2015Unpublished venueRequires access

Improved Hanning window based interpolated FFT for power harmonic analysis

Sruthi Reddy Chintakindi, O V S R Varaprasad, D.V.S.S. Siva Sarma

Open publisher page 19 citations

Abstract

Power system harmonics are inevitable in the presence of non-linear loads. The presence of harmonics has a greater impact on the terminal apparatus. Accurate analysis of Power system harmonics plays an important role to have a better mitigation. Windowed Interpolated FFT (WIFFT) based algorithms are gaining importance due to their accurate analysis. The major advantage of WIFFT based algorithms includes reduction in error due to spectral leakage and picket-fence effect. This paper represents the application of improved Hanning window based Interpolated FFT (IFFT) algorithm for harmonic analysis. The proposed algorithm is used to analyze a static simulated signal in MATLAB. The simulation results shows the effectiveness of Hanning window based IFFT compared to Hamming window based IFFT. The algorithm is also used to analyze a dynamic signal simulated in LabVIEW and its potential towards online tracking of a signal.

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What this paper is about

Power system harmonics are inevitable in the presence of non-linear loads. The presence of harmonics has a greater impact on the terminal apparatus. Accurate analysis of Power system harmonics plays an important role to have a better mitigation. Windowed Interpolated FFT (WIFFT) based algorithms are gaining importance due to their accurate analysis. The major advantage of WIFFT based algorithms includes reduction in error due to spectral leakage and picket-fence effect. This paper represents the application of improved Hanning window based Interpolated FFT (IFFT) algorithm for harmonic analysis. The proposed algorithm is used to analyze a static simulated signal in MATLAB. The simulation results shows the effectiveness of Hanning window based IFFT compared to Hamming window based IFFT. The algorithm is also used to analyze a dynamic signal simulated in LabVIEW and its potential towards online tracking of a signal.

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OpenAlex reports 19 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Power system harmonics are inevitable in the presence of non-linear loads. The presence of harmonics has a greater impact on the terminal apparatus. Accurate analysis of Power system harmonics plays an important role to have a better mitigation. Windowed Interpolated FFT (WIFFT) based algorithms are gaining importance due to their accurate analysis. The major advantage of WIFFT based algorithms includes reduction in error due to spectral leakage and picket-fence effect. This paper represents the application of improved Hanning window based Interpolated FFT (IFFT) algorithm for harmonic analysis. The proposed algorithm is used to analyze a static simulated signal in MATLAB. The simulation results shows the effectiveness of Hanning window based IFFT compared to Hamming window based IFFT. The algorithm is also used to analyze a dynamic signal simulated in LabVIEW and its potential towards online tracking of a signal.

Key concepts: Window function, Fast Fourier transform, Harmonics, Spectral leakage, MATLAB, Computer science, Harmonic analysis, Window (computing)

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