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Flatness-Based Feed-Forward Control Design for Solenoid Actuators Considering Eddy Currents

机译:考虑涡流的螺线管执行器的平面基础馈电控制设计

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Flatness-based feed-forward control of solenoid actuators is considered. For precise motion planning and accurate steering of conventional solenoids, eddy currents cannot be neglected. The system of ordinary differential equations including eddy currents, that describes the nonlinear dynamics of such actuators, is not differentially flat. Thus, a distributed parameter approach based on a diffusion equation is considered, that enables the parametrization of the eddy current by the armature position and its time derivatives. In order to design the feedforward control, the distributed parameter model of the eddy current subsystem is combined with a typical nonlinear lumped parameter model for the electrical and mechanical subsystems of the solenoid. The control design and its application are illustrated by numerical and practical results for an industrial solenoid actuator.
机译:考虑了基于平面的基于螺线管执行器的前馈控制。为了精确运动规划和准确的常规螺线管的转向,涡流不能被忽略。包括涡流的常微分方程系统,其描述了这种致动器的非线性动力学,而不是差异平坦的。因此,考虑基于扩散方程的分布式参数方法,其使得通过电枢位置和其时间衍生物能够实现涡流的参数化。为了设计前馈控制,涡流子系统的分布式参数模型与螺线管的电气和机械子系统的典型非线性集成参数模型组合。控制设计及其应用是由工业螺线管执行器的数值和实际结果说明的。

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