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悬浮间隙微分在磁浮列车系统中的应用 被引量:6
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作者 刘恒坤 郝阿明 常文森 《控制工程》 CSCD 2008年第1期57-60,共4页
为了解决磁悬浮列车系统中普遍存在而难以解决的车轨耦合振动问题,以磁悬浮列车的车辆-轨道模型为研究对象,分析在普通反馈控制规律作用下容易产生车轨耦合振动的原因,提出并实现了在普通反馈控制规律的基础上,引入电磁悬浮间隙的微分... 为了解决磁悬浮列车系统中普遍存在而难以解决的车轨耦合振动问题,以磁悬浮列车的车辆-轨道模型为研究对象,分析在普通反馈控制规律作用下容易产生车轨耦合振动的原因,提出并实现了在普通反馈控制规律的基础上,引入电磁悬浮间隙的微分信号来抑制车轨耦合振动的方法。考虑到实验过程中,由于噪声的影响,微分信号难以准确获取,介绍了一种能够抑制噪声的微分信号求取方法,给出了实验和仿真结果,验证了本文提出的控制方法的有效性。 展开更多
关键词 磁悬浮列车系统 车轨耦合振动 悬浮间隙微分 反馈线性化
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高速磁浮列车用混合滤波器设计的仿真研究 被引量:1
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作者 郭其一 李春 《系统仿真学报》 EI CAS CSCD 北大核心 2008年第5期1312-1316,共5页
高速磁悬浮列车系统的谐波是一种典型的强非线性、冲击性负荷,是一种重要的新型谐波源,在没有补偿措施时,它会带来较严重的电网谐波问题。针对高速磁悬浮列车系统谐波的特征,运用自适应谐波检测方法对谐波进行检测分离,通过有源滤波器... 高速磁悬浮列车系统的谐波是一种典型的强非线性、冲击性负荷,是一种重要的新型谐波源,在没有补偿措施时,它会带来较严重的电网谐波问题。针对高速磁悬浮列车系统谐波的特征,运用自适应谐波检测方法对谐波进行检测分离,通过有源滤波器和无源滤波器的有效配合,最终达到谐波抑制,改善功率因数,优化电网电能质量的目的。 展开更多
关键词 高速磁悬浮列车系统 自适应谐波检测方法 谐波抑制 混合滤波器
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A novel refined dynamic model of high-speed maglev train-bridge coupled system for random vibration and running safety assessment
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作者 MAO Jian-feng LI Dao-hang +3 位作者 YU Zhi-wu CAI Wen-feng GUO Wei ZHANG Guang-wen 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第7期2532-2544,共13页
Running safety assessment and tracking irregularity parametric sensitivity analysis of high-speed maglev train-bridge system are of great concern,especially need perfect refinement models in which all properties can b... Running safety assessment and tracking irregularity parametric sensitivity analysis of high-speed maglev train-bridge system are of great concern,especially need perfect refinement models in which all properties can be well characterized based on various stochastic excitations.A three-dimensional refined spatial random vibration analysis model of high-speed maglev train-bridge coupled system is established in this paper,in which multi-source uncertainty excitation can be considered simultaneously,and the probability density evolution method(PDEM)is adopted to reveal the system-specific uncertainty dynamic characteristic.The motion equation of the maglev vehicle model is composed of multi-rigid bodies with a total 210-degrees of freedom for each vehicle,and a refined electromagnetic force-air gap model is used to account for the interaction and coupling effect between the moving train and track beam bridges,which are directly established by using finite element method.The model is proven to be applicable by comparing with Monte Carlo simulation.By applying the proposed stochastic framework to the high maglev line,the random dynamic responses of maglev vehicles running on the bridges are studied for running safety and stability assessment.Moreover,the effects of track irregularity wavelength range under different amplitude and running speeds on the coupled system are investigated.The results show that the augmentation of train speed will move backward the sensitive wavelength interval,and track irregularity amplitude influences the response remarkably in the sensitive interval. 展开更多
关键词 maglev train-bridge interaction electromagnetic force-air gap model stochastic dynamic analysis running safety assessment probability density evolution method
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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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