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Design and Experimental Analysis of a Selfbearing Double-Stator Linear-Rotary Actuator

机译:一种自带双定子线性旋转致动器的设计与实验分析

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Linear-rotary actuators (LiRAs) are today used in industry applications where a controlled linear and rotary motion is necessary such as pick-and-place robots, servo actuation of gearboxes or tooling machines. However, in special industry applications that require high purity and/or high precision positioning, the usage of conventional LiRAs with mechanical bearings is limited. Therefore, in this paper a LiRA with integrated magnetic bearings, i.e. a selfbearing/bearingless LiRA, is analyzed. The actuator employs concentrically arranged linear and rotary stators placed inside and outside a cylindrically shaped mover, which results in a so-called selfbearing double-stator (SBDS) LiRA. A FEM geometry optimization of the SBDS LiRA is performed and Pareto performance plots concerning linear force and torque generation are obtained. A SBDS LiRA hardware demonstrator and an 18-phase inverter power supply hardware prototype are built and their operation is experimentally verified by rotary and linear position step response measurements.
机译:直线旋转致动器(Liras)今天用于行业应用,其中控制的线性和旋转运动是必要的,例如拾取机器人,齿轮箱或工具机的伺服驱动。然而,在需要高纯度和/或高精度定位的特殊行业应用中,具有机械轴承的传统LIRA的使用是有限的。因此,在本文中,分析了具有集成磁轴承的Lira,即,一种自带/无轴承的Lira。致动器采用同心地布置的线性和旋转定子,放置在圆柱形移动器内部和外部,这导致所谓的自抱双定子(SBD)Lira。执行SBD Lira的有限几何优化,并获得了关于线性力和扭矩产生的帕累托性能图。建立了SBDS Lira硬件演示和18相逆变器电源硬件原型,并通过旋转和线性位置阶段响应测量进行实验验证其操作。

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