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Simulation study on effects of model-based vibration suppression control applied to a power circulation type geared-mechanical system

机译:基于模型的减振控制在动力循环式齿轮机械系统中效果的仿真研究

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In the field of industrial machines, the mechanical systems composed of the power circulation structure exist, and the powers of two or more motors of the same output are synthesized through the gear stages to drive the driven machine part and the desired motion of the machine is achieved. In this paper, the case that the power circulation mechanism is driven by two motors is taken up. First, the analytical model for the torsional vibration and the analytical result are shown. Second, the stability of the control system is considered by calculating the loci of system eigenvalues. Third, the suppression effects on the residual vibration generated in the driven machine part when motors start and stop by applying the model-based control concerning the velocity control loop is confirmed by the simulation. Simulations show satisfactory control results to reduce the transient vibration at the driven machine part.
机译:在工业机械领域,存在由动力循环结构组成的机械系统,并且通过齿轮级来合成具有相同输出的两个或多个电动机的动力,以驱动从动机器零件,从而使机器实现理想的运动。实现。在本文中,讨论了动力循环机构由两个电动机驱动的情况。首先,示出了扭转振动的解析模型和解析结果。其次,通过计算系统特征值的轨迹来考虑控制系统的稳定性。第三,通过仿真确认了通过应用与速度控制回路有关的基于模型的控制对电动机启动和停止时对被驱动的机器部件中产生的残余振动的抑制效果。仿真显示令人满意的控制结果,可减少从动机器部件的瞬态振动。

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