This book presents an Intelligent Control Architecture (ICA) to enable multiple collaborating marine vehicles to autonomously carry out underwater intervention missions. The presented ICA is generic in nature but aimed at a case study where a marine surface craft and an underwater vehicle are required to work cooperatively. It is shown that they are capable of cooperating autonomously towards the execution of complex activities since they have different but complementary capabilities. The ICA implementation is verified in simulation, and validated in trials by means of a team of autonomous marine robots. This book also presents architectural details and evaluation scenarios of the ICA, results of simulations and trials from different mariti...
As the Autonomous Underwater Vehicle (AUV) and Autonomous Surface Vehicle (ASV) platforms mature in ...
Almost every research project that focuses on the cooperation of autonomous robots for underwater op...
In this paper, an innovative hybrid control architecture for real-time control of autonomous robotic...
This book presents an Intelligent Control Architecture (ICA) to enable multiple collaborating marine...
This book presents an Intelligent Control Architecture (ICA) to enable multiple collaborating marine...
© 2014 Elsevier Inc. All rights reserved. Advanced ocean systems are increasing their capabilities a...
© 2014 Elsevier Inc. All rights reserved. Advanced ocean systems are increasing their capabilities a...
Autonomy for Marine Robots provides a timely and insightful overview of intelligent autonomy in mari...
An autonomous mobile robot must perform non- repetitive tasks in an imperfectly known environment an...
This research addresses the problem of coordinating multiple autonomous underwater vehicle (AUV) ope...
Scope: Unmanned marine vehicles (UMVs) include autonomous underwater vehicles, remotely operated veh...
This paper describes an autonomous Intelligent Controller (IC) architecture directly applicable to t...
The efforts in the development of Autonomous Unmanned Surface Vehicle (USV) has been growing. This i...
The efforts in the development of Autonomous Unmanned Surface Vehicle (USV) has been growing. This i...
This paper describes an autonomous Intelligent Controller (IC) architecture directly applicable to t...
As the Autonomous Underwater Vehicle (AUV) and Autonomous Surface Vehicle (ASV) platforms mature in ...
Almost every research project that focuses on the cooperation of autonomous robots for underwater op...
In this paper, an innovative hybrid control architecture for real-time control of autonomous robotic...
This book presents an Intelligent Control Architecture (ICA) to enable multiple collaborating marine...
This book presents an Intelligent Control Architecture (ICA) to enable multiple collaborating marine...
© 2014 Elsevier Inc. All rights reserved. Advanced ocean systems are increasing their capabilities a...
© 2014 Elsevier Inc. All rights reserved. Advanced ocean systems are increasing their capabilities a...
Autonomy for Marine Robots provides a timely and insightful overview of intelligent autonomy in mari...
An autonomous mobile robot must perform non- repetitive tasks in an imperfectly known environment an...
This research addresses the problem of coordinating multiple autonomous underwater vehicle (AUV) ope...
Scope: Unmanned marine vehicles (UMVs) include autonomous underwater vehicles, remotely operated veh...
This paper describes an autonomous Intelligent Controller (IC) architecture directly applicable to t...
The efforts in the development of Autonomous Unmanned Surface Vehicle (USV) has been growing. This i...
The efforts in the development of Autonomous Unmanned Surface Vehicle (USV) has been growing. This i...
This paper describes an autonomous Intelligent Controller (IC) architecture directly applicable to t...
As the Autonomous Underwater Vehicle (AUV) and Autonomous Surface Vehicle (ASV) platforms mature in ...
Almost every research project that focuses on the cooperation of autonomous robots for underwater op...
In this paper, an innovative hybrid control architecture for real-time control of autonomous robotic...