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Distributed Embedded Controller Development With Petri Nets Application To Globallyasynchronous Locallysynchronous Systems 1st Edition Filipe De Carvalho Moutinho

  • SKU: BELL-5235342
Distributed Embedded Controller Development With Petri Nets Application To Globallyasynchronous Locallysynchronous Systems 1st Edition Filipe De Carvalho Moutinho
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Distributed Embedded Controller Development With Petri Nets Application To Globallyasynchronous Locallysynchronous Systems 1st Edition Filipe De Carvalho Moutinho instant download after payment.

Publisher: Springer International Publishing
File Extension: PDF
File size: 3.29 MB
Pages: 90
Author: Filipe de Carvalho Moutinho, Luís Filipe Santos Gomes (auth.)
ISBN: 9783319208213, 3319208217
Language: English
Year: 2016
Edition: 1

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Distributed Embedded Controller Development With Petri Nets Application To Globallyasynchronous Locallysynchronous Systems 1st Edition Filipe De Carvalho Moutinho by Filipe De Carvalho Moutinho, Luís Filipe Santos Gomes (auth.) 9783319208213, 3319208217 instant download after payment.

This book describes a model-based development approach for globally-asynchronous locally-synchronous distributed embedded controllers. This approach uses Petri nets as modeling formalism to create platform and network independent models supporting the use of design automation tools. To support this development approach, the Petri nets class in use is extended with time-domains and asynchronous-channels. The authors’ approach uses models not only providing a better understanding of the distributed controller and improving the communication among the stakeholders, but also to be ready to support the entire lifecycle, including the simulation, the verification (using model-checking tools), the implementation (relying on automatic code generators), and the deployment of the distributed controller into specific platforms.

  • Uses a graphical and intuitive modeling formalism supported by design automation tools;
  • Enables verification, ensuring that the distributed controller was correctly specified;
  • Provides flexibility in the implementation and maintenance phases to achieve desired constraints (high performance, low power consumption, reduced costs), enabling porting to different platforms using different communication nodes, without changing the underlying behavioral model.

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