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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >A Performance Study of Controlled Impact Timing on Harmonics Reduction in Operational Modal Testing
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A Performance Study of Controlled Impact Timing on Harmonics Reduction in Operational Modal Testing

机译:控制冲击时机对运营模态测试谐波减少的绩效研究

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摘要

As an alternative to operational modal analysis and classical experimental modal analysis (EMA), a novel method was introduced previously, namely impact-synchronous modal analysis (ISMA). The effectiveness ISMA on rotor and structural dynamic systems has been proven in previous literature. More recently, an automated impact device (AID) was introduced which utilized tachometer pulse as initiation signal and its effectiveness on ISMA was proven. An attempt to further enhance this device in term of equipment and cost is then proposed by replacing the tachometer with the in-use tri-axial accelerometer through utilizing the filtered response of cyclic load component as an initiation signal to control the impact device, which is also the primary aim for this study. Prior to modal testing, accuracy of this device is illustrated at desired phase angles of 0?deg, 90?deg, 180?deg, and 270?deg. Subsequently, frequency response function (FRF) estimations obtained for ISMA using enhanced AID has demonstrated the suppression capabilities of this device on disturbances, i.e., reduction of 93.58% at 30?Hz and 57.78% at 60?Hz, resulting in a high correlation for signature assurance criterion (SAC) and cross signature assurance criterion (CSAC). Modal parameters extracted from the EMA and ISMA using impact device are presented and compared, for the first three natural modes of the test rig. It is found that natural frequencies are deviating by less than 6%, whereas modal assurance criterion (MAC) values between the mode shapes of the two tests are found to be above 0.9.
机译:作为操作模态分析和经典实验模态分析(EMA)的替代方案,先前引入了一种新的方法,即冲击同步模态分析(ISMA)。在先前的文献中已证明转子和结构动态系统上的有效性ISMA。最近,引入了一种自动冲击装置(AID),其利用转速表脉冲作为启动信号,并证明了ISMA的有效性被证明。然后通过利用循环负载分量的滤波器响应作为启动信号来提出在使用的三轴加速度计的情况下进一步增强设备和成本的术语和成本的尝试。这项研究的主要目标也是如此。在模态测试之前,该装置的精度以0≤Deg,90Ω°的所需相角示出为0≤deg,180°°和270°。随后,使用增强辅助件对ISMA获得的频率响应函数(FRF)估计已经证明了该装置在扰动上的抑制能力,即,在60℃下减少93.58%,57.78%,导致高相关性签名保证标准(SAC)和交叉签名保证标准(CSAC)。呈现使用冲击装置从EMA和ISMA中提取的模态参数,用于试验台的前三种自然模式。结果发现,自然频率偏离小于6%,而两个测试的模式形状之间的模态保证标准(MAC)值被发现高于0.9。

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