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JENIŠ, F. MAZŮREK, I.
Original Title
Sprung mass positioning by semi-actively controlled damper
Type
conference paper
Language
English
Original Abstract
Recently, the intensive wear of rails, especially in curves of small radii and at switches, has been studied. The wear is caused by the high lateral force peak of the wheel against the rail when entering the curves. An effective solution for reducing undesirable lateral forces on the rail is to rotate the vehicle bogie in the direction of the rail curve, which influences the distribution of lateral force over the first and second wheelset. This reduces the force peak and thus the track wear. The bogie rotation is nowadays realized by actuators, which replace the yaw dampers. However, actuator implementation is complicated, expensive, energyintensive and demanding for the performance of a fail-safe system. From this point of view, a semi-actively controlled yaw damper appears to be a better candidate. An algorithm such as Skyhook can hold the sprung mass in the desired position. It is believed to be possible to rotate the vehicle bogie by the special S/A control strategy of a yaw damper. This paper deals with the possibilities and limits of the positioning of the sprung mass by the semi-actively controlled damper. It has been shown that the system relative attenuation and the damper response time have the greatest influence on the mass positioning efficiency.
Keywords
MR, yaw, damper, semi-active, sprung mass, positioning
Authors
JENIŠ, F.; MAZŮREK, I.
Released
14. 10. 2020
Publisher
EDP Sciences
ISBN
978-2-7598-9108-5
Book
MATBUD’2020 – Scientific-Technical Conference: E-mobility, Sustainable Materials and Technologies
Edition number
322
2261-236X
Periodical
MATEC Web of Conferences
Year of study
Number
1
State
French Republic
Pages from
Pages to
8
Pages count
URL
https://www.matec-conferences.org/articles/matecconf/abs/2020/18/matecconf_matbud2020_01051/matecconf_matbud2020_01051.html
Full text in the Digital Library
http://hdl.handle.net/11012/196376
BibTex
@inproceedings{BUT165684, author="Filip {Jeniš} and Ivan {Mazůrek}", title="Sprung mass positioning by semi-actively controlled damper", booktitle="MATBUD’2020 – Scientific-Technical Conference: E-mobility, Sustainable Materials and Technologies", year="2020", journal="MATEC Web of Conferences", volume="322", number="1", pages="1--8", publisher="EDP Sciences", doi="10.1051/matecconf/202032201051", isbn="978-2-7598-9108-5", issn="2261-236X", url="https://www.matec-conferences.org/articles/matecconf/abs/2020/18/matecconf_matbud2020_01051/matecconf_matbud2020_01051.html" }