DocumentCode :
319052
Title :
Performance and correctness of the ATM ABR rate control scheme
Author :
Lee, David ; Ramakrishnan, K.K. ; Moh, W. Melody ; Shankar, A. Udaya
Author_Institution :
AT&T Bell Labs., Murray Hill, NJ, USA
Volume :
2
fYear :
1997
fDate :
7-12 Apr 1997
Firstpage :
785
Abstract :
We study both the correctness and performance of the source/destination protocol of the available bit rate (ABR) service in asynchronous transfer mode (ATM) networks. Although the basic source/destination protocol for congestion management is relatively simple, the protocol specification has to cope with several “real-world” cases such as failures and delayed/lost feedback which may introduce complexity. Rigorous proofs of the correct functioning of the protocol based on a formal specification is necessary. We use a formal extended finite state machine (EFSM) model to show that the ABR source/destination protocol is free of live-locks, so that under all conditions both resource management (RM) and data cells will be transmitted. We also show that the network options of explicit forward congestion indication (EFCI) and explicit rate (ER) interoperate correctly. We use the understanding of the informal English description of the source/destination behavior and of our EFSM model to derive conditions that ensure that the source transmission rate is stable in the presence of delayed or lost feedback RM cells, especially under the operation of a source rule that requires the reduction of the source rate under these conditions. We arrive at bounds on the number of consecutive RM cell losses tolerated while the rate remains stable. We also provide a worst-case analysis of the delay in turning around RM cells at the destination station and the worst-case inter-departure time of forward RM cells from the source
Keywords :
asynchronous transfer mode; delays; finite state machines; formal specification; protocols; telecommunication congestion control; telecommunication network management; ATM ABR rate control; ATM networks; EFSM model; RM cell losses; asynchronous transfer mode; available bit rate service; congestion management; correctness; data cells; delayed/lost feedback; destination station; explicit forward congestion indication; explicit rate; formal extended finite state machine; formal specification; forward RM cells; live-lock free protocol; performance; protocol specification; source transmission rate; source/destination protocol; worst-case analysis; worst-case inter-departure time; Asynchronous transfer mode; Automata; Bit rate; Delay effects; Erbium; Feedback; Formal specifications; Protocols; Resource management; Turning;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
INFOCOM '97. Sixteenth Annual Joint Conference of the IEEE Computer and Communications Societies. Driving the Information Revolution., Proceedings IEEE
Conference_Location :
Kobe
ISSN :
0743-166X
Print_ISBN :
0-8186-7780-5
Type :
conf
DOI :
10.1109/INFCOM.1997.644540
Filename :
644540
Link To Document :
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