Home /Research /A fault-tolerant approach to the control of a battery assembly system
OTHER

A fault-tolerant approach to the control of a battery assembly system

Paweł Majdzik, Anna Akielaszek-Witczak, Lothar Seybold

Year
2016
Citations
3

Abstract

The paper concerns fault-tolerant control of a real battery assembly system. The proposed framework is based on an interval analysis approach, which along with max-plus algebra, allows describing uncertain discrete event system such as the production one being considered in this paper. Having a mathematical system description, a model predictive control-based fault tolerant strategy is developed which can cope with both processing, transportation and mobile robot faults. As a result, a novel robust predictive fault-tolerant strategy is developed that is applied to the advanced battery assembly system. The final part of the paper shows the implementation and experimental validation of the proposed strategy. The proposed approach is tested against single as well as simultaneous faults concerning processing, transportation and mobile robots.

Keywords

Fault toleranceComputer scienceBattery (electricity)Control (management)Control systemReliability engineeringAutomotive engineeringEngineeringDistributed computingElectrical engineering

Related papers

Browse all OTHER papers