Maglev train, levitation control system and method for improving operation stability

A technology for maglev trains and stability, applied in electric vehicles, vehicle parts, transportation and packaging, etc., can solve problems such as increased operating costs, and achieve the effects of easy implementation, weakening adverse effects, and improving anti-interference capabilities

Pending Publication Date: 2021-11-09
ZHUZHOU ELECTRIC LOCOMOTIVE CO
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In fact, track irregularities cannot be avoided, and the track can only be maintained regularly and frequently, which will inevitably lead to increased operating costs

Method used

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  • Maglev train, levitation control system and method for improving operation stability
  • Maglev train, levitation control system and method for improving operation stability
  • Maglev train, levitation control system and method for improving operation stability

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Embodiment Construction

[0027] In the maglev train according to an embodiment of the present invention, the suspension control system includes control modules of a plurality of single-point suspension electromagnets, and in the control modules of the single-point suspension electromagnets, the method for improving running stability includes the estimation value of track irregularity Calculation and suspension feed-forward control and feedback control, wherein the suspension feed-forward control and feedback control are completed by the suspension controller and feedback controller, and the feedback control can refer to the literature "Zhai Wanming, Zhao Chunfa. Maglev Vehicle / Rail System Dynamics (I)—— Magnetic / Rail Interaction and Stability[J]. Chinese Journal of Mechanical Engineering, 2005(07):5-14".

[0028] The calculation of the estimated track irregularity is based on the levitation gap and electromagnet acceleration data of the electromagnetic levitation system during the last maglev train ope...

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Abstract

The invention discloses a maglev train, a levitation control system and a method for improving operation stability, and relates to the field of levitation control. In order to avoid the influence of track irregularity interference on the levitation control stability of the maglev train, after an irregularity interference estimated value is obtained, feed-forward control is used for applying dynamic compensation to the track irregularity, so that the adverse influence of the irregularity interference on the levitation control stability can be greatly weakened, the maintenance period of the track is prolonged, the operation cost is reduced, and the operation stability and comfort of the maglev train are further improved. By adding feedforward control, the anti-interference capability of the levitation control system of the maglev train is improved, the robustness and environmental adaptability of the levitation control system are improved, and the used feedforward control and feedback control policy can also be migrated and used for other similar scenes.

Description

technical field [0001] The invention relates to the field of suspension control, in particular to a maglev train, a suspension control system and a method for improving running stability. Background technique [0002] The maglev transportation system is a complex electromechanical system integrating mechanical engineering, control engineering, civil engineering and other disciplines. There is a strong interaction between each system, and the dynamic behavior of train operation is very complex. The maglev train relies on the electromagnetic force generated by the active control electromagnet to levitate and guide, and runs around the slender track beam under the propulsion of the linear motor, avoiding the direct mechanical contact between the vehicle and the track, but a lot of dynamic problems still exist. The nonlinear active magnetic buoyancy of the maglev system makes the research on the dynamics of the maglev vehicle system very special. The stability of the control sys...

Claims

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Application Information

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IPC IPC(8): B60L13/06
CPCB60L13/06
Inventor 舒瑶杨颖蒋忠城佟来生张俊张波刘国云陈晶晶刘晓波洪远卓金淼鑫郭冰彬罗志翔李超
Owner ZHUZHOU ELECTRIC LOCOMOTIVE CO
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