DocumentCode :
1047960
Title :
Asymptotic Performance Limits of Switches With Buffered Crossbars Supporting Multicast Traffic
Author :
Giaccone, Paolo ; Leonardi, Emilio
Author_Institution :
Politecnico di Torino, Torino
Volume :
54
Issue :
2
fYear :
2008
Firstpage :
595
Lastpage :
607
Abstract :
Input queued (IQ) switches exploiting buffered crossbars (CICQ switches) are widely considered very promising architectures that outperform IQ switches with bufferless switching fabrics both in terms of architectural scalability and performance. Indeed the problem of scheduling packets for transfer through the switching fabric is significantly simplified by the presence of internal buffers in the crossbar, which makes possible the adoption of efficient, simple and fully distributed scheduling algorithms. This paper studies the throughput performance of CICQ switches supporting multicast traffic, showing that, similarly to IQ architectures, also CICQ switches with arbitrarily large number of ports may suffer of significant throughput degradation under ldquopathologicalrdquo multicast traffic patterns. Despite the asymptotic nature of these results, the authors believe that they can contribute to a deeper understanding of the behavior of CICQ architectures supporting multicast traffic.
Keywords :
multicast communication; packet switching; telecommunication traffic; asymptotic performance limits; buffered crossbars; distributed scheduling algorithms; input queued switches; internal buffers; multicast traffic; packets scheduling; switching fabric; throughput performance; Degradation; Fabrics; H infinity control; Packet switching; Scalability; Scheduling algorithm; Switches; Throughput; Traffic control; Unicast; Buffered crossbars; multicast; packet switching; scheduling;
fLanguage :
English
Journal_Title :
Information Theory, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9448
Type :
jour
DOI :
10.1109/TIT.2007.913564
Filename :
4439847
Link To Document :
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