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Volume 30 Issue 3
Dec.  2010
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Wang Kai-xi, Yang Fang-chun . Study on the Overload Control Mechanism Based on the Adjacent Resourse in NGN[J]. Journal of Electronics & Information Technology, 2008, 30(3): 690-694. doi: 10.3724/SP.J.1146.2006.01246
Citation: Wang Kai-xi, Yang Fang-chun . Study on the Overload Control Mechanism Based on the Adjacent Resourse in NGN[J]. Journal of Electronics & Information Technology, 2008, 30(3): 690-694. doi: 10.3724/SP.J.1146.2006.01246

Study on the Overload Control Mechanism Based on the Adjacent Resourse in NGN

doi: 10.3724/SP.J.1146.2006.01246 cstr: 32379.14.SP.J.1146.2006.01246
  • Received Date: 2006-08-22
  • Rev Recd Date: 2007-07-06
  • Publish Date: 2008-03-19
  • The dependence is formed between different function entities due to service request. The concept named adjacent resources is proposed according to the dependence and the NGNs flatter architecture than the traditional telecommunication network. A distributed algorithm for overload control is presented, which is based on the proposed concept. It throttles the request at the logical adjacent resources. The algorithm can effectively handle with the overload control issuing from SIP fork or load balance scenarios. The mechanism can improve the network effective throughput by throttling the service request as soon as possible, which satisfies with the overload control requirements presented in the ETSI TISPAN draft.
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  • ETSI ES 282 001 V1.1.1. TISPAN NGN FunctionalArchitecture Release 1[S]. 2005.[2][2] British Telecommunications plc. MSF-TR-ARCH-007-FINAL, NGN Control Plane Overload and its Management[S]. 2006.[3][3] ETSI DTR TISPAN-WI02026-NGN V0.0.6d. NextGeneration Networks; Architecture for Control of ProcessingOverload[S]. 2006.[4][4] Rosenberg J. Draft-Rosenberg-sipping-overload-reqs-01.txt,Requirements for Management of Overload in the SessionInitiation Protocol[S]. 2006.[5][5] NICC. ND1007:2006/04(PNO-ISC/SPEC/007 Issue 3.2),ISUP User Part (ISUP)[S]. 2006.[6]Poikselka M.[J].Mayer G, and Khartabil H, et al.. The IMS: IPMultimedia Concepts and Services in the Mobile Domain[M].The Atrium, Southern Gate, Chichester: John Wiley SonsLtd.2004,:-Williams P M and Whitehead M J. Realising effectiveintelligent network overload controls[A]. In:Telecommunications Performance Engineering[M]. London:The Institution of Electrical Engineers, 2004: 181-220.[7]Jacobson V and Karels M J. Congestion avoidance andcontrol[J]. ACM Computer Communication Review(Proceedings of the SigComm'88 Symposium in Stanford, CA,August), 1998, 18(4): 314-329.[8]Stallings W著. 齐望东, 薛卫娟和傅麒麟等译. High-SpeedNetwork TCP/IP and ATM Design Principal[M]. 高速网络TCP/IP和ATM的设计原理. 北京: 电子工业出版社,1998: 290-322[9]Manfield D R, Millsteed G and Zukerman M. Congestioncontrols in SS7 signaling network[J]. IEEE CommunicationsMagazine, 1993, 31(6): 50-57.[10]Rumsewicz M P and Smith D E. A comparison of SS7congestion control options during mass call-in situations[J].IEEE/ACM Transactions on Networking.1995, 3(1):1-9[11]Floyd S and Fall K. Promoting the use of end-to-endcongestion control in the Internet[J].IEEE/ACM Transactionson Networking.1999, 7(4):458-472[12]Pillai R R. A distributed overload control algorithm fordelay-bounded call setup[J].IEEE/ACM Transactions onNetworking.2001, 9(6):780-789[13]Patel A, Prouskas K, and Barria J, et al. A computationaleconomy for IN load control using a multi-agent system[J].Journal of Network and Systems Management.2000, 8(3):397-417[14]王开西, 杨放春. 下一代网络中基于策略控制的过载控制体系结构[J]. 计算机工程, 2008, 34(2): 待刊.Wang Kai-xi, Yang Fang-chun, Study on the overload aontrolarchitecture based on the policy control in NGN. ComputerEngineering. 2008, 34(2):
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