Topology discovery in heterogeneous IP networks:: The NetInventory system

被引:68
|
作者
Breitbart, Y [1 ]
Garofalakis, M
Jai, B
Martin, C
Rastogi, R
Silberschatz, A
机构
[1] Kent State Univ, Dept Comp Sci, Kent, OH 44244 USA
[2] Lucent Technol, Bell Labs, Murray Hill, NJ 07974 USA
[3] Google Inc, Mountain View, CA 94043 USA
关键词
IP network management; physical network topology; SNMP MIBs; switched Ethernet;
D O I
10.1109/TNET.2004.828963
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
Knowledge of the up-to-date physical topology of an IP network is crucial to a number of critical network management tasks, including reactive and proactive resource management, event correlation, and root-cause analysis. Given the dynamic nature of today's IP networks, keeping track of topology information manually is a daunting (if not impossible) task. Thus, effective algorithms for automatically discovering physical network topology are necessary. Earlier work has typically concentrated on either 1) discovering logical (i.e., layer-3) topology, which implies,that the connectivity of all layer-2 elements (e.g., switches and bridges) is ignored, or 2) proprietary solutions targeting specific product families. In this paper, we present novel algorithms for discovering physical topology in heterogeneous (i.e., multi-vendor) IP networks. Our algorithms rely on standard SNMP MIB information that is widely supported by modern IP network elements and require no modifications to the operating system software running on elements or hosts. We have implemented the algorithms presented in this paper in the context of the NetInventory topology-discovery tool that has been tested on Lucent's own research network. The experimental results clearly validate our approach, demonstrating that our tool can consistently discover the accurate physical network topology with reasonably small running-time requirements even for fairly large network configurations.
引用
收藏
页码:401 / 414
页数:14
相关论文
共 50 条
  • [21] Topology Discovery of Synchronous Optical Networks
    Jaumard, Brigitte
    Muhammad, Ali
    Fahim, Rami
    2017 INTERNATIONAL CONFERENCE ON COMPUTING, NETWORKING AND COMMUNICATIONS (ICNC), 2016, : 194 - 199
  • [22] Evaluation of Topology Optimization Objectives in IP Networks
    Hanay, Y. Sinan
    Arakawa, Shin'ichi
    Murata, Masayuki
    JOURNAL OF COMMUNICATIONS AND NETWORKS, 2019, 21 (04) : 395 - 404
  • [23] Topology discovery for large Ethernet networks
    Lowekamp, B
    O'Hallaron, DR
    Gross, TR
    ACM SIGCOMM COMPUTER COMMUNICATION REVIEW, 2001, 31 (04) : 237 - 248
  • [24] Topology discovery on extending Ethernet networks
    Son, Myunghee
    Lee, Yongjoon
    Pyo, Cheolsig
    WSEAS Transactions on Communications, 2005, 4 (07): : 431 - 438
  • [25] Physical topology discovery for remote networks
    Zhenshan, Liu
    Qingxian, Wang
    Junyong, Luo
    2007 INTERNATIONAL SYMPOSIUM ON COMPUTER SCIENCE & TECHNOLOGY, PROCEEDINGS, 2007, : 971 - 974
  • [26] Experimental study of dynamic IP topology reconfiguration in IP/WDM networks
    Liu, KH
    Liu, CD
    Pastor, J
    Roy, A
    Wei, JY
    GLOBECOM '01: IEEE GLOBAL TELECOMMUNICATIONS CONFERENCE, VOLS 1-6, 2001, : 76 - 80
  • [27] New algorithms on IP network topology discovery and its implement
    Chen, Fu
    Yang, Jia-Hai
    Yang, Yang
    Tien Tzu Hsueh Pao/Acta Electronica Sinica, 2008, 36 (08): : 1620 - 1625
  • [28] Standardizing IP network topology discovery through MIB development
    Nazir, F
    Chawla, FJ
    Haider, S
    Ahmad, HF
    Suguri, H
    Ali, A
    CIC '05: PROCEEDINGS OF THE 2005 INTERNATIONAL CONFERENCE ON COMMUNICATIONS IN COMPUTING, 2005, : 226 - 230
  • [29] Towards IP geolocation with intermediate routers based on topology discovery
    Zhihao Wang
    Hong Li
    Qiang Li
    Wei Li
    Hongsong Zhu
    Limin Sun
    Cybersecurity, 2
  • [30] A Topology Discovery Algorithm Based On the IP-Network3
    Dong, Jing
    Gang, Xiao
    2012 INTERNATIONAL CONFERENCE ON CONTROL ENGINEERING AND COMMUNICATION TECHNOLOGY (ICCECT 2012), 2012, : 665 - 668