DocumentCode :
3673686
Title :
Cyber Physical System Integration and Configuration Guided by Satisfiability Modulo Theories
Author :
Kishore Pochiraju;Sanjai Narain
Author_Institution :
Stevens Inst. of Technol., Hoboken, NJ, USA
fYear :
2015
Firstpage :
589
Lastpage :
592
Abstract :
Cyber Physical Systems (CPS) are increasingly required to address sophisticated and complex set of stakeholder, security, regulatory policy and physical requirements. CPS employ numerous and interacting software, hardware, control and communication sub-systems that collectively address the system requirements. This paper describes a methodology that applies Satisfiability (SAT) or Satisfiability Modulo Theory (SMT) solvers to guide system architects during the integration, diagnosis, reconfiguration and/or redesign of sub-systems. The system integration problem is posed as search for a feasible configuration in a constraint-based representation. Physical, software and control behaviors of the system and the governing physical laws are translated into a network of interconnected parametric models and as algebraic and symbolic constraints. The methodology entails solving the complete set of constraints for feasible configurations. In the absence of feasible configurations, either the conflicting requirements are renegotiated or a maximally satisfiable subset of constraints is found, that then drives a redesign of sub-systems.
Keywords :
"Batteries","Rotors","Software","Modeling","System integration","Hardware","Stakeholders"
Publisher :
ieee
Conference_Titel :
Information Reuse and Integration (IRI), 2015 IEEE International Conference on
Type :
conf
DOI :
10.1109/IRI.2015.93
Filename :
7301031
Link To Document :
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