In this paper, we explore the feasibility of controlling an Underwater Autonomous Vehicle (AUV) from a base station, via a multi-hop wireless control channel. As a first step, we identify which networking and data-link protocols can be employed in this system. Then, we design a simple but effective routing protocol for this scenario. Finally, we simulate the performance of the system during missions of interest, and conclude by discussing the effectiveness of wireless multi-hop control methods for AUVs
In this paper, we propose a data-gathering scheme for hierarchical underwater sensor networks, where...
Underwater acoustic networks can be quite effective to establish communication links between auton...
Research regarding AUVs has increased over the past decades. The interest is driven by the possibili...
In this paper, we explore the feasibility of controlling an Underwater Autonomous Vehicle (AUV) from...
In this paper, we describe an underwater multi-hop network scenario based only on acoustic modems op...
Nowadays, the increasing availability of commercial off-the-shelf underwater acoustic and non-acoust...
In this paper, we explore the possibility of controlling a Remotely Operated Vehicle (ROV) via a ful...
The use of an autonomous surface vehicle as an auxiliary agent to improve connectivity in a network ...
The study of underwater environments is a challenging task that can lead to discoveries in many scie...
© 2016 IEEE. Efficient data communication among autonomous under-water vehicles (AUVs) is difficult....
Underwater control applications, such as control of Autonomous Underwater Vehicles (AUV)s, have rece...
Oceanographic data gathering techniques are moving away from simple sensors completely under the con...
Thesis (Ph. D.)--Joint Program in Applied Ocean Science and Engineering (Massachusetts Institute of ...
Underwater control applications, especially ones using autonomous underwater vehicles (AUVs) have be...
Communication underwater is challenging because of the inherent characteristics of the media. First,...
In this paper, we propose a data-gathering scheme for hierarchical underwater sensor networks, where...
Underwater acoustic networks can be quite effective to establish communication links between auton...
Research regarding AUVs has increased over the past decades. The interest is driven by the possibili...
In this paper, we explore the feasibility of controlling an Underwater Autonomous Vehicle (AUV) from...
In this paper, we describe an underwater multi-hop network scenario based only on acoustic modems op...
Nowadays, the increasing availability of commercial off-the-shelf underwater acoustic and non-acoust...
In this paper, we explore the possibility of controlling a Remotely Operated Vehicle (ROV) via a ful...
The use of an autonomous surface vehicle as an auxiliary agent to improve connectivity in a network ...
The study of underwater environments is a challenging task that can lead to discoveries in many scie...
© 2016 IEEE. Efficient data communication among autonomous under-water vehicles (AUVs) is difficult....
Underwater control applications, such as control of Autonomous Underwater Vehicles (AUV)s, have rece...
Oceanographic data gathering techniques are moving away from simple sensors completely under the con...
Thesis (Ph. D.)--Joint Program in Applied Ocean Science and Engineering (Massachusetts Institute of ...
Underwater control applications, especially ones using autonomous underwater vehicles (AUVs) have be...
Communication underwater is challenging because of the inherent characteristics of the media. First,...
In this paper, we propose a data-gathering scheme for hierarchical underwater sensor networks, where...
Underwater acoustic networks can be quite effective to establish communication links between auton...
Research regarding AUVs has increased over the past decades. The interest is driven by the possibili...