Traffic Engineering for Provisioning Hose Model VPNs with Delay Requirements

被引:0
作者
Liu, Yu-Liang [1 ]
机构
[1] Aletheia Univ, Dept Comp Sci & Informat Engn, New Taipei City, Taiwan
来源
MANUFACTURING SCIENCE AND TECHNOLOGY, PTS 1-8 | 2012年 / 383-390卷
关键词
Hose Model; Virtual Private Networks; Quality of Service; Bandwidth Requirements; Delay Requirements; Network Traffic Engineering; VIRTUAL PRIVATE NETWORKS; RESOURCE-MANAGEMENT; SERVICES;
D O I
10.4028/www.scientific.net/AMR.383-390.4241
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
Virtual Private Network (VPN) is a logic network established on top of a public packet switched network. Previous research works on VPN mainly focused on security issues, such as tunneling, encryption/decryption and authentication. To guarantee that customers' QoS requirements specified by customers can be met, the network service provider needs to reserve enough network resources on the network, and allocate/manage them in an optimal way. Traffic engineering algorithms can be used by the network service provider to establish multiple VPNs in an optimal way, while meeting customers' QoS requirements. Previous works on VPN traffic engineering focus on meeting bandwidth guarantees, however, for some network applications, such as VOW and IPTV, meeting delay requirement is one of another vital issue. To our knowledge until now, issues about traffic engineering for establishing VPNs meeting both bandwidth and delay requirements have not been investigated. In this paper, we proposed a novel VPN traffic engineering algorithm for establishing hose model VPNs with delay requirements. According to experimental simulations conducted our algorithm achieved better performance compared to previous ones.
引用
收藏
页码:4241 / 4245
页数:5
相关论文
共 20 条
[11]   Minimum interference routing of bandwidth guaranteed tunnels with MPLS traffic engineering applications [J].
Kar, K ;
Kodialam, M ;
Lakshman, TV .
IEEE JOURNAL ON SELECTED AREAS IN COMMUNICATIONS, 2000, 18 (12) :2566-2579
[12]   Algorithms for provisioning virtual private networks in the hose model [J].
Kumar, A ;
Rastogi, R ;
Silberschatz, A ;
Yener, B .
IEEE-ACM TRANSACTIONS ON NETWORKING, 2002, 10 (04) :565-578
[13]  
Liu Y.-L., 2005, P IEEE GLOBECOM 2005
[14]   Traffic engineering for provisioning restorable hose-model VPNs [J].
Liu, Yu-Liang ;
Sun, Yeali Sunny ;
Chen, Meng Chang .
IEICE TRANSACTIONS ON COMMUNICATIONS, 2006, E89B (09) :2394-2403
[15]   MTRA: An on-line hose-model VPN provisioning algorithm [J].
Liu, Yu-Liang ;
Sun, Yeali S. ;
Chen, Meng Chang .
TELECOMMUNICATION SYSTEMS, 2006, 31 (04) :379-398
[16]   Loop-free traffic engineering with path protection in MPLS VPNs [J].
Naraghi-Pour, Mort ;
Desai, Vinay .
COMPUTER NETWORKS, 2008, 52 (12) :2360-2372
[17]   Multi-path routing versus tree routing for VPN bandwidth provisioning in the hose model [J].
Poo, Gee-Swee ;
Wang, Haibo .
COMPUTER NETWORKS, 2007, 51 (06) :1725-1743
[18]   Resource management for virtual private networks [J].
Raghunath, Satish ;
Ramakrishnan, K. K. .
IEEE COMMUNICATIONS MAGAZINE, 2007, 45 (04) :38-44
[19]  
Venkateswaran R, 2001, IEEE POTENTIALS, V20, P11, DOI 10.1109/45.913204
[20]  
Zhang L., 2005, P IEEE INT C PAR PRO