Heat Dissipation Analysis for Optical Splice Boxes Based on Fuzzy Theory

碩士 === 國立高雄應用科技大學 === 電子工程系 === 106 === It has been more than 40 years since the development of fuzzy theory, and its application range is very wide. Although there are many studies on the use of temperature, in the field of telecommunications, the optical splice box includes circuits, network equip...

Full description

Bibliographic Details
Main Authors: CHANG, FENG-HSU, 張峰旭
Other Authors: SU, TE-JEN
Format: Others
Language:zh-TW
Published: 2018
Online Access:http://ndltd.ncl.edu.tw/handle/urceef
id ndltd-TW-106KUAS0393180
record_format oai_dc
spelling ndltd-TW-106KUAS03931802019-05-16T00:44:37Z http://ndltd.ncl.edu.tw/handle/urceef Heat Dissipation Analysis for Optical Splice Boxes Based on Fuzzy Theory 模糊理論應用於光化交接箱散熱分析 CHANG, FENG-HSU 張峰旭 碩士 國立高雄應用科技大學 電子工程系 106 It has been more than 40 years since the development of fuzzy theory, and its application range is very wide. Although there are many studies on the use of temperature, in the field of telecommunications, the optical splice box includes circuits, network equipment, and electric equipment. At present, the fan operation control mode of the optical splice box is mainly based on mechanical temperature control. Divided into two control not only power loss, on the temperature control can not effectively deal with related devices easily cause damage. In this thesis use Arduino microcontroller, temperature sensor and WI-FI module are used to record the temperature charge of the Optical Splice Boxes via the cloud, and analyze the difference between the temperature inside the box and the ambient temperature. By controlling the fan speed through fuzzy algorithm according to the change of temperature, the stability of the device is improved, and the full-speed running time of the fan is reduced. SU, TE-JEN 蘇德仁 2018 學位論文 ; thesis 47 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立高雄應用科技大學 === 電子工程系 === 106 === It has been more than 40 years since the development of fuzzy theory, and its application range is very wide. Although there are many studies on the use of temperature, in the field of telecommunications, the optical splice box includes circuits, network equipment, and electric equipment. At present, the fan operation control mode of the optical splice box is mainly based on mechanical temperature control. Divided into two control not only power loss, on the temperature control can not effectively deal with related devices easily cause damage. In this thesis use Arduino microcontroller, temperature sensor and WI-FI module are used to record the temperature charge of the Optical Splice Boxes via the cloud, and analyze the difference between the temperature inside the box and the ambient temperature. By controlling the fan speed through fuzzy algorithm according to the change of temperature, the stability of the device is improved, and the full-speed running time of the fan is reduced.
author2 SU, TE-JEN
author_facet SU, TE-JEN
CHANG, FENG-HSU
張峰旭
author CHANG, FENG-HSU
張峰旭
spellingShingle CHANG, FENG-HSU
張峰旭
Heat Dissipation Analysis for Optical Splice Boxes Based on Fuzzy Theory
author_sort CHANG, FENG-HSU
title Heat Dissipation Analysis for Optical Splice Boxes Based on Fuzzy Theory
title_short Heat Dissipation Analysis for Optical Splice Boxes Based on Fuzzy Theory
title_full Heat Dissipation Analysis for Optical Splice Boxes Based on Fuzzy Theory
title_fullStr Heat Dissipation Analysis for Optical Splice Boxes Based on Fuzzy Theory
title_full_unstemmed Heat Dissipation Analysis for Optical Splice Boxes Based on Fuzzy Theory
title_sort heat dissipation analysis for optical splice boxes based on fuzzy theory
publishDate 2018
url http://ndltd.ncl.edu.tw/handle/urceef
work_keys_str_mv AT changfenghsu heatdissipationanalysisforopticalspliceboxesbasedonfuzzytheory
AT zhāngfēngxù heatdissipationanalysisforopticalspliceboxesbasedonfuzzytheory
AT changfenghsu móhúlǐlùnyīngyòngyúguānghuàjiāojiēxiāngsànrèfēnxī
AT zhāngfēngxù móhúlǐlùnyīngyòngyúguānghuàjiāojiēxiāngsànrèfēnxī
_version_ 1719170065066098688