Structural Safety Analysis of Electromagnetic Levitation System Subject to Track Irregularities
In light of the cumulative impact of the stochastic track irregularity, ensuring optimal performance of the electromagnetic levitation system requires not only achieving robust operating performances but also sustaining high reliability over extended service periods. This paper conducts comprehensiv...
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Published in | IEEE transactions on applied superconductivity Vol. 34; no. 8; pp. 1 - 5 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
New York
IEEE
01.11.2024
The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
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Abstract | In light of the cumulative impact of the stochastic track irregularity, ensuring optimal performance of the electromagnetic levitation system requires not only achieving robust operating performances but also sustaining high reliability over extended service periods. This paper conducts comprehensive research of the structural safety of the levitation unit within a Maglev train's levitation system and established an efficient first-passage analysis of the levitation unit by employing the probability density evolution method. This study explores the probability density evolution of the air gap subject to track irregularity excitation, providing insights into the impact of track irregularities on the first-passage time of the levitation unit. |
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AbstractList | In light of the cumulative impact of the stochastic track irregularity, ensuring optimal performance of the electromagnetic levitation system requires not only achieving robust operating performances but also sustaining high reliability over extended service periods. This paper conducts comprehensive research of the structural safety of the levitation unit within a Maglev train's levitation system and established an efficient first-passage analysis of the levitation unit by employing the probability density evolution method. This study explores the probability density evolution of the air gap subject to track irregularity excitation, providing insights into the impact of track irregularities on the first-passage time of the levitation unit. |
Author | Shen, Boyang Dai, Yawen Xu, Junqi Ni, Fei |
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References | Shen (ref2) 2006 ref13 Zhang (ref12) 2007; 41 ref15 ref14 ref20 Huang (ref5) 2018; 21 ref11 ref10 ref21 ref17 Lin (ref1) 2023; 2 ref19 ref18 ref8 Shu (ref7) 2005; 9 ref9 ref4 ref3 ref6 Shen (ref16) 2020; 48 |
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SubjectTerms | Boundary conditions Density Electromagnetics Impact analysis Irregularities Levitation Levitation unit maglev train Magnetic levitation Mathematical models Reliability Safety stochastic excitation Structural reliability Structural safety Superconducting magnets |
Title | Structural Safety Analysis of Electromagnetic Levitation System Subject to Track Irregularities |
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