18 pages, 14 figuresThis work aims at finding optimal navigation policies for thin, deformable microswimmers that progress in a viscous fluid by propagating a sinusoidal undulation along their slender body. These active filaments are embedded in a prescribed, non-homogeneous flow, in which their swimming undulations have to compete with the drifts, strains, and deformations inflicted by the outer velocity field. Such an intricate situation, where swimming and navigation are tightly bonded, is addressed using various methods of reinforcement learning. Each swimmer has only access to restricted information on its configuration and has to select accordingly an action among a limited set. The optimisation problem then consists in finding the po...
We study the swimming strategies that maximize the speed of the three-sphere swimmer using reinforce...
The optimal strategy for a microscopic swimmer to migrate across a linear shear flow is discussed. T...
In this article, we consider a swimmer (i.e. a self-deformable body) immersed in a fluid, ...
This work aims at finding optimal navigation policies for thin, deformable microswimmers that progre...
We apply a reinforcement learning algorithm to show how smart particles can learn approximately opti...
Smart active particles can acquire some limited knowledge of the fluid environment from simple mecha...
This dissertation summarizes computational results from applying reinforcement learning and deep neu...
There are growing interests in the development of artificial microscopic machines that can perform c...
8 pages, 10 figuresWe develop an adversarial-reinforcement learning scheme for microswimmers in stat...
In this thesis, we focus on two problems relevant to the swimming of slender bodies at low Reynolds ...
8 pages, 10 figuresInternational audienceWe develop an adversarial-reinforcement learning scheme for...
As the length scales of the smallest technology continue to advance beyond the micron scale it becom...
Efficient point-to-point navigation in the presence of a background flow field is important for robo...
Artificial bacteria flagella (ABFs) are magnetic helical microswimmers that can be remotely controll...
International audienceWe discuss a reduced model to compute the motion of slender swimmerswhich prop...
We study the swimming strategies that maximize the speed of the three-sphere swimmer using reinforce...
The optimal strategy for a microscopic swimmer to migrate across a linear shear flow is discussed. T...
In this article, we consider a swimmer (i.e. a self-deformable body) immersed in a fluid, ...
This work aims at finding optimal navigation policies for thin, deformable microswimmers that progre...
We apply a reinforcement learning algorithm to show how smart particles can learn approximately opti...
Smart active particles can acquire some limited knowledge of the fluid environment from simple mecha...
This dissertation summarizes computational results from applying reinforcement learning and deep neu...
There are growing interests in the development of artificial microscopic machines that can perform c...
8 pages, 10 figuresWe develop an adversarial-reinforcement learning scheme for microswimmers in stat...
In this thesis, we focus on two problems relevant to the swimming of slender bodies at low Reynolds ...
8 pages, 10 figuresInternational audienceWe develop an adversarial-reinforcement learning scheme for...
As the length scales of the smallest technology continue to advance beyond the micron scale it becom...
Efficient point-to-point navigation in the presence of a background flow field is important for robo...
Artificial bacteria flagella (ABFs) are magnetic helical microswimmers that can be remotely controll...
International audienceWe discuss a reduced model to compute the motion of slender swimmerswhich prop...
We study the swimming strategies that maximize the speed of the three-sphere swimmer using reinforce...
The optimal strategy for a microscopic swimmer to migrate across a linear shear flow is discussed. T...
In this article, we consider a swimmer (i.e. a self-deformable body) immersed in a fluid, ...