Tempel, Philipp ThomasPhilipp ThomasTempelMiermeister, PhilippPhilippMiermeisterLechler, ArminArminLechlerPott, AndreasAndreasPott2022-03-132022-03-132015https://publica.fraunhofer.de/handle/publica/39521210.4028/www.scientific.net/AMM.794.419This paper covers the kinematics and dynamics modelling of the mechatronic model for a 6 DOF cable-driven parallel robot and derives a real-time capable simulation model for such robots. The governing equations of motion for the platform are derived using Newton-Euler formalism, furthermore, the pulley kinematics of the winches and a linear spring-damper based cable model is introduced. Once the equations of motion are derived, closed-form force distribution is implemented and simulation results of the real-time capable model for the cable-driven parallel robot IPAnema3 are presented. Given the real-time capability, the presented model can be used for hardware-in-the-loop simulation or controller design, but also for case studies of highly dynamic or large-scale robots.encable-driven parallel robotsimulationKinematiksimulation modelModelling of kinematics and dynamics of the IPAnema 3 cable robot for simulative analysisconference paper