Comparative evaluation of the effectiveness of the vibration protection of the active suspension system with PID control

V. Kuz’min, Z. Godzhaev
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引用次数: 1

Abstract

The pneumatic suspension is used to absorb vibration and provide comfortable labor conditions for transportation vehicle drivers. The cause of increased vibration of the tractor, often, are incorrectly matched elastic-damping characteristics of the cushions of the active suspension system, which can not cope (or cope extremely ineffectively) with fluctuations coming from the external background. Since the realization of an experiment for the dynamic analysis of pneumatic suspension takes a long time, the mathematical models of the vehicle suspension system are used to obtain the response parameters of the pneumatic suspension. In the given article the comparative characteristic of spring’s systems with a cylindrical spring and a linear pneumatic spring as a suspension system is given. To carry out the simulation, the Matlab/Simulink software complex was used, in which, based on the previously obtained values of equivalent rigidity, a simulation of the tractor was built. Since the tractor in this model is considered as a linear system, its spectral function was calculated from the spectrum of the input parameters of the path unevenness and the frequency response of the tractor. These parameters were used to analyze the vibration response of the suspension system to assess the effectiveness of the system and, as a result, assessment of the operator comfort. The algorithm of the proportional integral differentiating (PID) regulation of the suspension system was implemented depending on their output parameters as well. The comparative study shows how the linear model of the pneumatic suspension system controlled by a PID-regulator is able to suppress fluctuations arising from road roughness and whether it is effective than a passive suspension system for a vehicle with a coil spring. The criterion of efficiency in this work was the indicator of the tractor's displacement height.
PID控制对主动悬架系统防振效果的比较评价
气动悬架用于吸收振动,为运输车辆驾驶员提供舒适的劳动条件。拖拉机振动增加的原因,往往是主动悬架系统的缓冲垫的弹性阻尼特性匹配不正确,不能应对(或极其无效地应对)来自外部背景的波动。由于气动悬架动力学分析实验的实现需要较长的时间,因此采用车辆悬架系统的数学模型来获得气动悬架的响应参数。本文给出了以圆柱弹簧和线性气动弹簧为悬挂系统的弹簧系统的比较特性。为进行仿真,采用Matlab/Simulink复合软件,基于之前得到的等效刚度值,对牵引车进行仿真。由于将该模型中的牵引车视为线性系统,因此其谱函数由牵引车路径不均匀度的输入参数和牵引车的频率响应的谱来计算。这些参数用于分析悬架系统的振动响应,以评估系统的有效性,从而评估驾驶员的舒适性。并根据其输出参数实现了悬架系统的比例积分微分(PID)调节算法。对比研究显示了pid调节器控制的气动悬架系统的线性模型如何能够抑制路面不平度引起的波动,以及对于带有螺旋弹簧的车辆,它是否比被动悬架系统有效。在这项工作中,效率的标准是拖拉机的位移高度指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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