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高温超导磁浮模型车的实验研究 被引量:3
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作者 张永 徐善纲 金能强 《电工电能新技术》 CSCD 1998年第2期51-54,共4页
本文简要地介绍了一辆永磁型高温超导磁浮模型车的结构,分析了不同冷却间隙时的悬浮力,导向力的试验曲线以及直线电机定子绕组电流波形。根据试验分析结果,作者提出了一种电磁型高温超导磁浮模型车的结构。
关键词 高温超导体 悬浮 磁悬浮车模型 实验
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Saturation influence of control voltage on maglev stationary self-excited vibration 被引量:3
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作者 李金辉 李杰 余佩倡 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第8期1954-1960,共7页
This work addresses the saturation influence of control voltage on the occurring of self-excited vibration of maglev vehicle-bridge interaction system, which greatly degrades the stability of the levitation control, d... This work addresses the saturation influence of control voltage on the occurring of self-excited vibration of maglev vehicle-bridge interaction system, which greatly degrades the stability of the levitation control, decreases the ride comfort, and restricts the cost of the whole system. Firstly, the interaction model of vehicle-bridge system is developed. Based on the interaction model, the relationship between the control voltage and vibration frequency is solved. Then, the variation of the effective direct component and fundamental harmonic are discussed. Furthermore, from the perspective of energy transmission between the levitation system and bridge, the principle underlying the self-excited vibration is explored, and the influence on the stability is discussed. Finally, in terms of the variation of the characteristic roots, the influence is analyzed further and some conclusions are obtained. This study provides a theoretical guidance for mastering the self-excited vibration problems. 展开更多
关键词 MAGLEV LEVITATION SATURATION self-excited vibration
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UAQ4 Magnetic Levitating Train: Propulsion System for Urban Transportation
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作者 Gino D'Ovidio Francesco Crisi 《Journal of Energy and Power Engineering》 2012年第12期1952-1956,共5页
This paper discusses the design of the propulsion system of the UAQ4 (University of L'Aquila, model 4) magnetic levitating train which is used for transportation applications in urban environments. UAQ4 is the only... This paper discusses the design of the propulsion system of the UAQ4 (University of L'Aquila, model 4) magnetic levitating train which is used for transportation applications in urban environments. UAQ4 is the only magnetic levitating vehicle with resistance motion, except for aerodynamic drag and with energy consumption near zero at low speed. The feasibility of the system has been successfully verified and tested in the laboratory. Propulsion and braking are provided by a novel direct-current linear stepper motor, with the primary formed by permanent magnets distributed on central beam of the track, and the secondary by coils on board the vehicle, instead of the present alternate current linear motors that have well-known disadvantages. The motor working principles are described, and its performances are analyzed, by a finite element numerical model which allows modifying the most important parameters of the system. The main components of a full scale motor for urban transportation are measured and discussed. 展开更多
关键词 Linear motor PROPULSION magnetically levitating train transportation system energy consumption.
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