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  4. Design and verification approach for a complex state-based fuel cell control system
 
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Design and verification approach for a complex state-based fuel cell control system

Publikationstyp
Journal Article
Date Issued
2011
Sprache
English
Author(s)
Grymlas, Jan  
Flugzeug-Systemtechnik M-7  
Lüdders, Hauke Peer  
Flugzeug-Systemtechnik M-7  
Vredenborg, Enno  
Flugzeug-Systemtechnik M-7  
Thielecke, Frank  
Flugzeug-Systemtechnik M-7  
TORE-URI
https://hdl.handle.net/11420/44505
Journal
SAE technical papers  
Volume
2011
Issue
01
Article Number
2505
Citation
SAE Technical Papers 2011 (01): 2505 (2011)
Publisher DOI
10.4271/2011-01-2505
Scopus ID
2-s2.0-85072492206
Publisher
SAE International
This paper presents a model-based design and verification approach, which is used to develop a complex state-based fuel cell control system. The architecture of the control system is organized in a hierarchical manner with one supervisory controller and several system controllers. The used development approach considers the systematic design of this hierarchical concept and enables the integration of requirements. The single modules of the control system are modeled as Statecharts. During the design process a method based on Petri Nets is used to analyze and verify the state-based structure of the supervisory controller. The verification of the control system functionalities is finally realized by a black box test approach. The required test sequences are systematically specified on the basis of the state transition graph of the supervisory controller.
DDC Class
620: Engineering
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