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

PDF] A Simulink-based robotic toolkit for simulation and control of the PUMA  560 robot manipulator | Semantic Scholar
PDF] A Simulink-based robotic toolkit for simulation and control of the PUMA 560 robot manipulator | Semantic Scholar

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

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

The Stanford Robotics Platforms: two holonomic platforms, each is... |  Download Scientific Diagram
The Stanford Robotics Platforms: two holonomic platforms, each is... | Download Scientific Diagram

The mobile manipulator under investigation: Puma 560 arm and Nomad... |  Download Scientific Diagram
The mobile manipulator under investigation: Puma 560 arm and Nomad... | Download Scientific Diagram

Format guide for AIRCC
Format guide for AIRCC

Controllers Tuning through Multi-objective Non-Dominated Sorting Genetic  Algorithms
Controllers Tuning through Multi-objective Non-Dominated Sorting Genetic Algorithms

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

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

Self-adaptive grey wolf optimization based adaptive fuzzy aided sliding  mode control for robotic manipulator. - Document - Gale Academic OneFile
Self-adaptive grey wolf optimization based adaptive fuzzy aided sliding mode control for robotic manipulator. - Document - Gale Academic OneFile

Figure 1 from A meta-study of PUMA 560 dynamics: A critical appraisal of  literature data | Semantic Scholar
Figure 1 from A meta-study of PUMA 560 dynamics: A critical appraisal of literature data | Semantic Scholar

Self-adaptive grey wolf optimization based adaptive fuzzy aided sliding  mode control for robotic manipulator. - Document - Gale Academic OneFile
Self-adaptive grey wolf optimization based adaptive fuzzy aided sliding mode control for robotic manipulator. - Document - Gale Academic OneFile

PUMA 560 Manipulator by Cem SÜÜLKER on Prezi Next
PUMA 560 Manipulator by Cem SÜÜLKER on Prezi Next

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

Applied Sciences | Free Full-Text | A Novel Fast Terminal Sliding Mode  Tracking Control Methodology for Robot Manipulators
Applied Sciences | Free Full-Text | A Novel Fast Terminal Sliding Mode Tracking Control Methodology for Robot Manipulators

GitHub - shubhamwani376/PUMA560_Industrial_Sorting_Robot: PUMA560 as a  sorting robot simulation in MATLAB with Peter Corke toolbox and Centralised  control.
GitHub - shubhamwani376/PUMA560_Industrial_Sorting_Robot: PUMA560 as a sorting robot simulation in MATLAB with Peter Corke toolbox and Centralised control.

An Efficient Inverse Kinematic Algorithm for a PUMA560-Structured Robot  Manipulator - Huashan Liu, Wuneng Zhou, Xiaobo Lai, Shiqiang Zhu, 2013
An Efficient Inverse Kinematic Algorithm for a PUMA560-Structured Robot Manipulator - Huashan Liu, Wuneng Zhou, Xiaobo Lai, Shiqiang Zhu, 2013

PUMA 560 | RPAutomation
PUMA 560 | RPAutomation

Types of robots | Robot Academy
Types of robots | Robot Academy

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

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

Software for control and dynamic simulation of Unimate PUMA 560 robot |  Semantic Scholar
Software for control and dynamic simulation of Unimate PUMA 560 robot | Semantic Scholar

Inverse Kinematics for a General Purpose Robot Arm That Moves in 3D | Robot  Academy
Inverse Kinematics for a General Purpose Robot Arm That Moves in 3D | Robot Academy

Software for control and dynamic simulation of Unimate PUMA 560 robot |  Semantic Scholar
Software for control and dynamic simulation of Unimate PUMA 560 robot | Semantic Scholar

PDF] The explicit dynamic model and inertial parameters of the PUMA 560 arm  | Semantic Scholar
PDF] The explicit dynamic model and inertial parameters of the PUMA 560 arm | Semantic Scholar

The PUMA 560 at zero position, by Craig's modified DH parameter [6] |  Download Scientific Diagram
The PUMA 560 at zero position, by Craig's modified DH parameter [6] | Download Scientific Diagram

Structure of the PUMA560 robot manipulator for simulations [14]. | Download  Scientific Diagram
Structure of the PUMA560 robot manipulator for simulations [14]. | Download Scientific Diagram

Inverse Kinematic Analysis of PUMA 560 for Vision Systems | SpringerLink
Inverse Kinematic Analysis of PUMA 560 for Vision Systems | SpringerLink

Velocity of 6-Joint Robot Arm – Translation | Robot Academy
Velocity of 6-Joint Robot Arm – Translation | Robot Academy