Soft robots have significant advantages over traditional rigid robots because of their morphological flexibility. However, the use of conventional engineering approaches to control soft robots is difficult, especially to achieve autonomous behaviors. With its completely soft body, the octopus has a rich behavioral repertoire, so it is frequently used as a model in building and controlling soft robots. However, the sensorimotor control strategies in some interesting behaviors of the octopus, such as octopus crawling, remain largely unknown. In this study, we review related biological studies on octopus crawling behavior and propose its sensorimotor control strategy. The proposed strategy is implemented with an echo state network on an octopu...
Octopuses have a unique flexible body and unusual morphology, but nevertheless they are undoubtedly ...
This chapter reports on the conceptual design of an octopus-inspired robot. The investigation starte...
The octopus is a marine animal whose body has no rigid structures. It has eight arms mainly composed...
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 improvemen...
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 a locomotion strategy for a six-limb robot inspired by the octopus is shown. A tight r...
Biological and artificial agents are faced with many of the same computational and mechanical proble...
The complex motion abilities of the Octopus vulgaris have been an intriguing research topic for biol...
AbstractThis paper proposes a dynamic model for a multiple continuum arm robot inspired by live octo...
The behaviors of the animals or embodied agents are characterized by the dynamic coupling between th...
The octopus is an interesting model for the development of soft robotics, due to its high deformabil...
Octopuses have a unique flexible body and unusual morphology, but nevertheless they are undoubtedly ...
This chapter reports on the conceptual design of an octopus-inspired robot. The investigation starte...
The octopus is a marine animal whose body has no rigid structures. It has eight arms mainly composed...
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 improvemen...
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 a locomotion strategy for a six-limb robot inspired by the octopus is shown. A tight r...
Biological and artificial agents are faced with many of the same computational and mechanical proble...
The complex motion abilities of the Octopus vulgaris have been an intriguing research topic for biol...
AbstractThis paper proposes a dynamic model for a multiple continuum arm robot inspired by live octo...
The behaviors of the animals or embodied agents are characterized by the dynamic coupling between th...
The octopus is an interesting model for the development of soft robotics, due to its high deformabil...
Octopuses have a unique flexible body and unusual morphology, but nevertheless they are undoubtedly ...
This chapter reports on the conceptual design of an octopus-inspired robot. The investigation starte...
The octopus is a marine animal whose body has no rigid structures. It has eight arms mainly composed...