Abstract
AbstractThe development of supervisory controllers for cyber-physical systems is a laborious and error-prone process. Supervisor synthesis enables control designers to automatically synthesize a correct-by-construction supervisor from a model of the plant combined with a model of the control requirements. From the supervisor model, controller code can be generated which is suitable for the implementation on a programmable logic controller (PLC). Supervisors for industrial systems that operate in close proximity to humans have to adhere to strict safety standards. To achieve these standards, safety PLCs (SPLCs) are used. For SPLC implementation, the supervisor has to be split into a regular part and a safety part. In previous work, a method is proposed to automatically split a supervisor model for this purpose. The method assumes that the provided plant model is a collection of finite automata. In this paper, the extension to extended finite automata is described. Additionally, guidelines are provided for modeling the plant and the requirements to achieve a favorable splitting. A case study on a rotating bridge is elaborated which has been used to validate the method. The case study spans all development steps, including the implementation of the resulting supervisor to control the real bridge.
Publisher
Springer Science and Business Media LLC
Subject
Electrical and Electronic Engineering,Modelling and Simulation,Control and Systems Engineering
Reference40 articles.
1. Baeten JCM, Van de Mortel-Fronczak JM, Rooda JE (2016) Integration of supervisory control synthesis in model-based systems engineering
2. Balemi S, Hoffmann GJ, Gyugyi P, Wong-Toi H, Franklin GF (1993) Supervisory control of a rapid thermal multiprocessor. IEEE Trans Autom Control 38(7):1040–1059
3. Cai K, Wonham WM (2010) Supervisor localization: a top-down approach to distributed control of discrete-event systems. IEEE Trans Autom Control 55(3):605–618
4. Cassandras CG, Lafortune S (2009) Introduction to Discrete Event Systems. Springer Science + Business Media
5. Chen YL, Lin F (2000) Modeling of discrete event systems using finite state machines with parameters. In: Proceedings of the 2000 Conference on Control Applications, IEEE, pp941–946
Cited by
5 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献