Fast Orthogonal Signal Generator for Sine Amplitude and Phase Estimation Using Two Sampled Points

This article introduces a method for quickly estimating sinusoidal signal amplitude using only two sampled points and generating an orthogonal component. It permits estimation at various sampling frequencies, with the estimation speed correlating directly with the sampling frequency. However, adding...

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Veröffentlicht in:IEEE transactions on instrumentation and measurement 2025-01, Vol.74, p.1-10
Hauptverfasser: Avina-Corral, Victor, Martinez-Fuentes, Oscar, de Jesus Rangel-Magdaleno, Jose
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Martinez-Fuentes, Oscar
de Jesus Rangel-Magdaleno, Jose
description This article introduces a method for quickly estimating sinusoidal signal amplitude using only two sampled points and generating an orthogonal component. It permits estimation at various sampling frequencies, with the estimation speed correlating directly with the sampling frequency. However, adding filters to the input signals decreases the estimation speed. It is useful for promptly detecting sudden amplitude changes, especially in limiting overcurrents in solid-state devices. Experimental outcomes validate its effectiveness and efficiency in real-world scenarios, indicating its potential to enhance reliability and safety in power electronics systems.
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subjects Estimation
Fast amplitude estimation
Fourier filter (FF)
Frequency estimation
O-splines (OSs)
orthogonal signal generator (OSG)
Phase estimation
Phase locked loops
phase synchronization
phase-locked loop (PLL)
Power electronics
Power system reliability
Power system stability
Signal generators
signal processing
Synchronization
Time-frequency analysis
two sampled points
title Fast Orthogonal Signal Generator for Sine Amplitude and Phase Estimation Using Two Sampled Points
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