In recent decades, the prospect of exploiting the exceptional flying capacities of insects has prompted much research on the elaboration of flapping-wing nano air vehicles (FWNAV). However, when designing such a prototype, designers have to wade through a vast array of design solutions that reflects the wide variety of flying insects to identify the correct combination of parameters to meet their requirements. To alleviate this burden, the purpose of this work is to develop a suitable tool to analyze the kinematic and power behavior of a resonant flexible-wing nano air vehicle. The key issue is evaluating its efficiency. However, this ultimate objective is extremely challenging as it is applied to the smallest flexible FWNAV. However, in th...
Ce travail de thèse s'inscrit dans le contexte des drones vise à réaliser à terme un Nano-dispositif...
This research aims at designing a 20-mg vibrating-wing nanodrone. A number of challenges arise at th...
Inspired by insect flights, flapping wing micro air vehicles (FWMAVs) keep attracting attention from...
In recent decades, the prospect of exploiting the exceptional flying capacities of insects has promp...
Au cours des dernières décennies, la possibilité d’exploiter les capacités de vol exceptionnelles de...
This work in the Nano-Air Vehicle field aims to design a small flying object directly inspired by th...
Cette recherche dans le domaine des nano-drones a pour ambition de concevoir un objet volant de tail...
Developing insect-like flapping-wing drones from scratch is an ambitious and arduous task for design...
Développer, à partir de zéro, un drone imitant le vol battu de l'insecte est une tâche ambitieuse et...
International audienceIn the last decade researchers pursued the development of tiny flying robots i...
Recent progress made in the domain of microtechnologies allow the design of very small-sized Micro A...
Here we explain how flapping micro air vehicles (MAVs) can be designed at different scales, from bir...
Micro-air vehicles (MAVs)—small versions of full-scale aircraft—are the product of a continued path ...
Ce travail de thèse s'inscrit dans le contexte des drones vise à réaliser à terme un Nano-dispositif...
This research aims at designing a 20-mg vibrating-wing nanodrone. A number of challenges arise at th...
Inspired by insect flights, flapping wing micro air vehicles (FWMAVs) keep attracting attention from...
In recent decades, the prospect of exploiting the exceptional flying capacities of insects has promp...
Au cours des dernières décennies, la possibilité d’exploiter les capacités de vol exceptionnelles de...
This work in the Nano-Air Vehicle field aims to design a small flying object directly inspired by th...
Cette recherche dans le domaine des nano-drones a pour ambition de concevoir un objet volant de tail...
Developing insect-like flapping-wing drones from scratch is an ambitious and arduous task for design...
Développer, à partir de zéro, un drone imitant le vol battu de l'insecte est une tâche ambitieuse et...
International audienceIn the last decade researchers pursued the development of tiny flying robots i...
Recent progress made in the domain of microtechnologies allow the design of very small-sized Micro A...
Here we explain how flapping micro air vehicles (MAVs) can be designed at different scales, from bir...
Micro-air vehicles (MAVs)—small versions of full-scale aircraft—are the product of a continued path ...
Ce travail de thèse s'inscrit dans le contexte des drones vise à réaliser à terme un Nano-dispositif...
This research aims at designing a 20-mg vibrating-wing nanodrone. A number of challenges arise at th...
Inspired by insect flights, flapping wing micro air vehicles (FWMAVs) keep attracting attention from...