DocumentCode
1636434
Title
Risk-informed Preventive Maintenance optimization
Author
Tutt, Teresa E. ; Singh, Inderjeet ; Popova, Elmira ; Kee, Ernie
Author_Institution
Risk Manage., South Texas Project Nucl. Oper. Co., Wadsworth, OH, USA
fYear
2012
Firstpage
1
Lastpage
5
Abstract
The risk management group at the South Texas Project Electric Generating Station (STPEGS) has successfully developed a Preventive Maintenance (PM) optimization application based on a new mathematical model developed in collaboration with the University of Texas at Austin. This model uses historical maintenance data from the STPEGS work management database. Robust statistical analysis, coupled with an efficient algorithm generates an optimal PM schedule, based on a Non-Homogenous Poisson Process (NHPP) with a power law failure rate function. In addition, the risk associated with significant plant events triggered by a component failure is appropriately captured in the Corrective Maintenance (CM) cost estimates. The probabilities of such events are modeled via fault tree analysis, and consequences re expressed as monetary costs. The net cost of CM is then modified by a weighted sum of the probability of each event multiplied its monetary cost. The ratio of risk-adjusted CM cost to PM cost is used with the failure rate parameters to calculate the optimum PM frequency that minimizes combined CM and PM costs. The software can evaluate individual components or entire systems of components. Several low-risk ranked systems have been evaluated. In this paper we present the results of these evaluations.
Keywords
costing; fault trees; optimisation; power generation economics; power generation faults; power system management; preventive maintenance; risk analysis; statistical distributions; stochastic processes; PM cost; STPEGS work management database; South Texas Project Electric Generating Station; corrective maintenance cost estimation; failure rate parameter; fault tree analysis; historical maintenance data; low-risk ranked system; mathematical model; monetary cost; nonhomogenous Poisson process; optimal PM schedule; optimum PM frequency; power law failure rate function; probability weighted sum; risk management; risk-adjusted CM cost; risk-informed preventive maintenance optimization; robust statistical analysis; Educational institutions; Equations; Mathematical model; Preventive maintenance; Schedules; Software; Maintenance Optimization; Non Homogeneous Poisson Process; Reliability;
fLanguage
English
Publisher
ieee
Conference_Titel
Reliability and Maintainability Symposium (RAMS), 2012 Proceedings - Annual
Conference_Location
Reno, NV
ISSN
0149-144X
Print_ISBN
978-1-4577-1849-6
Type
conf
DOI
10.1109/RAMS.2012.6175441
Filename
6175441
Link To Document