基于图像处理的航空发动机自适应频谱报警技术研究
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航空工业西飞 西飞设计院

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V219

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Aero-engine Adaptive Spectrum Fault Alarming Technology Based On Image Processing
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    摘要:

    在飞行试验中,作为飞行器直接的动力来源,航空发动机的状态监测和故障报警技术是保障飞行试验安全的重要手段,而传统的报警技术存在误报警,准确率不高等问题。本文针对传统频域报警方法不能包容工况变化,局部特征与全局特征无法兼顾的问题,研究了基于图像处理的航空发动机自适应频谱报警方法,包括包络生成方法和频段自动划分方法,并将两者应用于均化频谱的报警中。利用某型航空发动机故障数据对方法的有效性进行了验证,结果表明,该方法能够在发动机不同工况下有效划分频谱高能量和低能量区,兼顾了对振动信号局部特征与全局特征,提高了故障报警的自动化水平和准确率。

    Abstract:

    In the flight test, as a direct power source of the aircraft, the condition monitoring and fault alarming technology of the aero-engine is an important method to ensure the safety of the flight test. However, the traditional alarm technology has the problem of false alarm and low accuracy. the traditional frequency domain alarm method can`t accommodate the change of working conditions, and the problem that the local characteristics and global characteristics can`t be taken into account. In this paper, The improved envelope alarm method and frequency band alarm method are studied and the two are applied to the homogenized spectrum. The effectiveness of the method is validated by using aero-engine fault data. The results show that this method can effectively divide the high-energy and low-energy regions of the spectrum under different operating conditions of the engine, taking into account the local and global characteristics of the vibration signal, and improved Failure alarm automation level and accuracy.

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肖娜,关喜峰,孔祥伟.基于图像处理的航空发动机自适应频谱报警技术研究计算机测量与控制[J].,2019,27(9):184-190.

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  • 收稿日期:2019-03-04
  • 最后修改日期:2019-03-20
  • 录用日期:2019-03-20
  • 在线发布日期: 2019-09-24
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