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DYNAMIC STIFFNESS CONTROL AND ACCELERATION SCHEDULING FOR THE ACTIVE BALANCING CONTROL OF A JEFFCOTT-LIKE ROTOR SYSTEM

机译:Jeffcott样转子系统主动平衡控制的动态刚度控制与加速度调度

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This paper considers the problem of active balancing control on a Jeffcott-like rotor supported on two ball bearings. One of them can be automatically moved to control the effective rotor length and, as an inmediate consequence, the rotor stiffness. This control squeme is also combined with the knowledge of the rotor frequency response as well as a local rotor speed controller to compensate synchronous perturbations. The asymmetric motion of the disk, due to the motion of one of the supporting bearings, leads to a nonlinear and coupled model of six degree of fredoom, including gyroscopics effects, which differs from the so-called Jeffcott rotor. The dynamic stiffness control, based on frecuency analysis, speed control and acceleration scheduling, is used for the active balancing control. Such control is able to reduce and stabilize the amplitude response while passing (run-up or coast down) through its first critical speed. Some numerical simulations are included to illustrate the unbalance compensation properties and robustness when the rotor is started and operated over the first critical speed.
机译:本文考虑了在两个滚珠轴承支撑在两个滚珠轴承上的Jeffcott的转子上的主动平衡控制问题。其中一个可以自动移动以控制有效的转子长度,并且作为重构的转子长度,转子刚度。该控制级别也与转子频率响应的知识以及局部转子速度控制器的知识相结合,以补偿同步扰动。由于其中一个支撑轴承的运动,盘的不对称运动导致六个射线的非线性和耦合模型,包括陀螺仪效应,其与所谓的Jeffcott转子不同。基于FRECURY分析,速度控制和加速度调度的动态刚度控制用于主动平衡控制。这种控制能够通过其第一临界速度通过(跳转或沿着沿着滑行)的同时减少和稳定幅度响应。包括一些数值模拟,以说明当转子启动并在第一临界速度上操作时的不平衡补偿性能和鲁棒性。

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