Aug 2026· 2026 8th International Conference on System Reliability and Safety Engineering (SRSE)· pp. 750-755· 0 citations· 26 references
Abstract
To address the challenges of time-varying spare parts demand, limited support resources, and the strong coupling between failure rates and mission operating conditions in the mission electronics system of the U.S. E-2D carrier-based Airborne Early Warning (AEW) aircraft under multi-phase operational mission profiles, this paper proposes a dynamic programming-based multi-phase optimal control method for spare parts management. First, based on the publicly available system architecture of the E-2D, a complete operational mission is discretized into four phases (early warning detection, target tracking, command and guidance, and return-to-standby) and a mission-driven multi-phase spare parts state transition model is established. Second, to overcome the limitation of traditional spare parts models that neglect the dynamic influence of mission operating conditions on failure rates, a Mission-Environment-State (MES) triple-coupled failure rate correction mechanism is proposed. Built upon the Weibull baseline failure model, this mechanism introduces a mission urgency factor, an extended Arrhenius environmental stress coefficient, and a power-law state degradation factor to achieve real-time dynamic correction of failure rates.
Power-system alternatives involve coupled trade-offs among fuel economy, thrust, response, and mass, requiring evaluation from a mission-level perspective rather than through isolated technical indicators. However, existing methods provide limited traceability from subsystem parameters to mission effectiveness under un...
While existing strategies for Flight and Maintenance Planning for the defense sector generally address idealized conditions, real-world planning often involve non-nominal initial fleet states and complex inspection schemes. To address these challenges, we propose a multi-year planning strategy that maximizes long-term...
Matteo Vescovi, R. G. Cestari, Roberto Valdambrini et al.· 0 citations
To reduce operational losses from EMU maintenance shutdowns while ensuring safety, this study develops an integrated optimization model combining hybrid opportunistic maintenance with dual-source spare parts procurement under imperfect maintenance. Scheduled maintenance is applied to non-critical components, while crit...
Chun-Liu Zhou, Wei Yao, Yuan-Yun Wang et al.· Proceedings of the Instituti...· 0 citations
Aircraft landing gear systems are essential to safe and efficient flight operations, as they operate under demanding conditions during takeoff, landing, and ground maneuvers. Because they are exposed to high loads and repeated stress, their reliability has a direct impact on safety, maintenance planning, and overall op...
Hrutwik D. Tambe, Swarna Nadipudi, B. Brentan et al.· Processes· 0 citations
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