International audienceRobotic systems evolving in hazardous and harsh environment are prone to mission failure or system loss in presence of faults. This paper presents a fault tolerant methodology, implemented into a control architecture of an underwater robot that executes biological monitoring missions. High level constraint violations (mission, safety, energy, time and localization) and low level faults (software and hardware faults) are considered using a method based on fault trees. These undesirable events are detected and treated by a fault tolerant module that decides to recover at low level or to give a feedback to the mission manager which selects the high level reaction. This fault tolerant architecture has been tested on real f...
As robot tasks in space, nuclear, and medical environments become more widespread, the issues of rel...
An active fault tolerant control scheme for an underwater remotely operated vehicle is proposed in t...
Fault tolerance is of increasing importance for modern robots. The ability to detect and tolerate fa...
International audienceRobotic systems evolving in hazardous and harsh environment are prone to missi...
Fault tolerance is an essential factor in ensuring successful autonomous systems, especially for rob...
An active fault tolerant control technique for Underwater Remotely Operated Vehicles is proposed in ...
Fault tolerance is increasingly important in modern autonomous or industrial robots. The ability to ...
An active failure and fault tolerant control scheme for an underwater remotely operated vehicle is p...
Fault tolerance is increasingly important for robots, especially those in remote or hazardous enviro...
Fault tolerance is increasingly important for robots, especially those in remote or hazardous enviro...
In this paper, we present a two stages actuator Fault Tolerant Control (FTC) strategy for the trajec...
Robotic systems have experienced exponential growth thanks to their incredible adaptability. Modern ...
International audienceReal long-term, complex and autonomous mission is still a challenge for roboti...
This paper describes the concept, design, and features of a fault-tolerant intelligent robotic contr...
International audienceThis paper presents a generic approach to specify a fault tolerant robot contr...
As robot tasks in space, nuclear, and medical environments become more widespread, the issues of rel...
An active fault tolerant control scheme for an underwater remotely operated vehicle is proposed in t...
Fault tolerance is of increasing importance for modern robots. The ability to detect and tolerate fa...
International audienceRobotic systems evolving in hazardous and harsh environment are prone to missi...
Fault tolerance is an essential factor in ensuring successful autonomous systems, especially for rob...
An active fault tolerant control technique for Underwater Remotely Operated Vehicles is proposed in ...
Fault tolerance is increasingly important in modern autonomous or industrial robots. The ability to ...
An active failure and fault tolerant control scheme for an underwater remotely operated vehicle is p...
Fault tolerance is increasingly important for robots, especially those in remote or hazardous enviro...
Fault tolerance is increasingly important for robots, especially those in remote or hazardous enviro...
In this paper, we present a two stages actuator Fault Tolerant Control (FTC) strategy for the trajec...
Robotic systems have experienced exponential growth thanks to their incredible adaptability. Modern ...
International audienceReal long-term, complex and autonomous mission is still a challenge for roboti...
This paper describes the concept, design, and features of a fault-tolerant intelligent robotic contr...
International audienceThis paper presents a generic approach to specify a fault tolerant robot contr...
As robot tasks in space, nuclear, and medical environments become more widespread, the issues of rel...
An active fault tolerant control scheme for an underwater remotely operated vehicle is proposed in t...
Fault tolerance is of increasing importance for modern robots. The ability to detect and tolerate fa...