DocumentCode
1464528
Title
Designing risk-management strategies for critical engineering systems
Author
Baron, Michelle M. ; Paté-Cornell, M. Elisabeth
Author_Institution
Sch. of Bus. & Public Manage., Victoria Univ., Wellington, New Zealand
Volume
46
Issue
1
fYear
1999
fDate
2/1/1999 12:00:00 AM
Firstpage
87
Lastpage
100
Abstract
Effective management of the tradeoff between productivity and safety is a challenge in many industries that operate critical engineering systems such as nuclear power plants or offshore oil platforms. The objective of this paper is to link risk-management strategies to a system´s safety and productivity over its lifetime. These strategies involve decisions that affect the physical system both directly and indirectly though the performance of the personnel that design, construct, or operate it. The problem is thus to link the different components of such risk-management strategies to human and system performance. In this paper, we present the basis of a decision support framework for the design and assessment of different risk-management strategies in risk-critical systems. First we discuss the inherent difficulty in balancing productivity and safety in the short and the long term and the different components of a risk-management strategy. We present a model involving both production failures and catastrophic failures as a function of strategic alternatives. This model is based on a probabilistic and dynamic risk analysis of a system, linking different aspects of risk-management strategies to specific characteristics of the physical system. We show how this model, coupled with explicit value judgments, can be used to design optimal strategies, e.g., to balance initial costs, long-term operations and maintenance costs, and the potential costs of catastrophic failures. To illustrate the concepts we use the case of the maintenance of a corporate airplane
Keywords
aircraft; maintenance engineering; probability; risk management; catastrophic failures; corporate airplane; critical engineering systems; decision support framework; dynamic risk analysis; human error; initial costs balancing; long-term operations; maintenance costs; personnel performance; potential costs; probabilistic risk analysis; production failures; productivity; reliability; risk-critical systems; risk-management strategies design; safety; value tradeoff; Cost function; Design engineering; Energy management; Engineering management; Power engineering and energy; Power generation; Power system management; Product safety; Productivity; Systems engineering and theory;
fLanguage
English
Journal_Title
Engineering Management, IEEE Transactions on
Publisher
ieee
ISSN
0018-9391
Type
jour
DOI
10.1109/17.740040
Filename
740040
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