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Active Vibration Control of Rotating Machines with Active Machine Foot Mounts on Soft Foundations Based on a 3D-Model

机译:基于3D模型的软基础旋转机械旋转机器的主动振动控制

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The paper presents a simplified 3D-model for active vibration control of rotating machines with active machine foot mounts on soft foundations, considering static and moment unbalance. After the model is mathematical described in the time domain, it is transferred into the Fourier domain, where the frequencies response functions regarding bearing housing vibrations, foundation vibrations and actuator forces are derived. Afterwards, the mathematical coherences are described in the Laplace domain and a worst case procedure is presented to analyze the vibration stability. For special controller structures in combination with certain feedback strategies, a calculation method is shown, where the controller parameters can be directly implemented into the stiffness matrix, damping matrix and mass matrix. Additionally a numerical example is presented, where the vibration stability and the frequency response functions are analyzed.
机译:本文介绍了一种简化的3D模型,用于旋转机器的主动振动控制,旋转机器在软基础上,静态和瞬间不平衡。在模型在时域中描述的数学之后,它被转移到傅立叶域中,其中导出关于轴承壳体振动,基础振动和致动器力的频率响应功能。之后,在拉普拉斯域中描述了数学一致性,并且提出了最坏的情况以分析振动稳定性。对于特殊控制器结构与某些反馈策略结合使用,示出了计算方法,其中控制器参数可以直接实现为刚度矩阵,阻尼矩阵和质量矩阵。另外,提出了一个数值示例,其中分析了振动稳定性和频率响应函数。

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