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首页> 外文期刊>International journal of applied electromagnetics and mechanics >Effective magnetic decoupling control realization for rotary-linear switched reluctance motors utilized in drilling tools
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Effective magnetic decoupling control realization for rotary-linear switched reluctance motors utilized in drilling tools

机译:钻井工具中使用的旋转线性开关电动机的有效磁去耦控制实现

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摘要

Rotary-linear motors which produce linear and rotary motions simultaneously have coupled magnetic paths. In this paper, coupling of a Rotary-Linear Switched Reluctance Motor (RLSRM) is studied and formulated. Then, an algorithm based on inductance profiles of the motor phases is proposed to decouple the motions - rotary and linear movements. This algorithm is developed from two excitation modes which produce the linear force and rotary torque, independently. Therefore, the control on the rotary and linear motions is realized by controlling the torque and force, respectively. Finite Element Analysis (FEA) is applied to the RLSRM model and the obtained results are utilized in the algorithm. A control flowchart is presented for applying the motion modes. The algorithm is implemented on a microcontroller and applied to a fabricated model. Experimental results are measured to verify effectiveness of the proposed control algorithm.
机译:同时产生线性和旋转运动的旋转线性电动机具有耦合磁路。 在本文中,研究了旋转线性开关磁阻电动机(RLSRM)的耦合。 然后,提出了一种基于电动机相的电感轮廓的算法,以将动作旋转和线性运动脱钩。 该算法由两个激励模式开发,其独立地产生线性力和旋转扭矩。 因此,通过控制扭矩和力来实现对旋转和线性运动的控制。 有限元分析(FEA)应用于RLSRM模型,并在算法中使用所得结果。 呈现控制流程图以应用运动模式。 该算法在微控制器上实现并应用于制造模型。 测量实验结果以验证所提出的控制算法的有效性。

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