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Influence of track irregularities in high-speed Maglev transportation systems

机译:磁浮异常对高速磁悬浮运输系统的影响

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Track irregularities of high-speed Maglev lines have significant influence on ride comfort. Their adjustment is of key importance in the daily maintenance of these lines. In this study, an adjustment method is proposed and track irregularities analysis is performed. This study considers two modules: an inspection module and a vehicle-guideway coupling vibration analysis module. In the inspection module, an inertial reference method is employed for field-measurements of the Shanghai high-speed Maglev demonstration line. Then, a partial filtering, integration method, resampling method, and designed elliptic filter are employed to analyze the detection data, which reveals the required track irregularities. In the analysis module, a vehicle-guideway interaction model and an electromagnetic interaction model were developed. The influence of the measured line irregularities is considered for the calculations of the electromagnetic force. Numerical integration method was employed for the calculations. Based on the actual field detection results and analysis using the numerical model, a threshold analysis method is developed. Several irregularities modalities with different girder end's deviations were considered in the simulations. The inspection results indicated that long-wavelength irregularities with larger girder end's deviations were the dominant irregularities. In addition, the threshold analysis of the girder end's deviation shows that irregularities that have a deviation amplitude larger than 6 mm and certain modalities (e.g., M- and N-shape) are unfavorable. These types of irregularities should be adjusted during the daily maintenance.
机译:高速磁悬浮线的轨道不规则性对乘坐舒适性有重大影响。在这些生产线的日常维护中,调整它们至关重要。在这项研究中,提出了一种调整方法并进行了轨道不规则性分析。这项研究考虑了两个模块:检查​​模块和车辆-导轨耦合振动分析模块。在检查模块中,惯性参考方法用于上海高速磁悬浮示范线的现场测量。然后,采用局部滤波,积分法,重采样法和设计的椭圆滤波器对检测数据进行分析,揭示了所需的磁道不规则性。在分析模块中,开发了车辆-导轨相互作用模型和电磁相互作用模型。计算电磁力时要考虑测量的线路不规则性的影响。计算采用数值积分法。基于实际的现场检测结果并利用数值模型进行分析,提出了一种阈值分析方法。在仿真中考虑了具有不同梁端偏差的几种不规则形态。检查结果表明,主光束端的偏差较大的是长波不规则。另外,对梁端的偏离的阈值分析表明,具有大于6mm的偏离幅度和某些模态(例如,M形和N形)的不规则形状是不利的。在日常维护期间应调整这些类型的不规则性。

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