Symplectic analysis of stationary random vibration of vehicle–track coupled system with rail-borne electromagnetic generator

Advances in Mechanical Engineering - Tập 10 Số 10 - Trang 168781401880474 - 2018
Mingyuan Gao1, Fan Yang2,3,4, Ping Wang3,4
1College of Engineering and Technology, Southwest University, Chongqing, China
2Department of Materials Science and Engineering, University of Wisconsin-Madison, Madison, WI, USA
3Key Laboratory of High-speed Railway Engineering, Ministry of Education, Chengdu, China
4School of Civil Engineering, Southwest Jiaotong University, Chengdu, China

Tóm tắt

In this article, the authors establish the vehicle-track coupled model of smart railway track with rail-borne electromagnetic generator and conduct a symplectic analysis in frequency domain. A vehicle-track model considering vehicle traveling load is constructed, and the pseudo-excitation method is used. The frequency-dependent stiffness of rail pad is involved in the calculation model to get accurate results of rail natural frequency. The calculated results indicate that the smart railway track with electromagnetic generator will not affect the random vibration response of vehicle and bogie, but it could have certain influences on the wheelset and under-rail structure, especially the vibration response of rail, whose acceleration Power Spectrum Density difference reaches 18.6% with frequency shift of 54 Hz at basic frequency of 730.2 Hz, whereas the low frequency (below 200 Hz) rail vibration is not affected. The methods and results could serve as a guideline for the safety checking and dynamics calculation of smart railway track with rail-borne electromagnetic generator.

Từ khóa


Tài liệu tham khảo

Wang JJ, Proceedings of the 8th international conference on mechatronic and embedded systems and applications, 29

Yuan TC, 2014, Smart Mater Struct, 23, 1

10.1115/1.4006920

10.1109/TITS.2017.2709346

10.21595/jve.2016.16938

Gao MY, 2017, IEEE T Intell Transp Syst, 18, 1596

Wei K, 2015, J Chin Railw Soc, 37, 80

10.1016/j.compstruc.2008.10.004

10.1016/j.jsv.2013.05.018

Zhao Y, 2017, Shock Vib, 2017, 3809415

10.1177/1475921718782395

10.1121/1.394746

10.1016/S0003-682X(97)00016-9

10.1243/0954409971530897

10.1016/j.jsv.2005.08.042