Optimized Reproduction, Collection, Transmission, Processing, and Display of Measurement Data Obtained Using the National Standard of Voltage Unit – Volt
Issues associated with automating the calibration of standard DC voltage measuring instruments are considered. An automatic calibration system is developed, studied, and implemented. This system comprises a hardware and software system containing measuring instruments from the National Standard of V...
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| Published in: | Measurement techniques Vol. 64; no. 7; pp. 556 - 561 |
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| Main Authors: | , , |
| Format: | Journal Article |
| Language: | English |
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New York
Springer US
01.10.2021
Springer |
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| ISSN: | 0543-1972, 1573-8906 |
| Online Access: | Get full text |
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| Abstract | Issues associated with automating the calibration of standard DC voltage measuring instruments are considered. An automatic calibration system is developed, studied, and implemented. This system comprises a hardware and software system containing measuring instruments from the National Standard of Voltage Unit – Volt and additional modules. The automatic system is created on the basis of the Python programming language using metrological principles. The studied calibration results of DC voltage standards, i.e., the obtained calibration results (assigned actual value with expanded uncertainty) are analyzed in automatic and manual modes, as well as using the 10 V Josephson voltage standard known as supraVOLTcontrol. As well as significantly reducing labor costs, the application of this automatic system to study the integral instability (nonlinearity) of a digital voltmeter allows measurement duration to be reduced, as well as providing flexibility and reconfiguration capability depending on issues that emerge during research. |
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| AbstractList | Issues associated with automating the calibration of standard DC voltage measuring instruments are considered. An automatic calibration system is developed, studied, and implemented. This system comprises a hardware and software system containing measuring instruments from the National Standard of Voltage Unit - Volt and additional modules. The automatic system is created on the basis of the Python programming language using metrological principles. The studied calibration results of DC voltage standards, i.e., the obtained calibration results (assigned actual value with expanded uncertainty) are analyzed in automatic and manual modes, as well as using the 10 V Josephson voltage standard known as supraVOLTcontrol. As well as significantly reducing labor costs, the application of this automatic system to study the integral instability (nonlinearity) of a digital voltmeter allows measurement duration to be reduced, as well as providing flexibility and reconfiguration capability depending on issues that emerge during research. |
| Audience | Academic |
| Author | Yarmalovich, M. A. Popko, V. V. Sentemova, D. V. |
| Author_xml | – sequence: 1 givenname: V. V. surname: Popko fullname: Popko, V. V. email: vadim.popko@belgim.bys organization: Belarussian State Institute of Metrology (BelGIM) – sequence: 2 givenname: D. V. surname: Sentemova fullname: Sentemova, D. V. email: sentemova@belgim.by organization: Belarussian State Institute of Metrology (BelGIM) – sequence: 3 givenname: M. A. surname: Yarmalovich fullname: Yarmalovich, M. A. organization: Belarussian State Institute of Metrology (BelGIM) |
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| Cites_doi | 10.32446/0368-1025it.2017-6-45-48 10.1007/s11018-013-0246-6 10.1088/0026-1394/42/1A/01005 10.1007/s11018-011-9647-6 10.5772/17031 |
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| Keywords | automatic calibration system Python scripts (programs) optimization integral nonlinearity Raspberry Pi single-board computer |
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| References | N. V. Smirnov and I. V. Dunin-Barkovskii, Course in Probability Theory and Mathematical Statistics for Technical Applications, Nauka, Moscow (1969). Yu. L. Mukha and I. Yu. Koroleva, Information and Measurement Systems, Volgogradskii GTU, Volgograd (2015). A. S. Katkov, V. E. Lovtsyus, A. I. Bykov, et al., “Reproduction of the Volt based on SIS- and SNS-type Josephson junctions,” Izmer. Tekhn., No. 6, 45–48 (2017), https://doi.org/10.32446/0368-1025it.2017-6-45-48. A. S. Katkov and S. Solve, “Key comparisons between the volt standards of VNIIM and BIPM,” Izmer. Tekhn., No. 11, 70–73 (2012). A. S. Katkov and P. A. Chernyaev, “Comparison of national volt standards of the Russian Federation and the Republic of Belarus,” Izmer. Tekhn., No. 5, 69–71 (2013). W. Stallings, Data and Computer Communications [Russian translation], Vil’yams, Moscow (2002). E. G. Mironov and N. P. Bessonov, Metrology and Technical Measurements, KNORUS, Moscow (2015). BehrRSchulzeHMüllerFIEEE T. Instrum. Meas.199948227027310.5772/17031 R. Behr and A. S. Katkov, Metrologia, 42, Techn. Suppl., 01005. (2005), https://doi.org/10.1088/0026-1394/42/1A/01005. Al. A. Pavlov, A. A. Pavlov, P. A. Pavlov, et al., “Method to control errors in the information storage and transmission devices of automated measurement systems,” Izmer. Tekhn., No. 11, 21–25 (2011). 1978_CR1 1978_CR2 R Behr (1978_CR9) 1999; 48 1978_CR3 1978_CR4 1978_CR5 1978_CR10 1978_CR6 1978_CR7 1978_CR8 |
| References_xml | – reference: A. S. Katkov and P. A. Chernyaev, “Comparison of national volt standards of the Russian Federation and the Republic of Belarus,” Izmer. Tekhn., No. 5, 69–71 (2013). – reference: W. Stallings, Data and Computer Communications [Russian translation], Vil’yams, Moscow (2002). – reference: Yu. L. Mukha and I. Yu. Koroleva, Information and Measurement Systems, Volgogradskii GTU, Volgograd (2015). – reference: Al. A. Pavlov, A. A. Pavlov, P. A. Pavlov, et al., “Method to control errors in the information storage and transmission devices of automated measurement systems,” Izmer. Tekhn., No. 11, 21–25 (2011). – reference: A. S. Katkov and S. Solve, “Key comparisons between the volt standards of VNIIM and BIPM,” Izmer. Tekhn., No. 11, 70–73 (2012). – reference: N. V. Smirnov and I. V. Dunin-Barkovskii, Course in Probability Theory and Mathematical Statistics for Technical Applications, Nauka, Moscow (1969). – reference: A. S. Katkov, V. E. Lovtsyus, A. I. Bykov, et al., “Reproduction of the Volt based on SIS- and SNS-type Josephson junctions,” Izmer. Tekhn., No. 6, 45–48 (2017), https://doi.org/10.32446/0368-1025it.2017-6-45-48. – reference: R. Behr and A. S. Katkov, Metrologia, 42, Techn. Suppl., 01005. (2005), https://doi.org/10.1088/0026-1394/42/1A/01005. – reference: E. G. Mironov and N. P. Bessonov, Metrology and Technical Measurements, KNORUS, Moscow (2015). – reference: BehrRSchulzeHMüllerFIEEE T. Instrum. Meas.199948227027310.5772/17031 – ident: 1978_CR2 – ident: 1978_CR3 doi: 10.32446/0368-1025it.2017-6-45-48 – ident: 1978_CR1 doi: 10.1007/s11018-013-0246-6 – ident: 1978_CR7 – ident: 1978_CR8 doi: 10.1088/0026-1394/42/1A/01005 – ident: 1978_CR10 doi: 10.1007/s11018-011-9647-6 – ident: 1978_CR5 – ident: 1978_CR6 – ident: 1978_CR4 – volume: 48 start-page: 270 issue: 2 year: 1999 ident: 1978_CR9 publication-title: IEEE T. Instrum. Meas. doi: 10.5772/17031 |
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| SubjectTerms | Analytical Chemistry Characterization and Evaluation of Materials Measurement Science and Instrumentation Physical Chemistry Physical instruments Physics Physics and Astronomy |
| Title | Optimized Reproduction, Collection, Transmission, Processing, and Display of Measurement Data Obtained Using the National Standard of Voltage Unit – Volt |
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