To transform and improve the current approach of underwater robotic exploration, we took as a reference benthic marine animals with the aim of unveiling the principles behind their agile legged locomotion. Rather than avoid contacts with the environment as traditional underwater robots do, our robots exploit the interactions to obtain swift and accurate movements. Our approach has the aim of pioneering a new breed of underwater vehicles which can move over underwater structures without disturbing the environment, and could perform muscular works when needed
Bio-inspiration can lead to a significant improvement in propulsive efficiency and maneuverability o...
Animal locomotion offers valuable references as it is a critical component of survival as animals ad...
©2016, World Scientific Publishing Co. Pte Ltd. All rights reserved. In this paper we present an oct...
Robots have the potential to assist and complement humans in the study and exploration of extreme an...
We are developing two classes of biomimetic autonomous underwater vehicles based on animal models wi...
Robotic systems that can explore the sea floor, collect marine samples, gather shallow water refuse,...
Mobile robots are commonly used to perform tasks in underwater environments that are difficult for h...
For operations in complex underwater environments, bio-inspired robots offer manoeuvrability, stealt...
Many bio-inspired robots have been developed so far after careful investigation of animals' loc...
This chapter reports on the conceptual design of an octopus-inspired robot. The investigation starte...
Abstract — The incorporation of novel structures and mechanisms from nature into the design and func...
Biomimetics aims to take inspiration from nature and develop new models and efficient systems for a ...
Interest in autonomous underwater vehicles is constantly increasing following the emerging needs of ...
Underwater robotics has many current and potential applications, including environmental monitoring ...
Underwater swimming robots permit remote access to over 70% of the Earth's surface that is covered i...
Bio-inspiration can lead to a significant improvement in propulsive efficiency and maneuverability o...
Animal locomotion offers valuable references as it is a critical component of survival as animals ad...
©2016, World Scientific Publishing Co. Pte Ltd. All rights reserved. In this paper we present an oct...
Robots have the potential to assist and complement humans in the study and exploration of extreme an...
We are developing two classes of biomimetic autonomous underwater vehicles based on animal models wi...
Robotic systems that can explore the sea floor, collect marine samples, gather shallow water refuse,...
Mobile robots are commonly used to perform tasks in underwater environments that are difficult for h...
For operations in complex underwater environments, bio-inspired robots offer manoeuvrability, stealt...
Many bio-inspired robots have been developed so far after careful investigation of animals' loc...
This chapter reports on the conceptual design of an octopus-inspired robot. The investigation starte...
Abstract — The incorporation of novel structures and mechanisms from nature into the design and func...
Biomimetics aims to take inspiration from nature and develop new models and efficient systems for a ...
Interest in autonomous underwater vehicles is constantly increasing following the emerging needs of ...
Underwater robotics has many current and potential applications, including environmental monitoring ...
Underwater swimming robots permit remote access to over 70% of the Earth's surface that is covered i...
Bio-inspiration can lead to a significant improvement in propulsive efficiency and maneuverability o...
Animal locomotion offers valuable references as it is a critical component of survival as animals ad...
©2016, World Scientific Publishing Co. Pte Ltd. All rights reserved. In this paper we present an oct...