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The effect of speed-dependent friction and backlash on the stability of automatic control systems

机译:速度相关的摩擦和反冲对自动控制系统稳定性的影响

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A control system is considered which employs a motor driving a load through gearing having backlash. It is assumed that linear speed-dependent friction is applied to both the motor and the load. The effect of backlash and friction on the stability of the control system is investigated using the describing function technique. A method of deriving the describing function is given and it is shown that the presence of friction modifies the application of the describing function as presented by Tustin.1 In particular it is shown that although the positional reset may be divided in the ratio of the inertias, the system may still exhibit sustained oscillations, and the choice of system parameters to eliminate these oscillations is discussed. To illustrate the effect of backlash and friction quantitatively a second-order control system is considered. The oscillations predicted by the theory are measured on an electronic analog of the system. By a correct choice of the system parameters the oscillations are removed.
机译:考虑一种控制系统,该系统采用电动机通过具有间隙的齿轮装置来驱动负载。假定与速度有关的线性摩擦力同时应用于电动机和负载。使用描述函数技术研究了间隙和摩擦对控制系统稳定性的影响。给出了一种描述函数的推导方法,结果表明,摩擦的存在改变了描述函数的应用,如Tustin.1所示。特别是,它表明尽管位置复位可以按惯性的比例进行划分。 ,系统可能仍会出现持续振荡,并讨论了消除这些振荡的系统参数选择。为了定量地说明间隙和摩擦的影响,考虑了二阶控制系统。该理论预测的振荡在系统的电子模拟上进行测量。通过正确选择系统参数,可以消除振荡。

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