Publication | Open Access
Energy Consumption and Dynamic Behavior Analysis of a Six-axis Industrial Robot in an Assembly System
86
Citations
13
References
2014
Year
Robot KinematicsEngineeringIndustrial EngineeringMechanical EngineeringAssembly SystemDynamic BehaviorIndustrial RoboticsSystems EngineeringKinematicsEnergy ConsumptionMechatronicsComputer EngineeringDynamic Behavior AnalysisPower ConsumptionAssemblyRobot ControlAutomationMechanical SystemsMechanic Manufacturing SystemIndustrial AutomationAssembly LineRobotics
This paper presents an experimental study to validate a dynamic model of a six-axis industrial robot as part of an assembly system and to analyze its power consumption as well as its dynamic behavior. Furthermore, the effect of robot operating parameters (i.e., payload and speed) on the power consumption and the dynamic behavior are analyzed. The investigation shows that the comparative study between simulation and experimental results can be used to improve the model's accuracy and prove that the simulation model represents the real system. Both simulation and experimental results show that the robot operating parameters strongly influence the industrial robot's power consumption and dynamic behavior
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