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Analysis of Vibration and Acoustic Signals for Noncontact Measurement of Engine Rotation Speed

Xuansheng Shan, Lu Tang, He Wen, Radek Martínek, Janusz Smulko

2020Sensors19 citationsDOIOpen Access PDF

Abstract

The non-contact measurement of engine speed can be realized by analyzing engine vibration frequency. However, the vibration signal is distorted by harmonics and noise in the measurement. This paper presents a novel method for the measurement of engine rotation speed by using the cross-correlation of vibration and acoustic signals. This method can enhance the same frequency components in engine vibration and acoustic signal. After cross-correlation processing, the energy centrobaric correction method is applied to estimate the accurate frequency of the engine's vibration. This method can be implemented with a low-cost embedded system estimating the cross-correlation. Test results showed that this method outperformed the traditional vibration-based measurement method.

Topics & Concepts

VibrationAcousticsHarmonicsSIGNAL (programming language)Rotation (mathematics)Rotational speedNoise (video)Cross-correlationSignal processingEngineeringComputer scienceElectronic engineeringPhysicsElectrical engineeringMechanical engineeringMathematicsVoltageDigital signal processingArtificial intelligenceProgramming languageImage (mathematics)Mathematical analysisStructural Health Monitoring TechniquesVehicle Noise and Vibration ControlAdvanced Measurement and Detection Methods
Analysis of Vibration and Acoustic Signals for Noncontact Measurement of Engine Rotation Speed | Litcius