A Formal design technique for real-time embedded systems development using duration calculus.

François Siewe, Dang Van Hung, Hussein Zedan, Antonio Cau · 2004

Abstract—In this paper we present a syntactical approach for the design of real-time embedded systems. The requirement of the system is specified as Duration Calculus formula over continuous state variables. We model discretization at the state level and approximate continuous state variables by discrete ones. The discrete design is formulated as Duration Calculus formula over discrete state variables. The correctness of the design can be established using compositional proof rules. A real-time program is then derived from the discrete design using an extension of the assumptioncommitment paradigm to real-time. We illustrate our approach using a simple water tank control system. Keywords—Continuous specification, discrete design, realtime control program, compositional verification. I.

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