Title :
Research on design of fault diagnosis training using electronic equipment virtual prototype
Author :
Zhao, Chun-Yu ; Liu, Jing-Jiang ; Tang, Wei ; Huo, Li ; Ma, Lun
Author_Institution :
BaiCheng Ordnance Test Center of China, Baicheng, China
Abstract :
Nowadays, electronic equipments are using more widely specially at military equipment as the obvious effect on enhancing fighting strength of army. But the characters of complex structure, fuzzy technique and big cost among electronic equipment increase the difficulty of maintenance training. After the occurrence of virtual technique, virtual maintenance training becomes the newly way for maintenance training. In fact, virtual training of fault diagnosis is the important element of virtual maintenance training. So considering the characteristic that electronic equipment is hard to realize the maintenance training, a design scheme of fault diagnosis training based on virtual prototyping is presented. This scheme introduces the virtual prototyping model used for training and the related modeling method for three-dimension geometry model, planar graph model and information model at first. Then the basic logic and process of fault diagnosis training is defined. With the design of two different kinds of training modes, the training pertinence is clearer. So this scheme can be used to improve the ascendant skill.
Keywords :
computational geometry; computer based training; fault diagnosis; fuzzy set theory; graph theory; maintenance engineering; military computing; military equipment; virtual prototyping; 3D geometry model; army; complex structure; electronic equipment; fault diagnosis training; fighting strength enhancement; fuzzy technique; military equipment; planar graph model; virtual maintenance training; virtual prototyping model; Circuit faults; Fault diagnosis; Geometry; Maintenance engineering; Prototypes; Solid modeling; Training; electronic equipment; fault diagnosis training; virtual prototyping;
Conference_Titel :
Quality, Reliability, Risk, Maintenance, and Safety Engineering (ICQR2MSE), 2012 International Conference on
Conference_Location :
Chengdu
Print_ISBN :
978-1-4673-0786-4
DOI :
10.1109/ICQR2MSE.2012.6246311