DocumentCode
3013132
Title
Performance evaluation and management of the consensus algorithm in a real-time distributed transactional system
Author
Saïdane, Leila Azouz ; Kamoun, Farouk
Author_Institution
Ecole Nat. des Sci. de l´´Inf., Tunis, Tunisia
fYear
1999
fDate
1999
Firstpage
418
Lastpage
424
Abstract
In a real-time distributed transactional system, customers generate transactions, which should be executed on different servers. Transactions are scheduled according to the (earliest deadline first) EDF discipline. To get a global view of the system, the consensus algorithm has been considered. In this paper, a mathematical model is developed to obtain the average stay time of a transaction within the system. This model introduces a bulk arrival M/G/1 station with K classes of customers where bulks are considered according to the FIFO discipline, customers are scheduled according to EDF within a group, and the algorithms operation is taken into account according to the head of line discipline. The response time distribution is also computed. This has allowed us to determine the optimal minimal interconsensus for a given consensus duration, the deadline miss probability and the minimum value to attribute to a transaction deadline in order to guarantee a given probability that the transaction does not miss its deadline
Keywords
distributed processing; minimisation; probability; queueing theory; scheduling; transaction processing; EDF discipline; FIFO discipline; average stay time; bulk arrival M/G/1 station; consensus algorithm; deadline miss probability; earliest deadline first; head of line discipline; mathematical model; optimal minimal interconsensus; performance evaluation; real-time distributed transactional system; response time distribution; Communication networks; Computer architecture; Distributed computing; Mathematical model; Network servers; Processor scheduling; Propagation delay; Real time systems; Scheduling algorithm; Traffic control;
fLanguage
English
Publisher
ieee
Conference_Titel
Computers and Communications, 1999. Proceedings. IEEE International Symposium on
Conference_Location
Red Sea
Print_ISBN
0-7695-0250-4
Type
conf
DOI
10.1109/ISCC.1999.780935
Filename
780935
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