General information
Organisation
The French Alternative Energies and Atomic Energy Commission (CEA) is a key player in research, development and innovation in four main areas :
• defence and security,
• nuclear energy (fission and fusion),
• technological research for industry,
• fundamental research in the physical sciences and life sciences.
Drawing on its widely acknowledged expertise, and thanks to its 16000 technicians, engineers, researchers and staff, the CEA actively participates in collaborative projects with a large number of academic and industrial partners.
The CEA is established in ten centers spread throughout France
Reference
SL-DES-26-0484
Thesis topic details
Category
Technological challenges
Thesis topics
Investigation of Degradation Modes of PV Modules for Medium Voltage Applications
Contract
Thèse
Job description
To reduce energy losses and costs, photovoltaic power plants have seen their voltage levels increase, which should exceed the standard 1500 Vdc to reach up to 3000 Vdc soon. Even higher voltages, up to 9000 V, could offer very significant economic advantages.
The increase in voltage presents major scientific challenges. High voltages result in degradations grouped under the term Potential-Induced Degradation (PID), leading to significant power losses. These degradations can have several origins: a short circuit of the PN junction (PID-s), depolarization of the solar cell passivation layer (PID-p), or corrosion of the metallization (PID-c). The understanding of PID phenomena at medium voltage remains limited, and there is a lack of comprehensive studies on module materials, the interaction between PID and aging, and the behavior of PID in advanced cell technologies.
The proposed thesis aims to identify the material properties necessary for PV modules to withstand high voltages, combining experimental and simulation approaches.
The doctoral student will need to characterize PV materials (glass, encapsulants) under voltages up to 9000 V, evaluate the impact of aging on the properties of these materials, study the influence of environmental conditions on PID, model the electric field distribution in PV modules, and develop PID mitigation strategies. This research will be conducted in collaboration between G2Elab and CEA, combining expertise in material characterization under medium voltage and photovoltaic module manufacturing.
University / doctoral school
Thesis topic location
Site
Grenoble
Requester
Position start date
01/09/2025
Person to be contacted by the applicant
BABICS maxime
maxime.babics@cea.fr
CEA
DES/DTS//LSA
50 avenue du Lac Léman
F-73375 Le-Bourget-du-Lac
04.79.79.28.11
Tutor / Responsible thesis director
RAIN Pascal
Pascal.Rain@g2elab.grenoble-inp.fr
Université Grenoble Alpes - G2Elab
Laboratoire G2Elab
G2Elab - GreEn-ER - Office 5-C-21
21 avenue des martyrs
CS 90624
38031 Grenoble
+33 (0)4 56 52 86 95
En savoir plus
https://www.ines-solaire.org/