The article presents the inverse dynamics of a two-degrees-of-freedom planar parallel manipulator by the Newton-Euler approach. On the basis of the inverse dynamic model, the driving forces of actuators are simulated in different motion parameters. Further, the effects of inertia of each moving component to the driving forces are computed through the numerical method.
TlustyJ.ZiegertJ.RidgewaySFundamental comparison of the use of serial and parallel kinematics for machines tools. Ann. CIRP, 1999, 48, 351–356.
2.
LeeK. M.ShahD. K.Kinematic analysis of a three-degree-of-freedom in-parallel actuated manipulator. IEEE. J. Robotics Autom., 1998, 4, 354–360.
3.
WaldronK. J.RaghavanM.RothBKinematic analysis of a hybrid serial-parallel manipulation system. Trans. ASME. J. Dyn. Syst. Meas. Control, 1989, 111, 211–221.
4.
LiJ.WangJ.ChouW.ZhangY.WangT.ZhangQ.Inverse kinematics and dynamics of the 3-RRS parallel platform. In Proceedings of the IEEE International Conference on Robotics and Automation, Seoul, Korea, 2001, pp. 2506–2511.
5.
WangL. P.WangJ. S.LiY. W.LuYKinematic and dynamic equations of a planar parallel manipulator. Proc. Instn Mech. Engrs, 2003, 217, 525–531.
6.
GengZ.HaynesL. S.LeeJ. D.CarrollR. L.On the dynamic model and kinematic analysis of a class of Stewart platforms. Robotics Auton. Syst., 1992, 9, 237–254.
7.
JiZAnalysis of design parameters in platform manipulators. Trans. ASME. J. Mech. Des., 1996, 118, 526–531.
8.
DasguptaB.MruthyunjayaT. S.Closed-form dynamic equations of the general Stewart platform through the Newton-Euler approach. Mech. Mach. Theory, 1998, 33, 993–1012.
9.
DasguptaB.MruthyunjayaT. S.A Newton-Euler formulation for the inverse dynamics of the Stewart platform manipulator. Mech. Mach. Theory, 1998, 33, 1135–1152.
10.
DasguptaB.ChoudhuryPA general strategy based on the Newton-Euler approach for the dynamic formulation of the parallel manipulators. Mech. Mach. Theory, 1999, 34, 801–824.