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Ayodeji, Opeyemi Abioye; Prior, Stephen; Thomas, Trevor; Saddington, Peter; Ramchurn, Sarvapali D.
The multimodal speech and visual gesture (mSVG) control model for a practical patrol, search, and rescue aerobot Proceedings Article
In: 19th Towards Autonomous Robotic Systems (TAROS) Conference 2018, pp. 423–437, Springer, 2018.
Abstract | Links | BibTeX | Tags: Aerobot (Aerial Robot), HCI (Human Computer Interaction), MCPU (Multimodal Control Processing Unit), mSVG (multimodal speech and visual gesture), nCA (Navigational Control Autonomy), SBC (Single Board Computer), Speech, visual gesture
@inproceedings{soton418869,
title = {The multimodal speech and visual gesture (mSVG) control model for a practical patrol, search, and rescue aerobot},
author = {Opeyemi Abioye Ayodeji and Stephen Prior and Trevor Thomas and Peter Saddington and Sarvapali D. Ramchurn},
url = {https://eprints.soton.ac.uk/418869/},
year = {2018},
date = {2018-07-01},
booktitle = {19th Towards Autonomous Robotic Systems (TAROS) Conference 2018},
volume = {10965},
pages = {423–437},
publisher = {Springer},
abstract = {This paper describes a model of the multimodal speech and visual gesture (mSVG) control for aerobots operating at higher nCA autonomy levels, within the context of a patrol, search, and rescue application. The developed mSVG control architecture, its mathematical navigation model, and some high level command operation models were discussed. This was successfully tested using both MATLAB simulation and python based ROS Gazebo UAV simulations. Some limitations were identified, which formed the basis for the further works presented.},
keywords = {Aerobot (Aerial Robot), HCI (Human Computer Interaction), MCPU (Multimodal Control Processing Unit), mSVG (multimodal speech and visual gesture), nCA (Navigational Control Autonomy), SBC (Single Board Computer), Speech, visual gesture},
pubstate = {published},
tppubtype = {inproceedings}
}
Ayodeji, Opeyemi Abioye; Prior, Stephen; Thomas, Trevor; Saddington, Peter; Ramchurn, Sarvapali D.
The multimodal speech and visual gesture (mSVG) control model for a practical patrol, search, and rescue aerobot Proceedings Article
In: 19th Towards Autonomous Robotic Systems (TAROS) Conference 2018, pp. 423–437, Springer, 2018.
@inproceedings{soton418869,
title = {The multimodal speech and visual gesture (mSVG) control model for a practical patrol, search, and rescue aerobot},
author = {Opeyemi Abioye Ayodeji and Stephen Prior and Trevor Thomas and Peter Saddington and Sarvapali D. Ramchurn},
url = {https://eprints.soton.ac.uk/418869/},
year = {2018},
date = {2018-07-01},
booktitle = {19th Towards Autonomous Robotic Systems (TAROS) Conference 2018},
volume = {10965},
pages = {423–437},
publisher = {Springer},
abstract = {This paper describes a model of the multimodal speech and visual gesture (mSVG) control for aerobots operating at higher nCA autonomy levels, within the context of a patrol, search, and rescue application. The developed mSVG control architecture, its mathematical navigation model, and some high level command operation models were discussed. This was successfully tested using both MATLAB simulation and python based ROS Gazebo UAV simulations. Some limitations were identified, which formed the basis for the further works presented.},
keywords = {},
pubstate = {published},
tppubtype = {inproceedings}
}
Ayodeji, Opeyemi Abioye; Prior, Stephen; Thomas, Trevor; Saddington, Peter; Ramchurn, Sarvapali D.
The multimodal speech and visual gesture (mSVG) control model for a practical patrol, search, and rescue aerobot Proceedings Article
In: 19th Towards Autonomous Robotic Systems (TAROS) Conference 2018, pp. 423–437, Springer, 2018.
Abstract | Links | BibTeX | Tags: Aerobot (Aerial Robot), HCI (Human Computer Interaction), MCPU (Multimodal Control Processing Unit), mSVG (multimodal speech and visual gesture), nCA (Navigational Control Autonomy), SBC (Single Board Computer), Speech, visual gesture
@inproceedings{soton418869,
title = {The multimodal speech and visual gesture (mSVG) control model for a practical patrol, search, and rescue aerobot},
author = {Opeyemi Abioye Ayodeji and Stephen Prior and Trevor Thomas and Peter Saddington and Sarvapali D. Ramchurn},
url = {https://eprints.soton.ac.uk/418869/},
year = {2018},
date = {2018-07-01},
booktitle = {19th Towards Autonomous Robotic Systems (TAROS) Conference 2018},
volume = {10965},
pages = {423–437},
publisher = {Springer},
abstract = {This paper describes a model of the multimodal speech and visual gesture (mSVG) control for aerobots operating at higher nCA autonomy levels, within the context of a patrol, search, and rescue application. The developed mSVG control architecture, its mathematical navigation model, and some high level command operation models were discussed. This was successfully tested using both MATLAB simulation and python based ROS Gazebo UAV simulations. Some limitations were identified, which formed the basis for the further works presented.},
keywords = {Aerobot (Aerial Robot), HCI (Human Computer Interaction), MCPU (Multimodal Control Processing Unit), mSVG (multimodal speech and visual gesture), nCA (Navigational Control Autonomy), SBC (Single Board Computer), Speech, visual gesture},
pubstate = {published},
tppubtype = {inproceedings}
}
Ayodeji, Opeyemi Abioye; Prior, Stephen; Thomas, Trevor; Saddington, Peter; Ramchurn, Sarvapali D.
The multimodal speech and visual gesture (mSVG) control model for a practical patrol, search, and rescue aerobot Proceedings Article
In: 19th Towards Autonomous Robotic Systems (TAROS) Conference 2018, pp. 423–437, Springer, 2018.
@inproceedings{soton418869,
title = {The multimodal speech and visual gesture (mSVG) control model for a practical patrol, search, and rescue aerobot},
author = {Opeyemi Abioye Ayodeji and Stephen Prior and Trevor Thomas and Peter Saddington and Sarvapali D. Ramchurn},
url = {https://eprints.soton.ac.uk/418869/},
year = {2018},
date = {2018-07-01},
booktitle = {19th Towards Autonomous Robotic Systems (TAROS) Conference 2018},
volume = {10965},
pages = {423–437},
publisher = {Springer},
abstract = {This paper describes a model of the multimodal speech and visual gesture (mSVG) control for aerobots operating at higher nCA autonomy levels, within the context of a patrol, search, and rescue application. The developed mSVG control architecture, its mathematical navigation model, and some high level command operation models were discussed. This was successfully tested using both MATLAB simulation and python based ROS Gazebo UAV simulations. Some limitations were identified, which formed the basis for the further works presented.},
keywords = {},
pubstate = {published},
tppubtype = {inproceedings}
}
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Ayodeji, Opeyemi Abioye; Prior, Stephen; Thomas, Trevor; Saddington, Peter; Ramchurn, Sarvapali D.
The multimodal speech and visual gesture (mSVG) control model for a practical patrol, search, and rescue aerobot Proceedings Article
In: 19th Towards Autonomous Robotic Systems (TAROS) Conference 2018, pp. 423–437, Springer, 2018.
@inproceedings{soton418869,
title = {The multimodal speech and visual gesture (mSVG) control model for a practical patrol, search, and rescue aerobot},
author = {Opeyemi Abioye Ayodeji and Stephen Prior and Trevor Thomas and Peter Saddington and Sarvapali D. Ramchurn},
url = {https://eprints.soton.ac.uk/418869/},
year = {2018},
date = {2018-07-01},
booktitle = {19th Towards Autonomous Robotic Systems (TAROS) Conference 2018},
volume = {10965},
pages = {423–437},
publisher = {Springer},
abstract = {This paper describes a model of the multimodal speech and visual gesture (mSVG) control for aerobots operating at higher nCA autonomy levels, within the context of a patrol, search, and rescue application. The developed mSVG control architecture, its mathematical navigation model, and some high level command operation models were discussed. This was successfully tested using both MATLAB simulation and python based ROS Gazebo UAV simulations. Some limitations were identified, which formed the basis for the further works presented.},
keywords = {},
pubstate = {published},
tppubtype = {inproceedings}
}