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Modelling and simulation of locomotive driver's seat vertical suspension vibration isolation system

机译:机车驾驶员座椅垂直悬架隔振系统的建模与仿真

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The paper describes the simulation of a vertical seat suspension system with a variable damper. The model presented describes a real damper with bushings and is an extension of the classical linear SDOF oscillatory system. Transfer functions were identified from laboratory measurements and the mechano-mathematical model produced was validated by field measurements. The seat cushion parameters were identified from laboratory measurements and combined with standardized vertical (z-axis) seated human body models (ISO 5982 and DIN 45676). These models, together with an inert mass human body model, were used to predict the vibration mitigation performance of the seat-occupant system. The results were compared to data obtained from field measurements under real operating conditions. It was found that the use of the inert mass human body model resulted in the smallest differences between predicted and measured system vibration isolation performance for the field excitation in the frequency band up to 4.5 Hz, where most of the vibratory energy was present in the field. Hence this simplified model is suggested for prediction of vibration influence on locomotive driver under field conditions.
机译:本文描述了带有可变阻尼器的垂直座椅悬架系统的仿真。提出的模型描述了带衬套的真实阻尼器,是经典线性SDOF振荡系统的扩展。通过实验室测量确定传递函数,并通过现场测量验证所产生的力学数学模型。座垫参数是通过实验室测量确定的,并与标准化的垂直(z轴)就座人体模型(ISO 5982和DIN 45676)结合使用。这些模型与惰性人体模型一起用于预测座椅乘员系统的减震性能。将结果与在实际操作条件下从现场测量获得的数据进行比较。结果发现,使用惰性人体模型导致在高达4.5 Hz的频带中场激励中预测和测量的系统振动隔离性能之间的最小差异,其中大多数振动能量都存在于场中。因此,建议使用此简化模型来预测在现场条件下振动对机车驾驶员的影响。

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