2022
DOI: 10.1109/access.2022.3186373
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Harmonic Current Estimation of Unmonitored Harmonic Sources With a Novel Oversampling Technique for Limited Datasets

Abstract: In modern power systems, harmonics are amongst the significant issues attributed to renewable energy sources and nonlinear loads. Direct harmonic monitoring of the entire power system may be too costly or impractical, and measured data could be limited. In this paper, a new methodology is proposed to estimate harmonic current rms values of unmonitored harmonic sources, based on harmonic voltage rms magnitudes only, measured at a limited number of monitored buses. A new technique of output curve-normalization i… Show more

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Cited by 2 publications
(1 citation statement)
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“…While the power system parameters (impedance/admittance model) and many harmonic monitors are prerequisites for traditional HSE procedures, by utilizing AI, these needs are minimized. In [87], the harmonic current RMS values of unmonitored harmonic sources are estimated using a novel methodology, based on harmonic voltage RMS magnitudes obtained from fewer observed buses. The design of the Artificial Neural Networks (ANNs) is then refined, and harmonic current estimators based on ANNs are then created for each harmonic order and harmonic source.…”
Section: B Artificial Intelligence-based Harmonic Estimation Techniquesmentioning
confidence: 99%
“…While the power system parameters (impedance/admittance model) and many harmonic monitors are prerequisites for traditional HSE procedures, by utilizing AI, these needs are minimized. In [87], the harmonic current RMS values of unmonitored harmonic sources are estimated using a novel methodology, based on harmonic voltage RMS magnitudes obtained from fewer observed buses. The design of the Artificial Neural Networks (ANNs) is then refined, and harmonic current estimators based on ANNs are then created for each harmonic order and harmonic source.…”
Section: B Artificial Intelligence-based Harmonic Estimation Techniquesmentioning
confidence: 99%