In this work we propose a hierarchical architecture which constructs internal models of a robot environment for goal-oriented navigation by an imitation learning process. The proposed architecture is based on the Reservoir Computing paradigm for training Recurrent Neural Networks (RNN). It is composed of two randomly generated RNNs (called reservoirs), one for modeling the localization capability and one for learning the navigation skill. The localization module is trained to detect the current and previously visited robot rooms based only on 8 noisy infra-red distance sensors. These predictions together with distance sensors and the desired goal location are used by the navigation network to actually steer the robot through the environment...
Reservoir Computing (RC) uses a randomly created Recurrent Neural Network as a reservoir of rich dyn...
This work proposes a hierarchical biologically-inspired architecture for learning sensor-based spati...
Animals such as rats have innate and robust localization capabilities which allow them to navigate t...
In this work we propose a hierarchical architecture which constructs internal models of a robot envi...
Abstract — In this work we propose a hierarchical architec-ture which constructs internal models of ...
In this work we propose a hierarchical architec- ture which constructs internal models of a robot en...
Abstract—This work proposes a general Reservoir Computing (RC) learning framework which can be used ...
Autonomous mobile robots must accomplish tasks in unknown and noisy environments. In this context, l...
The design of an autonomous navigation system for mobile robots can be a tough task. Noisy sensors, ...
The design of an autonomous navigation system for mobile robots can be a tough task. Noisy sensors, ...
Abstract –. Autonomous robot navigation in partially observable environments is a complex task becau...
Autonomous robot navigation in partially observable environments is a complex task because the state...
The design of an autonomous navigation system for mo-bile robots can be a tough task. Noisy sensors,...
Reservoir Computing (RC) uses a randomly created recur- rent neural network where only a linear read...
Reservoir computing (RC) uses a randomly created Recurrent Neural Network as a reservoir of rich dyn...
Reservoir Computing (RC) uses a randomly created Recurrent Neural Network as a reservoir of rich dyn...
This work proposes a hierarchical biologically-inspired architecture for learning sensor-based spati...
Animals such as rats have innate and robust localization capabilities which allow them to navigate t...
In this work we propose a hierarchical architecture which constructs internal models of a robot envi...
Abstract — In this work we propose a hierarchical architec-ture which constructs internal models of ...
In this work we propose a hierarchical architec- ture which constructs internal models of a robot en...
Abstract—This work proposes a general Reservoir Computing (RC) learning framework which can be used ...
Autonomous mobile robots must accomplish tasks in unknown and noisy environments. In this context, l...
The design of an autonomous navigation system for mobile robots can be a tough task. Noisy sensors, ...
The design of an autonomous navigation system for mobile robots can be a tough task. Noisy sensors, ...
Abstract –. Autonomous robot navigation in partially observable environments is a complex task becau...
Autonomous robot navigation in partially observable environments is a complex task because the state...
The design of an autonomous navigation system for mo-bile robots can be a tough task. Noisy sensors,...
Reservoir Computing (RC) uses a randomly created recur- rent neural network where only a linear read...
Reservoir computing (RC) uses a randomly created Recurrent Neural Network as a reservoir of rich dyn...
Reservoir Computing (RC) uses a randomly created Recurrent Neural Network as a reservoir of rich dyn...
This work proposes a hierarchical biologically-inspired architecture for learning sensor-based spati...
Animals such as rats have innate and robust localization capabilities which allow them to navigate t...