Case Study of Industry 4.0 Capability for Fume Exhaust Units

dc.contributorJakschik Stefan, Dr.
dc.contributor.advisorKratzsch Alexander, prof. Dr. Ing.
dc.contributor.authorVeisová, Eliška
dc.contributor.otherSkolitel : 55317 Olehla Miroslav, prof. Ing. CSc.
dc.contributor.otherKonzultant : 65407 Borůvka Martin, Ing.
dc.contributor.otherKonzultant2 : 65957 Bendáková Nikola, Ing.
dc.date2017
dc.date.accessioned2018-05-03
dc.date.available2018-05-03
dc.date.committed2017-05-15
dc.date.defense2017-02-02
dc.date.submitted2016-10-10
dc.date.updated2.3.2017 12:12
dc.degree.levelIng.
dc.description.abstractThis master thesis has two major purposes: (1) to investigate Industry 4.0 capabilities for fume exhaust units and (2) to create a prototype unit for needs of ULT AGcompany which complies with the Industry 4.0 rules and shows possibilities for future development in this area.Industry 4.0 is considered as the fourth industrial revolution describing the futureindustry development trends leading to smart factories and intelligent production.Part of this thesis introduces basic principles and ideas of Industry 4.0 and presentsvarious solutions related with the fume exhaust industry. As a reaction to increasingnumber of manufacturing processes employing Industry 4.0, the companies providingfiltration solutions such as ULT AG are made to think about future form and featuresof their products.The prototype unit uLite (ULT Air Quality Module) was created as a practicalpart of this thesis. Its purpose is to measure various parameters associated withthe air quality and with the filtration unit itself, log them, save them to memorymedium, present them to the user and share with other devices. The uLite unitcore is based on ARM R Cortex R -M4 technology. The unit monitors the filtratedair quality and can detect if any harmful substances are left behind. It also hasfunction to measure filtration unit vibration and possibility to connect externalwaterproof probe. Furthermore there is option to measure pressure difference. Twopairs of pressure differences can be measured with total of four inputs. The unit hasits own power supply solution and it is enclosed in durable box.cs
dc.description.abstractThis master thesis has two major purposes: (1) to investigate Industry 4.0 capabilities for fume exhaust units and (2) to create a prototype unit for needs of ULT AGcompany which complies with the Industry 4.0 rules and shows possibilities for future development in this area.Industry 4.0 is considered as the fourth industrial revolution describing the futureindustry development trends leading to smart factories and intelligent production.Part of this thesis introduces basic principles and ideas of Industry 4.0 and presentsvarious solutions related with the fume exhaust industry. As a reaction to increasingnumber of manufacturing processes employing Industry 4.0, the companies providingfiltration solutions such as ULT AG are made to think about future form and featuresof their products.The prototype unit uLite (ULT Air Quality Module) was created as a practicalpart of this thesis. Its purpose is to measure various parameters associated withthe air quality and with the filtration unit itself, log them, save them to memorymedium, present them to the user and share with other devices. The uLite unitcore is based on ARM R Cortex R -M4 technology. The unit monitors the filtratedair quality and can detect if any harmful substances are left behind. It also hasfunction to measure filtration unit vibration and possibility to connect externalwaterproof probe. Furthermore there is option to measure pressure difference. Twopairs of pressure differences can be measured with total of four inputs. The unit hasits own power supply solution and it is enclosed in durable box.en
dc.description.mark
dc.format117
dc.format.extentIlustrace, Grafy, Tabulky 1 ROM
dc.identifier.urihttps://dspace.tul.cz/handle/15240/23535
dc.language.isoan
dc.relation.isbasedon
dc.rightsVysokoškolská závěrečná práce je autorské dílo chráněné dle zákona č. 121/2000 Sb., autorský zákon, ve znění pozdějších předpisů. Je možné pořizovat z něj na své náklady a pro svoji osobní potřebu výpisy, opisy a rozmnoženiny. Jeho využití musí být v souladu s autorským zákonem https://www.mkcr.cz/assets/autorske-pravo/01-3982006.pdf a citační etikou https://knihovna.tul.cz/document/26cs
dc.rightsA university thesis is a work protected by the Copyright Act. Extracts, copies and transcripts of the thesis are allowed for personal use only and at one?s own expense. The use of thesis should be in compliance with the Copyright Act. https://www.mkcr.cz/assets/autorske-pravo/01-3982006.pdf and the citation ethics https://knihovna.tul.cz/document/26en
dc.rights.urihttps://knihovna.tul.cz/document/26
dc.rights.urihttps://www.mkcr.cz/assets/autorske-pravo/01-3982006.pdf
dc.subjectIndustry 4.0cs
dc.subjectSTM32F407cs
dc.subjectair quality sensorscs
dc.subjectdigital and analogue sensorscs
dc.subjectIndustry 4.0en
dc.subjectSTM32F407en
dc.subjectair quality sensorsen
dc.subjectdigital and analogue sensorsen
dc.subject.verbismechatronicsen
dc.titleCase Study of Industry 4.0 Capability for Fume Exhaust Unitscs
dc.titleCase Study of Industry 4.0 Capability for Fume Exhaust Unitsen
dc.title.alternativecs
dc.typediplomová prácecs
local.degree.disciplineMEA
local.degree.programmeElectrical Engineering and Informatics
local.degree.programmeabbreviationN2612
local.department.abbreviationMTI
local.facultyFakulta mechatroniky, informatiky a mezioborových studiícs
local.faculty.abbreviationFM
local.identifier.stag35937
local.identifier.verbiskpw06525415
local.note.administratorsautomat
local.verbis.aktualizace2019-10-05 07:28:26cs
local.verbis.studijniprogramMTI Electrical Engineering and Informatics/Mechatronicscs
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