DocumentCode
1423046
Title
A study of deadlock models for a multiservice medium access protocol employing a slotted Aloha signalling channel
Author
Ivanovich, Milosh ; Zukerman, Moshe ; Cameron, Fraser
Author_Institution
Telstra Res. Lab., Melbourne, Vic., Australia
Volume
8
Issue
6
fYear
2000
fDate
12/1/2000 12:00:00 AM
Firstpage
800
Lastpage
811
Abstract
Medium access protocols for HFC and wireless ATM networks often use a collision based capacity request signalling channel which may rely on the slotted Aloha multiaccess principle. This paper studies the performance of a p-persistence slotted Aloha contention resolution algorithm (CRA), subject to extreme interstation correlation, by means of a discrete-time Markov chain analysis. We examine in detail the conditions leading to a deadlock-a situation where the time to collision resolution becomes unacceptably high and the system is practically unstable. We analyze two disaster scenario deadlock models, and study the effect of channel error probability, signalling traffic load, and the contention resolution algorithm used. We show that the key factor of the CRA is the collision rate and not channel errors. We propose and test three signalling channel capacity allocation schemes. We identify the best-performing of these three schemes as the cyclic contention mini-slot (CMS) sharing employing multiple CMSs per data slot. Finally, we demonstrate the need for implementation of an added scheme, which dynamically adjusts the p-persistence parameter
Keywords
Markov processes; access protocols; asynchronous transfer mode; channel capacity; discrete time systems; error statistics; hybrid fibre coax networks; radio networks; telecommunication signalling; HFC; added scheme; channel error probability; collision based capacity request signalling channel; collision rate; collision resolution; contention resolution algorithm; cyclic contention mini-slot; deadlock models; disaster scenario deadlock models; discrete-time Markov chain; interstation correlation,; multiservice medium access protocol; p-persistence slotted Aloha contention resolution algorithm; performance; signalling channel capacity allocation schemes; signalling traffic load; slotted Aloha multiaccess principle; slotted Aloha signalling channel; wireless ATM networks; Access protocols; Algorithm design and analysis; Channel capacity; Error probability; Hybrid fiber coaxial cables; Performance analysis; Road accidents; Signal analysis; Signal resolution; System recovery;
fLanguage
English
Journal_Title
Networking, IEEE/ACM Transactions on
Publisher
ieee
ISSN
1063-6692
Type
jour
DOI
10.1109/90.893875
Filename
893875
Link To Document