Home

Melodrámai Megbízható védelem puma 560 torque coliolis Előre Néni elherdál

Trajectory tracking control based on non-singular fractional derivatives  for the PUMA 560 robot arm | Multibody System Dynamics
Trajectory tracking control based on non-singular fractional derivatives for the PUMA 560 robot arm | Multibody System Dynamics

Robust Control Strategies of Puma 560 Robot Manipulator | SpringerLink
Robust Control Strategies of Puma 560 Robot Manipulator | SpringerLink

PUMA-560 Robot Manipulator Position Computed Torque Control Methods Using  MATLAB/SIMULINK and Their Integration into Graduate Nonlinear Control and  MATLAB Courses | PDF
PUMA-560 Robot Manipulator Position Computed Torque Control Methods Using MATLAB/SIMULINK and Their Integration into Graduate Nonlinear Control and MATLAB Courses | PDF

Multi-objective biogeography-based optimization technique for tuning PUMA  560'S controller | Nonlinear Dynamics
Multi-objective biogeography-based optimization technique for tuning PUMA 560'S controller | Nonlinear Dynamics

Design of Prisoner's dilemma based fuzzy logic computed torque controller  with Lyapunov synthesis linguistic model for PUMA-560 robot  manipulator - IOS Press
Design of Prisoner's dilemma based fuzzy logic computed torque controller with Lyapunov synthesis linguistic model for PUMA-560 robot manipulator - IOS Press

Electronics | Free Full-Text | Two Open Solutions for Industrial Robot  Control: The Case of PUMA 560
Electronics | Free Full-Text | Two Open Solutions for Industrial Robot Control: The Case of PUMA 560

Sensors | Free Full-Text | Trajectory Modeling by Distributed Gaussian  Processes in Multiagent Systems
Sensors | Free Full-Text | Trajectory Modeling by Distributed Gaussian Processes in Multiagent Systems

Design Stable Controller for PUMA 560 Robot with PID and Sliding Mode  Controller Based on PSO Algorithm
Design Stable Controller for PUMA 560 Robot with PID and Sliding Mode Controller Based on PSO Algorithm

Block diagram of PD-computed torque controller (PD-CTC) | Download  Scientific Diagram
Block diagram of PD-computed torque controller (PD-CTC) | Download Scientific Diagram

Six Degrees-of-Freedom Task Space Control for the PUMA 560 Manipulator: An  Experimental Study
Six Degrees-of-Freedom Task Space Control for the PUMA 560 Manipulator: An Experimental Study

Computed torque control of a Puma 560 robot | Collimator
Computed torque control of a Puma 560 robot | Collimator

PUMA-560 Robot Manipulator Position Sliding Mode Control Methods Using  MATLAB/SIMULINK and Their Integration into Graduate/Undergraduate Nonlinear  Control, Robotics and MATLAB Courses | PDF
PUMA-560 Robot Manipulator Position Sliding Mode Control Methods Using MATLAB/SIMULINK and Their Integration into Graduate/Undergraduate Nonlinear Control, Robotics and MATLAB Courses | PDF

Computed torque control of a Puma 560 robot | Collimator
Computed torque control of a Puma 560 robot | Collimator

Actuator Properties for the PUMA 560. Peak Torque No Load Speed | Download  Table
Actuator Properties for the PUMA 560. Peak Torque No Load Speed | Download Table

Neuro-fuzzy inverse model control structure of robotic manipulators  utilized for physiotherapy applications - ScienceDirect
Neuro-fuzzy inverse model control structure of robotic manipulators utilized for physiotherapy applications - ScienceDirect

Mechanical configuration of links 2 and 3 of PUMA 560 arm (a) and an... |  Download Scientific Diagram
Mechanical configuration of links 2 and 3 of PUMA 560 arm (a) and an... | Download Scientific Diagram

Computed torque control of a Puma 560 robot | Collimator
Computed torque control of a Puma 560 robot | Collimator

Computed torque control of a Puma 560 robot | Collimator
Computed torque control of a Puma 560 robot | Collimator

3 PUMA 560 manipulator home position in experiment. The six servo... |  Download Scientific Diagram
3 PUMA 560 manipulator home position in experiment. The six servo... | Download Scientific Diagram

Neuro-fuzzy inverse model control structure of robotic manipulators  utilized for physiotherapy applications - ScienceDirect
Neuro-fuzzy inverse model control structure of robotic manipulators utilized for physiotherapy applications - ScienceDirect

A 2-DOF part of vertically revolute robot PUMA-560. | Download Scientific  Diagram
A 2-DOF part of vertically revolute robot PUMA-560. | Download Scientific Diagram

One-muscle implementation on joint i of a PUMA 560 robot. | Download  Scientific Diagram
One-muscle implementation on joint i of a PUMA 560 robot. | Download Scientific Diagram

Computed torque control of a Puma 560 robot | Collimator
Computed torque control of a Puma 560 robot | Collimator

PDF) Fuzzy logic controller design for PUMA 560 robot manipulator
PDF) Fuzzy logic controller design for PUMA 560 robot manipulator

PUMA-560 Robot Manipulator Position Computed Torque Control Methods Using  MATLAB/SIMULINK and Their Integration into Graduate Nonlinear Control and  MATLAB Courses | PDF
PUMA-560 Robot Manipulator Position Computed Torque Control Methods Using MATLAB/SIMULINK and Their Integration into Graduate Nonlinear Control and MATLAB Courses | PDF

PUMA-560 Robot Manipulator Position Computed Torque Control Methods Using  MATLAB/SIMULINK and Their Integration into Graduate Nonlinear Control and  MATLAB Courses | PDF
PUMA-560 Robot Manipulator Position Computed Torque Control Methods Using MATLAB/SIMULINK and Their Integration into Graduate Nonlinear Control and MATLAB Courses | PDF

Electronics | Free Full-Text | Two Open Solutions for Industrial Robot  Control: The Case of PUMA 560
Electronics | Free Full-Text | Two Open Solutions for Industrial Robot Control: The Case of PUMA 560

Self-Tuning Fuzzy Task Space Controller for Puma 560 Robot | Journal of  Electrical Engineering & Technology
Self-Tuning Fuzzy Task Space Controller for Puma 560 Robot | Journal of Electrical Engineering & Technology

A 2-DOF part of vertically revolute robot PUMA-560. | Download Scientific  Diagram
A 2-DOF part of vertically revolute robot PUMA-560. | Download Scientific Diagram