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Harmonics and Interharmonics Detection Based on Synchrosqueezing Adaptive S-Transform

Zhaoyu Lou, Pan Li, Kang Ma, Feng-cheng Teng

2022Energies12 citationsDOIOpen Access PDF

Abstract

The integration of renewable energy generation and nonlinear power electronic equipment into the grid brings about complex harmonics and interharmonics problems. The amplitude and frequency of harmonics and interharmonics should be detected by high time-frequency (T-F) resolution methods owing to their time-varying transient features. In this paper, a synchrosqueezing adaptive S-transform (SAST) method is proposed to detect the parameters of harmonics. Firstly, the time-frequency spectrum (TFS) of the harmonic signals is acquired by an adaptive S-transform (AST) algorithm. The TFS results are then subjected to synchronous compression, so as to achieve higher time-frequency representation precision. The detection results of the simulation signals show that SAST can achieve a better time-frequency resolution than the S-transform (ST) and synchrosqueezing short-time Fourier transform (SSTFT). In addition, the application of SAST to the analysis of experimental signals also suggests its superiority in the parameter detection of harmonics, especially for the time-varying interharmonics.

Topics & Concepts

HarmonicsTime–frequency analysisFourier transformS transformHarmonicInstantaneous phaseShort-time Fourier transformComputer scienceFast Fourier transformTransient (computer programming)Electronic engineeringMathematicsAlgorithmFourier analysisArtificial intelligenceEngineeringAcousticsTelecommunicationsWavelet transformPhysicsVoltageElectrical engineeringRadarWaveletOperating systemWavelet packet decompositionMathematical analysisPower Quality and HarmonicsMachine Fault Diagnosis TechniquesPower Transformer Diagnostics and Insulation