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Elastic Structure Preserving Impedance (ESπ)Control for Compliantly Actuated Robots

Manuel Keppler, Dominic Lakatos, Christian Ott, Alin Albu‐Schäffer

发表年份
2018
引用次数
17

摘要

We present a new approach for Cartesian impedance control of compliantly actuated robots with possibly nonlinear spring characteristics. It reveals a remarkable stiffness and damping range in the experimental evaluation. The most interesting contribution, is the way the desired closed-loop dynamics is designed. Our control concept allows to add a desired stiffness and damping directly on the end-effector, while leaving the system structure intact. The intrinsic inertial and elastic properties of the system are preserved. This is achieved by introducing new motor coordinates that reflect the desired spring and damper terms. Theoretically, by means of additional motor inertia shaping it is possible to make the end-effector interaction behavior with respect to external loads approach, arbitrarily close, the interaction behavior that is achievable by classical Cartesian impedance control on rigid robots. The physically motivated design approach allows for an intuitive understanding of the resulting closed-loop dynamics. We perform a passivity and stability analysis on the basis of al physically motivated storage and Lyapunov function.

关键词

Control theory (sociology)PassivityStiffnessRobotLyapunov functionInertiaImpedance controlCartesian coordinate systemNonlinear systemElectrical impedance

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