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首页> 外文期刊>Journal of Sound and Vibration >Suppression of imbalance vibration for AMBs controlled driveline system using double-loop structure
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Suppression of imbalance vibration for AMBs controlled driveline system using double-loop structure

机译:利用双回路结构抑制AMBs传动系统的不平衡振动

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摘要

Because of the couplings without off-line balancing and the uneven distribution of the rope, the equivalent residual unbalances in the active magnetic bearing (AMB) controlled driveline system are considerable. Therefore it is necessary to achieve suppressing the synchronous vibration force over the entire operating speed range. To completely achieve automatic balance of the rotor, a double-loop compensation design approach based on the AMB is proposed. Firstly, a dynamic model of the rotor with imbalance and the decentralized control system of magnetic bearing are established. Then the imbalance characteristic of the rotor system is identified by the generalized notch in which sign of the convergence coefficient needs to be changed according to the rotational speed. Finally, the second loop which is a simply feedforward loop at low speeds and switched to an adaptively tuning loop at high speeds is used to adjust the control current to achieve complete suppression of the imbalance vibration force. The method can achieve automatic balancing within the entire operating speed range and the effectiveness is unaffected by the attenuation of power amplifier at high speeds. Simulation and experiment results well demonstrate effectiveness of the approach, and the stability of the whole system is guaranteed. (C) 2014 Elsevier Ltd. All rights reserved.
机译:由于没有离线平衡的联轴器以及绳索的不均匀分布,因此主动磁悬浮轴承(AMB)控制的传动系统中的等效残余不平衡相当大。因此,有必要在整个工作速度范围内抑制同步振动力。为了完全实现转子的自动平衡,提出了一种基于AMB的双环补偿设计方法。首先,建立了不平衡转子的动力学模型和电磁轴承的分散控制系统。然后,通过广义缺口识别转子系统的不平衡特性,在该缺口中,会根据转速改变会聚系数的符号。最后,第二个回路是低速时的简单前馈回路,并在高速时切换到自适应调谐回路,用于调节控制电流,以完全抑制不平衡振动力。该方法可以在整个工作速度范围内实现自动平衡,并且有效性不受高速时功率放大器的衰减的影响。仿真和实验结果很好地证明了该方法的有效性,并保证了整个系统的稳定性。 (C)2014 Elsevier Ltd.保留所有权利。

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