Obtaining the maximum power from the source using step-up and step-down type pulse regulators that work on battery

Introduction. Pulse regulators are widely used to match the output resistance of the source with the load resistance in order to ensure the possibility of taking maximum power when the value of the load resistance changes. Problem. In the case of using non-traditional and renewable sources of electr...

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Бібліографічні деталі
Дата:2024
Автори: Romashko, V. Y., Batrak, L. M., Abakumova, O. O.
Формат: Стаття
Мова:English
Ukrainian
Опубліковано: National Technical University "Kharkiv Polytechnic Institute" and State Institution “Institute of Technical Problems of Magnetism of the National Academy of Sciences of Ukraine” 2024
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Онлайн доступ:http://eie.khpi.edu.ua/article/view/302825
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Назва журналу:Electrical Engineering & Electromechanics

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Electrical Engineering & Electromechanics
id eiekhpieduua-article-302825
record_format ojs
institution Electrical Engineering & Electromechanics
collection OJS
language English
Ukrainian
topic вихідний опір джерела
узгоджувальний імпульсний регулятор
робота на акумулятор
передавання максимальної потужності
регулятори підвищувально-понижувального типу
source output impedance
matching pulse regulator
battery operation
maximum power transmission
step-up and step-down type regulators
spellingShingle вихідний опір джерела
узгоджувальний імпульсний регулятор
робота на акумулятор
передавання максимальної потужності
регулятори підвищувально-понижувального типу
source output impedance
matching pulse regulator
battery operation
maximum power transmission
step-up and step-down type regulators
Romashko, V. Y.
Batrak, L. M.
Abakumova, O. O.
Obtaining the maximum power from the source using step-up and step-down type pulse regulators that work on battery
topic_facet вихідний опір джерела
узгоджувальний імпульсний регулятор
робота на акумулятор
передавання максимальної потужності
регулятори підвищувально-понижувального типу
source output impedance
matching pulse regulator
battery operation
maximum power transmission
step-up and step-down type regulators
format Article
author Romashko, V. Y.
Batrak, L. M.
Abakumova, O. O.
author_facet Romashko, V. Y.
Batrak, L. M.
Abakumova, O. O.
author_sort Romashko, V. Y.
title Obtaining the maximum power from the source using step-up and step-down type pulse regulators that work on battery
title_short Obtaining the maximum power from the source using step-up and step-down type pulse regulators that work on battery
title_full Obtaining the maximum power from the source using step-up and step-down type pulse regulators that work on battery
title_fullStr Obtaining the maximum power from the source using step-up and step-down type pulse regulators that work on battery
title_full_unstemmed Obtaining the maximum power from the source using step-up and step-down type pulse regulators that work on battery
title_sort obtaining the maximum power from the source using step-up and step-down type pulse regulators that work on battery
title_alt Отримання максимуму потужності від джерела за допомогою імпульсних регуляторів підвищувально-понижувального типу, що працюють на акумулятор
description Introduction. Pulse regulators are widely used to match the output resistance of the source with the load resistance in order to ensure the possibility of taking maximum power when the value of the load resistance changes. Problem. In the case of using non-traditional and renewable sources of electrical energy, for a more uniform supply of energy to the load, a battery is often connected to the output of the pulse regulator, which works in buffer mode. In such cases, the load for the pulse regulator will be the battery itself, and the role of the source load will be performed by the input resistance of the regulator. To ensure the mode of operation of the pulse regulator, in which the maximum power will be transmitted from the source to the load, it is necessary to know the regulating characteristics of the regulator. There are works that analyze the regulating characteristics of step-up and step-down pulse regulators, which are used to match the load with the output resistance of the source. At the same time, for the same purpose, pulse regulators of the step-up and step-down type can be used. Goal. The purpose of the work is to analyze the features of the operation of step-up and step-down type pulse regulators in the mode of maximum power transmission from the source to the battery, as well as to determine the conditions under which it is possible and appropriate to use such regulators for the specified purpose. Methodology. The regulating characteristics of step-up and step-down type pulse regulators with sequential and parallel switching on of the controlled key were determined and analyzed, taking into account the presence of a battery at their output. Results. It is shown that the transfer of energy from the source to the battery is possible only under certain modes of operation of the regulator, which depend on the type of regulator, as well as the amount of voltage on the battery. The conditions under which it is possible to draw the maximum power from the source are determined. Originality. Since the output resistance of the source and the load resistance are of the same order in the maximum power selection mode, the internal resistance of the power source was taken into account when determining the regulating characteristics of the regulators. Practical value. The obtained results made it possible to formulate practical recommendations for a justified choice of the regulator’s operating modes, depending on its type and the value of voltage on the battery. References 15, tables 1, figures 4.
publisher National Technical University "Kharkiv Polytechnic Institute" and State Institution “Institute of Technical Problems of Magnetism of the National Academy of Sciences of Ukraine”
publishDate 2024
url http://eie.khpi.edu.ua/article/view/302825
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spelling eiekhpieduua-article-3028252024-04-28T14:16:44Z Obtaining the maximum power from the source using step-up and step-down type pulse regulators that work on battery Отримання максимуму потужності від джерела за допомогою імпульсних регуляторів підвищувально-понижувального типу, що працюють на акумулятор Romashko, V. Y. Batrak, L. M. Abakumova, O. O. вихідний опір джерела узгоджувальний імпульсний регулятор робота на акумулятор передавання максимальної потужності регулятори підвищувально-понижувального типу source output impedance matching pulse regulator battery operation maximum power transmission step-up and step-down type regulators Introduction. Pulse regulators are widely used to match the output resistance of the source with the load resistance in order to ensure the possibility of taking maximum power when the value of the load resistance changes. Problem. In the case of using non-traditional and renewable sources of electrical energy, for a more uniform supply of energy to the load, a battery is often connected to the output of the pulse regulator, which works in buffer mode. In such cases, the load for the pulse regulator will be the battery itself, and the role of the source load will be performed by the input resistance of the regulator. To ensure the mode of operation of the pulse regulator, in which the maximum power will be transmitted from the source to the load, it is necessary to know the regulating characteristics of the regulator. There are works that analyze the regulating characteristics of step-up and step-down pulse regulators, which are used to match the load with the output resistance of the source. At the same time, for the same purpose, pulse regulators of the step-up and step-down type can be used. Goal. The purpose of the work is to analyze the features of the operation of step-up and step-down type pulse regulators in the mode of maximum power transmission from the source to the battery, as well as to determine the conditions under which it is possible and appropriate to use such regulators for the specified purpose. Methodology. The regulating characteristics of step-up and step-down type pulse regulators with sequential and parallel switching on of the controlled key were determined and analyzed, taking into account the presence of a battery at their output. Results. It is shown that the transfer of energy from the source to the battery is possible only under certain modes of operation of the regulator, which depend on the type of regulator, as well as the amount of voltage on the battery. The conditions under which it is possible to draw the maximum power from the source are determined. Originality. Since the output resistance of the source and the load resistance are of the same order in the maximum power selection mode, the internal resistance of the power source was taken into account when determining the regulating characteristics of the regulators. Practical value. The obtained results made it possible to formulate practical recommendations for a justified choice of the regulator’s operating modes, depending on its type and the value of voltage on the battery. References 15, tables 1, figures 4. Проаналізовано регулювальні характеристики імпульсних регуляторів підвищувально-понижувального типу з урахуванням внутрішнього опору джерела живлення, за умови підключення акумулятора на їх виході. Показано, що за наявності акумулятора, регулятори напруги працюватимуть у режимі регулювання струму заряджання акумулятора. При цьому діапазон регулювання відносного часу замкненого стану ключа буде обмеженим. Дано рекомендації щодо вибору режимів роботи регулятора, за яких забезпечується передавання енергії від джерела до акумулятора, в залежності від схеми регулятора, а також значення напруги на акумуляторі. Визначено умови, за яких забезпечується передавання максимальної потужності від джерела живлення до акумулятора. Бібл. 15, табл. 1, рис. 4. National Technical University "Kharkiv Polytechnic Institute" and State Institution “Institute of Technical Problems of Magnetism of the National Academy of Sciences of Ukraine” 2024-04-28 Article Article application/pdf application/pdf http://eie.khpi.edu.ua/article/view/302825 10.20998/2074-272X.2024.3.06 Electrical Engineering & Electromechanics; No. 3 (2024); 44-47 Электротехника и Электромеханика; № 3 (2024); 44-47 Електротехніка і Електромеханіка; № 3 (2024); 44-47 2309-3404 2074-272X en uk http://eie.khpi.edu.ua/article/view/302825/294820 http://eie.khpi.edu.ua/article/view/302825/294821 Copyright (c) 2024 V. Y. Romashko, L. M. Batrak, O. O. Abakumova http://creativecommons.org/licenses/by-nc/4.0