The Principle of Intelligent Switch Composition and Algorithm of the Built-In Electronic Voltage Transformer

With the rapid development of the social economy, people’s demand for energy is increasing. Global warming has made people pay more attention to the importance of energy saving and emission reduction. The power grid is the system responsible for the transmission and distribution of electric energy....

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Main Authors: Xinhui Cao, Yuting Dong, Zhongzheng Li, Juan Li, Gang Liang, Honglian Zhou
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Journal of Applied Mathematics
Online Access:http://dx.doi.org/10.1155/2021/8832812
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spelling doaj-4ad3a909a12e47d19548cf0e7c85b1892021-07-12T02:12:03ZengHindawi LimitedJournal of Applied Mathematics1687-00422021-01-01202110.1155/2021/8832812The Principle of Intelligent Switch Composition and Algorithm of the Built-In Electronic Voltage TransformerXinhui Cao0Yuting Dong1Zhongzheng Li2Juan Li3Gang Liang4Honglian Zhou5State Grid Xinjiang Electric Power Co.State Grid Xinjiang Electric Power Co.State Grid Xinjiang Electric Power Co.State Grid Xinjiang Electric Power Co.State Grid Xinjiang Electric Power Co.State Grid Xinjiang Electric Power Co.With the rapid development of the social economy, people’s demand for energy is increasing. Global warming has made people pay more attention to the importance of energy saving and emission reduction. The power grid is the system responsible for the transmission and distribution of electric energy. Therefore, in the context of energy saving and emission reduction, there are higher requirements for substations in the power grid. For this reason, an intelligent switch with built-in electronic voltage transformer is designed. The concept and key technical characteristics of the electronic voltage transformer intelligent switch are introduced; the overall design scheme of the built-in electronic voltage transformer intelligent switch is expounded; the hardware and software system of the device is designed; the management and control strategy of the design device is such as transformer tangent control, voltage and reactive control; and the operating system is ported. Finally, the simulation test of the system proves that the system has high effectiveness and stability. The research can provide reference for the realization of efficient, economic, stable, safe, and environmentally friendly distribution of power in a power grid.http://dx.doi.org/10.1155/2021/8832812
collection DOAJ
language English
format Article
sources DOAJ
author Xinhui Cao
Yuting Dong
Zhongzheng Li
Juan Li
Gang Liang
Honglian Zhou
spellingShingle Xinhui Cao
Yuting Dong
Zhongzheng Li
Juan Li
Gang Liang
Honglian Zhou
The Principle of Intelligent Switch Composition and Algorithm of the Built-In Electronic Voltage Transformer
Journal of Applied Mathematics
author_facet Xinhui Cao
Yuting Dong
Zhongzheng Li
Juan Li
Gang Liang
Honglian Zhou
author_sort Xinhui Cao
title The Principle of Intelligent Switch Composition and Algorithm of the Built-In Electronic Voltage Transformer
title_short The Principle of Intelligent Switch Composition and Algorithm of the Built-In Electronic Voltage Transformer
title_full The Principle of Intelligent Switch Composition and Algorithm of the Built-In Electronic Voltage Transformer
title_fullStr The Principle of Intelligent Switch Composition and Algorithm of the Built-In Electronic Voltage Transformer
title_full_unstemmed The Principle of Intelligent Switch Composition and Algorithm of the Built-In Electronic Voltage Transformer
title_sort principle of intelligent switch composition and algorithm of the built-in electronic voltage transformer
publisher Hindawi Limited
series Journal of Applied Mathematics
issn 1687-0042
publishDate 2021-01-01
description With the rapid development of the social economy, people’s demand for energy is increasing. Global warming has made people pay more attention to the importance of energy saving and emission reduction. The power grid is the system responsible for the transmission and distribution of electric energy. Therefore, in the context of energy saving and emission reduction, there are higher requirements for substations in the power grid. For this reason, an intelligent switch with built-in electronic voltage transformer is designed. The concept and key technical characteristics of the electronic voltage transformer intelligent switch are introduced; the overall design scheme of the built-in electronic voltage transformer intelligent switch is expounded; the hardware and software system of the device is designed; the management and control strategy of the design device is such as transformer tangent control, voltage and reactive control; and the operating system is ported. Finally, the simulation test of the system proves that the system has high effectiveness and stability. The research can provide reference for the realization of efficient, economic, stable, safe, and environmentally friendly distribution of power in a power grid.
url http://dx.doi.org/10.1155/2021/8832812
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