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首页> 外文期刊>IEEE Transactions on Magnetics >Performance Analysis and Decoupling Control of an Integrated Rotary–Linear Machine With Coupled Magnetic Paths
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Performance Analysis and Decoupling Control of an Integrated Rotary–Linear Machine With Coupled Magnetic Paths

机译:具有耦合磁路的集成旋转-线性电机的性能分析和解耦控制

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摘要

An integrated rotary–linear machine based on switched reluctance principle is investigated. The characteristics of the motor are analyzed by finite-element methods, with particular emphasis on the coupled magnetic paths. Results from numerical calculation are verified by the hardware experiment. The simple yet effective decoupling algorithm for the independent position control of both rotary and linear axes is proposed. Implemented with the proportional–integral-differential algorithm, the motor is capable of high-precision rotary and linear position tracking with the steady error within 0.3$^{circ}$ and $10~mu{rm m}$, respectively.
机译:研究了基于开关磁阻原理的集成旋转直线电机。电机的特性通过有限元方法进行分析,特别强调耦合磁路。硬件实验验证了数值计算的结果。提出了一种简单有效的去耦算法,用于旋转轴和线性轴的独立位置控制。通过比例积分微分算法实现,该电机能够进行高精度的旋转和线性位置跟踪,其稳态误差分别在0.3 $ ^ circ和$ 10〜mu {rm m} $之内。

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