TY - GEN
T1 - Failure propagation analysis of aircraft engine system based on the small-world net model
AU - Liu, Xiaofeng
AU - An, Siqi
PY - 2013/10/18
Y1 - 2013/10/18
N2 - To find the failure propagation mechanism from the complex electromechanical system of aircraft engine, this paper used the topological structure to describe the coupling relations, discussing the role of topological geometry method in the failure propagation. The topological structure statistical properties of the system were analyzed with small world net theory? and a failure propagation model based on the small world clustering was proposed, and the failure propagation paths and relevant key nodes with high pervasion ability were found with the Dijkstra algorithm. The results verify that this method can effectively find the weak point in the system, and provide an important basis for design improvements and failure prevention.
AB - To find the failure propagation mechanism from the complex electromechanical system of aircraft engine, this paper used the topological structure to describe the coupling relations, discussing the role of topological geometry method in the failure propagation. The topological structure statistical properties of the system were analyzed with small world net theory? and a failure propagation model based on the small world clustering was proposed, and the failure propagation paths and relevant key nodes with high pervasion ability were found with the Dijkstra algorithm. The results verify that this method can effectively find the weak point in the system, and provide an important basis for design improvements and failure prevention.
KW - Aircraft Engine System
KW - Highest Risk Path of Failure Propagation
KW - Intensity of Failure Propagation
KW - Parameter of Network Topological Structure
KW - Small-World Net Model
UR - https://www.scopus.com/pages/publications/84890511556
M3 - 会议稿件
AN - SCOPUS:84890511556
SN - 9789881563835
T3 - Chinese Control Conference, CCC
SP - 1214
EP - 1219
BT - Proceedings of the 32nd Chinese Control Conference, CCC 2013
PB - IEEE Computer Society
T2 - 32nd Chinese Control Conference, CCC 2013
Y2 - 26 July 2013 through 28 July 2013
ER -