access icon free Frequency-response-controlled multiple-resonator-based harmonic analysis

This Letter proposes a modified method for the dynamic harmonic analysis of signals with non-stationary harmonics, which is based on the previously proposed multiple-resonator observer structure. An optimisation technique is applied to reshape frequency responses of the basic transfer functions. This method, by using a parallel structure with common feedback, is very robust and, in addition, allows a reduction of the computational burden. The proposed method has been investigated for up to 64 harmonics, using LabView software package, under different conditions, and confirmed to be valuable and efficient tool for signal components estimation.

Inspec keywords: harmonic analysis; signal processing; feedback; observers; virtual instrumentation; transfer functions

Other keywords: basic transfer functions; LabView software; computational burden reduction; frequency-response-controlled multiple resonator-based harmonic analysis; parallel structure; signal component estimation; frequency response reshape; multiple-resonator observer structure; optimisation technique; signal dynamic harmonic analysis; nonstationary harmonics; common feedback

Subjects: Mathematical analysis; Mathematical analysis; Signal processing theory; Signal processing and detection

References

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      • 7. Gill, P.E., Murray, W., Wright, M.H.: ‘Practical optimization’ (Academic Press, London, UK, 1981).
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      • 6. Kušljević, M.D.: ‘Multiple-resonator-based harmonic analysis’. Proc. Second Int. Conf. Electrical, Electronic and Computing Engineering IcETRAN 2015, Silver Lake, Serbia, 8–11 June 2015, pp. MLI1.1.112.
http://iet.metastore.ingenta.com/content/journals/10.1049/el.2017.4180
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