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Effects of Port Congestion in the Gate Control List Scheduling of Time Sensitive Networks

Authors :
Kentis, Angelos Mimidis
Berger, Michael Stübert
Soler, José
Kentis, Angelos Mimidis
Berger, Michael Stübert
Soler, José
Source :
Kentis , A M , Berger , M S & Soler , J 2017 , Effects of Port Congestion in the Gate Control List Scheduling of Time Sensitive Networks . in Proceedings of 8th International Conference on the Network of the Future (NOF) . IEEE , pp. 138-140 , 8th International Conference on the Network of the Future , London , United Kingdom , 22/11/2017 .
Publication Year :
2017

Abstract

Time Sensitive Networking (TSN) can provide deterministic traffic behavior over Ethernet networks, for time sensitive traffic, whilst also bound the delay/jitter. To do so, the IEEE TSN working group introduced a network-wide transmission port scheduling mechanism. The duration of this schedule is directly related with the delay; hence reducing it can be beneficial within the TSN paradigm. This paper investigates the effects of port congestion, in the duration of the network wide schedule. A congested port can make scheduling more complex, leading to longer network-wide schedules. To verify this, the same set of experiments was repeated, with and without considering port congestion during path allocation. The computed paths were given as input to an implementation of the shifting bottleneck heuristic algorithm. The shifting bottleneck heuristic, computed the network-wide gating schedule. The results show that with port congestion as a metric during path allocation the duration of the gating schedule in multipath networks can be reduced up to 26%.

Details

Database :
OAIster
Journal :
Kentis , A M , Berger , M S & Soler , J 2017 , Effects of Port Congestion in the Gate Control List Scheduling of Time Sensitive Networks . in Proceedings of 8th International Conference on the Network of the Future (NOF) . IEEE , pp. 138-140 , 8th International Conference on the Network of the Future , London , United Kingdom , 22/11/2017 .
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1020645636
Document Type :
Electronic Resource