http://www.cnr.it/ontology/cnr/individuo/prodotto/ID273387
Uncertainty evaluation in power measurements with commercial data acquisition boards (Contributo in atti di convegno)
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- 2011-01-01T00:00:00+01:00 (literal)
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A. Cataliotti, V. Cosentino, D. Di Cara, A. Lipari, S. Nuccio, C. Spataro: (2011)
Uncertainty evaluation in power measurements with commercial data acquisition boards
in in IMEKO TC4 International Workshop on ADC Modelling, Testing and Data Converter Analysis and Design 2011, IWADC 2011 and IEEE 2011 ADC Forum, Orvieto, Italy, Jun. 30 - Jul. 1 2011
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- A. Cataliotti, V. Cosentino, D. Di Cara, A. Lipari, S. Nuccio, C. Spataro: (literal)
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- cited By (since 1996)2; Conference of org.apache.xalan.xsltc.dom.DOMAdapter@490fa1a ; Conference Date: org.apache.xalan.xsltc.dom.DOMAdapter@4a13c34d Through org.apache.xalan.xsltc.dom.DOMAdapter@577b1a39; Conference Code:94948 (literal)
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- Department of Electrical, Electronic and Telecommunication Engineering, Università di Palermo, Viale delle Scienze, 90128 Palermo, Italy (literal)
- Titolo
- Uncertainty evaluation in power measurements with commercial data acquisition boards (literal)
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- Abstract
- The paper deals with the metrological characterization of a digital wattmeter developed by using a personal computer, a shunt, two commercial data acquisition boards and commercial software. The uncertainty of the active power measurements is assessed individually characterizing the voltage channel, the current channel and the phase displacement measurement between the two channels. In particular, the uncertainty on the voltage and current rms measurements is evaluated by using an already proposed approach based on the Monte Carlo method and on the usage of five parameters, while the uncertainty on the phase angle is experimentally estimated. In order to validate the proposed approach for the uncertainty evaluation, various experiments were carried out and a comparison with the Italian National Standard wattmeter was made. The results show that the proposed PC-based solution can be suitable for the development of standard instrumentation, since its accuracy is comparable to the accuracy of much more expensive and sophisticated instrumentation. (literal)
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