Acoustic emission-based intelligent identification of piston aero-engine ignition advance angle anomalies

Author:

Yang Yanhe,Bi Xiaoyang,Lee Alamusi,Ma Teng,Sun Yinghui,Kong Wei,Hu Wei,Hu Ning

Abstract

AbstractIgnition advance angle is one of the important factors affecting the performance of the engine, when it occurs abnormally will make the engine power and economy worse, and even cause serious damage to the engine. Therefore, it is very necessary to recognize the abnormal ignition advance angle of the engine. However, the engine system is closed and has a complex structure, which makes traditional diagnostic methods difficult. This paper proposes an intelligent identification method based on acoustic emission (AE) signals, which collects the AE signals from the engine surface and divides their spectra into equal parts, and selects the frequency bands with high contribution to the classification based on the minimum distance method to construct feature maps, which is used as the input to the convolutional neural network (CNN). The extracted frequency band features of this method can better characterize the AE signals, and the constructed feature maps make the fault information more obvious. Experiments show that the accuracy of this method for abnormal ignition advance angle under normal operating conditions of piston aero-engine is 100%, which is better than the traditional methods. In addition, the recognition accuracies under the other two operating conditions are 99.75% and 98.5%, respectively, indicating that the method has a certain universality.

Funder

science and technology research project of higher education in Hebei province of China

Xinjiang Production and Construction Corps Regional Innovation guidance Program

State Key Laboratory of Reliability and Intelligence Electrical Equipment, Hebei University of Technology

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

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