications channel for data services.
  13. Dent Paul W., Time-reuse partitioning system and methods for cellular radio telephone systems.

이 특허를 인용한 특허 (39)

  1. Beaujean, Christophe; Roux, Pierre, Admission control for a heterogeneous communication system.
  2. Wu,Raymond, Analysis of a data transmission system.
  3. Iyer, Pradeep J; Taylor, John Richard; Setia, Deepinder, Call admission control within a wireless network.
  4. Hassan, Amer A.; Huitema, Christian, Cognitive multi-user OFDMA.
  5. Hassan, Amer A.; Huitema, Christian, Cognitive multi-user OFDMA.
  6. Hassan, Amer A.; Huitema, Christian, Cognitive multi-user OFDMA.
  7. Hassan, Amer A.; Huitema, Christian, Cognitive multi-user OFDMA.
  8. Hassan, Amer A.; Huitema, Christian, Cognitive multi-user OFDMA.
  9. Wager,Stefan; Sachs,Joachim; Wiemann,Henning, Downlink scheduling using parallel code trees.
  10. Hassan, Amer A.; Huitema, Christian; Stark, Wayne; Wu, Yunnan; Chou, Philip Andrew, FEC in cognitive multi-user OFDMA.
  11. Lee, Jay J.; Tjio, Lee K., Flow-based proactive connection admission control (CAC) in wireless networks.
  12. Yarkosky, Mark, Method and system for selecting vocoder data rates and transmit powers for air interface communications.
  13. Kosanovic,Bogdan, Method for resource management in a real-time embedded system.
  14. Hassan, Amer A.; Huitema, Christian, OFDM transmission and reception for non-OFDM signals.
  15. Hassan, Amer A.; Huitema, Christian, OFDM transmission and reception for non-OFDM signals.
  16. Hassan, Amer A.; Huitema, Christian, OFDM transmission and reception for non-OFDM signals.
  17. Hassan, Amer A.; Huitema, Christian, OFDM transmission and reception for non-OFDM signals.
  18. Hassan, Amer A.; Huitema, Christian, OFDM transmission and reception for non-OFDMA signals.
  19. Hassan, Amer A.; Sapek, Adam; Shen, Hui; Kuehnel, Thomas W.; Wu, Deyun; Huitema, Christian, Orthogonal Frequency Division Multiple Access with carrier sense.
  20. Hassan, Amer A.; Sapek, Adam; Shen, Hui; Kuehnel, Thomas W.; Wu, Deyun; Huitema, Christian, Orthogonal frequency division multiple access with carrier sense.
  21. Hassan, Amer A.; Sapek, Adam; Shen, Hui; Kuehnel, Thomas W.; Wu, Deyun; Huitema, Christian, Orthogonal frequency division multiple access with carrier sense.
  22. Lindoff, Bengt; Haartsen, Jacobus Cornelis; Wallén, Anders, Power-aware selection of radio access technology.
  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, George R.; Hoffmann, John E.; Proctor, James A.; Rouphael, Antoine J., Qualifying available reverse link coding rates from access channel power setting.
  25. Nelson, George R.; Hoffmann, John E.; Proctor, James A.; Rouphael, Antoine J., Qualifying available reverse link coding rates from access channel power setting.
  26. 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.
  27. Kosanovic,Bogdan; Fosgate,Charles, Realtime management of processing resources.
  28. Hassan, Amer A.; Kuehnel, Thomas W.; Wu, Deyun; Huitema, Christian; Frost, D. Gabriel, Signaling to application lack of requested bandwidth.
  29. Hassan, Amer A.; Kuehnel, Thomas W.; Wu, Deyun; Huitema, Christian; Frost, D. Gabriel, Signaling to application lack of requested bandwidth.
  30. Hassan, Amer A.; Kuehnel, Thomas W.; Wu, Deyun; Huitema, Christian; Frost, D. Gabriel, Signaling to application lack of requested bandwidth.
  31. Hassan, Amer A.; Kuehnel, Thomas W.; Wu, Deyun; Huitema, Christian; Frost, D. Gabriel, Stack signaling to application with lack of requested bandwidth.
  32. Hassan, Amer A.; Kuehnel, Thomas W.; Wu, Deyun; Huitema, Christian; Frost, D. Gabriel, Stack signaling to application with lack of requested bandwidth.
  33. Greene, Daniel H.; Chu, Maurice; Hindi, Haitham; Preas, Bryan T.; Parekh, Nitin, Statistical packing of resource requirements in data centers.
  34. Kim,Kyoung, System and method for reverse link overload control.
  35. Marinier,Paul; Zeira,Eldad; La Sita,Frank, System and method for simulation of performance of measurement-based algorithms for slotted wireless communications.
  36. Phillipi,Mark P.; Ross,Bradley S.; Anderson,Todd J., Systems and methods for broadband network optimization.
  37. Joshi, Niranjan; Kogiantis, Achilles G.; Rudrapatna, Ashok N.; Sundaram, Ganapathy S., Techniques for efficient control of aggregating wireless voice communications.
  38. Iyer, Pradeep; Taylor, John Richard, VLAN mobility.
  39. Banerjee, Anirban; Roberts, David A.; Shen, Hui; Jiang, Shawn; Mahajan, Saurabh; Gual, Chris, Wireless access point supporting control by multiple applications.
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