In this dissertation we study microrobot design for three modes of locomotion, namely rolling, jumping, and flying. This work covers power electronics, actuator and mechanical transmission design for these types of microrobots along with power source selection. Though interesting, we do not cover the sensors, controllers/computers, communications and useful payloads for these bots. This remains a topic for future work. Piezoelectric and electrostatic actuators generally have been the actuators of choice for researchers working in microrobotics, since conventional electromagnetic motor designs don't scale down well. Here we design an electromagnetic actuator in a way that significantly reduces its scaling down disadvantages, while still reta...
The paper describes a novel mobile microrobot based on deformations of piezoelectric elements. Three...
International audienceThe paper documents the principle and experiments of the "2mm dash" winner at ...
Mechanical energy storage has been studied to enable a self-destructing mote and a jumping microrobo...
In this dissertation we study microrobot design for three modes of locomotion, namely rolling, jumpi...
This thesis includes the design, modeling, and testing of novel, power-scavenging, biologically insp...
<p>Miniature flapping flight systems hold great promise in matching the agility of their natural cou...
Recent advances in precision manufacturing technology and a thorough understanding of the properties...
There is an increasing need for wireless autonomous micro electromechanical systems (MEMS) and micro...
This thesis presents actuators used in autonomous microsystems. Characteristic for all actuators pre...
Actuation systems for few cubic millimeter sized mobile autonomous robots are subject to severe cons...
International audienceThis paper introduces recent advances on flapping-wing Micro and Nano Aerial V...
Abstract — Onboard power remains a major challenge for miniature robotic platforms. Locomotion at sm...
Jumping microrobots are a burgeoning area of autonomous microelectromechanical systems (MEMS). This ...
Abstract—This paper presents a bioinspired concept of loco-motion for small autonomous robots. Scale...
The flight times of traditional Micro-Air-Vehicles (MAVs) are limited by low energy density of batte...
The paper describes a novel mobile microrobot based on deformations of piezoelectric elements. Three...
International audienceThe paper documents the principle and experiments of the "2mm dash" winner at ...
Mechanical energy storage has been studied to enable a self-destructing mote and a jumping microrobo...
In this dissertation we study microrobot design for three modes of locomotion, namely rolling, jumpi...
This thesis includes the design, modeling, and testing of novel, power-scavenging, biologically insp...
<p>Miniature flapping flight systems hold great promise in matching the agility of their natural cou...
Recent advances in precision manufacturing technology and a thorough understanding of the properties...
There is an increasing need for wireless autonomous micro electromechanical systems (MEMS) and micro...
This thesis presents actuators used in autonomous microsystems. Characteristic for all actuators pre...
Actuation systems for few cubic millimeter sized mobile autonomous robots are subject to severe cons...
International audienceThis paper introduces recent advances on flapping-wing Micro and Nano Aerial V...
Abstract — Onboard power remains a major challenge for miniature robotic platforms. Locomotion at sm...
Jumping microrobots are a burgeoning area of autonomous microelectromechanical systems (MEMS). This ...
Abstract—This paper presents a bioinspired concept of loco-motion for small autonomous robots. Scale...
The flight times of traditional Micro-Air-Vehicles (MAVs) are limited by low energy density of batte...
The paper describes a novel mobile microrobot based on deformations of piezoelectric elements. Three...
International audienceThe paper documents the principle and experiments of the "2mm dash" winner at ...
Mechanical energy storage has been studied to enable a self-destructing mote and a jumping microrobo...