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Polynomial Chirplet Transform With Application to Instantaneous Frequency Estimation

IEEE Transactions on Instrumentation and Measurement · 2011 · Vol. 60(9) · pp. 3222–3229
Zhike PengGuang MengFulei ChuZi–Qiang LangW. M. ZhangYixin Yang

Abstract

In this paper, a new time-frequency analysis method known as the polynomial chirplet transform (PCT) is developed by extending the conventional chirplet transform (CT). By using a polynomial function instead of the linear chirp kernel in the CT, the PCT can produce a time-frequency distribution with excellent concentration for a wide range of signals with a continuous instantaneous frequency (IF). In addition, an effective IF estimation algorithm is proposed based on the PCT, and the effectiveness of this algorithm is validated by applying it to estimate the IF of a signal with a nonlinear chirp component and seriously contaminated by a Gaussian noise and a vibration signal collected from a rotor test rig.

Machine Fault Diagnosis TechniquesImage and Signal Denoising MethodsSpeech and Audio ProcessingChirpInstantaneous phaseTime–frequency analysisPolynomialAlgorithmMathematicsSIGNAL (programming language)Range (aeronautics)Noise (video)Signal processing
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References
YIN, a fundamental frequency estimator for speech and music
The Journal of the Acoustical Society of America · 2002 · 1,883 citations
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