Applicability of generalized test tables: a case study using the manufacturing system demonstrator xPPU

Author:

Cha Suhyun1,Weigl Alexander2,Ulbrich Mattias2,Beckert Bernhard2,Vogel-Heuser Birgit1

Affiliation:

1. 9184 Technical University of Munich , Institute of Automation and Information Systems , Boltzmannstr. 15 , 85748 Garching near Munich , Germany

2. Karlsruhe Institute of Technology , Application-oriented Formal Verification , Am Fasanengarten 5 , 76131 Karlsruhe , Germany

Abstract

Abstract With recent trends in manufacturing automation, control software in automated production systems becomes more complex and has more variability to keep pace with customer and market requirements. Quality assurance also becomes more and more important to ensure that the systems live up to expectations. However, correctness of automation software is rarely verified using formal techniques in spite of their high coverage. One of the main reasons is the lack of specification languages suitable for this application area that are both comprehensible and sufficiently expressive. Generalized test tables (GTTs), which are a specification language for reactive systems, were presented recently as an accessible representation for application engineers. This formalism achieves both the comprehensibility of concrete test tables and the coverage of formal methods. In our approach, the specification provided by GTTs is used for formal verification, especially model checking. In this paper, we present four new features for GTTs: the progression flag, strong repetition, row grouping, and specification on internal variables. We demonstrate the applicability and evaluate the comprehensibility of GTT-based specification and verification using a range of diverse scenarios from the community demonstrator, the extended Pick & Place Unit.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Walter de Gruyter GmbH

Subject

Electrical and Electronic Engineering,Computer Science Applications,Control and Systems Engineering

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