AbstractMoving beyond the traditional scope of cyberphysical systems this work presents μAutonomy, a novel proposal in the field of connected intelligent actuating objects. In this paper, we identify and study the implications of controlling moveable objects in a cyberphysical environment. This kind of environment is rapidly gaining attention in applications that include control of unmanned aerial vehicles, high altitude orbit control of robotic exploration probes, or robotic tele-diagnostics. Our work introduces a mechanism that greatly improves the operation of actuating objects over wireless links of varying quality. The proposed approach successfully compensates for communications impairments by tracking the system state and deciding co...
Our brain is constantly processing a vast amount of sensory and intrinsic information in order to un...
We present a novel “participatory telerobotics ” system that generalizes the existing concept of par...
In order to enable robots to execute highly dynamic tasks in dangerous or remote environments, a sem...
AbstractMoving beyond the traditional scope of cyberphysical systems this work presents μAutonomy, a...
Based on analysis of opportunities of usage existing models, methods and techniques for on-line moni...
Cyber-physical systems (CPS) integrate physical processes with computing and communication to autono...
The unpredictability of real world environments makes it necessary to maintain the continuous influe...
Unmanned Aerial Vehicles(UAVs) are attaining more and more maneuverability and sensory ability as a ...
There is a growing need for humans to perform complex remote operations and to extend the intelligen...
International audienceThis paper presents the design of a decentralized connectivity-maintenance alg...
Communication system design has been traditionally guided by task-agnostic principles, which aim at ...
Guiding a remote vehicle when real time image transmission is not possible is an important problem i...
Abstract—Current artificial intelligence (AI) control paradigms tend to be one-to-one in nature and ...
Military unmanned aerial system technology, remote sensing systems, and artificial intelligence all ...
Internet based tele-operation systems utilize the ubiquitous connectivity and low cost bandwidth off...
Our brain is constantly processing a vast amount of sensory and intrinsic information in order to un...
We present a novel “participatory telerobotics ” system that generalizes the existing concept of par...
In order to enable robots to execute highly dynamic tasks in dangerous or remote environments, a sem...
AbstractMoving beyond the traditional scope of cyberphysical systems this work presents μAutonomy, a...
Based on analysis of opportunities of usage existing models, methods and techniques for on-line moni...
Cyber-physical systems (CPS) integrate physical processes with computing and communication to autono...
The unpredictability of real world environments makes it necessary to maintain the continuous influe...
Unmanned Aerial Vehicles(UAVs) are attaining more and more maneuverability and sensory ability as a ...
There is a growing need for humans to perform complex remote operations and to extend the intelligen...
International audienceThis paper presents the design of a decentralized connectivity-maintenance alg...
Communication system design has been traditionally guided by task-agnostic principles, which aim at ...
Guiding a remote vehicle when real time image transmission is not possible is an important problem i...
Abstract—Current artificial intelligence (AI) control paradigms tend to be one-to-one in nature and ...
Military unmanned aerial system technology, remote sensing systems, and artificial intelligence all ...
Internet based tele-operation systems utilize the ubiquitous connectivity and low cost bandwidth off...
Our brain is constantly processing a vast amount of sensory and intrinsic information in order to un...
We present a novel “participatory telerobotics ” system that generalizes the existing concept of par...
In order to enable robots to execute highly dynamic tasks in dangerous or remote environments, a sem...