Delphi Collaboration Strategy for Multiagent Optical Fiber Intelligent Health Monitoring System

Author:

Zhang Xiaoli12ORCID,Fan Chunfeng3,Zhang Bianlian12,Guo Yali12,Dong Shaofei12,Yang Guangle12

Affiliation:

1. Shanxi Key Laboratory of Surface Engineering and Remanufacturing, Xi’an University, 1# Ke’ji Road, Xi’an 710065, China

2. School of Mechanic & Material Engineering, Xi’an University, 1# Ke’ji Road, Xi’an 710065, China

3. Henan Key Laboratory of Infrared Materials & Spectrum Measures and Applications, Henan Normal University, 46# Jian’she Road, Xinxiang 453007, China

Abstract

Optical fiber sensors are very attractive in mechanical structure intelligent health monitoring system due to some unique characteristics, such as immunity to electromagnetic interference and to aggressive environments, high sensitive and fast response, small physical dimension, excellent resolution and range, and so on. For improving the accuracy and reliability of the optical fiber intelligent health monitoring system in practical engineering application, the collaboration and decision-making strategy based on Delphi method for multiagent optical fiber intelligent health monitoring system is studied in this paper. The proposed system is mainly composed of optical fiber sensing agent, intelligent evaluation agent, and system collaborative decision-making agent. The intelligent evaluation agent is used to evaluate the health status of the monitored mechanical structures. Delphi method is used by the system collaborative decision-making agent to consult each intelligent evaluation agent. Meanwhile, the collaborative partner selection algorithm is used to select the intelligent evaluation agent participating in the collaboration, and the intelligent evaluation agent that does not participate in the decision-making is dynamically modified by the decision result. The experiment for an aircraft wing box as the typical engineering structure is carried out and the verification system is designed, the decision result is compared with that without dynamic correction of the evaluation result. The comparative results indicate that the evaluation accuracy and reliability of the monitored mechanical structural damage are improved significantly after multiple rounds of collaboration and decision making.

Funder

Shaanxi Province Innovation and Entrepreneurship Training Program

Publisher

Hindawi Limited

Subject

Electrical and Electronic Engineering,Instrumentation,Control and Systems Engineering

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