Event-triggered Control
Control laws that act only when the system actually needs them, saving bandwidth, energy and computation without sacrificing stability.
ExplorePostdoctoral Researcher · Control of PDEs
I design control laws that stabilize systems governed by partial differential equations, when the signals arrive late, when the measurements are coarse, and when the communication channel is limited. From Benin to France and Greece, my work lives at the meeting point of nonlinear analysis, distributed-parameter systems, and event-triggered control.
Research focus
How do we control a system that lives in an infinite-dimensional state space, with imperfect sensing, finite bandwidth, and unavoidable delays?
Control laws that act only when the system actually needs them, saving bandwidth, energy and computation without sacrificing stability.
ExploreStabilising wave, reaction–diffusion, Schrödinger and hyperbolic systems by acting only at the boundary, through backstepping, Lyapunov analysis and observer design.
ExplorePredictor feedback and switched-control architectures that compensate input delay and the unavoidable coarseness of digital sensing and actuation.
ExploreRecent activity
For collaborators & students