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We present a novel approach for design of manufacturing automation systems with formal verification of selected properties based on the use of Globally Asynchronous Locally Synchronous programming language SystemJ and industrial-proof verification tools. By being able to prove properties of the automation control logic that consists of multiple concurrent controllers, represented by FSMs that correspond...
We propose a Globally Asynchronous Locally Synchronous language DSystemJ for designing dynamic distributed systems. DSystemJ, an extension of the reactive asynchronous System J language, enhances it with dynamic creation and process mobility, and uses the Java language for programming sequential data computations. Moreover, DSystemJ is equipped with a formal semantics, which allows, formal system...
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