The complex motion abilities of the Octopus vulgaris have been an intriguing research topic for biologists and roboticists alike. Various studies have been conducted on the underlying control architectures employed by these high dimensional biological organisms. Researchers have attempted to replicate these architectures on robotic systems. Contrary to previous approaches, this study focuses on a robotic system, which is only morphologically similar to the Octopus vulgaris, and how it would behave under different control policies. This sheds light on the underlying optimality principles that these biological systems employ. Open loop control policies are obtained through a trajectory optimization method on a learned forward dynamic model. T...
Cephalopods such as the octopus show the most advanced behavior among invertebrates, which they acco...
Transferring skills from a biological organism to a hyper-redundant system is a challenging task, es...
The octopus is an interesting model for the development of soft robotics, due to its high deformabil...
The complex motion abilities of the Octopus vulgaris have been an intriguing research topic for biol...
Octopuses have a unique flexible body and unusual morphology, but nevertheless they are undoubtedly ...
The behaviors of the animals or embodied agents are characterized by the dynamic coupling between th...
Soft robots have significant advantages over traditional rigid robots because of their morphological...
Soft robots have significant advantages over traditional rigid robots because of their morphological...
Soft robotics is a challenging and promising branch of robotics. It can drive significant improvement...
Biological and artificial agents are faced with many of the same computational and mechanical proble...
SummaryTo cope with the exceptional computational complexity that is involved in the control of its ...
©2016, World Scientific Publishing Co. Pte Ltd. All rights reserved. In this paper we present an oct...
In this paper, we describe our recent results in the development of a new class of soft, continuous ...
This article presents the results of a multidisciplinary project where mechatronic engineers worked ...
The octopus is a marine animal whose body has no rigid structures. It has eight arms mainly composed...
Cephalopods such as the octopus show the most advanced behavior among invertebrates, which they acco...
Transferring skills from a biological organism to a hyper-redundant system is a challenging task, es...
The octopus is an interesting model for the development of soft robotics, due to its high deformabil...
The complex motion abilities of the Octopus vulgaris have been an intriguing research topic for biol...
Octopuses have a unique flexible body and unusual morphology, but nevertheless they are undoubtedly ...
The behaviors of the animals or embodied agents are characterized by the dynamic coupling between th...
Soft robots have significant advantages over traditional rigid robots because of their morphological...
Soft robots have significant advantages over traditional rigid robots because of their morphological...
Soft robotics is a challenging and promising branch of robotics. It can drive significant improvement...
Biological and artificial agents are faced with many of the same computational and mechanical proble...
SummaryTo cope with the exceptional computational complexity that is involved in the control of its ...
©2016, World Scientific Publishing Co. Pte Ltd. All rights reserved. In this paper we present an oct...
In this paper, we describe our recent results in the development of a new class of soft, continuous ...
This article presents the results of a multidisciplinary project where mechatronic engineers worked ...
The octopus is a marine animal whose body has no rigid structures. It has eight arms mainly composed...
Cephalopods such as the octopus show the most advanced behavior among invertebrates, which they acco...
Transferring skills from a biological organism to a hyper-redundant system is a challenging task, es...
The octopus is an interesting model for the development of soft robotics, due to its high deformabil...