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Journal articles on the topic 'Automated control measuring instruments'

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1

Kuzminskaya, Elena V., Maxim V. Skorospeshkin, and Valery V. Osipov. "VERIFICATION OF DIGITAL MEASURING INSTRUMENTS USING MACHINE VISION." Electrical and data processing facilities and systems 20, no. 3 (2024): 125–34. http://dx.doi.org/10.17122/1999-5458-2024-20-3-125-134.

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Relevance Every year, more than 87 million units of measuring instruments undergo periodic verification. The process of verification of measuring instruments is strictly regulated and takes a huge amount of time, while this work is routine and monotonous. Thanks to digital technologies, it is possible to simplify the ofwork on metrological maintenance of measuring instruments by automating such procedures as the supply of reference signals, control and recording of readings of the verified measuring instrument, processing the obtained measurement results, establishing the suitability of measur
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2

Velychko, Oleh, and Sergii Kursin. "MODELING OF PROPERTY EVALUATION OF SYSTEM-ORIENTED MEASURING INSTRUMENTS." Measuring Equipment and Metrology 86, no. 2 (2025): 87–91. https://doi.org/10.23939/istcmtm2025.02.087.

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The main purpose of system-oriented measuring instruments (MI) is to ensure automated collection, processing, analysis and transmission of measurement data as part of complex information and measurement systems. Such MI are used in automated production systems, intelligent measuring systems, in the control of technological processes and in conducting scientific research, etc. The main properties of system-oriented MI are provided by a combination of modern hardware, powerful digital processing algorithms and integration into automated systems. They implement microprocessor systems with the imp
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Belentsov, Yuriy, Valeriy Efimov, and Vyacheslav Solov'ev. "Calibration of the Automated Ultrasonic Inspection System for SHUTTLE R Hollow Axle’s Wheelsets." Bulletin of scientific research results 2025, no. 2 (2025): 158–71. https://doi.org/10.20295/2223-9987-2025-2-158-171.

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Purpose: To develop a calibration method, analyze the use of domestic calibration tools and compare them with foreign measuring tools. To undertake a feasibility assessment, with the aim of constructing a methodology for calibration. Methods: A comparison was made of the metrological characteristics of measuring instruments used in calibration, with analytical and graphical methods being utilized in the process. The risk assessment was conducted employing the Ishikawa diagram. Results: The potential for calibrating the complex of automated ultrasonic control of hollow axles of SHUTTLE R wheels
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Shcherbakov, Vladimir, Ivan Shcherbakov, and Vladimir Astrahancev. "DEVICE OF THE ROAD MASTER TO CONTROL GEOMETRY RAIL TRACK." Interexpo GEO-Siberia 1, no. 1 (2019): 71–76. http://dx.doi.org/10.33764/2618-981x-2019-1-1-71-76.

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This article presents the development of an automated tool and method for ensuring the con-trol of the geometry of a rail track, which includes the functions of the traditional track template of the MCC type, as well as new functions not previously used in the instruments of the road master. The functionality of the instrument for instrumental inspection of railways is given, which is one of the tasks of equalizing the capabilities of mobile high-performance diagnostic tools for rail gauge and the superstructure of the track with measuring instruments of a road craftsman who is responsi-ble fo
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Busko, Mikhail, and Artem Rubtsov. "Methods for Evaluating the Metrological Characteristics of Automated Control Systems Software." System Analysis & Mathematical Modeling 6, no. 4 (2024): 447–56. https://doi.org/10.17150/2713-1734.2024.6(4).447-456.

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For enterprises in the petrochemical industry, obtaining accurate real-time data on production processes is particularly relevant. Over a set reporting period, the enterprise accounts for all its material flows, their volumes, and movement routes within the framework of the production material balance. A significant portion of technological flows is monitored using readings from measuring and control instruments. Automated process control systems (APCS) are used to process the information received from the instruments. Often, measurement accuracy can exceed regulated values due to additional e
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Küveler, Gerd, Van Dung Dao, Axel Zuber, and Renzo Ramelli. "Robotic and Non-Robotic Control of Astrophysical Instruments." Advances in Astronomy 2010 (2010): 1–6. http://dx.doi.org/10.1155/2010/620424.

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We present a system of device control programs, developed for the solar observatory at Locarno/Switzerland (IRSOL). Because these programs are implemented as servers—clearly separated from the higher levels—scientific instruments, for example, telescopes, can be operated both in a user-controlled mode (GUI,telnet) and in a fully automated mode by use of a script. Astronomical instruments such as telescopes or spectrographs will be responded to by ASCII command strings, which are the same for all clients. In case a device control software does not support multiclient operation or in case it is
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7

Kirillov, Alexey G., Valeriy N. Sakevich, and Roman Trochimczuk. "Automated laser engraving system for the calibration and manufacturing of nonlinear scales for electrical measuring instruments." Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering 233, no. 4 (2018): 849–56. http://dx.doi.org/10.1177/0954408918812248.

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Currently, most of the techniques of dial manufacturing for electrical measuring instruments are low-productive and expensive owing to the single-piece dials’ manufacturing. Application of laser engraving system as a way to produce individual dials for the electrical measuring instruments is described in this paper. The automated system is expected to increase productivity, reduce cost, and improve the quality of the final product. A novel structure of hardware–software system was created for single-piece dials’ manufacturing and special novel software system was developed to control the syste
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Morozov, E. V. "Methodology and algorithms for buildinga telematic automated vehicle movement control system." Вестник гражданских инженеров 17, no. 6 (2020): 206–13. http://dx.doi.org/10.23968/1999-5571-2020-17-6-206-213.

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The article proposes promising trends of research in the field of building automated systems for controlling the movement of transport vehicles (TS) in order to ensure a continuous monitoring and operational control. A method for substantiating technical requirements and assessing the characteristics of measuring instruments for automated control of vehicle movement, an algorithm for determining the optimal values of characteristics of measuring tools and an algorithm for choosing the optimal version of telematic automatic control devices (TASK) for vehicle movement have been developed. The co
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9

Stübi, René, Herbert Schill, Jörg Klausen, Eliane Maillard Barras, and Alexander Haefele. "A fully automated Dobson sun spectrophotometer for total column ozone and Umkehr measurements." Atmospheric Measurement Techniques 14, no. 8 (2021): 5757–69. http://dx.doi.org/10.5194/amt-14-5757-2021.

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Abstract. The longest ozone column measurement series are based on the Dobson sun spectrophotometers developed in the 1920s by Prof. G. B. W. Dobson​​​​​​​. These ingenious and robustly designed instruments still constitute an important part of the global network presently. However, the Dobson sun spectrophotometer requires manual operation, which has led to the discontinuation of its use at many stations, thus disrupting long-term records of observation. To overcome this problem, MeteoSwiss developed a fully automated version of the Dobson spectrophotometer. The description of the data acquis
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10

Woźniak, Marek, and Waldemar Odziemczyk. "Investigation of Stability of Precise Geodetic Instruments Used in Deformation Monitoring." Reports on Geodesy and Geoinformatics 104, no. 1 (2017): 79–90. http://dx.doi.org/10.1515/rgg-2017-0017.

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Abstract Monitoring systems using automated electronic total stations are an important element of safety control of many engineering objects. In order to ensure the appropriate credibility of acquired data, it is necessary that instruments (total stations in most of the cases) used for measurements meet requirements of measurement accuracy, as well as the stability of instrument axis system geometry. With regards to the above, it is expedient to conduct quality control of data acquired using electronic total stations in the context of performed measurement procedures. This paper presents resul
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Mammadov, Javanshir Firudin, Banovsha Valiyeva, Afat Sudef gizi Huseynova, and Yegana Mirdamat gizi Hasanova. "Development of diagnostic subsystem for manufacturing active elements in instrument-making industry." Vestnik of Astrakhan State Technical University. Series: Management, computer science and informatics 2022, no. 1 (2022): 16–21. http://dx.doi.org/10.24143/2073-5529-2022-1-16-21.

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Ensuring the quality of products on the production line requires application of the automated diagnostic systems in the robotic complexes to control their performance. The aim and research problems are defined by analyzing the existing automated diagnostic systems of technical units at manufacture active elements in the instrumental-making industry. On an example of industrial robots working in the manufacture enterprises at instrument-making industry there were determined the sensor tools for information-measuring their moving parts and a working status of the mechatronic units, as well as a
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Rebrov, Ilya, Sergey Naumenko, Alexandr Godnev, and Evgeny Kossov. "Digital control of delivery and release of oil products at fuel depots and gas stations." MATEC Web of Conferences 239 (2018): 01046. http://dx.doi.org/10.1051/matecconf/201823901046.

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The paper shows the topicality of the transition from the metering system for oil products at fuel depots and gas stations, organized with the help of automated measuring instruments, to the use of automated information and measurement systems for oil products metering (IMS OP) of a new generation. The structure diagram of the IMS OP is presented, the implementation of which allows solving the problem of formation of the normalized value of the unbalance between the actual results of measuring the mass of OP in the technological chain “Supplier - Distribution system – Consumer” and the current
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13

Samborski, Tomasz, Andrzej Zbrowski, and Stanisław Kozioł. "Device for automatic accuracy control of dial indicator readings." Technologia i Automatyzacja Montażu 127, no. 1 (2025): 13–21. https://doi.org/10.7862/tiam.2025.1.2.

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The authors present a research method and a prototype of a system for automatic accuracy control of manual measuring instrument readings. Most commonly used measuring instruments, such as dial indicators and bore gauges, require periodic accuracy control. The developed system is intended for control automation, minimising potential human errors connected with manual control and visual assessment of readings. The precise mechatronic actuators, measurement systems, and control software used in the system enable automatic execution of standard control procedures in accordance with the formal reco
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14

Kulakova, E. S., and A. M. Safarov. "Automated control and control system of emissions into the atmospheric air of thermoelectric-power industries." Journal of Physics: Conference Series 2373, no. 8 (2022): 082001. http://dx.doi.org/10.1088/1742-6596/2373/8/082001.

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Abstract The article describes new approaches to the systems of automated monitoring and control of emissions into the atmospheric air of thermoelectric-power industries. The purpose of creating such systems is to reduce the level of impact on the air of residential areas and control its quality. The basis of this air quality management system is the continuous measurement and registration of pollutant concentrations both at emission sources and in the air of residential areas. Due to the analysis of meteorological conditions in combination with the use of the method of marker compounds, stati
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15

Zet, Cristian, Gabriel Dumitriu, Cristian Fosalau, and Gabriel Constantin Sarbu. "Automated calibration and DCC generation system with storage in private permissioned Blockchain network." Acta IMEKO 12, no. 1 (2023): 1–7. http://dx.doi.org/10.21014/actaimeko.v12i1.1414.

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Digital technologies proven their usefulness in instrumentation and measurements since many years, becoming a “must have”. The use of microprocessors and microcontrollers in measuring instruments became a common practice, bringing the advantage of signal and information processing at the instrument level, digital interfaces, remote control, software update and calibration. Thus, the instrument can be calibrated and verified being connected in an automated calibration system which can carry all the process without the operator interference and to generate in the end the calibration certificate.
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16

Gurau, Vladimir, Andy Gerhardstein, Kalvin Carruthers, and Hank Frazer. "Laser Scanner-Based Robotic Coordinate Measuring Machine." International Journal of Mechanical Engineering and Robotics Research 13, no. 1 (2024): 161–68. http://dx.doi.org/10.18178/ijmerr.13.1.161-168.

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The objectives of the research presented in this paper are to design, integrate and demonstrate a robotic Coordinate Measuring Machine (CMM) for digitizing 3D geometries of objects to be used in reverse-engineering applications. The paper describes the mathematical model, the integration of the light detection and ranging (LiDAR) sensor with the automated positioning system and the programming used to attain the technology. The digital reconstruction of an object’s 3D model is achieved by applying forward robot kinematics along with homogeneous transforms to the point cloud detected by the LiD
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17

Aliyev, Yelchin, Vitalii Yaropud, Ihor Babyn, and Oleh Buynytsʹkyy. "RESULTS OF MILKING INSTALLATION TESTER TEST V. 2.0." ENGINEERING, ENERGY, TRANSPORT AIC, no. 1(112) (March 23, 2021): 4–14. http://dx.doi.org/10.37128/2520-6168-2021-1-1.

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The process of diagnosis of milking parlors should be carried out using measuring instruments. Measuring instruments must have a maximum error which together with the statistical error of measurements guarantees that according to the requirements of ISO 5707: 2007 the data can be recorded with sufficient accuracy. Instruments must be calibrated regularly to ensure the required measurement accuracy (ISO 6690: 2007). Developed Milking machine tester v. 2.0, which consists of an automated control system with the ability to connect additional external sensors (air flow, temperature and Hall sensor
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18

Ihnatkin, V. U., Yu S. Khomosh, V. S. Dudnikov, O. P. Yushkevych, and V. A. Tikhonov. "Evaluation of efficiency of the automated control system of metrological maintenance of measuring instruments - as informatic information." System technologies 5, no. 142 (2022): 42–59. http://dx.doi.org/10.34185/1562-9945-5-142-2022-05.

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As an assessment of the effectiveness of the dialog system of collective use, on the example of the system of automated control of metrological maintenance of measuring equipment (SACMMME), the ratio of the average reactivity of the system to the average cost per request is used. The ratio of the average reactivity of the target system to the average cost per request (C) is studied. Under the reactivity is the value inverse of the time of the request in the system. The flow of queries in the system obeys the Poisson distribution law. The method of simulation modeling is chosen for research. Ob
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19

Salana, Sudheer, Yixiang Wang, Joseph V. Puthussery, and Vishal Verma. "A semi-automated instrument for cellular oxidative potential evaluation (SCOPE) of water-soluble extracts of ambient particulate matter." Atmospheric Measurement Techniques 14, no. 12 (2021): 7579–93. http://dx.doi.org/10.5194/amt-14-7579-2021.

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Abstract. Several automated instruments exist to measure the acellular oxidative potential (OP) of ambient particulate matter (PM). However, cellular OP of the ambient PM is still measured manually, which severely limits the comparison between two types of assays. Cellular assays could provide a more comprehensive assessment of the PM-induced oxidative stress, as they incorporate more biological processes involved in the PM-catalyzed reactive oxygen species (ROS) generation. Considering this need, we developed a semi-automated instrument, the first of its kind, for measuring the cellular OP ba
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20

Mahon, John D., and Maureen F. Dennis. "An automated computer-controlled gas-exchange system for continual monitoring of physiological activities in plants." Canadian Journal of Botany 63, no. 12 (1985): 2213–20. http://dx.doi.org/10.1139/b85-314.

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A computer-controlled automated gas-exchange system was developed to perform repetitive measurements of physiological activities in intact plants. Shoot and root temperatures, flow rates, gas pressures, rates of leaf CO2 and H2O exchange, and rates of CO2 exchange, H2 evolution, and C2H2 reduction by the roots can be determined for four plants in a single experiment. The controlling computer operates 32 switches that control gas flows, sampling devices, lighting, and irrigation and it records and processes analog data from 15 measuring instruments. Rates of physiological activities are calcula
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21

Haasnoot, Willem, Gerardo R. Marchesini, and Kees Koopal. "Spreeta-Based Biosensor Immunoassays to Detect Fraudulent Adulteration in Milk and Milk Powder." Journal of AOAC INTERNATIONAL 89, no. 3 (2006): 849–55. http://dx.doi.org/10.1093/jaoac/89.3.849.

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Abstract Biacore biosensors (Biacore AB, Uppsala, Sweden) have proven to be robust analytical tools for the automated immunochemical detection of different adulterants and contaminants in milk and milk powder. However, the significant cost of the instruments is a disincentive for their wide application in food control laboratories. Therefore, a low-cost alternative optical biosensor (Spreeta, Texas Instruments, Attleboro, MA) was built into an affordable liquid handling system. Using this prototype biosensor, an inhibition immunoassay for bovine κ-casein was evaluated for the detection of cow'
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22

Tairov, Baxtiyor Boboqulovich, Ma'murjon Yangiboyevich Xo'jjiyev, Ulug'bek Muxammadovich Bozorov, and Abduraxmon Raxmatovich Muxtorov. "FOREIGN EXPERIENCE AND OPTIMAL METHODS IN CALIBRATION OF MEASURING INSTRUMENTS." Multidisciplinary Journal of Science and Technology 5, no. 1 (2025): 616–21. https://doi.org/10.5281/zenodo.14795137.

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The calibration of measuring instruments is a crucial process required to obtain accurate and reliable results in any scientific, industrial, and technical field. This article explores the optimal methods for calibrating measuring instruments. It examines the primary methods used in calibration, including direct and indirect calibration, automatic systems, and statistical analysis approaches. Furthermore, the article discusses the potential use of modern algorithms and control systems to optimize the calibration process. The paper highlights the role and significance of contemporary methods in
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23

Kanaya, T., K. Hirabayashi, I. Fujita, and K. Tsumura. "Detection of unusual data in online monitoring of wastewater processing." Water Science and Technology 33, no. 1 (1996): 71–79. http://dx.doi.org/10.2166/wst.1996.0007.

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A basic of process control is to understand process conditions with measuring instruments and to operate processes so as to realize target conditions. If input measured values were inaccurate, output of manipulated variables would become improper and, as a result, it would be difficult to bring the process to the desired condition. In the wastewater treatment process, thanks to the latest progress in sensor technology, numerous automatic measuring instruments have been introduced. However, because of adverse environmental conditions peculiar to the wastewater treatment process such as slime-co
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24

Sarnecki, Rafał, Wojciech Wiśniewski, Wiktor Ślusarski, and Piotr Wiłkojć. "Traceable calibration of automatic weighing instruments operating in dynamic mode." MATEC Web of Conferences 182 (2018): 02005. http://dx.doi.org/10.1051/matecconf/201818202005.

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This article describes calibration method of automatic weighing instruments for measuring vehicles in motion. These measuring instruments in future will be widely used to determine the axle loads, if applicable the axle-group and vehicle mass of road vehicles when the vehicles are weighed in motion. For several years, some activities have been carried out on the weight control system that determines the mass of vehicles moving at higher speeds, called HS-WIM. The implementation of such systems will affect both the improvement of road safety and indirectly limit the number of road users moving
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25

Zhirkova, V. S., N. L. Kleymenova, O. P. Dvoryaninova, L. I. Nazina, and S. V. Ershov. "Creation of an automated system for measuring technological parameters in the rubber production line." Proceedings of the Voronezh State University of Engineering Technologies 81, no. 3 (2019): 225–30. http://dx.doi.org/10.20914/2310-1202-2019-3-225-230.

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The introduction of an automated control system on the production line of the rubber compound will reduce the influence of the human factor on the quality of rubber products, which will lead to a significant improvement in the operational and physico-mechanical characteristics of the final product. Also, the development of this system will create a centralized data collection system for creating reports on technological operations of the production process. To obtain high-quality products, it is necessary to control and maintain all technological parameters during equipment operation at the sa
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Delina, M., D. S. S. P. Anugrah, A. M. Hussaan, A. F. Harlastputra, P. F. Akbar, and P. Renaldi. "Optimizing viscosity measurement: an automated solution with YOLOv3." Journal of Physics: Conference Series 2596, no. 1 (2023): 012022. http://dx.doi.org/10.1088/1742-6596/2596/1/012022.

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Abstract Measuring viscosity can be done using either Tracker software or a digital viscometer. However, the Tracker software proved to be ineffective due to the need to manually set the object’s center point for obtaining its final velocity. On the other hand, the digital viscometer was costly. Hence, a novel approach is needed to measure viscosity with high precision, efficiency, and affordability. To tackle these concerns, the study combined measuring instruments and computer programming with YOLOv3. The YOLOv3 model was applied to measure the B30 Biodiesel viscosity in a falling ball visco
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27

Petrushenko, Sergii, and Artur Zaporozhets. "ANALYSIS OF REQUIREMENTS FOR GAS FLOW CONTROL SYSTEMS IN GAS DISTRIBUTION PIPELINES." System Research in Energy 2024, no. 4 (2024): 88–97. https://doi.org/10.15407/srenergy2024.04.088.

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The article deals with the main requirements for the gas flow control system in regional gas pipelines specified by regulatory documents. Particular attention is paid to the requirements of the technical regulations on measuring instruments and state standards of Ukraine for measuring equipment at natural gas metering units, such as gas meters, calculators and volume correctors. The requirements for the climatic operating conditions and power supply of these devices are determined. It is shown that safety during the operation of equipment containing electronic and electrical components in expl
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28

Gavrilova, Anna, and Lyajsan Sagitova. "METHODOLOGY FOR MULTICRITERIA COMPARATIVE ASSESSMENT OF THE EFFECTIVENESS OF REPLACING MEASURING INSTRUMENTS AND AUTOMATION." Energy Systems 8, no. 3 (2023): 65–69. http://dx.doi.org/10.34031/es.2023.3.008.

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Ensuring technological sovereignty requires large-scale and massive replacement of foreign technical means in the control and automation systems of many industrial enterprises. This problem is especially relevant for critical infrastructure facilities, in particular energy supply systems and enterprises. The article presents a methodology that allows for a comparative multi-criteria assessment and selection of control and measuring instruments (measuring-and-recording apparatus) for the comprehensive re-equipment of control and management systems of energy enterprises, heat, electricity and wa
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Khrystyuk, Andriy, and Olena Kuvshynova. "Development of Automatic System for Apiary." Modeling, Control and Information Technologies, no. 3 (November 6, 2019): 112–13. http://dx.doi.org/10.31713/mcit.2019.64.

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The basic stages of development of the remote automatic control system of apiary are given. Stages of development are suggested. Measurement methods are presented and analyzed. The choice of measuring instruments is made.
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Borodulin, Boris B. "Algorithm for automatic compensation of thermal deformations of thermally loaded load-bearing structures." Vestnik of Samara State Technical University. Technical Sciences Series 29, no. 4 (2021): 6–19. http://dx.doi.org/10.14498/tech.2021.4.1.

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The paper considers a possible algorithm for the automatic control system of the thermal modes of load-bearing structures of the information-measuring system of autonomous objects. Thermo-deformation component of information-measuring error, which is the cause of distortion of operating and service information of an autonomous object, is reduced due to compensation of thermogradient by automatic control system of operation modes of distributed controlled heat sources. The system provides a significant reduction in the level of thermal deformation error of measurements, the cause of which is th
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Gornostaev, A. I. "Optimization of the structure of the unified multichannel interface temperature control module for measuring instruments of spacecraft." Spacecrafts & Technologies 3, no. 3 (2019): 171–83. http://dx.doi.org/10.26732/2618-7957-2019-3-171-183.

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In the development of a unified multi-channel interface temperature control module for measuring instruments, built on a main-modular principle on the basis of the central instrument module and used on spacecraft for various purposes, the primary task is to determine its structure, which allows to provide temperature control on the elements of the spacecraft design in different measurement ranges and with different requirements for accuracy and stability of measurement. The article is devoted to the analysis of general requirements to the structure of the multi-channel interface temperature co
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Skorek, Grzegorz. "Measuring Instruments Used at the Research and Accuracy of Defining the Efficiency of Drive Systems." Journal of KONES 26, no. 2 (2019): 129–35. http://dx.doi.org/10.2478/kones-2019-0041.

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Abstract The aim of the article is to look at the possibility of accurately determining the energy efficiency of drive systems thanks to the use of high quality sensors and measuring instruments. The types of measuring instruments used on the test stand are presented. The results of experimentally determined efficiencies and simulationally determined efficiencies of two hydrostatic systems with throttling control were compared, which are fed with a constant capacity pump. The choice of the analysed systems is not accidental. There is still a view in the literature about limited possibilities o
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Julin, Arttu, Matti Kurkela, Toni Rantanen, et al. "Evaluating the Quality of TLS Point Cloud Colorization." Remote Sensing 12, no. 17 (2020): 2748. http://dx.doi.org/10.3390/rs12172748.

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Terrestrial laser scanning (TLS) enables the efficient production of high-density colored 3D point clouds of real-world environments. An increasing number of applications from visual and automated interpretation to photorealistic 3D visualizations and experiences rely on accurate and reliable color information. However, insufficient attention has been put into evaluating the colorization quality of the 3D point clouds produced applying TLS. We have developed a method for the evaluation of the point cloud colorization quality of TLS systems with integrated imaging sensors. Our method assesses t
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34

Gimaev, R. R., Y. I. Spichkin, M. L. Plyashkevich, and A. M. Tishin. "Rotating-Sample Magnetometer for Measuring Crystal Field Parameters." Solid State Phenomena 190 (June 2012): 175–78. http://dx.doi.org/10.4028/www.scientific.net/ssp.190.175.

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A method of measuring crystal field parameters by means of a rotating-sample magnetometer is presented. The measurement is performed by registering 2nd, 4th and 6th harmonics of the signal that is proportional to magnetization change due to rotation of the sample in a magnetic field. Experimentally measured temperature dependence of the amplitudes of these harmonics is used to determine the crystal field parameters within the framework of the theoretical model proposed in [. The signal is detected by a digital lock-in amplifier, while temperature is controlled by a PID controller. The sample a
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Varganova, A. V., E. A. Panova, O. E. Kushmil, T. V. Hatyushina, and N. A. Anisimova. "Algorithm for automated selection and installation of control and measuring instruments in chains of high voltage distribution devices in ORU CAD." ELECTRICAL AND DATA PROCESSING FACILITIES AND SYSTEMS 15, no. 3 (2019): 111–17. http://dx.doi.org/10.17122/1999-5458-2019-15-3-111-117.

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36

Bazylev, Alexander V., Vladislav Y. Bychkov, Sergei V. Perevezentsev, and Valeri I. Plyushchaev. "HARDWARE AND SOFTWARE COMPLEX FOR AUTOMATIC MOORING." Russian Journal of Water Transport, no. 64 (August 29, 2020): 195–206. http://dx.doi.org/10.37890/jwt.vi64.111.

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Nowadays the implementation of the concept of crew-free navigation is considered to be the urgent problem. It comprises many aspects related to the design of vessels, the creation of hardware and software base of navigation process control systems, algorithmic support for these systems, the development of new methods and means of measuring technological parameters, navigation and communication tools and so on. One of the most difficult procedures of the navigation process is mooring of the vessel. The article deals with the methods and means of measuring the parameters of the technological pro
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Sandomirski, S. G. "Sorting nipple castings from malleable cast iron from the result of measuring their residual magnetization." Litiyo i Metallurgiya (FOUNDRY PRODUCTION AND METALLURGY), no. 4 (January 14, 2019): 55–64. http://dx.doi.org/10.21122/1683-6065-2018-4-55-64.

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The physical principles of magnetic control of the structure of malleable cast iron compact castings are summarized. It reports on the technical features and mode of operation of the automated instrument used for control. The features of formation of remanent magnetization of unhealed castings of nipples from malleable cast iron with bleached surface layer, features of the influence of changes in the layer thickness on the result of magnetization of the castings are established. A criterion for sorting castings with thickness of the bleached layer was developed based on the result of measuring
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Raut, Bibek, Li-Jiun Chen, Takeshi Hori, and Hirokazu Kaji. "An Open-Source Add-On EVOM® Device for Real-Time Transepithelial/Endothelial Electrical Resistance Measurements in Multiple Transwell Samples." Micromachines 12, no. 3 (2021): 282. http://dx.doi.org/10.3390/mi12030282.

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This study provides design of a low-cost and open source add-on device that enhances the functionality of the popular EVOM® instrument for transepithelial/endothelial electrical resistance (TEER) measurement. The original EVOM® instrument is designed for measuring TEER in transwell samples manually using a pair of Ag/AgCl electrodes. The inconsistency in electrode placement, temperature variation, and a typically large (12–24 h) time interval between measurements result in large data variabilities. Thus, to solve the current limitation of the EVOM® instrument, we built an add-on device using a
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Tyurin, Andrei, German Ganus, Mikhail Stepanov, and Gafurzhan Ismailov. "Measurement Instruments and Software Used in Biotribology Research Laboratory." Electrical, Control and Communication Engineering 8, no. 1 (2015): 30–36. http://dx.doi.org/10.1515/ecce-2015-0004.

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Abstract Precision measurements of friction processes have a key role in a variety of industrial processes. The emergence of fine electronic circuit techniques greatly expands capabilities of control. There are some difficulties for their full implementation today, especially when it regards the accuracy and frequency of measurements. The motion-measuring method in real-time system is considered in this article, paying special attention to increased accuracy. This method is based on rapid analog digital converter (ADC), transmission program and digital signal processor (DSP) algorithms. Descri
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Alexander, Dihtievskiy, and Kvasnikov Volodymyr. "Analysis of the methods of measurement of the cylindrical gear involute." Technology audit and production reserves 2, no. 2(46) (2019): 19–24. https://doi.org/10.15587/2312-8372.2019.168713.

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<em>The object of research in this work is the process of measuring the involute of a cylindrical gear by using coordinate measuring machines based on new physical principles, equipment and methods. To date, the metrological assurance of measuring the parameters of gears has been based on tools for the tooth and other equipment. All of them have a limited range of measurement parameters, different accuracy and nomenclature of measured values. Many of them are morally obsolete, not automated, do not have access to computer tools and do not provide the modern level of accuracy, information conte
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Mikhaylov, V. A., and E. V. Klimova. "Automation of the test bench for experimental research of the local air cooler of the vehicle driver." Traktory i sel hozmashiny 84, no. 6 (2017): 28–36. http://dx.doi.org/10.17816/0321-4443-66325.

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The question of automation of the test bench for research and selection on the basis of experimental data of rational supply of L air by a local water evaporator cooler of a vehicle driver (tractor, car, road-building machine) is considered. In the design of an automated test bench made in the form of an open wind tunnel, along with an auxiliary electric fan, an electric heater of the treated air, a local air cooler and a human heat simulator Qh, there are elements for measuring and controlling the quantities L, Qh, the temperature t of the treated air and th - the body surface simulator. The
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Nikulin, Dmitry M., and Valery A. Raychert. "DETERMINATION OF IMAGE INTENSIFIER VIEW FIELD PURITY LEVEL." Vestnik SSUGT (Siberian State University of Geosystems and Technologies) 26, no. 1 (2021): 143–49. http://dx.doi.org/10.33764/2411-1759-2021-26-1-143-149.

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The article offers a method for determining image intensifier working view field purity. In order to solve this problem, it is suggested to automate control under view field purity by using application program package. The automatic control is supposed to get an image of working view field and carry out its further processing by computer means. It allows to determine a permissible zonal amount of points and spots, as well as sizes and locations of light and dark defects. The article presents an algo-rithm for image intensifier view field purity level control developed by the authors simplifies
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Tri Isra Janwardi. "Design of Digital Height Measurement Based Microcontroller AT89C51." Journal of Science Technology (JoSTec) 1, no. 1 (2019): 29–35. http://dx.doi.org/10.55299/jostec.v1i1.49.

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Height measuring instrument is a tool that can be used by humans to assist in the process of determining height. Most height gauges in use today are analog or manual height gauges. In today's technological developments, the author will make an automatic height measuring device using ultrasonic sensors to calculate data from received objects. The sensor is used to measure the working distance at a frequency of 40 KHz so as not to interfere with human hearing. As the control center of this measuring instrument, it uses the Arduino Uno Microcontroller. This measuring instrument is capable of meas
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Zdorenko, V., N. Zabiiaka, K. Sebko, and O. Gorbunova. "DETERMINATION OF THE COMPRESSION STRENGTH RP OF MULTILAYER PLATES MADE OF SLAGOSITALS." Integrated Technologies and Energy Saving, no. 3 (November 9, 2021): 26–35. http://dx.doi.org/10.20998/2078-5364.2021.3.03.

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The methodology of creating multifunctional acoustic automated devices has been further developed, it is based on the construction of simple algorithms for transforming and processing signals of measuring instruments. A differential acoustic method for controlling the physical and mechanical parameters of multilayer plates made of slag glass-ceramics has been investigated. A structural diagram of an automated device for measuring acoustic control of the ultimate compressive strength Rр of a controlled slag glass-ceramics plate is proposed. The option of automation of the measurement process co
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Kudusov, D. I., K. A. Levin, and S. L. Malyshev. "An Effective Method for Reproducing the Flow of a Gas-Liquid Mixture Using a Flow Standard." Measurement Standards. Reference Materials 20, no. 3 (2024): 13–22. http://dx.doi.org/10.20915/2077-1177-2024-20-3-13-22.

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The appearance on the market of measuring equipment of multiphase flowmeters used in the oil and gas industry to measure the amount of extracted hydrocarbons directly at wells without preliminary separation and performing the function of operational accounting raised the question of their metrological support in accordance with the requirements of regulatory documents of the sphere of state regulation in this field of measurements. His decision was to create a reference base, the basis of which was the State primary special standard for units of mass flow of gas-liquid mixtures GET 195-2011 an
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Das, Shantanu K., Aditya Thool, and Praveen Nagesh. "Automation of Water Pump using Sensors." SAMRIDDHI : A Journal of Physical Sciences, Engineering and Technology 15, no. 01 (2023): 55–59. http://dx.doi.org/10.18090/samriddhi.v15i01.07.

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Agriculture employs the majority of Indians and significantly impacts the country’s economy. Agriculture becomes difficult in dry locations or when rainfall is scarce. As a result, it must be automated for proper plant watering and managed remotely by the farmer. The objective of this paper is to do automation using a soil moisture sensor (LM393IC) and a temperature sensor (LM35) for farm irrigation and soil moisture control with the help of Arduino. In this paper, the designing and manufacturing of printed circuit board is described with details of the working principle along with the softwar
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Chutora, Sh, Sh Shkripko, M. Oleyar, and J. Chaika. "Electrical equipment, control and measuring instruments, and automatic control system of blast furnace no. 3 at the VSZh Koshitse combine." Metallurgist 50, no. 7-8 (2006): 393–97. http://dx.doi.org/10.1007/s11015-006-0095-5.

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Glovatskii, Oleg, Shavkat Usmanov, Rustam Ergashev, Bekmamat Hamdamov, and Alexander Gazaryan. "Hydrometric flow measurement in water management." E3S Web of Conferences 365 (2023): 03016. http://dx.doi.org/10.1051/e3sconf/202336503016.

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The main problem in the operation of irrigation systems is to ensure the accuracy and reliability of measuring the main hydrometric parameters in managing water resources of irrigation facilities. When operating systems with pumping stations, it becomes necessary to measure a set of technological parameters, which can be divided into the following groups by type: hydraulic parameters (flow rate, fluid pressure, water flow in the channel), parameters of pumping units, linear-angular parameters (channel section length, channel width, gate movement, mixed parameters (clear area, flow depth, wette
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49

Opryshko, B., V. Shvetsov та E. Belova. "Совершенствование метода контроля уровня подземных вод в эксплуатационных скважинах Камчатского края". Vodosnabzhenie i sanitarnaia tehnika, № 11 (15 листопада 2019): 20–25. http://dx.doi.org/10.35776/mnp.2019.11.03.

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В соответствии с Водной стратегией Российской Федерации на период до 2020 г., а также с Правилами технической эксплуатации систем и сооружений коммунального водоснабжения и канализации, работники водоканалов должны контролировать статический и динамический уровни подземных вод в работающих водозаборных скважинах. Однако на практике данный контроль фактически не выполняется. Основной причиной является отсутствие на предприятиях современных измерительных приборов, а также специалистов, которые смогли бы провести контроль работы скважины. Цель исследования обоснование необходимости использования
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Kolomiiets, Kostiantyn, and Iryna Gryshanova. "SOFTWARE DEVELOPMENT FOR AUTOMATED DESIGN OF FLOW METERS." Bulletin of Kyiv Polytechnic Institute. Series Instrument Making, no. 64(2) (December 24, 2022): 59–66. http://dx.doi.org/10.20535/1970.64(2).2022.270023.

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This work presents the development of a software complex for the automated design of variable pressure drop flowmeters. It includes flowmeters with standard primary devices, namely a diaphragm, nozzles and a venturi tube. To fulfill the task, a review of various software solutions has been conducted. As a result, it was concluded that the existing software does not fully solve the task, because it does not calculate most of the design parameters for metering device. The next stage was a review of the flow rate measuring method by variable pressure drop, and based on it, a mathematical model of
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