基于遗传算法的旋转叶片振动参数辨识

IF 1.9 4区 工程技术 Q3 ENGINEERING, MECHANICAL
Shen Xiangxiang, Chen Guo, Liu Fuhai
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引用次数: 0

摘要

本文针对叶片等速同步、等速异步、变速同步等振动参数的辨识,利用Simulink仿真平台对叶片振动系统进行建模,构建了叶片叶尖定时振动测量系统模型。提出了一种基于遗传算法的叶片振动参数辨识方法,并进行了数值模拟和实验验证。结果表明,采用遗传算法进行叶片振动参数辨识具有较高的精度和较强的抗噪声干扰能力。研究了关键参数对叶片振动参数识别的影响。对于叶片的等速同步和等速异步振动,传感器之间的夹角尽量不是2π的整数倍,并保证较大的DR (Distribution Range)值。叶片振动倍频越高,需要的传感器越多。对于叶片的变速同步振动,倍频大于传感器布局对参数辨识结果的影响,但传感器数量过少,会严重影响倍频的辨识精度。针对叶片振动试验,设计了叶片振动测试仪。采用应变片法和叶尖定时法对叶片进行了变速同步振动试验。应变片法的测量结果与基于遗传算法和尖端定时的测量结果基本一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rotating blade vibration parameter identification based on genetic algorithm
In this paper, aiming at the identification of blade vibration parameters such as constant speed synchronization, constant speed asynchronous, and variable speed synchronization, the simulation platform Simulink is used to model the blade vibration system, and the blade tip timing vibration measurement system model is constructed. A method of blade vibration parameter identification based on genetic algorithm is proposed, and numerical simulation and experimental verification are carried out. The results show that the parameter identification of blade vibration by genetic algorithm has high accuracy and strong anti-noise interference ability. The influence of key parameters on the identification of blade vibration parameters is studied. For the constant speed synchronous and constant speed asynchronous vibration of the blade, the angle between the sensors should not be an integral multiple of 2π as far as possible, and the larger DR (Distribution Range) value should be guaranteed. The higher the frequency doubling of blade vibration, the more sensors are needed. For the variable speed synchronous vibration of the blade, the frequency doubling is greater than the influence of the sensor layout on the parameter identification results, but the number of sensors is too small, which will seriously affect the identification accuracy of the frequency doubling. Aiming at the blade vibration test, a blade vibration tester is designed. The blade variable speed synchronous vibration test is carried out by using the strain gauge method and the tip timing method. The measurement results of the strain gauge method are basically consistent with the measurement results based on the genetic algorithm and the tip timing.
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来源期刊
Advances in Mechanical Engineering
Advances in Mechanical Engineering 工程技术-机械工程
CiteScore
3.60
自引率
4.80%
发文量
353
审稿时长
6-12 weeks
期刊介绍: Advances in Mechanical Engineering (AIME) is a JCR Ranked, peer-reviewed, open access journal which publishes a wide range of original research and review articles. The journal Editorial Board welcomes manuscripts in both fundamental and applied research areas, and encourages submissions which contribute novel and innovative insights to the field of mechanical engineering
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