Javascript must be enabled to continue!
Trajectory Planning of Robot Manipulator Based on RBF Neural Network
View through CrossRef
Robot manipulator trajectory planning is one of the core robot technologies, and the design of controllers can improve the trajectory accuracy of manipulators. However, most of the controllers designed at this stage have not been able to effectively solve the nonlinearity and uncertainty problems of the high degree of freedom manipulators. In order to overcome these problems and improve the trajectory performance of the high degree of freedom manipulators, a manipulator trajectory planning method based on a radial basis function (RBF) neural network is proposed in this work. Firstly, a 6-DOF robot experimental platform was designed and built. Secondly, the overall manipulator trajectory planning framework was designed, which included manipulator kinematics and dynamics and a quintic polynomial interpolation algorithm. Then, an adaptive robust controller based on an RBF neural network was designed to deal with the nonlinearity and uncertainty problems, and Lyapunov theory was used to ensure the stability of the manipulator control system and the convergence of the tracking error. Finally, to test the method, a simulation and experiment were carried out. The simulation results showed that the proposed method improved the response and tracking performance to a certain extent, reduced the adjustment time and chattering, and ensured the smooth operation of the manipulator in the course of trajectory planning. The experimental results verified the effectiveness and feasibility of the method proposed in this paper.
Title: Trajectory Planning of Robot Manipulator Based on RBF Neural Network
Description:
Robot manipulator trajectory planning is one of the core robot technologies, and the design of controllers can improve the trajectory accuracy of manipulators.
However, most of the controllers designed at this stage have not been able to effectively solve the nonlinearity and uncertainty problems of the high degree of freedom manipulators.
In order to overcome these problems and improve the trajectory performance of the high degree of freedom manipulators, a manipulator trajectory planning method based on a radial basis function (RBF) neural network is proposed in this work.
Firstly, a 6-DOF robot experimental platform was designed and built.
Secondly, the overall manipulator trajectory planning framework was designed, which included manipulator kinematics and dynamics and a quintic polynomial interpolation algorithm.
Then, an adaptive robust controller based on an RBF neural network was designed to deal with the nonlinearity and uncertainty problems, and Lyapunov theory was used to ensure the stability of the manipulator control system and the convergence of the tracking error.
Finally, to test the method, a simulation and experiment were carried out.
The simulation results showed that the proposed method improved the response and tracking performance to a certain extent, reduced the adjustment time and chattering, and ensured the smooth operation of the manipulator in the course of trajectory planning.
The experimental results verified the effectiveness and feasibility of the method proposed in this paper.
Related Results
Designing a robot to evaluate group formations
Designing a robot to evaluate group formations
Robots are making their way in environments inhabited by people. Whether in domestic or public crowded environments, robots should take into consideration social norms and behavior...
PELATIHAN PERANCANGAN ROBOT BERODA DENGAN DETEKTOR TEPI MEJA PADA SEKOLAH SMA TARSISIUS 1 DAN SMA TRI RATNA
PELATIHAN PERANCANGAN ROBOT BERODA DENGAN DETEKTOR TEPI MEJA PADA SEKOLAH SMA TARSISIUS 1 DAN SMA TRI RATNA
Wheeled robot is a robot which movement is managed by the rotation of Direct Current (DC) motors. These motors are connected to wheels. Wheeled robot usually is used as a teaching ...
Spectral-Similarity-Based Kernel of SVM for Hyperspectral Image Classification
Spectral-Similarity-Based Kernel of SVM for Hyperspectral Image Classification
Spectral similarity measures can be regarded as potential metrics for kernel functions, and can be used to generate spectral-similarity-based kernels. However, spectral-similarity-...
Design of Picking Robot Manipulator Control System Based on Fuzzy Compensation RBF Neural Network
Design of Picking Robot Manipulator Control System Based on Fuzzy Compensation RBF Neural Network
Industrial manipulator occupies a very important position in industrial production. The tracking control of its control system and joint trajectory has always been a research hotsp...
Sistem Kendali Hybrid Fuzzy-Pid pada Kinematika Robot Berkaki 4 Menggunakan Sensor Gyroscope
Sistem Kendali Hybrid Fuzzy-Pid pada Kinematika Robot Berkaki 4 Menggunakan Sensor Gyroscope
<p><em>Legged robots have attracted the attention of researchers because of their superior adaptation to complex environments compared to wheeled robots. Legged robots ...
-Analisis Indikasi Kecurangan Laporan Keuangan Menggunakan Model Beneish M-Score pada Perusahaan Property dan Real Estate
-Analisis Indikasi Kecurangan Laporan Keuangan Menggunakan Model Beneish M-Score pada Perusahaan Property dan Real Estate
This research aims to predict, analyze and identify fraudulent financial reports using the Benish M-Score method. The data collection method in this research is documentation. The ...
The robot null space : new uses for new robotic systems
The robot null space : new uses for new robotic systems
This doctoral thesis deals with the use of the robot redundancy to execute several tasks simultaneously at different levels of priority and its application to two different robotic...
Improvement of Trajectory Tracking by Robot Manipulator Based on a New Co-Operative Optimization Algorithm
Improvement of Trajectory Tracking by Robot Manipulator Based on a New Co-Operative Optimization Algorithm
The tracking of a predefined trajectory with less error, system-settling time, system, and overshoot is the main challenge with the robot-manipulator controller. In this regard, th...

