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Erik Steur

Researcher at Eindhoven University of Technology

Publications -  64
Citations -  818

Erik Steur is an academic researcher from Eindhoven University of Technology. The author has contributed to research in topics: Synchronization (computer science) & Nonlinear system. The author has an hindex of 15, co-authored 63 publications receiving 725 citations. Previous affiliations of Erik Steur include Katholieke Universiteit Leuven & Delft University of Technology.

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Semi-passivity and synchronization of diffusively coupled neuronal oscillators

TL;DR: This work presents sufficient conditions for synchronization in networks of neuronal oscillators which are interconnected via diffusive coupling, i.e. linearly coupled via gap junctions using the theory of semi-passive and passive systems and demonstrates that when the coupling is strong enough the oscillators become synchronized.
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Adaptive observers and parameter estimation for a class of systems nonlinear in the parameters

TL;DR: A solution to the problem of asymptotic reconstruction of the state and parameter values in systems of ordinary differential equations of which the unknowns are allowed to be nonlinearly parameterized functions of state and time is proposed.
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Synchronization in Networks of Diffusively Time-Delay Coupled (Semi-)Passive Systems

TL;DR: It is proved that identical strictly semi-passive systems, whose internal dynamics are stable, always will synchronize given that the coupling between the systems is sufficiently strong and a possible constant time delay is sufficiently small.
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Hierarchical control of enzymatic actuators using DNA-based switchable memories

TL;DR: A translator module is developed that converts signaling molecules from the upstream network to unique DNA strands driving downstream actuators with minimal retroactivity and support these findings with a detailed computational analysis.
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Partial synchronization in diffusively time-delay coupled oscillator networks

TL;DR: It is shown that networks with certain symmetries can exhibit a form of incomplete synchronization called partial synchronization and conditions for the existence and stability of partial synchronization modes in networks of oscillatory units that satisfy a semipassivity property and have convergent internal dynamics.