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A Vibration Sensor-Based Method for Generating the Precise Rotor Orbit Shape with General Notch Filter Method for New Rotor Seal Design Testing and Diagnostics

机译:一种基于振动传感器的方法用于产生精确的转子轨道形状具有新的转子密封设计测试和诊断的一般陷波滤波器方法

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摘要

Verification of the behaviour of new designs of rotor seals is a crucial phase necessary for their use in rotary machines. Therefore, experimental equipment for the verification of properties that have an effect on rotor dynamics is being developed in the test laboratories of the manufacturers of these components all over the world. In order to be able to compare the analytically derived and experimentally identified values of the seal parameters, specific requirements for the rotor vibration pattern during experiments are usually set. The rotor vibration signal must contain the specified dominant components, while the others, usually caused by unbalance, must be attenuated. Technological advances have made it possible to use magnetic bearings in test equipment to support the rotor and as a rotor vibration exciter. Active magnetic bearings allow control of the vibrations of the rotor and generate the desired shape of the rotor orbit. This article presents a solution developed for a real test rig equipped with active magnetic bearings and rotor vibration sensors, which is to be used for testing a new design of rotor seals. Generating the exact shape of the orbit is challenging. The exact shape of the rotor orbit is necessary to compare the experimentally and numerically identified properties of the seal. The generalized notch filter method is used to compensate for the undesired harmonic vibrations. In addition, a novel modified generalized notch filter is introduced, which is used for harmonic vibration generation. The excitation of harmonic vibration of the rotor in an AMB system is generally done by injecting the harmonic current into the control loop of each AMB axis. The motion of the rotor in the AMB axis is coupled, therefore adjustment of the amplitudes and phases of the injected signals may be tedious. The novel general notch filter algorithm achieves the desired harmonic vibration of the rotor automatically. At first, the general notch filter algorithm is simulated and the functionality is confirmed. Finally, an experimental test device with an active magnetic bearing is used for verification of the algorithm. The measured data are presented to demonstrate that this approach can be used for precise rotor orbit shape generation by active magnetic bearings.
机译:转子密封件新设计的行为的验证是它们在旋转机器中使用所需的关键阶段。因此,在全球这些组件制造商的测试实验室中开发了对转子动力学产生影响的性能的实验设备。为了能够比较密封参数的分析衍生和实验识别的值,通常设定在实验期间对转子振动模式的特定要求。转子振动信号必须包含指定的主导组件,而其他由不平衡引起的其他主体组件必须衰减。技术进步使得可以在测试设备中使用磁轴承来支撑转子和转子振动激励器。主动磁轴承允许控制转子的振动并产生所需的转子轨道形状。本文介绍了一种用于配备有主动磁轴承和转子振动传感器的真正试验器开发的解决方案,用于测试转子密封件的新设计。产生轨道的确切形状是挑战性的。转子轨道的确切形状是比较实验和数值鉴定的密封的性质。广义陷波滤波器方法用于补偿不期望的谐波振动。此外,引入了一种新型改性的广义凹口滤波器,用于谐振振动产生。通过将谐波电流注入每个AMB轴的控制回路中,通常通过将谐波电流注入到AMB系统中的谐波振动的激发。转子在AMB轴中的运动耦合,因此调节注射信号的幅度和阶段可能是乏味的。新颖的通用陷波滤波器算法自动实现转子的所需谐波振动。首先,模拟通用陷波滤波器算法并确认功能。最后,使用具有有源磁轴承的实验测试装置用于验证该算法。提出了测量的数据以证明该方法可用于通过主动磁轴承的精确转子轨道形状。

著录项

  • 期刊名称 Sensors (Basel Switzerland)
  • 作者单位
  • 年(卷),期 2021(21),15
  • 年度 2021
  • 页码 5249
  • 总页数 17
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:密封;磁轴承;一般陷波滤波器;谐波刺激;转子旋转;
  • 入库时间 2022-08-21 12:34:30

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