首页> 外文会议>IFToMM International Conference on Rotor Dynamics >Identification of Crack and Internal Damping Parameters Using Full Spectrum Responses from a Jeffcott Rotor Incorporated with an Active Magnetic Bearing
【24h】

Identification of Crack and Internal Damping Parameters Using Full Spectrum Responses from a Jeffcott Rotor Incorporated with an Active Magnetic Bearing

机译:使用来自Jeffcott转子的全谱响应识别裂缝和内部阻尼参数,该参数加入有源磁轴承

获取原文

摘要

In smart rotor technology the active magnetic bearing plays a vital role in controlling vibration for safe and efficient running of high speed machineries, and for its condition monitoring or system identification. Researchers mostly investigated the dynamics of cracked rotors independent of the internal damping. Nevertheless, the internal damping is also influenced by the presence of crack in a rotating system because of rubbing of crack fronts during its opening and closing throughout the shaft whirling. The present work deals with the identification of rotor dynamic parameters in the cracked Jeffcott rotor considering both external and internal damping through a model based technique. The active control of vibration that is caused due to the transverse crack, unbalance and internal damping can be done by using the magnetic bearing. Numerical rotor responses and AMB currents are investigated using the full spectrum tool, which can reveal directional nature of the vibration signature in frequency domain. The response and current harmonics due to the excitation force of crack function, which is found from full spectrum analysis, are input to the proposed identification algorithm. It estimates the additive crack stiffness, unbalance in rotor, external damping, internal damping and AMB parameters such as the force-displacement and force-current coefficients. For different noise levels in responses and currents the proposed identification algorithm is tested for validating its robustness against measurement noise.
机译:在智能转子技术中,主动磁轴承在控制高速机械安全有效运行的振动方面起着至关重要的作用,以及其状态监测或系统识别。研究人员大多研究了独立于内部阻尼的裂纹转子的动态。然而,由于在整个轴旋转过程中摩擦裂缝前沿,内部阻尼也受到旋转系统中的裂缝的存在影响。本工作涉及通过基于模型的技术的外部和内部阻尼,识别裂纹Jeffcott转子中的转子动态参数。可以通过使用磁轴承来完成由于横向裂纹,不平衡和内部阻尼引起的振动的主动控制。使用全光谱工具研究了数值转子响应和AMB电流,这可以揭示频域中振动特征的定向性质。由于从全频谱分析中发现的裂缝函数的激发力而导致的响应和电流谐波被输入到所提出的识别算法。它估计添加剂裂缝刚度,转子,外部阻尼,内部阻尼和AMB参数,例如力 - 位移和力电流系数。对于响应和电流中的不同噪声水平,测试了所提出的识别算法,以验证其鲁造度而无法抵抗测量噪声。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号