© 2018 IEEE. The energy limitation of robotic networks has hindered search and rescue missions. In this paper, we propose a mission planning method that overcomes the energy limitation by deploying static charging stations. Taking the mission objectives and constraints into consideration, the proposed method provides working robot trajectories and charging station locations together to optimize the overall mission performance. The energy efficient trajectories for working robots considers the priority area to facilitate the smart energy cycling. In addition, a geographic limitation is considered when finding the locations of the charging stations. Simulation results demonstrate the developed method by Monte Carlo method and Gazebo simulatio...
Operation of autonomous underwater vehicles (AUVs) in large spatiotemporal missions is currently cha...
This paper proposes an alternative docking charger station for mobile robots. One crucial task in sw...
Energy autonomy is one of the main challenges in robot exploration. The Marsu fleet, a marsupial rob...
The success of numerous long-term robotic explorations in the air, on the ground, and under the wate...
Mobile robotics research and deployment is highly challenged by energy limitations, particularly in ...
© 2016 IEEE. The search mission for the missing MH370 airplane demonstrated that an autonomous under...
Mobile robots can be used in many applications, such as carpet cleaning, search and rescue, explorat...
Success of numerous long-term robotic explorations in air, on the ground, and under water is depende...
The growing demand for unmanned aerial vehicles (UAVs) is driven by their operational convenience, c...
As the development and use of multi-agent autonomous systems increases for use in applications such ...
Deploying large numbers of mobile robots which can interact with each other produces swarm intellige...
Teams of autonomous mobile robots wishing to sustain long term operation need a means of refueling. ...
Deploying large numbers of mobile robots which can interact with each other produces swarm intellige...
Wireless energy transfer (WET) is a ground-breaking technology for cutting the last wire between mob...
Many of the applications pertinent to unmanned vehicles, such as environmental research and analysis...
Operation of autonomous underwater vehicles (AUVs) in large spatiotemporal missions is currently cha...
This paper proposes an alternative docking charger station for mobile robots. One crucial task in sw...
Energy autonomy is one of the main challenges in robot exploration. The Marsu fleet, a marsupial rob...
The success of numerous long-term robotic explorations in the air, on the ground, and under the wate...
Mobile robotics research and deployment is highly challenged by energy limitations, particularly in ...
© 2016 IEEE. The search mission for the missing MH370 airplane demonstrated that an autonomous under...
Mobile robots can be used in many applications, such as carpet cleaning, search and rescue, explorat...
Success of numerous long-term robotic explorations in air, on the ground, and under water is depende...
The growing demand for unmanned aerial vehicles (UAVs) is driven by their operational convenience, c...
As the development and use of multi-agent autonomous systems increases for use in applications such ...
Deploying large numbers of mobile robots which can interact with each other produces swarm intellige...
Teams of autonomous mobile robots wishing to sustain long term operation need a means of refueling. ...
Deploying large numbers of mobile robots which can interact with each other produces swarm intellige...
Wireless energy transfer (WET) is a ground-breaking technology for cutting the last wire between mob...
Many of the applications pertinent to unmanned vehicles, such as environmental research and analysis...
Operation of autonomous underwater vehicles (AUVs) in large spatiotemporal missions is currently cha...
This paper proposes an alternative docking charger station for mobile robots. One crucial task in sw...
Energy autonomy is one of the main challenges in robot exploration. The Marsu fleet, a marsupial rob...