Title :
A Systematic Approach for Integrating Fault Trees into System Statecharts
Author :
Ariss, Omar El ; Xu, Dianxiang ; Wong, W. Eric ; Chen, Yuting ; Lee, Yann-Hang
Author_Institution :
Dept. of Comput. Sci., North Dakota State Univ., ND
fDate :
July 28 2008-Aug. 1 2008
Abstract :
As software systems are encompassing a wide range of fields and applications, software reliability becomes a crucial step. The need for safety analysis and test cases that have high probability to uncover plausible faults are necessities in proving software quality. System models that represent only the operational behavioral of a system are incomplete sources for deriving test cases and performing safety analysis before the implementation process. Therefore, a system model that encompasses faults is required. This paper presents a technique that formalizes a safety model through the incorporation of faults with system specifications. The technique focuses on introducing semantic faults through the integration of fault trees with system specifications or statechart. The method uses a set of systematic transformation rules that tries to maintain the semantics of both fault trees and statechart representations during the transformation of fault trees into statechart notations.
Keywords :
fault trees; formal specification; program testing; safety-critical software; software quality; systems software; fault trees; safety analysis; safety model; semantic faults; software quality; software reliability; software systems; system specifications; system statecharts; systematic transformation rules; Application software; Fault trees; Performance analysis; Performance evaluation; Software quality; Software reliability; Software safety; Software systems; Software testing; System testing;
Conference_Titel :
Computer Software and Applications, 2008. COMPSAC '08. 32nd Annual IEEE International
Conference_Location :
Turku
Print_ISBN :
978-0-7695-3262-2
Electronic_ISBN :
0730-3157
DOI :
10.1109/COMPSAC.2008.19