Abstract
Safety-critical equipment such as Unmanned Aerial Vehicles (UAVs), submarines, fleets, and military aircraft must perform a variety of missions where mission reliability and equipment survivability are paramount. To enhance survivability, mission can be aborted upon encountering certain failure conditions. In this study, a novel mission abort policy is devised that allows for risk control of both internal degradation and external shocks. The cumulative impact of shocks on system degradation is quantified via a generic stochastic model. Inspections are executed equidistantly to reveal the underlying degradation damage, following which adaptive abort decisions are made using a control limit policy. By jointly optimizing the inspection interval and abort threshold, the long-term operational cost of the system is minimized. Numerical experiments exemplify the model effectiveness in mission risk control and loss mitigation.
| Original language | English |
|---|---|
| Title of host publication | 15th Global Reliability and Prognostics and Health Management Conference, PHM-Beijing 2024 |
| Editors | Huimin Wang, Steven Li |
| Publisher | Institute of Electrical and Electronics Engineers Inc. |
| ISBN (Electronic) | 9798350354010 |
| DOIs | |
| State | Published - 2024 |
| Event | 15th IEEE Global Reliability and Prognostics and Health Management Conference, PHM-Beijing 2024 - Beijing, China Duration: 11 Oct 2024 → 13 Oct 2024 |
Publication series
| Name | 15th Global Reliability and Prognostics and Health Management Conference, PHM-Beijing 2024 |
|---|
Conference
| Conference | 15th IEEE Global Reliability and Prognostics and Health Management Conference, PHM-Beijing 2024 |
|---|---|
| Country/Territory | China |
| City | Beijing |
| Period | 11/10/24 → 13/10/24 |
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 3 Good Health and Well-being
Keywords
- abort decision-making
- degradation modeling
- inspection scheduling
- mission risk management
- shock impact
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