首页> 外文期刊>propulsion and power research >Dynamic analysis and identification of unbalance and misalignment in a rigid rotor with two offset discs levitated by active magnetic bearings: a聽novel trial misalignment approach
【24h】

Dynamic analysis and identification of unbalance and misalignment in a rigid rotor with two offset discs levitated by active magnetic bearings: a聽novel trial misalignment approach

机译:主动磁浮轴承悬浮的两个偏置盘刚性转子不平衡和不对中动态分析和识别:一种新型试验不对中方法

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Rotating machinery is an essential and crucial component of numerous mechanical systems in modern industries, transport vehicles, and in several other applications. Excessive vibrations on rotating equipment due to multiple faults may cause catastrophic failure in machines and lead to hazardous accidents. So, there is a need for perceiving the dynamic nature and identifying the faults for the safe, smooth and effective operation of machines. This paper proposes a novel trial misalignment approach to estimate the misalignment with a similar concept as the trial unbalance in the rotor balancing. Active magnetic bearing (AMB) misalignment with the rotor has been investigated with residual misalignment and additional trial misalignment cases. Additional trial misalignments are provided in addition to the unknown misalignments of the residual misalignment case. For the execution of this methodology, the dynamic model of a four-degree-of-freedom unbalanced and misaligned rigid rotor with two offset discs supported by two active magnetic bearings has been mathematically developed. The offset discs result in the gyroscopic effect at high rotor speeds. Equations of motion of the rotor-AMB system have been derived and solved to generate the time domain rotor displacement and controlling current responses at AMB positions. A fast Fourier transform technique has been utilized to convert the time domain responses into the frequency domain for estimation of unbalance eccentricities and phases together with force-displacement and force-current stiffnesses of misaligned AMBs as well as AMB's constant forces using the developed identification algorithm. Identified values of AMB's parameters for both residual and additional trial misalignment cases are evaluated to estimate the four unknown misalignments. Testing of the algorithm has also been carried out at multiple spin speeds against measurement signal noise in rotor responses and bias errors in rotor system parameters to check its effectiveness and robustness. The algorithm is found to be exhibiting excellent.
机译:旋转机械是现代工业、运输车辆和其他几种应用中众多机械系统的重要组成部分。由于多种故障导致旋转设备的过度振动可能会导致机器发生灾难性故障并导致危险事故。因此,需要感知动态性质并识别故障,以确保机器的安全、平稳和有效运行。本文提出了一种新的试验不对准方法,用于估计与转子平衡中的试验不平衡类似的概念的不对中。主动磁浮轴承 (AMB) 与转子的不对中已经通过残余不对中和其他试验不对中案例进行了研究。除了残余错位病例的未知错位外,还提供了其他试验错位。为了执行该方法,已经从数学上开发了具有两个偏置盘的四自由度不平衡和未对准刚性转子的动力学模型,该圆盘由两个主动磁轴承支撑。偏置盘在高转子转速下产生陀螺效应。推导并求解了转子-AMB系统的运动方程,以生成时域转子位移并控制AMB位置的电流响应。利用快速傅里叶变换技术将时域响应转换为频域,用于估计不平衡偏心率和相位,以及未对准AMB的力-位移和力-电流刚度,以及AMB的恒定力。评估残余和附加试验错位病例的 AMB 参数的已识别值,以估计四种未知的错位。该算法还针对转子响应中的测量信号噪声和转子系统参数中的偏置误差,在多个旋转速度下进行了测试,以检查其有效性和鲁棒性。该算法表现出色。

著录项

相似文献

  • 外文文献
  • 中文文献
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