TY - JOUR
T1 - Performance of a P i persistent protocol subject to correlated Gaussian traffic
AU - Addie, Ronald G.
AU - Platt, Darren
AU - Zukerman, Moshe
PY - 1996
Y1 - 1996
N2 - We consider the p i -persistent protocol and we derive approximate analytical results for the unfinished work distribution at each node on the bus under the assumption that the arrival process at each node follows a discrete time Gaussian process. A deterministic version of the protocol, which reduces the variance of the service process and therefore improves queueing performance, is also considered. The solution is simple and fast to compute and is not overly sensitive to the number of nodes. Simulation results indicate that the results are accurate so long as the performance can be accurately approximated based on the dominant effect of an exponential tail in the distribution of queued load. The results are also applicable to a single server Gaussian queue with priorities.
AB - We consider the p i -persistent protocol and we derive approximate analytical results for the unfinished work distribution at each node on the bus under the assumption that the arrival process at each node follows a discrete time Gaussian process. A deterministic version of the protocol, which reduces the variance of the service process and therefore improves queueing performance, is also considered. The solution is simple and fast to compute and is not overly sensitive to the number of nodes. Simulation results indicate that the results are accurate so long as the performance can be accurately approximated based on the dominant effect of an exponential tail in the distribution of queued load. The results are also applicable to a single server Gaussian queue with priorities.
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U2 - 10.1109/INFCOM.1996.497902
DO - 10.1109/INFCOM.1996.497902
M3 - RGC 22 - Publication in policy or professional journal
SN - 0743-166X
VL - 1
SP - 263
EP - 270
JO - Proceedings - IEEE INFOCOM
JF - Proceedings - IEEE INFOCOM
T2 - Proceedings of the 1996 15th Annual Joint Conference of the IEEE Computer and Communications Societies, INFOCOM'96. Part 1 (of 3)
Y2 - 24 March 1996 through 28 March 1996
ER -