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Improvement of Ride Quality of Railway Vehicle by Semiactive Secondary Suspension System on Roller Rig Using Magnetorheological Damper

机译:磁流变阻尼器通过半导体二级悬架系统改善铁路车辆乘坐质量

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摘要

Ride quality became a very important factor in the performance of railway vehicles according to the expansion of high-speed railways and speedup of velocity of railway vehicles. In this study, the results of applying the MR (magnetorheological) lateral damper on the secondary suspension to reduce the vibration of the car body, directly relating to the ride quality of railway vehicles, were mentioned. In order to verify the control performance of MR dampers, a 1/5 scaled railway vehicle model was constructed, and numerical simulation and experimental tests were conducted. The MR damper for the experimental tests was produced and was attached between the car body and bogie of a full scaled vehicle, and a vibration controlling test was performed to improve ride quality on a roller rig. The skyhook control algorithm was used as the controlling technique, and regarding the test results, the RMS (root mean square) value was found by compensating the frequency of the lateral vibration based on the UIC 513 R Standard about the ride quality of railway vehicles. As a result of the test, it could be confirmed that vibration was reduced by approximately 24% when attaching the MR damper between the bogie and the car body compared to when applying a passive damper.
机译:骑行质量成为铁路车辆性能的一个非常重要的因素,根据高速铁路的扩展和铁路车辆速度的加速。在本研究中,提到了将MR(磁流变)横向阻尼器对二次悬架上的结果,以减少车身的振动,直接与铁路车辆的乘坐质量有关。为了验证MR阻尼器的控制性能,构建了1/5缩放的铁路车辆模型,进行了数值模拟和实验测试。制作实验测试的MR DAMPER并连接在全缩放车辆的车身和转向架之间,并进行振动控制测试,以提高卷筒机上的乘坐质量。使用Skyhook控制算法作为控制技术,并且关于测试结果,通过基于UIC 513 R标准对乘坐铁路车辆的乘坐质量来补偿横向振动的频率来找到RMS(均方方)值。作为测试的结果,可以证实,与施加无源阻尼器时,在将转向架和车体之间的MR阻尼器附接时,振动减小了大约24%。

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