Youji Hiraoka
University of Tokyo
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Publication
Featured researches published by Youji Hiraoka.
design automation conference | 2008
Tamotsu Murakami; Yosuke Kikuchi; Youji Hiraoka
In this paper, the authors propose computerized support for fault tree analysis (FTA) based on a new design knowledge management approach called quantity dimension indexing. FTA is a method of analyzing and visualizing the causes of fault events by expanding a fault event hierarchically to its possible cause events and constructing a tree diagram representing the entire structure of the problem. When a designer finds or encounters a problem during a product design and development process, an effective way of ensuring the security and safety of the product is to identify all the possible causes of the problem by FTA and fix them. Although FTA is an effective method, it is not easy for a designer to construct a complete fault tree without any misunderstanding or oversight. A promising approach for supporting FTA is to utilize a computerized knowledge management method. Although many knowledge management techniques for literal expression have been developed, they are not necessarily suitable for managing the engineering design knowledge of physical phenomena. To solve this problem, the authors propose a new design knowledge management approach called quantity dimension indexing and computerized support for FTA such as the verification of consistency of a fault tree and fault tree construction advice. By analyzing fault tree examples based on actual design activities in a company, the possible feasibility and future promise of the proposed approach are indicated.Copyright
IEEE Transactions on Reliability | 2016
Youji Hiraoka; Tamotsu Murakami; Katsunari Yamamoto; Yoshiyuki Furukawa; Hiroyuki Sawada
Fault tree analysis (FTA) is a method of analyzing and visualizing the causes of a fault using a fault tree diagram (FT diagram), which has a tree structure with logical steps. Design engineers developing a new product generally use FTA to analyze many fault events, calculate their probability, and include redundancy systems in the design process. Furthermore, FTA has been used to analyze problems with products and to prevent the occurrence of problems in the design phase. In particular, it is necessary for design engineers to analyze the events after a failure to determine the root causes of the failure of the redundancy systems. However, it is not easy for design engineers to produce an accurate FT diagram in the actual design process. We have developed a computer-aided knowledge management system for creating FT diagrams (FTAid) as part of a collaborative group (The University of Tokyo, National Institute of Advanced Industrial Science and Technology (AIST), and Jatco Ltd.). This system has been verified by the design engineers of Jatco Ltd. in actual product development. We report its effectiveness for predicting mechanical, electrical, and heat transfer failure, the verification of the system, and its validation in an actual design process. We conclude that the system can help design engineers to effectively and efficiently create FT diagrams in reliability engineering, although some existing ability in FTA and engineering is required. We also describe some outstanding issues regarding the improvement of FTAid, engineering education, and ensuring reliability.
SAE International Journal of Commercial Vehicles | 2012
Youji Hiraoka; Katsunari Yamamoto; Tamotsu Murakami; Yoshiyuki Furukawa; Hitoshi Tokunaga; Hiroyuki Sawada
The Proceedings of Design & Systems Conference | 2015
Tamotsu Murakami; Yuta Yanai; Youji Hiraoka
The Proceedings of Design & Systems Conference | 2015
Youji Hiraoka; Tamotsu Murakami; Katsunari Yamamoto; Yasuyuki Furukawa; Hiroyuki Sawada
SAE 2014 World Congress & Exhibition | 2014
Youji Hiraoka; Katsunari Yamamoto; Tamotsu Murakami; Yoshiyuki Furukawa; Hiroyuki Sawada
The Proceedings of Design & Systems Conference | 2012
Katsunari Yamamoto; Youji Hiraoka
Archive | 2012
Katsunari Yamamoto; Youji Hiraoka; Yoshiyuki Furukawa
Archive | 2012
Katsunari Yamamoto; 克成 山本; Youji Hiraoka; 洋二 平岡; Yoshiyuki Furukawa; 古川 慈之
Archive | 2012
Youji Hiraoka; Tamotsu Murakami
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Dive into the Youji Hiraoka's collaboration.
National Institute of Advanced Industrial Science and Technology
View shared research outputsNational Institute of Advanced Industrial Science and Technology
View shared research outputsNational Institute of Advanced Industrial Science and Technology
View shared research outputs