Nonlinear time transformation-based vibration signal reconstruction for blade tip-timing under rotation speed fluctuations

Chi Zhan, Zhongsheng Chen, Zheng Hu, Yongmin Yang, Haifeng Hu
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引用次数: 4

Abstract

Blade tip-timing (BTT) is a promising method to monitor blade vibrations of aero engines. Since blade tip-timing signals are typically under-sampled, how to reconstruct vibration characteristics from under-sampled signals is a big challenge. Existing signal reconstruction methods are mainly based on the assumption of constant rotation speeds and equally mounted sensors. However, fluctuation of blade rotation speed is inevitable in engineering applications. In this case, the BTT sampling process should be non-uniform, which causes conventional reconstruction methods to be unavailable. In order to solve this problem, this paper presents an improved under-sampled reconstruction method under rotation speed fluctuations by using three equally-mounted BTT sensors. Firstly, speed fluctuations are defined as random variations of sampling times. Here, both Gaussian and uniform distributions are considered. Then, a nonlinear time transformation equation is proposed to project BTT sampling times to another timeline so that non-uniform BTT sampling times become uniform ones. The key is to fit the discrete-time time variations to a continuous-time function and linear interpolation is used here. Based on the above uniform sampled signals, an interpolation function using the six-order B-spline function is built to reconstruct vibration signals. Finally, numerical simulations are done to verify the proposed method. The results demonstrate that this method can eliminate the effects of rotation speed fluctuations and improve the accuracy of BTT signal reconstruction under rotation speed fluctuations.
转速波动下基于非线性时间变换的叶片叶尖定时振动信号重建
叶片叶尖定时(BTT)是一种很有前途的监测航空发动机叶片振动的方法。由于叶片叶尖定时信号通常是欠采样的,因此如何从欠采样信号中重建振动特性是一个很大的挑战。现有的信号重建方法主要基于恒转速和等装传感器的假设。然而,在工程应用中,叶片转速波动是不可避免的。在这种情况下,BTT采样过程应该是不均匀的,这导致传统的重建方法无法使用。为了解决这一问题,本文提出了一种改进的转速波动下的欠采样重建方法,该方法采用三个等装BTT传感器。首先,将速度波动定义为采样时间的随机变化。这里同时考虑高斯分布和均匀分布。然后,提出了一个非线性时间变换方程,将BTT采样时间投影到另一个时间线上,使非均匀的BTT采样时间变成均匀的。关键是将离散时间变量拟合为连续时间函数,这里使用线性插值。基于上述均匀采样信号,利用六阶b样条函数构造插值函数重构振动信号。最后通过数值仿真验证了该方法的有效性。结果表明,该方法可以消除转速波动的影响,提高转速波动下BTT信号重构的精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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