Student Theses of Christopher Willuweit

Subject Tutor date of issue Status Student
Development and characterization of a multi-level-crossing event detector Christopher Willuweit
Johannes Königs
08/2023 in progress Lennart Hinz
Implementation of the Adapt-Then-Combine Full Waveform Inversion on a Multi-Agent Platform and Investigation of Network Topology Effects on Distributed Subsurface Imaging Christopher Willuweit 04/2023 in progress Dhruv Patel
DNN-based bandwidth estimation from level crossing samples Christopher Willuweit - finished Johannes Königs
Signal compression using time-warping and local bandwidth Christopher Willuweit - finished Johannes Königs
Analog wakeup circuits for pulsed-FM transmission Christopher Willuweit - finished Jelka Dehmel
Receiver structures for random Time-Frequency-Multiplex Christopher Willuweit - finished Jannik Steenken
Time-Warping based reconstruction of locally bandlimited signal from Level-Crossing samples Christopher Willuweit - finished Patric Müller
Temperature measurements using analog nearfield communication Christopher Willuweit - finished Johannes Königs
Wireless Control of Inverted Pendulum Christopher Willuweit - finished Patric Müller, Jannik Steenken
SDR based FM radio demodulation and construction of a yagi-uda antenna Christopher Willuweit - finished Michael Vogt, Lorenz Grundhoff
Aufbau eines SDR-basierten UKW-Empfängers Christopher Willuweit - finished Michael Vogt, Lorenz Grundhoff
Spectral estimation for multiuser detection in analog sensor nets Carsten Bockelmann
Christopher Willuweit
- finished Martin Jedon
Design and construction of a platform for temperature-field measurements Christopher Willuweit - finished Daniel Helms, Alec Prinz
Analysis and Implementation of non-cooperative localization in wireless systems Christopher Willuweit - finished Robert Dobrzynski
Off-the-shelf hardware receiver for micro-satellites Dirk Wübben
Christopher Willuweit
- finished Ferdinand Stehle
Non-cooperative localization Dirk Wübben
Christopher Willuweit
- finished Robert Dobrzynski
AIT ieee GOC tzi ith Fachbereich 1
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