Calendar
Thu 01 August - Tue 31 December
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Public defences of doctoral theses
Electrical Engineering
Monday 2019-08-19, 10:00
Location: F3, KTH, Lindstedtsvägen 26, Stockholm
Doctoral student: Marie Maros , Information Science and Engineering
2019-08-19T10:00:00.000+02:00 2019-08-19T10:00:00.000+02:00 Distributed Optimization in Time-Varying environments: A thesis of two parts (Public defences of doctoral theses) F3, KTH, Lindstedtsvägen 26, Stockholm (KTH, Stockholm, Sweden)Distributed Optimization in Time-Varying environments: A thesis of two parts (Public defences of doctoral theses) -
Public defences of doctoral theses
Electrical Engineering
Thursday 2019-08-29, 13:15
Location: F3, KTH, Lindstedtsvägen 26, Stockholm
Doctoral student: Minh Thành Vu , Information Science and Engineering
2019-08-29T13:15:00.000+02:00 2019-08-29T13:15:00.000+02:00 Perspectives on ldentification Systems (Public defences of doctoral theses) F3, KTH, Lindstedtsvägen 26, Stockholm (KTH, Stockholm, Sweden)Perspectives on ldentification Systems (Public defences of doctoral theses) -
Public defences of doctoral theses
Electrical Engineering
Monday 2019-09-16, 09:00
Location: F3, Lindstedtsvägen 26, Stockholm, Stockholm (English)
Doctoral student: Pol del Aguila Pla , Teknisk informationsvetenskap
2019-09-16T09:00:00.000+02:00 2019-09-16T09:00:00.000+02:00 Inverse problems in signal processing (Public defences of doctoral theses) F3, Lindstedtsvägen 26, Stockholm, Stockholm (English) (KTH, Stockholm, Sweden)Inverse problems in signal processing (Public defences of doctoral theses) -
Public defences of doctoral theses
Tuesday 2019-11-05, 12:00
Doctoral student: Nenad Jovanovic , Skolan för elektroteknik och datavetenskap (EECS), Research Technology Institute, Comillas Pontifical University, Spain; Delft University of Technology, the Netherlands.
2019-11-05T12:00:00.000+01:00 2019-11-05T12:00:00.000+01:00 Electricity markets operation planning with risk-averse agents: stochastic decomposition and equilibium (Public defences of doctoral theses) Electricity markets operation planning with risk-averse agents: stochastic decomposition and equilibium (Public defences of doctoral theses)