Application of Two-Channel Principle in Measuring Devices to Compensate for Disturbing Influences of Unknown Physical Nature

The article notes the advantages of the method of constructing absolutely invariant measuring transducers for working in conditions with disturbing influences. However, this method is not universal. Its limitations are due to the impossibility of "symmetric" transmission of all disturbing...

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Main Authors: V. N. Nesterov, A. R. Li
Format: Article
Language:English
Published: Belarusian National Technical University 2020-09-01
Series:Pribory i Metody Izmerenij
Subjects:
Online Access:https://pimi.bntu.by/jour/article/view/667
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spelling doaj-34f721963f6b445380ec69386caf84c82021-07-29T08:39:11ZengBelarusian National Technical UniversityPribory i Metody Izmerenij2220-95062414-04732020-09-0111322823510.21122/2220-9506-2020-11-3-228-235522Application of Two-Channel Principle in Measuring Devices to Compensate for Disturbing Influences of Unknown Physical NatureV. N. Nesterov0A. R. Li1JCS Samara Electromechanical Plant; Samara National Research University; Povolzhskiy State University of Telecommunications and InformaticsJCS Samara Electromechanical PlantThe article notes the advantages of the method of constructing absolutely invariant measuring transducers for working in conditions with disturbing influences. However, this method is not universal. Its limitations are due to the impossibility of "symmetric" transmission of all disturbing influences into parallel measuring channels. A broader interpretation of the two-channel principle is proposed to overcome these limitations. The aim of the study was to substantiate and implement a method for constructing quasi-invariant measuring transducers and systems that retain their metrological characteristics under external disturbances of unknown physical nature.The theory that develops the two-channel principle to a full-fledged technological method is presented in the article. The theory includes the necessary and sufficient conditions for physical feasibility this method. Two fundamental tasks have been solved in the work. The first task is to identify signs that reflect the essence of the technological method in to specific cases and the second is to implement a methodology that allows these signs to be effectively applied in practice.In the examples, a complex of technologies is defined for groups of elements of quasi-invariant transducers that provide compensation of the influencing factors acting on them with acceptable accuracy.There are significant advantages in discussed method. It gives hope for acceptable measurement results under conditions when character and even physical principle of influencing a priori are unknown.https://pimi.bntu.by/jour/article/view/667technological methodquasi-invariancedisturbing influencesmeasuring transducer
collection DOAJ
language English
format Article
sources DOAJ
author V. N. Nesterov
A. R. Li
spellingShingle V. N. Nesterov
A. R. Li
Application of Two-Channel Principle in Measuring Devices to Compensate for Disturbing Influences of Unknown Physical Nature
Pribory i Metody Izmerenij
technological method
quasi-invariance
disturbing influences
measuring transducer
author_facet V. N. Nesterov
A. R. Li
author_sort V. N. Nesterov
title Application of Two-Channel Principle in Measuring Devices to Compensate for Disturbing Influences of Unknown Physical Nature
title_short Application of Two-Channel Principle in Measuring Devices to Compensate for Disturbing Influences of Unknown Physical Nature
title_full Application of Two-Channel Principle in Measuring Devices to Compensate for Disturbing Influences of Unknown Physical Nature
title_fullStr Application of Two-Channel Principle in Measuring Devices to Compensate for Disturbing Influences of Unknown Physical Nature
title_full_unstemmed Application of Two-Channel Principle in Measuring Devices to Compensate for Disturbing Influences of Unknown Physical Nature
title_sort application of two-channel principle in measuring devices to compensate for disturbing influences of unknown physical nature
publisher Belarusian National Technical University
series Pribory i Metody Izmerenij
issn 2220-9506
2414-0473
publishDate 2020-09-01
description The article notes the advantages of the method of constructing absolutely invariant measuring transducers for working in conditions with disturbing influences. However, this method is not universal. Its limitations are due to the impossibility of "symmetric" transmission of all disturbing influences into parallel measuring channels. A broader interpretation of the two-channel principle is proposed to overcome these limitations. The aim of the study was to substantiate and implement a method for constructing quasi-invariant measuring transducers and systems that retain their metrological characteristics under external disturbances of unknown physical nature.The theory that develops the two-channel principle to a full-fledged technological method is presented in the article. The theory includes the necessary and sufficient conditions for physical feasibility this method. Two fundamental tasks have been solved in the work. The first task is to identify signs that reflect the essence of the technological method in to specific cases and the second is to implement a methodology that allows these signs to be effectively applied in practice.In the examples, a complex of technologies is defined for groups of elements of quasi-invariant transducers that provide compensation of the influencing factors acting on them with acceptable accuracy.There are significant advantages in discussed method. It gives hope for acceptable measurement results under conditions when character and even physical principle of influencing a priori are unknown.
topic technological method
quasi-invariance
disturbing influences
measuring transducer
url https://pimi.bntu.by/jour/article/view/667
work_keys_str_mv AT vnnesterov applicationoftwochannelprincipleinmeasuringdevicestocompensatefordisturbinginfluencesofunknownphysicalnature
AT arli applicationoftwochannelprincipleinmeasuringdevicestocompensatefordisturbinginfluencesofunknownphysicalnature
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