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Dynamic analysis of a pantograph-catenary system using absolute nodal coordinates
- Seo, Jong-Hwi;
- Kim, Seok-Won;
- Jung, Il-Ho;
- Park, Tae-Won;
- Mok, Jin-Yong;
- 외 2명
WEB OF SCIENCE
72초록
The dynamic interaction between the catenary and the pantographs of high-speed trains is a very important factor that affects the stable electric power supply. In order to design a reliable current collection system, a multibody simulation model can provide an efficient and economical method to analyze the dynamic behavior of the catenary and pantograph. In this article, a dynamic analysis method for a pantograph-catenary system for a high-speed train is presented, employing absolute nodal coordinates and rigid body reference coordinates. The highly flexible catenary is modeled using a nonlinear continuous beam element, which is based on an absolute nodal coordinate formulation. The pantograph is modeled as a rigid multibody system. The analysis results are compared with experimental data obtained from a running high-speed train. In addition, using a derived system equation of motion, the calculation method for the dynamic stress in the catenary conductor is presented. This study may have significance in providing an example that a structural and multibody dynamics model can be unified into one numerical system.
키워드
- 제목
- Dynamic analysis of a pantograph-catenary system using absolute nodal coordinates
- 저자
- Seo, Jong-Hwi; Kim, Seok-Won; Jung, Il-Ho; Park, Tae-Won; Mok, Jin-Yong; Kim, Young-Guk; Chai, Jang-Bom
- 발행일
- 2006-08
- 유형
- Article
- 권
- 44
- 호
- 8
- 페이지
- 615 ~ 630