Information Conversion in Measuring Channels with Optoelectronic Sensors

The purpose of this work is the authors’ attempt to identify the main phases of information transformation in measurement channels on the example of an optical measurement channel with microprocessor control. The authors include such phases: hardware implementation and analytical representation of a...

Full description

Bibliographic Details
Main Authors: Vasyl V. Kukharchuk, Sergii V. Pavlov, Volodymyr S. Holodiuk, Valery E. Kryvonosov, Krzysztof Skorupski, Assel Mussabekova, Gaini Karnakova
Format: Article
Language:English
Published: MDPI AG 2021-12-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/22/1/271
_version_ 1797497609096527872
author Vasyl V. Kukharchuk
Sergii V. Pavlov
Volodymyr S. Holodiuk
Valery E. Kryvonosov
Krzysztof Skorupski
Assel Mussabekova
Gaini Karnakova
author_facet Vasyl V. Kukharchuk
Sergii V. Pavlov
Volodymyr S. Holodiuk
Valery E. Kryvonosov
Krzysztof Skorupski
Assel Mussabekova
Gaini Karnakova
author_sort Vasyl V. Kukharchuk
collection DOAJ
description The purpose of this work is the authors’ attempt to identify the main phases of information transformation in measurement channels on the example of an optical measurement channel with microprocessor control. The authors include such phases: hardware implementation and analytical representation of an optical sensor’s converting functions and a current-to-voltage converter; based on the methods of experimental computer science, the converting functions and sensitivity are deduced, analytical dependences for estimation of a range of measurement are obtained. It is shown that the choice of information transmission type in the microprocessor measuring channel significantly affects the speed of the measuring channel. Based on the uncertainty in the form of entropy before and after measurements, the amount of information for measuring channels with optoelectronic sensors is estimated. The application of the results obtained in the work allows even at the design stage of physical and mathematical modeling to assess the basic static metrological characteristics of measuring channels, aimed at reducing the stage of development and debugging of hardware and software and standardization of their metrological characteristics.
first_indexed 2024-03-10T03:21:41Z
format Article
id doaj.art-fec5832d84ea41f3ae972fc17d2027b6
institution Directory Open Access Journal
issn 1424-8220
language English
last_indexed 2024-03-10T03:21:41Z
publishDate 2021-12-01
publisher MDPI AG
record_format Article
series Sensors
spelling doaj.art-fec5832d84ea41f3ae972fc17d2027b62023-11-23T12:19:40ZengMDPI AGSensors1424-82202021-12-0122127110.3390/s22010271Information Conversion in Measuring Channels with Optoelectronic SensorsVasyl V. Kukharchuk0Sergii V. Pavlov1Volodymyr S. Holodiuk2Valery E. Kryvonosov3Krzysztof Skorupski4Assel Mussabekova5Gaini Karnakova6Faculty for Power Engineering and Electromechanics, Vinnytsia National Technical University, Khmelnytske Shose 95, 21021 Vinnytsia, UkraineLaboratory of Biomedical Optics, Faculty for Infocommunications, Radioelectronics and Nanosystems, Vinnytsia National Technical University, Khmelnytske Shose 95, 21021 Vinnytsia, UkraineFaculty for Power Engineering and Electromechanics, Vinnytsia National Technical University, Khmelnytske Shose 95, 21021 Vinnytsia, UkraineDepartment of “Engineering and Technology” of the Azov Maritime Institute, NU “Odessa Maritime Academy”, st. Chernomorskaya, 19, 87517 Mariupol, UkraineFaculty of Electrical Engineering and Computer Science, Lublin University of Technology, Nadbystrzycka 38d, 20-618 Lublin, PolandAcademy of Logistics and Transport, 97 Shevchenko st., Almaty 050012, KazakhstanM.Kh.Dulaty Taraz Regional University, Tole Bi St 40, Taraz 080000, KazakhstanThe purpose of this work is the authors’ attempt to identify the main phases of information transformation in measurement channels on the example of an optical measurement channel with microprocessor control. The authors include such phases: hardware implementation and analytical representation of an optical sensor’s converting functions and a current-to-voltage converter; based on the methods of experimental computer science, the converting functions and sensitivity are deduced, analytical dependences for estimation of a range of measurement are obtained. It is shown that the choice of information transmission type in the microprocessor measuring channel significantly affects the speed of the measuring channel. Based on the uncertainty in the form of entropy before and after measurements, the amount of information for measuring channels with optoelectronic sensors is estimated. The application of the results obtained in the work allows even at the design stage of physical and mathematical modeling to assess the basic static metrological characteristics of measuring channels, aimed at reducing the stage of development and debugging of hardware and software and standardization of their metrological characteristics.https://www.mdpi.com/1424-8220/22/1/271conversion of measuring informationoptoelectronic sensormeasuring transduceranalog-to-digital converterquantizationconversion function
spellingShingle Vasyl V. Kukharchuk
Sergii V. Pavlov
Volodymyr S. Holodiuk
Valery E. Kryvonosov
Krzysztof Skorupski
Assel Mussabekova
Gaini Karnakova
Information Conversion in Measuring Channels with Optoelectronic Sensors
Sensors
conversion of measuring information
optoelectronic sensor
measuring transducer
analog-to-digital converter
quantization
conversion function
title Information Conversion in Measuring Channels with Optoelectronic Sensors
title_full Information Conversion in Measuring Channels with Optoelectronic Sensors
title_fullStr Information Conversion in Measuring Channels with Optoelectronic Sensors
title_full_unstemmed Information Conversion in Measuring Channels with Optoelectronic Sensors
title_short Information Conversion in Measuring Channels with Optoelectronic Sensors
title_sort information conversion in measuring channels with optoelectronic sensors
topic conversion of measuring information
optoelectronic sensor
measuring transducer
analog-to-digital converter
quantization
conversion function
url https://www.mdpi.com/1424-8220/22/1/271
work_keys_str_mv AT vasylvkukharchuk informationconversioninmeasuringchannelswithoptoelectronicsensors
AT sergiivpavlov informationconversioninmeasuringchannelswithoptoelectronicsensors
AT volodymyrsholodiuk informationconversioninmeasuringchannelswithoptoelectronicsensors
AT valeryekryvonosov informationconversioninmeasuringchannelswithoptoelectronicsensors
AT krzysztofskorupski informationconversioninmeasuringchannelswithoptoelectronicsensors
AT asselmussabekova informationconversioninmeasuringchannelswithoptoelectronicsensors
AT gainikarnakova informationconversioninmeasuringchannelswithoptoelectronicsensors