Title :
Using FTT-ethernet for the coordinated dispatching of tasks and messages for node replication
Author :
Derasevic, Sinisa ; Proenza, Julian ; Barranco, Manuel
Author_Institution :
DMI, Univ. de les Illes Balears, Palma de Mallorca, Spain
Abstract :
The Flexible Time Triggered (FTT) paradigm provides online flexible scheduling for distributed embedded systems but it does not present adequate fault tolerance mechanisms so as to reach a very high reliability. Adding the adequate fault tolerance mechanisms to FTT-based architectures would open room for adaptive yet highly dependable systems. In this work we present a fault-tolerant system architecture for control applications that adds a node replication scheme with voting on top of an FTT-based system. Using a previously proposed network-centric approach we show how to coordinate the execution of the different phases for a typical control application in our system architecture, i.e. we show how to trigger the execution of tasks in node replicas and the transmission of messages in the communication channel, using the underlying FTT protocol. At the end, we demonstrate how to apply this idea of coordinated dispatching to one concrete control application, ball-on-plate.
Keywords :
control engineering computing; dispatching; embedded systems; fault tolerant computing; local area networks; protocols; scheduling; telecommunication channels; FTT paradigm; FTT protocol; FTT-Ethernet; FTT-based architectures; FTT-based system; communication channel; coordinated dispatching; distributed embedded systems; fault tolerance mechanisms; fault-tolerant system architecture; flexible time triggered paradigm; network-centric approach; node replication scheme; online flexible scheduling; Actuators; Computer architecture; Dispatching; Fault tolerance; Fault tolerant systems; Sensors; Switches;
Conference_Titel :
Emerging Technology and Factory Automation (ETFA), 2014 IEEE
Conference_Location :
Barcelona
DOI :
10.1109/ETFA.2014.7005326