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Revista mexicana de ingeniería biomédica
On-line version ISSN 2395-9126Print version ISSN 0188-9532
Abstract
RODRIGUEZ-MALDONADO, Johnny; PLATAS-GARZA, Miguel Angel and ZAMBRANO-SERRANO, Ernesto. A Real-Valued Kalman Estimation Method for Harmonic Signal Analysis in Biomedical Applications. Rev. mex. ing. bioméd [online]. 2024, vol.45, n.3, pp.6-19. Epub May 02, 2025. ISSN 2395-9126. https://doi.org/10.17488/rmib.45.3.1.
This work presents a methodology for obtaining the harmonic estimation of biomedical signals such as electrocardiogram, cardiorespiratory and blood pressure signals. The proposed methodology is achieved using polynomial approximation and the Kalman filter. As advantage, the technique includes instant estimations of signal harmonics and its derivatives using a real-valued model. Furthermore, a comparison of the results is conducted with the Savitzky-Gola, nonlinear tracking differentiator methods, extended state observer and digital differentiator base on Taylor series. The results suggest that the proposed method has the potential to enhance the quality of signal measurements, especially in the presence of noise.
Keywords : biomedical signal analysis; harmonics estimates in ECG; derivative estimation in biomedical signals.












