Design of Multi-threshold Acceleration Switch Based on Matlab

Acceleration switch can trigger switches according to the variation of external acceleration without complex control system and circuit. With the excellent characteristics of integration of sensor and actuator, zero power consumption and high reliability, multi-threshold acceleration switch has grea...

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Main Authors: Feng Jiacheng, Ma Jun, Gong ZaiYan, Kang Di, Wang Chao
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201823204026
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spelling doaj-03e45f1b9b9a4b7aa08d003c6c31d42a2021-02-02T05:38:53ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-012320402610.1051/matecconf/201823204026matecconf_eitce2018_04026Design of Multi-threshold Acceleration Switch Based on MatlabFeng Jiacheng0Ma JunGong ZaiYan1Kang Di2Wang Chao3The Evaluation and Transformation of Sci & Tech Dept, Chinese Institute of ElectronicsSchool of Automotive Studies, Tongji UniversityInformation Service Department, China UnicomLand development and Consolidation Center, Yanchang County Bureau of Land and ResourcesAcceleration switch can trigger switches according to the variation of external acceleration without complex control system and circuit. With the excellent characteristics of integration of sensor and actuator, zero power consumption and high reliability, multi-threshold acceleration switch has great application value in the fields of vehicle safety, aerospace and industrial equipment. In order to reduce the complexity of the measurement system and improve the reliability, we realized the design of a multi-threshold and anti-overloading acceleration switch which can distinguish specific pulse width. Additionally, the magnetic elastic contact is designed to prevent the rebound phenomenon when switch is overloaded. Considering the coupling force of spring, magnetic elastic contact and magnetic, we built the dynamic model and analysed the influence of the acceleration threshold and the pulse width on the switch actuation. The numerical simulation shows that the proposed switch has accurate sensitivity of acceleration excitation with specific threshold and certain pulse width, and it also has the ability of anti-overload. Consequently, the proposed method provides a new method for designing acceleration switch.https://doi.org/10.1051/matecconf/201823204026
collection DOAJ
language English
format Article
sources DOAJ
author Feng Jiacheng
Ma Jun
Gong ZaiYan
Kang Di
Wang Chao
spellingShingle Feng Jiacheng
Ma Jun
Gong ZaiYan
Kang Di
Wang Chao
Design of Multi-threshold Acceleration Switch Based on Matlab
MATEC Web of Conferences
author_facet Feng Jiacheng
Ma Jun
Gong ZaiYan
Kang Di
Wang Chao
author_sort Feng Jiacheng
title Design of Multi-threshold Acceleration Switch Based on Matlab
title_short Design of Multi-threshold Acceleration Switch Based on Matlab
title_full Design of Multi-threshold Acceleration Switch Based on Matlab
title_fullStr Design of Multi-threshold Acceleration Switch Based on Matlab
title_full_unstemmed Design of Multi-threshold Acceleration Switch Based on Matlab
title_sort design of multi-threshold acceleration switch based on matlab
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description Acceleration switch can trigger switches according to the variation of external acceleration without complex control system and circuit. With the excellent characteristics of integration of sensor and actuator, zero power consumption and high reliability, multi-threshold acceleration switch has great application value in the fields of vehicle safety, aerospace and industrial equipment. In order to reduce the complexity of the measurement system and improve the reliability, we realized the design of a multi-threshold and anti-overloading acceleration switch which can distinguish specific pulse width. Additionally, the magnetic elastic contact is designed to prevent the rebound phenomenon when switch is overloaded. Considering the coupling force of spring, magnetic elastic contact and magnetic, we built the dynamic model and analysed the influence of the acceleration threshold and the pulse width on the switch actuation. The numerical simulation shows that the proposed switch has accurate sensitivity of acceleration excitation with specific threshold and certain pulse width, and it also has the ability of anti-overload. Consequently, the proposed method provides a new method for designing acceleration switch.
url https://doi.org/10.1051/matecconf/201823204026
work_keys_str_mv AT fengjiacheng designofmultithresholdaccelerationswitchbasedonmatlab
AT majun designofmultithresholdaccelerationswitchbasedonmatlab
AT gongzaiyan designofmultithresholdaccelerationswitchbasedonmatlab
AT kangdi designofmultithresholdaccelerationswitchbasedonmatlab
AT wangchao designofmultithresholdaccelerationswitchbasedonmatlab
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