Прилад для вимірювання сигналів конвеєрних ваг при завантаженні судна сипучими матеріалами
In the maritime industry, it is common to load a vessel with bulk materials using conveyor scales. To determine the amount of cargo loaded into the hold of the vessel, it is necessary to simultaneously measure both the current weight on the weighing platform and the speed of the conveyor belt. In ad...
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PE "Politekhperiodika", Book and Journal Publishers
2023
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oai:tkea.com.ua:article-392025-08-11T09:08:46Z Device for measuring signals of conveyor weights when loading a vessel with bulk cargo Прилад для вимірювання сигналів конвеєрних ваг при завантаженні судна сипучими матеріалами Zavadsky, Viktor Kharchenko, Roman Dranchuk, Sergii Tsatsko, Volodymyr Haur, Tatyana conveyor scales frequency measurement operation algorithm sensor weighing конвеєрні ваги точність вимірювання алгоритм роботи зважування сипучий матеріал In the maritime industry, it is common to load a vessel with bulk materials using conveyor scales. To determine the amount of cargo loaded into the hold of the vessel, it is necessary to simultaneously measure both the current weight on the weighing platform and the speed of the conveyor belt. In addition, the loading process is affected by both the heterogeneity of the bulk material and the uneven movement of the conveyor belt. Therefore, it is necessary to simultaneously and synchronously measure these parameters. The purpose of this work was to develop a device and an algorithm for its operation, which will improve the accuracy of determining the mass of cargo when loading a vessel.Such a converter is located near the measuring sensor, and the frequency signal, the frequency of which is directly proportional to the output signal of the sensor along the line, is transmitted over a considerable distance without loss of information to the measuring device. The developed device for measuring the mass of bulk material using conveyor scales and the algorithm of its operation make it possible to simultaneously and continuously measure the current mass of the cargo and the speed of the conveyor belt, and, accordingly, the current mass of the cargo. The measurement accuracy was 0.25...0.5%. This device also allows you to get the characteristics of the weighing process to improve the mechanical conveyor designs of the scales.Testing of the developed device was carried out on conveyor scales when loading the ship with mineral fertilizers. Testing showed that the developed device for obtaining tensometric information and the algorithm of its operation make it possible to control the process of loading a ship with bulk materials using conveyor scales with the planned accuracy, which, in turn, allows it to be used in computer systems for monitoring ship loading.The developed device and the algorithm of its operation can improve the quality of measuring the mass of cargo and increase the accuracy of measurement, which is important from an economic point of view. Розроблено пристрій та алгоритм його роботи, які направлені на поліпшення якості та підвищення точності вимірювання за допомогою конвеєрних ваг маси завантажуваного на судно сипучого матеріалу. Пристрій дозволяє не тільки одночасно вимірювати поточну вагу сировини, що знаходиться на ваговій платформі, та швидкість пересування стрічки конвеєра, а й враховувати неоднорідність сипучого матеріалу та нерівномірність руху стрічки. PE "Politekhperiodika", Book and Journal Publishers 2023-05-30 Article Article Peer-reviewed Article application/pdf https://www.tkea.com.ua/index.php/journal/article/view/TKEA2023.1-2.50 10.15222/TKEA2023.1-2.50 Technology and design in electronic equipment; No. 1–2 (2023): Technology and design in electronic equipment; 50-59 Технологія та конструювання в електронній апаратурі; № 1–2 (2023): Технологія та конструювання в електронній апаратурі; 50-59 3083-6549 3083-6530 10.15222/TKEA2023.1-2 uk https://www.tkea.com.ua/index.php/journal/article/view/TKEA2023.1-2.50/33 Copyright (c) 2023 Viktor Zavadsky, Roman Kharchenko, Sergii Dranchuk, Volodymyr Tsatsko, Tatyana Haur http://creativecommons.org/licenses/by/4.0/ |
| institution |
Technology and design in electronic equipment |
| baseUrl_str |
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| datestamp_date |
2025-08-11T09:08:46Z |
| collection |
OJS |
| language |
Ukrainian |
| topic |
конвеєрні ваги точність вимірювання алгоритм роботи зважування сипучий матеріал |
| spellingShingle |
конвеєрні ваги точність вимірювання алгоритм роботи зважування сипучий матеріал Zavadsky, Viktor Kharchenko, Roman Dranchuk, Sergii Tsatsko, Volodymyr Haur, Tatyana Прилад для вимірювання сигналів конвеєрних ваг при завантаженні судна сипучими матеріалами |
| topic_facet |
conveyor scales frequency measurement operation algorithm sensor weighing конвеєрні ваги точність вимірювання алгоритм роботи зважування сипучий матеріал |
| format |
Article |
| author |
Zavadsky, Viktor Kharchenko, Roman Dranchuk, Sergii Tsatsko, Volodymyr Haur, Tatyana |
| author_facet |
Zavadsky, Viktor Kharchenko, Roman Dranchuk, Sergii Tsatsko, Volodymyr Haur, Tatyana |
| author_sort |
Zavadsky, Viktor |
| title |
Прилад для вимірювання сигналів конвеєрних ваг при завантаженні судна сипучими матеріалами |
| title_short |
Прилад для вимірювання сигналів конвеєрних ваг при завантаженні судна сипучими матеріалами |
| title_full |
Прилад для вимірювання сигналів конвеєрних ваг при завантаженні судна сипучими матеріалами |
| title_fullStr |
Прилад для вимірювання сигналів конвеєрних ваг при завантаженні судна сипучими матеріалами |
| title_full_unstemmed |
Прилад для вимірювання сигналів конвеєрних ваг при завантаженні судна сипучими матеріалами |
| title_sort |
прилад для вимірювання сигналів конвеєрних ваг при завантаженні судна сипучими матеріалами |
| title_alt |
Device for measuring signals of conveyor weights when loading a vessel with bulk cargo |
| description |
In the maritime industry, it is common to load a vessel with bulk materials using conveyor scales. To determine the amount of cargo loaded into the hold of the vessel, it is necessary to simultaneously measure both the current weight on the weighing platform and the speed of the conveyor belt. In addition, the loading process is affected by both the heterogeneity of the bulk material and the uneven movement of the conveyor belt. Therefore, it is necessary to simultaneously and synchronously measure these parameters. The purpose of this work was to develop a device and an algorithm for its operation, which will improve the accuracy of determining the mass of cargo when loading a vessel.Such a converter is located near the measuring sensor, and the frequency signal, the frequency of which is directly proportional to the output signal of the sensor along the line, is transmitted over a considerable distance without loss of information to the measuring device. The developed device for measuring the mass of bulk material using conveyor scales and the algorithm of its operation make it possible to simultaneously and continuously measure the current mass of the cargo and the speed of the conveyor belt, and, accordingly, the current mass of the cargo. The measurement accuracy was 0.25...0.5%. This device also allows you to get the characteristics of the weighing process to improve the mechanical conveyor designs of the scales.Testing of the developed device was carried out on conveyor scales when loading the ship with mineral fertilizers. Testing showed that the developed device for obtaining tensometric information and the algorithm of its operation make it possible to control the process of loading a ship with bulk materials using conveyor scales with the planned accuracy, which, in turn, allows it to be used in computer systems for monitoring ship loading.The developed device and the algorithm of its operation can improve the quality of measuring the mass of cargo and increase the accuracy of measurement, which is important from an economic point of view. |
| publisher |
PE "Politekhperiodika", Book and Journal Publishers |
| publishDate |
2023 |
| url |
https://www.tkea.com.ua/index.php/journal/article/view/TKEA2023.1-2.50 |
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2025-09-24T17:30:17Z |
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2025-09-24T17:30:17Z |
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