DocumentCode
2490311
Title
Statistical Convergence Analysis of Routing Algorithms
Author
Bohdanowicz, Frank ; Jakobs, Marcel ; Steigner, Christoph
Author_Institution
Univ. of Koblenz, Koblenz, Germany
fYear
2010
fDate
11-16 April 2010
Firstpage
365
Lastpage
370
Abstract
Whenever new and better routing algorithms are developed a comprehensive convergence analysis can show the real achievements of new algorithms. This paper presents a new approach for a convergence analysis together with a new distance vector routing algorithm, which is no longer affected by the well-known Counting-to-Infinity (CTI) problem. The RMTI algorithm uses event-triggered updates instead of time-periodic updates in order to speed up convergence time and to reduce update traffic. Convergence properties of RMTI are compared with RIPv2 under the impeded condition of provoked CTI-situations caused by link failures in order to show the difference of RMTI to common RIPv2 algorithms. The major focus of this paper is the description of a test environment and the approaches used to measure the convergence time of the routing algorithms. Special effort is directed at minimizing measurement perturbations by separation of measurement and evaluation tasks into online data capturing and offline statistical analysis. The results show that this convergence measurement method is a universally valid method and that RMTI is a newly competitive intra domain routing algorithm which can - in contrast to others - execute filtering policies.
Keywords
statistical analysis; telecommunication network routing; RMTI algorithm; convergence measurement method; counting-to-infinity problem; distance vector routing algorithm; event-triggered updates; link failures; routing algorithms; routing with metric-based topology investigation algorithm; statistical convergence analysis; time-periodic updates; Algorithm design and analysis; Analytical models; Convergence; Linux; Network topology; Routing protocols; Statistical analysis; Telecommunication traffic; Testing; Time measurement; Convergence Analysis; Performance Comparison; RMTI; Routing Algorithms;
fLanguage
English
Publisher
ieee
Conference_Titel
Networks (ICN), 2010 Ninth International Conference on
Conference_Location
Menuires
Print_ISBN
978-1-4244-6083-0
Type
conf
DOI
10.1109/ICN.2010.65
Filename
5474003
Link To Document