Publication

Hyperautomation Artificial Intelligence

2011 복원가능 시스템 설계를 위한 복원도 할당

본문

Journal
제어로봇시스템학회 논문지
Author
윤병동, 후차오, 왕핑펭, 윤정택
Date
2011-11
Citation Index
SCOPUS, KCI 등재
Vol./ Page
제17권, 제11호
Year
2011
File
Resilience Allocation for Resilient Engineered System Design 1.pdf (906.9K) 1회 다운로드 DATE : 2024-04-30 12:40:35

Abstract


Most engineered systems are designed with high levels of system redundancies to satisfy required reliability requirements under adverse events, resulting in high systems’ LCCs (Life-Cycle Costs). Recent years have seen a surge of interest and tremendous advance in PHM (Prognostics and Health Management) methods that detect, diagnose, and predict the effects of adverse events. The PHM methods enable proactive maintenance decisions, giving rise to adaptive reliability. In this paper, we present a RAP (Resilience Allocation Problem) whose goal is to allocate reliability and PHM efficiency to components in an engineering context. The optimally allocated reliability and PHM efficiency levels serve as the design specifications for the system RBDO (Reliability-Based Design Optimization) and the system PHM design, which can be used to derive the detailed design of components and PHM units. The RAP is demonstrated using a simplified aircraft control actuator design problem resulting in a highly resilient actuator with optimally allocated reliability, PHM efficiency and redundancy for the given parameter settings.