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A Storage Life Assessment Method for Missile Based on Critical Component Inspection Date

Author

Listed:
  • Guiming Tao

    (Army Engineering University)

  • Qirui Wang

    (Army Engineering University)

  • Hui Li

    (Army Engineering University)

Abstract

A storage life assessment method for missile systems has been developed based on inspection data from critical components. For detection data characterized as “success or failure, incomplete,” derived from missile quality monitoring processes, failure rate inversion data were analyzed using an order-preserving regression algorithm. A mathematical sampling model was established to accommodate the “success or failure, incomplete” data structure, and the storage reliability distribution function for missile system components was derived using the minimum test method. Additionally, a mathematical expression was formulated to characterize the storage life of the missile system, based on the “failure probability weight” assigned to each component. This formulation enables a more accurate representation of how the failure rates of individual components influence the overall system lifespan. Applying this method to assess the lifespan of a specific type of missile system that had been stored for nine years, the estimated reliable storage life of the system was determined to be 13.177 years when the reliability threshold was set at 0.9.

Suggested Citation

  • Guiming Tao & Qirui Wang & Hui Li, 2026. "A Storage Life Assessment Method for Missile Based on Critical Component Inspection Date," Springer Series in Reliability Engineering,, Springer.
  • Handle: RePEc:spr:ssrchp:978-3-032-22873-4_34
    DOI: 10.1007/978-3-032-22873-4_34
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