Determining trajectories in mobile robot navigation tasks is a difficult process to apply with conventional methods. Therefore, intelligent techniques produce highly effective results in trajectory optimization and orientation prediction. In this study, two different ANN (Artificial Neural Network) structures have been developed for the navigation prediction of the SCITOS G5 mobile robot. For this aim, RBF (Radial Basis Function) and MLP (Multi-Layer Perceptron) structures were used. Information obtained from 24 sensors of the robot was used as network inputs and network output determines robot direction. Accordingly, structures that have 24 inputs and one output were created. The best performance network structures obtained were compared a...
Mathematically, the motion of a robot manipulator can be computed through the integration of kinemat...
Recently, navigation in an unknown environment without hitting obstacles was considered a big challe...
In this paper we propose a neural network based navigation for intelligent autonomous mobile robots....
Mobile robot are widely applied in various aspect of human life. The main issue of this type of rob...
In this chapter, the carrying of an object at a workspace, which was perceived by vision, to another...
Navigation is a major challenge for autonomous, mobile robots. The problem can basically be divided ...
In this article, a new approach to the problem of indoor navigation based on ultrasonic sensors is p...
In this document, I describe possibilities of mobile robot navigation. This problems are solving man...
in this present work we present a neural network navigation approach. To deal with cognitive asks su...
A review is given on the use of neural networks for mobile robots and autonomous vehicles. The paper...
In the past, a robotic arm needed to be taught to carry out certain tasks, such as selecting a sin...
In this paper, a set of Radial Basis Function (RBF)neural networks, capable to learn the kinematic a...
Robotic navigation has been an area of intense research since the onset of mobile robot development....
One of the most used artificial neural networks (ANNs) models is the well-known Multi-Layer Perceptr...
A Polynomial-Neural-Network-based (PNN-based) path planning with an obstacle avoidance scheme is pro...
Mathematically, the motion of a robot manipulator can be computed through the integration of kinemat...
Recently, navigation in an unknown environment without hitting obstacles was considered a big challe...
In this paper we propose a neural network based navigation for intelligent autonomous mobile robots....
Mobile robot are widely applied in various aspect of human life. The main issue of this type of rob...
In this chapter, the carrying of an object at a workspace, which was perceived by vision, to another...
Navigation is a major challenge for autonomous, mobile robots. The problem can basically be divided ...
In this article, a new approach to the problem of indoor navigation based on ultrasonic sensors is p...
In this document, I describe possibilities of mobile robot navigation. This problems are solving man...
in this present work we present a neural network navigation approach. To deal with cognitive asks su...
A review is given on the use of neural networks for mobile robots and autonomous vehicles. The paper...
In the past, a robotic arm needed to be taught to carry out certain tasks, such as selecting a sin...
In this paper, a set of Radial Basis Function (RBF)neural networks, capable to learn the kinematic a...
Robotic navigation has been an area of intense research since the onset of mobile robot development....
One of the most used artificial neural networks (ANNs) models is the well-known Multi-Layer Perceptr...
A Polynomial-Neural-Network-based (PNN-based) path planning with an obstacle avoidance scheme is pro...
Mathematically, the motion of a robot manipulator can be computed through the integration of kinemat...
Recently, navigation in an unknown environment without hitting obstacles was considered a big challe...
In this paper we propose a neural network based navigation for intelligent autonomous mobile robots....