A Maintenance Design of Connected-(r, s)-out-of-(m, n) F System Using Simulated Annealing

시뮬레이티드 어닐링을 이용한(m, n)중 연속(r,s) : F 시스템의 정비모형

  • Lee, Sangheon (Department of Operations Research, Korea National Defense University) ;
  • Kang, Youngtai (Department of Operations Research, Korea National Defense University) ;
  • Shin, Dongyeul (Department of Operations Research, Korea National Defense University)
  • 이상헌 (국방대학교 운영분석학과) ;
  • 강영태 (국방대학교 운영분석학과) ;
  • 신동열 (국방대학교 운영분석학과)
  • Published : 2008.03.31

Abstract

The purpose of this paper is to present an optimization scheme that aims at minimizing the expected cost per unittime. This study considers a linear connected-(r, s)-ouI-of-(m, n):f lattice system whose components are orderedlike the elements of a linear (m, n)-matrix. We assume that all components are in the state 1 (operating) or 0(failed) and identical and s-independent. The system fails whenever at least one connected (r, s)-submatrix offailed components occurs. To find the optimal threshold of maintenance intervention, we use a simulatedannealing(SA) algorithm for the cost optimization procedure. The expected cost per unit time is obtained byMonte Carlo simulation. We also has made sensitivity analysis to the different cost parameters. In this study,utility maintenance model is constructed so that minimize the expense under full equipment policy throughcomparison for the full equipment policy and preventive maintenance policy. The full equipment cycle and unitcost rate are acquired by simulated annealing algorithm. The SA algorithm is appeared to converge fast inmulti-component system that is suitable to optimization decision problem.

Keywords

References

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