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Synchronization of Two Homodromy Rotors Installed on a Double Vibro-Body in a Coupling Vibration System

机译:安装在耦合振动系统中的双振动体上的两个同质转子的同步

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摘要

A new mechanism is proposed to implement synchronization of the two unbalanced rotors in a vibration system, which consists of a double vibro-body, two induction motors and spring foundations. The coupling relationship between the vibro-bodies is ascertained with the Laplace transformation method for the dynamics equation of the system obtained with the Lagrange’s equation. An analytical approach, the average method of modified small parameters, is employed to study the synchronization characteristics between the two unbalanced rotors, which is converted into that of existence and the stability of zero solutions for the non-dimensional differential equations of the angular velocity disturbance parameters. By assuming the disturbance parameters that infinitely approach to zero, the synchronization condition for the two rotors is obtained. It indicated that the absolute value of the residual torque between the two motors should be equal to or less than the maximum of their coupling torques. Meanwhile, the stability criterion of synchronization is derived with the Routh-Hurwitz method, and the region of the stable phase difference is confirmed. At last, computer simulations are preformed to verify the correctness of the approximate solution of the theoretical computation for the stable phase difference between the two unbalanced rotors, and the results of theoretical computation is in accordance with that of computer simulations. To sum up, only the parameters of the vibration system satisfy the synchronization condition and the stability criterion of the synchronization, the two unbalanced rotors can implement the synchronization operation.
机译:提出了一种新的机制来实现振动系统中两个不平衡转子的同步,该系统由双振动体,两个感应电动机和弹簧基座组成。对于通过拉格朗日方程获得的系统动力学方程,用拉普拉斯变换法确定了振动体之间的耦合关系。采用分析方法,即修正后的小参数的平均方法,研究了两个不平衡转子之间的同步特性,并将其转化为角速度扰动的无量纲微分方程的存在性和零解的稳定性。参数。通过假设扰动参数无限接近零,可以获得两个转子的同步条件。这表明两个电动机之间的剩余转矩的绝对值应等于或小于它们的耦合转矩的最大值。同时,用Routh-Hurwitz方法推导了同步的稳定判据,并确定了稳定相位差的区域。最后,通过计算机仿真验证了两个不平衡转子之间稳定相位差的理论计算近似解的正确性,理论计算结果与计算机仿真相符。综上所述,只有振动系统的参数满足同步条件和同步的稳定性判据,两个不平衡转子才能实现同步运行。

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  • 总页数 22
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