Calibration experiments planing for identìcation of manipulator elastostatic parameters

نویسندگان

  • Alexandr Klimchik
  • Anatol Pashkevich
  • Yier Wu
  • Stéphane Caro
  • Benoît Furet
چکیده

The paper is devoted to the elastostatic calibration of industrial robots, which are used for precise machining of largedimensional parts made of composite materials. In this technological process, the interaction between the robot and the workpiece causes essential elastic deflections of the manipulator components that should be compensated by the robot controller using relevant elastostatic model of this mechanism. To estimate parameters of this model, an advanced calibration technique is applied that is based on the non-linear experiment design theory, which is adopted for this particular application. In contrast to previous works, it is proposed a concept of the user-defined test-pose, which is used to evaluate the calibration experiments quality. In the frame of this concept, the related optimization problem is defined and numerical routines are developed, which allow to generate optimal set of manipulator configurations and corresponding forces/torques for a given number of the calibration experiments. Some specific kinematic constraints are also taken into account, which insure feasibility of calibration experiments for the obtained configurations and allow avoiding collision between the robotic manipulator and the measurement equipment. The efficiency of the developed technique is illustrated by an application example that deals with elastostatic calibration of the serial manipulator used for robotbased machining.

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تاریخ انتشار 2013