Design of Three-Section Current Protection Experimental Device for Single

Based on the design idea of microcomputer protection, a set of three-section current protection, experimental device was designed by using MCU. Using MCU as the core control of experimental device, the circuits were designed, including the passive filter, current acquisition and signal output; real-...

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Main Authors: Xiaodong Bao, Yongzhi Wang, Liang Jin
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201817301020
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author Xiaodong Bao
Yongzhi Wang
Liang Jin
author_facet Xiaodong Bao
Yongzhi Wang
Liang Jin
author_sort Xiaodong Bao
collection DOAJ
description Based on the design idea of microcomputer protection, a set of three-section current protection, experimental device was designed by using MCU. Using MCU as the core control of experimental device, the circuits were designed, including the passive filter, current acquisition and signal output; real-ti me, current data were collected. When the current exceeded the setting value, the three-section protection had the single hop or linkage, thereby sending out a tripping signalto the simulated circuit breaker. By testing, the device could store data such as real-time acquisition of the current, alarm, tripping and closing in local database and cloud database, and realize remote monitoring and analysis of devices through cloud service., The device basically reached the goal of laboratory experiment teaching.
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spelling doaj.art-5baafb49fe5f4c57a3457ee8095ce9882022-12-21T23:36:11ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011730102010.1051/matecconf/201817301020matecconf_smima2018_01020Design of Three-Section Current Protection Experimental Device for SingleXiaodong BaoYongzhi WangLiang JinBased on the design idea of microcomputer protection, a set of three-section current protection, experimental device was designed by using MCU. Using MCU as the core control of experimental device, the circuits were designed, including the passive filter, current acquisition and signal output; real-ti me, current data were collected. When the current exceeded the setting value, the three-section protection had the single hop or linkage, thereby sending out a tripping signalto the simulated circuit breaker. By testing, the device could store data such as real-time acquisition of the current, alarm, tripping and closing in local database and cloud database, and realize remote monitoring and analysis of devices through cloud service., The device basically reached the goal of laboratory experiment teaching.https://doi.org/10.1051/matecconf/201817301020
spellingShingle Xiaodong Bao
Yongzhi Wang
Liang Jin
Design of Three-Section Current Protection Experimental Device for Single
MATEC Web of Conferences
title Design of Three-Section Current Protection Experimental Device for Single
title_full Design of Three-Section Current Protection Experimental Device for Single
title_fullStr Design of Three-Section Current Protection Experimental Device for Single
title_full_unstemmed Design of Three-Section Current Protection Experimental Device for Single
title_short Design of Three-Section Current Protection Experimental Device for Single
title_sort design of three section current protection experimental device for single
url https://doi.org/10.1051/matecconf/201817301020
work_keys_str_mv AT xiaodongbao designofthreesectioncurrentprotectionexperimentaldeviceforsingle
AT yongzhiwang designofthreesectioncurrentprotectionexperimentaldeviceforsingle
AT liangjin designofthreesectioncurrentprotectionexperimentaldeviceforsingle