Abstract. Understanding fish-like locomotion as a result of internal shape changes may result in improved underwater propulsion mechanisms. We use a geometric framework to consider the simplified problem of an articulated two-dimensional body in a potential flow. This paper builds upon the current geometric theory by showing that although the group of Euclidean transformations is non-Abelian, certain tools available for Abelian groups may still be exploited, making use of the semidirect-product structure of this group. In particular, the holonomy in the rotation component may be explicitly computed as a function of the area enclosed by a path in shape space. We use this tool to develop open-loop gaits for an articulated body with two shape ...
An articulated intervention autonomous underwater vehicle (AIAUV) consists of the jointed body of a ...
Mathematical modeling and quantitative study of biological motility is producing new biophysical ins...
It is seen in some natural biological situations, that a living organism requiring a change in its l...
This paper is concerned with modeling the dynamics of N articulated solid bodies submerged in an ide...
An articulated body can propel and steer itself in a perfect fluid by changing its shape only. Our ...
121 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2007.Our model for locomotion buil...
Motivated by considerations of shape changing propulsion of underwater robotic vehicles, this paper ...
This thesis presents a novel, hierarchical approach to motion planning for a class of dynamic, robot...
In this paper we generate gaits for two types of underactuated me-chanical systems: principally kine...
The underwater swimming manipulator (USM) is a snake robot equipped with thrusters for faster propul...
Abstract — This paper presents an analytical model and a geometric numerical integrator for a system...
(Communicated by Urszula Ledzewicz) Abstract. Designing trajectories for a submerged rigid body moti...
We present a novel mechanical system, the “landfish, ” which takes advantage of a combination of art...
(Department of Mathematics) The proposed research is based on theoretical study and experiments whic...
We developed bio-inspired reduced-order models of swimmers, consisting of a self-propelling pair of ...
An articulated intervention autonomous underwater vehicle (AIAUV) consists of the jointed body of a ...
Mathematical modeling and quantitative study of biological motility is producing new biophysical ins...
It is seen in some natural biological situations, that a living organism requiring a change in its l...
This paper is concerned with modeling the dynamics of N articulated solid bodies submerged in an ide...
An articulated body can propel and steer itself in a perfect fluid by changing its shape only. Our ...
121 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2007.Our model for locomotion buil...
Motivated by considerations of shape changing propulsion of underwater robotic vehicles, this paper ...
This thesis presents a novel, hierarchical approach to motion planning for a class of dynamic, robot...
In this paper we generate gaits for two types of underactuated me-chanical systems: principally kine...
The underwater swimming manipulator (USM) is a snake robot equipped with thrusters for faster propul...
Abstract — This paper presents an analytical model and a geometric numerical integrator for a system...
(Communicated by Urszula Ledzewicz) Abstract. Designing trajectories for a submerged rigid body moti...
We present a novel mechanical system, the “landfish, ” which takes advantage of a combination of art...
(Department of Mathematics) The proposed research is based on theoretical study and experiments whic...
We developed bio-inspired reduced-order models of swimmers, consisting of a self-propelling pair of ...
An articulated intervention autonomous underwater vehicle (AIAUV) consists of the jointed body of a ...
Mathematical modeling and quantitative study of biological motility is producing new biophysical ins...
It is seen in some natural biological situations, that a living organism requiring a change in its l...