DocumentCode :
763713
Title :
A methodology for architecture-level reliability risk analysis
Author :
Yacoub, Sherif M. ; Ammar, Hany H.
Author_Institution :
Hewlett-Packard Labs., Palo Alto, CA, USA
Volume :
28
Issue :
6
fYear :
2002
fDate :
6/1/2002 12:00:00 AM
Firstpage :
529
Lastpage :
547
Abstract :
The paper presents a methodology for reliability risk assessment at the early stages of the development lifecycle, namely, the architecture level. We describe a heuristic risk assessment methodology that is based on dynamic metrics. The methodology uses dynamic complexity and dynamic coupling metrics to define complexity factors for the architecture elements (components and connectors). Severity analysis is performed using Failure Mode and Effect Analysis (FMEA) as applied to architecture models. We combine severity and complexity factors to develop heuristic risk factors for the architecture components and connectors. Based on analysis scenarios, we develop a risk assessment model that represents components, connectors, component risk factors, connector risk factors, and probabilities of component interactions. We also develop a risk analysis algorithm that aggregates risk factors of components and connectors to the architectural level. Using the risk aggregation and the risk analysis model, we show how to analyze the overall risk factor of the architecture as the function of the risk factors of its constituting components and connectors. A case study of a pacemaker architecture is used to illustrate the application of the methodology. The methodology is used to identify critical components and connectors and to investigate the sensitivity of the architecture risk factor to changes in the heuristic risk factors of the architecture elements
Keywords :
risk management; software architecture; software metrics; software reliability; FMEA; Failure Mode and Effect Analysis; analysis scenarios; architectural level; architecture components; architecture elements; architecture level; architecture models; architecture risk factor; architecture-level reliability risk analysis methodology; complexity factors; component interactions; component risk factors; connector risk factors; development lifecycle; domain experts; dynamic complexity; dynamic coupling metrics; dynamic metrics; heuristic risk assessment methodology; heuristic risk factors; pacemaker architecture; product attributes; product metrics; reliability risk analysis; reliability risk assessment; risk aggregation; risk assessment model; risk factors; severity analysis; severity factors; software architecture; software risk management plan; subjective judgement; subjective risk assessment techniques; Computer Society; Computer architecture; Computer errors; Connectors; Failure analysis; Frequency; Humans; Performance analysis; Risk analysis; Risk management;
fLanguage :
English
Journal_Title :
Software Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
0098-5589
Type :
jour
DOI :
10.1109/TSE.2002.1010058
Filename :
1010058
Link To Document :
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