A robot capable of locomotion in both air and water would enable novel missions in complex environments, such as water sampling after floods or underwater structural inspections. The design of such a vehicle is challenging, implying significant propulsive and structural trade-offs for operation in both fluids. This thesis examines the aerial-aquatic locomotion problem applied to miniature robots, beginning by exploring the ways in which this type of locomotion is achieved in nature, to abstract design principles for synthetic systems. After examining the problem, several subsystems enabling aerial-aquatic locomotion are presented. This includes multiple devices for escape from water using a pressurised jet, with each device taking a differ...
Aerial-aquatic robotic vehicles show great potential to assist in disaster response and envi-ronment...
The use of unmanned aerial vehicles, also known as drones, have been increasing over the past few ye...
Unmanned aerial-underwater vehicles (UAUVs) provide the potential for working on missions in complex...
The ability to move between air and water with miniature robots would allow distributed water sampli...
Aerial-aquatic locomotion would allow a broad array of tasks in robot-enabled environmental monitori...
The ability to collect water samples rapidly with aerial–aquatic robots would increase the safety an...
The majority of robotic vehicles that can be found in the engineering community today are bound to o...
The main objective of this research is to design, prove, and test the concept of a multi-locomotion ...
International audienceIn recent years, much attention has been directed to building robots with hybr...
Mobile robots are commonly used to perform tasks in underwater environments that are difficult for h...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2017.Th...
Many real-world applications for robots-such as long-term aerial and underwater observation, cross-m...
Several animal species demonstrate remarkable locomotive capabilities on land, on water, and under w...
Despite significant research progress on small-scale aerial-aquatic robots, most existing prototypes...
Water beetles are proficient drag-powered swimmers, with oar-like legs. Inspired by this mechanism, ...
Aerial-aquatic robotic vehicles show great potential to assist in disaster response and envi-ronment...
The use of unmanned aerial vehicles, also known as drones, have been increasing over the past few ye...
Unmanned aerial-underwater vehicles (UAUVs) provide the potential for working on missions in complex...
The ability to move between air and water with miniature robots would allow distributed water sampli...
Aerial-aquatic locomotion would allow a broad array of tasks in robot-enabled environmental monitori...
The ability to collect water samples rapidly with aerial–aquatic robots would increase the safety an...
The majority of robotic vehicles that can be found in the engineering community today are bound to o...
The main objective of this research is to design, prove, and test the concept of a multi-locomotion ...
International audienceIn recent years, much attention has been directed to building robots with hybr...
Mobile robots are commonly used to perform tasks in underwater environments that are difficult for h...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2017.Th...
Many real-world applications for robots-such as long-term aerial and underwater observation, cross-m...
Several animal species demonstrate remarkable locomotive capabilities on land, on water, and under w...
Despite significant research progress on small-scale aerial-aquatic robots, most existing prototypes...
Water beetles are proficient drag-powered swimmers, with oar-like legs. Inspired by this mechanism, ...
Aerial-aquatic robotic vehicles show great potential to assist in disaster response and envi-ronment...
The use of unmanned aerial vehicles, also known as drones, have been increasing over the past few ye...
Unmanned aerial-underwater vehicles (UAUVs) provide the potential for working on missions in complex...