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Under the direction of Dr. Tsampikos Kottos, the Research Scientist will be working on the research effort on “AI-Guided Self-Organization: Tailoring Disorder to Shape Complex Nonlinear Dynamics
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, Nonlinear and Complex Systems , Nonlinear Integral Systems, Classical and Quantum , Optical Physics , optics , Optics and Photonics , Optomechanics , Photoelectron spectroscopies , Photon-based Scattering and
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, Neutrino physucs , Noise mitigation , Non-equilibrium quantum physics , Nonequilibrium physics in bulk and molecular quantum materials , Nonlinear and Complex Systems , Nonlinear Integral Systems, Classical
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: Dynamical Systems Control Theory Formal Methods Reachability Analysis Computational Geometry Context The applicant will be directly advised by Prof. Matthias Althoff (https://www.ce.cit.tum.de/cps/members
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chargers, or nonlinear loads Experience in hardware-in-the-loop testbeds and digital twin creation Experience with SEL RTAC 3555 or similar Experience in advanced microgrid controls such as nonlinear methods
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noise, a prototype cryogenic interferometer, using machine learning for nonlinear feedback control, devising techniques to quell opto-mechanical instabilities that can disable the interferometers, and
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analysis, machine learning, embedded DSP, digital design, logic synthesis, computer architecture, embedded systems, robotics, nonlinear and hybrid control systems, intelligent transportation systems
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, statistics, and financial mathematics. Website: https://sites.google.com/view/trr388/ Project B03 of SFB/TRR388 concerns numerical methods for the treatment of stochastic optimal control problems and backward