Presentation 1996/11/14
Efficient Explicit-Rate Switch Algorithm with Max-Min Fairness for ABR Service Class in ATM Networks
Hiroyuki Ohsaki, Masayuki Murata, Hideo Miyahara,
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Abstract(in English) A rate-based congestion control algorithm regulates cell emission rate of source end systems based on feedback information from the network. It has been standardized by the ATM Forum for application to an ABR (Available Bit Rate) service class. In the standard, two types of congestion notification methods of the switch are specified: EFCI marking and explicit-rate marking. In this paper, we focus on explicit-rate marking switch. We propose our enhancements on a recently proposed switch algorithm called as the max-min scheme. The main objective of our enhancements is to control the queue length of the switch for preventing cell loss and achieving full link-utilization. We show effectiveness of our switch algorithm by simulation experiments.
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Keyword(in English) ABR Service Class / Rate-Based Congestion Control Algorithm / Explicit-Rate Switch / Max-Min Fairness
Paper # SAT96-89,IN96-95
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Conference Date 1996/11/14(1days)
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Language ENG
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Efficient Explicit-Rate Switch Algorithm with Max-Min Fairness for ABR Service Class in ATM Networks
Sub Title (in English)
Keyword(1) ABR Service Class
Keyword(2) Rate-Based Congestion Control Algorithm
Keyword(3) Explicit-Rate Switch
Keyword(4) Max-Min Fairness
1st Author's Name Hiroyuki Ohsaki
1st Author's Affiliation Department of Informatics and Mathematical Science Graduate School of Engineering Science, Osaka University()
2nd Author's Name Masayuki Murata
2nd Author's Affiliation Department of Informatics and Mathematical Science Graduate School of Engineering Science, Osaka University
3rd Author's Name Hideo Miyahara
3rd Author's Affiliation Department of Informatics and Mathematical Science Graduate School of Engineering Science, Osaka University
Date 1996/11/14
Paper # SAT96-89,IN96-95
Volume (vol) vol.96
Number (no) 355
Page pp.pp.-
#Pages 8
Date of Issue