Communication terminal, communication control method, and communication control program
Transmission of excess segments to a network can be effectively inhibited. A received byte calculation section calculates, at a sending side, the number of bytes of segments which arrive at a receiving side within a period of a minimum value of RTT measured by a minimum time measurement section , a...
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Main Authors | , , , |
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Format | Patent |
Language | English |
Published |
02.10.2012
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Online Access | Get full text |
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Abstract | Transmission of excess segments to a network can be effectively inhibited. A received byte calculation section calculates, at a sending side, the number of bytes of segments which arrive at a receiving side within a period of a minimum value of RTT measured by a minimum time measurement section , a target calculation section calculates a target used for controlling segment transmission based on the number of bytes of the received segments calculated by the received byte calculation section , and a send segment control section which controls segment transmission based on the target calculated by the target calculation section |
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AbstractList | Transmission of excess segments to a network can be effectively inhibited. A received byte calculation section calculates, at a sending side, the number of bytes of segments which arrive at a receiving side within a period of a minimum value of RTT measured by a minimum time measurement section , a target calculation section calculates a target used for controlling segment transmission based on the number of bytes of the received segments calculated by the received byte calculation section , and a send segment control section which controls segment transmission based on the target calculated by the target calculation section |
Author | Suzuki, Hideharu Yamamoto, Kazunori Igarashi, Ken Yamazaki, Kenichi |
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References | IETF RFC 3465, TCP Congestion Control with Appropriate Byte Counting (ABC), Feb. 2003. Kobayashi (2007/0008883) 20070100 Thomas R. Henderson, et al, "Transport Protocols for Internet-Compatible Satellite Networks", IEEE Journal on Selected Areas in Communications, Feb. 1, 1999, vol. 17, No. 2, XP011054915, IEEE Service Center, Piscataway, U.S. Mark Allman., "On the Generation and Use of TCP Acknowledgements", Computer Communication Review, Oct. 1, 1998, pp. 4-21, vol. 28, No. 5, XP000914449, ACM, New York, NY, U.S. Tadashi Enomoto, et al., "Rate Estimation Based on ACK Intervals", Technical Report of IEICE, the Institute of Electronics, Information and Communication Engineers, vol. 97 No. 620, Mar. 20, 1998, pp. 145-150 + 2 pages w/Partial Translation. Ha et al. (2002/0150048) 20021000 Shaojian Fu, et al., "SCTP over Satellite Networks", Computer Communications, CCW 2003, Proceedings, 2003 IEEE 18th Annual Workshop, Oct. 20, 2003, pp. 112-116, XP010662903, IEEE, Piscataway, NJ, U.S.A. Morandin (2006/0023634) 20060200 Hao (2005/0105469) 20050500 Ramakrishnan et al. (2006/0251011) 20061100 Ha et al. (2003/0202500) 20031000 Trainin (2006/0215563) 20060900 Mark Allman., "Increasing TCP's Initial Window", Network Working Group, RFC 3390, Oct. 2002, 14 pages. Ono (2001/0015956) 20010800 Thakur (2010/0020693) 20100100 Takayuki Sasaki, et al., "A Technique of Adaptive Bandwidth Estimation for Sack Based TCP over Wireless Networks", Technical Report of IEICE, The Institute of Electronics, Information and Communication Engineers, vol. J87-B No. 10, Oct. 10, 2004, pp. 1657-1667 + 2 pages w/Partial Translation. IETF RFC 2581, TCP Congestion Control, Apr. 1999. European Search Report, dated Mar. 28, 2011, 8 pages. Kim et al. (2003/0074476) 20030400 Fisk, Mike et al., "Dynamic Right-Sizing in TCP", Proc. of the Los Alamos Computer Science Institute Symposium, Oct. 2001, pp. 1-7. |
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