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vpf:tightly_coupled_systems [2018-01-11 14:43]
stian
vpf:tightly_coupled_systems [2018-01-11 14:44] (current)
stian
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 [(cite:​GeneratorSkjong>>​ [(cite:​GeneratorSkjong>>​
   | authors = S. Skjong and E. Pedersen.   | authors = S. Skjong and E. Pedersen.
-  | title   = A Real-Time Simulator Framework for Marine Power Plants with Weak Power Grids.+  | title   = A Real-Time Simulator Framework for Marine Power Plants with Weak Power Grids
   | year    = 2017   | year    = 2017
   | volume = 47   | volume = 47
Line 54: Line 54:
 [(cite:​OSOM>>​ [(cite:​OSOM>>​
   | authors = B. Rokseth, S. Skjong and E. Pedersen.   | authors = B. Rokseth, S. Skjong and E. Pedersen.
-  | title   = Modeling of Generic Offshore Vessel in Crane Operations With Focus on Strong Rigid Body Connections.+  | title   = Modeling of Generic Offshore Vessel in Crane Operations With Focus on Strong Rigid Body Connections
   | year    = 2016   | year    = 2016
   | url = http://​ieeexplore.ieee.org/​abstract/​document/​7742930/​   | url = http://​ieeexplore.ieee.org/​abstract/​document/​7742930/​
   | journal= IEEE Journal of Oceanic Engineering )].   | journal= IEEE Journal of Oceanic Engineering )].
  ​However,​ there also exists other ways of implementing the system in order to overcome the problems caused by differential causality in distributed systems, such as [[hybrid_causality|Hybrid Causality]].  ​However,​ there also exists other ways of implementing the system in order to overcome the problems caused by differential causality in distributed systems, such as [[hybrid_causality|Hybrid Causality]].
  • vpf/tightly_coupled_systems.txt
  • Last modified: 2018-01-11 14:44
  • by stian