DocumentCode
2397978
Title
A calculus of hazard for railway signalling
Author
Ingleby, Michael ; Mee, David J.
Author_Institution
British Rail Res., Derby, UK
fYear
1995
fDate
5-8 Apr 1995
Firstpage
146
Lastpage
158
Abstract
Interlockings-systems which control railway signals-are modeled as situated automata holding in memory an image of their trackside environment. Interlocking functionality is generic, but each interlocking consults a geographic database which specifies the topography of its environment. A `calculus o hazard´ comprising a theory of trackside geography and generic state of trackside environments is set up using a predicate calculus based on incidence relations. The calculus is sufficiently expressive for the articulation hazard defence rules-which are obtained from a typical IEC fault modes and effects analysis (FMEA)-free of area-specific reference. Safety of an interlocking is formulated as an NP-complete proof problem expressing the invariance of a set of hazard defence predicates of the calculus. A scaleable approach to this proof problem is developed by representing a signalling area as a set of weakly interacting localities of low combinatorial complexity. The approach uses Galois connection tools borrowed from formal concept analysis
Keywords
algebraic specification; computational complexity; failure analysis; formal logic; formal specification; geographic information systems; rail traffic; signalling; traffic control; Galois connection tools; NP-complete proof problem; articulation hazard defence rules; calculus of hazard; fault modes and effects analysis; formal concept analysis; geographic database; hazard defence predicates; incidence relations; interlockings; low combinatorial complexity; predicate calculus; railway signal control; railway signalling; situated automata; topography; trackside environment; trackside geography; Automata; Automatic control; Calculus; Geography; Hazards; IEC; Image databases; Rail transportation; Safety; Surfaces;
fLanguage
English
Publisher
ieee
Conference_Titel
Industrial-Strength Formal Specification Techniques, 1995. Proceedings., Workshop on
Conference_Location
Boca Raton, FL
Print_ISBN
0-8186-7005-3
Type
conf
DOI
10.1109/WIFT.1995.515486
Filename
515486
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