DocumentCode
1443291
Title
Implementation and performance evaluation of a broadband digital harmonic vector voltmeter
Author
Mirri, Domenico ; Pasini, Gaetano ; Peretto, Lorenzo ; Filicori, Fabio ; Iuculano, Gaetano ; Dolfi, Andrea
Author_Institution
Dipt. di Ingegneria Elettrica, Facolta di Ingegneria, Bologna, Italy
Volume
47
Issue
1
fYear
1998
fDate
2/1/1998 12:00:00 AM
Firstpage
229
Lastpage
234
Abstract
A broadband digital harmonic vector voltmeter proposed previously and studied theoretically by the authors was implemented using a special-purpose, random sampling strategy, to avoid the bandwidth limitations due to the finite conversion time of the sample-and-hold and analog-to-digital-conversion (S/H-ADC) devices. The experimental results have shown that the bandwidth of the instrument is not limited by the finite conversion time of S/H-ADC devices, since good accuracy can be achieved even when the average sampling frequency is much lower than the signal bandwidth. The amplitude and phase uncertainty, with sinusoidal test signals up to 1 MHz and an average sampling rate of 10 kHz, was found to be lower than 3% and 0.03 rad, respectively. For more careful testing of the broadband performance of our instrument, we also carried out two-frequency, variable order harmonic measurements, which showed good accuracy (amplitude error less than 1.5% and phase error less than 0.03 rad) with harmonics up to 300 kHz. Reasonable accuracy (i.e., sufficient to correctly reconstruct the actual signal waveform) was also found with a highly distorted square-wave signal
Keywords
digital voltmeters; frequency response; harmonic analysis; signal sampling; DSP algorithm; amplitude error; amplitude uncertainty; broadband digital harmonic vector voltmeter; broadband performance evaluation; floating point DSP; highly distorted square-wave signal; implementation; nonlinear systems; phase error; phase uncertainty; random sampling strategy; sinusoidal test signals; time-domain averaging; two-frequency variable order harmonic measurements; Bandwidth; Distortion measurement; Frequency measurement; Instruments; Nonlinear systems; Particle measurements; Phase measurement; Sampling methods; Testing; Voltmeters;
fLanguage
English
Journal_Title
Instrumentation and Measurement, IEEE Transactions on
Publisher
ieee
ISSN
0018-9456
Type
jour
DOI
10.1109/19.728824
Filename
728824
Link To Document