34193 Avancerede solcellekoncepter

2021/2022

Kursusinformation
Advanced Concepts in Photovoltaics
Engelsk
5
Ph.d., Servicekursus (faglige færdigheder)
Kurset udbydes som enkeltfag
22.-26. August 2022
Sommerskolen afholdes i en hybridversion i 2022
Lectures, presentations, and group work and 2 weeks of additional textbook and article studies
[Kurset følger ikke DTUs normale skemastruktur]
Aftales med underviser
Mundtlig eksamen og bedømmelse af rapport(er)
Oral examination and reports
Alle hjælpemidler er tilladt :

All Aid

bestået/ikke bestået , intern bedømmelse
Knowledge within photonics, optics, nanotechnology, chemistry and physics would be beneficiary
Minimum 15 Maksimum: 50
Peter Behrensdorff Poulsen , Risø Campus, Bygning 130, Tlf. (+45) 4677 4572 , ppou@dtu.dk
Gisele Alves dos Reis Benatto , Risø Campus, Bygning 130, Tlf. (+45) 4677 5412 , garb@dtu.dk
Stela Canulescu , Risø Campus, Bygning 130, Tlf. (+45) 4677 4519 , stec@dtu.dk
Sune Thorsteinsson , Risø Campus, Bygning 129, Tlf. (+45) 4677 4521 , sunth@dtu.dk
Professor Morten Madsen, Research leader, Organic Photovoltaics, SDU
Assistant Professor Vida Engmann, University of Southern Denmark
Professor Ulf Blieske, Cologne University of Applied Sciences
34 Institut for Fotonik
SDU, The Mads Clausen Institute, Faculty of Engineering
http://pvsummerschool.com/
På instituttet

Sign up for the summer school by http:/​/​pvsummerschool.com/​ Price for summer school: 995 DKK
Dette kursus giver den studerende en mulighed for at lave eller forberede et projekt som kan deltage i DTUs studenterkonference om bæredygtighed, klimateknologi og miljø (GRØN DYST). Se mere på http://www.groendyst.dtu.dk
Overordnede kursusmål
The aim of the course is to introduce the students to advanced concepts in photovoltaics and learn about the latest developments in up-conversion, Thin films, multi-junction tandem solar cells, Perovskites, Organic photovoltaics and advanced characterization methods for photovoltaics.
Læringsmål
En studerende, der fuldt ud har opfyldt kursets mål, vil kunne:
  • Describe methods to get more out of sunlight by up-conversion
  • Understand the basic properties and production methods of multi-junction and tandem solar cells
  • Apply tools for fast prototyping of new photovoltaic materials
  • Utilize SCAPS for numerical simulation of PV cells
  • Explain and evaluate image-based inspection tools for fault identification and assessment in PV systems
  • Classify reliability and accelerated lifetime testing of PV modules
  • Design and improve the performance of CZTS solar cells by different manufacturing processes and architectures
  • Define the recent progress in perovskites photovoltaics research
  • Discuss the current state-of-the-art in organics photovoltaics
  • Present a topic of advanced concepts in photovoltaics in a clear and comprehensive fashion
  • Critically review a presentation by fellow students in the course and be able to give constructive feedback
  • Write a report on a topic of advanced concept in photovoltaics
Kursusindhold
The course is composed of total of 3 weeks. 1 week PhD summer school (including preparation for an oral presentation given by each participants) and 2 weeks study load of textbook and article reading with corresponding discussion with teachers. Students will be requested to read, at least, 2 weeks prior to the school, book-chapters and state-of-the-art journal papers on selected topics by the teachers. The reading material is selected in agreement with the teachers to make the best possible preparation of the students to participate in the Summer School. Students will meet to discuss among themselves and with professors the reading material. The student will give an oral presentation during the Summer School about the research topics of the students PhD project and feedback will be given by teachers and other PhD students. A short report will be requested after the summer school. Lectures will be delivered from primarily teachers at DTU Fotonik and SDU, The Mads Clausen Institute, Faculty of Engineering and selected number of top researchers and teachers from world-wide renown Universities;
Litteraturhenvisninger
Book chapters and 25 state-of-the-art journal articles.
Sidst opdateret
09. maj, 2022