DTU Studieprojekt - Design and integration of sensor to detection of dust and dirt II
Danmarks Tekniske Universitet (DTU)
Design and integration of sensor to detection of dust and dirt II
Udbyder
Vejleder
Sted
København og omegn
- Introduction: For safety reasons, lighting is often installed throughout the entire length of railway tunnels and road tunnels. In time, during normal operation, dust and dirt will be deposited on the light emitting surfaces of the luminaires. In order to ensure correct illumination in the tunnels the luminaires are washed on a regular basis.
- The aim of this project is to build a prototype, based on some of the optical technologies we have tested, preliminary. The design should consider optics, electronics, materials and the housing to provides a reliable, robust, practical and cost efficient.
- In this project, the student(s) will have the opportunity to use their competences in optics, material knowledge and design to solve a problem that has relevance to our current society. The student(s) will design, construct, test and carry out field experiments. This project will be in close collaboration with ÅF Lighting.
These tunnels are crucial parts of our infrastructure. Therefore, time spend on tunnel maintenance has to be kept at a minimum. A/S Storebælt intends to upgrade their tunnel lighting systems with a sensor system, which can provide feedback of the current state of deposits on surfaces in individual tunnels.
The company ÅF Lighting (www.afconsult.com/lighting) has many years of experience in designing and constructing lighting systems, and often with specific requirements to reliability. ÅF Lighting is in charge of the development of A/S Storebælt’s sensor project. For that reason, ÅF Lighting and DTU Fotonik have already finished a project, where we developed and tested different sensor technologies, which can detect and measure the amount of dust and dirt, deposited on glass surfaces. In this project, ÅF Lighting and DTU-Fotonik propose a bachelor or a candidate project, where we intend to construct a prototype, and run a proof of concept.. The project description addresses either a bachelor or MSc project. The project can be combined with a special course as well.
I samarbejde med
ÅF Lighting, A/S Storebælt
Forudsætninger
Optics, electronics, design
Emneord
- Konstruktion og mekanik
- Elektroteknologi
- Fysik
- Geovidenskab
- Materialer
- Produktion og ledelse
- Rumforskning
- Antenner
- Elektromagnetisme
- Elektronik
- Lyd
- Mikrobølgeteknologi
- Robotteknik og automation
- Energisystemer
- Lasere
- Mikro- og nanoteknologi
- Optik
- Sensorer
- Geologi
- Isforskning
- Jordens magnetfelt
- Klimaændringer
- Kortlægning og opmåling
- Hardware og komponenter
- Telekommunikation
- Nanopartikler
- Høreapparater
- Medicinske apparater og systemer
- Entreprenørskab
- Innovation og produktudvikling
- Livscyklusanalyse
- Astrofysik
- Jordobservation
- Kosmisk stråling
- Rumteknologi og instrumenter
- Satellitter
- Solsystemet
Virksomhed/organisation
DTU Fotonik
Navn
Michael Linde Jakobsen
Stilling
Seniorforsker
Mail
mlja@fotonik.dtu.dk
Vejleder-info
Bachelor i Design & Innovation
Vejleder
Michael Linde Jakobsen
ECTS-point
15 - 35
Type
Bachelorprojekt, Kandidatspeciale
Skal have taget
34020 or 34021
Bachelor i Geofysik og Rumteknologi
Vejleder
Michael Linde Jakobsen
ECTS-point
15 - 35
Type
Bachelorprojekt, Kandidatspeciale
Skal have taget
34020 or 34021
Bachelor i Elektroteknologi
Vejleder
Michael Linde Jakobsen
ECTS-point
15 - 35
Type
Bachelorprojekt, Kandidatspeciale
Skal have taget
34020 or 34021
Bachelor i Fysik og Nanoteknologi
Vejleder
Michael Linde Jakobsen
ECTS-point
15 - 35
Type
Bachelorprojekt, Kandidatspeciale
Skal have taget
34020 or 34021
Kandidatuddannelsen i Design og Innovation
Vejleder
Michael Linde Jakobsen
ECTS-point
15 - 35
Type
Bachelorprojekt, Kandidatspeciale
Skal have taget
34020 or 34021
Kandidatuddannelsen i Geofysik og Rumteknologi
Vejleder
Michael Linde Jakobsen
ECTS-point
15 - 35
Type
Bachelorprojekt, Kandidatspeciale
Skal have taget
34020 or 34021
Kandidatuddannelsen i Elektroteknologi
Vejleder
Michael Linde Jakobsen
ECTS-point
15 - 35
Type
Bachelorprojekt, Kandidatspeciale
Skal have taget
34020 or 34021
Kandidatuddannelsen i Fysik og Nanoteknologi
Vejleder
Michael Linde Jakobsen
ECTS-point
15 - 35
Type
Bachelorprojekt, Kandidatspeciale
Skal have taget
34020 or 34021
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