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Research on Vector Control of Long-Primary Permanent Magnet Linear Synchronous Motor Based on Voltage Feed-Forward Decoupling

机译:基于电压前耦去耦的长初级永磁线性同步电动机矢量控制研究

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The dynamic response characteristics of current loop in vector control system is closely related to the realization of vector control strategy. In the system model of multiple motors connected in series (which consists of coupled section, uncoupled section and feeder cable), the inductance and resistance of uncoupled section and feeder cable are taken into consideration in this paper. Due to the ignoring of current coupling problem of d-q axis in traditional PI current regulator, the dynamic performance of the system is poor. To solve this problem, a modified PI regulator based on voltage feed-forward decoupling is applied to build the control system of permanent magnet linear synchronous motor (PMLSM). The model of traditional PI current regulator and the model of modified PI current regulator are built respectively and compared with each other in Matlab/Simulink. The simulation results verify the correctness and effectiveness of PI current regulator with voltage feed-forward decoupling, and indicate that this improved control system has better dynamic and static characteristic than traditional control system.
机译:矢量控制系统中电流环路的动态响应特性与矢量控制策略的实现密切相关。在串联连接的多电动机的系统模型中(由耦合部分,未耦合的部分和馈线电缆组成),本文考虑了未耦合截面和馈线电缆的电感和电阻。由于传统PI电流调节器中D-Q轴的电流耦合问题的忽略,系统的动态性能差。为了解决这个问题,应用了一种基于电压前送去耦的改进的PI调节器,用于构建永磁线性同步电动机(PMLSM)的控制系统。传统PI电流调节器模型及改进的PI电流调节器模型,并在Matlab / Simulink中互相进行比较。仿真结果验证了PI电流调节器与电压前耦的正确性和有效性,并表明该改进的控制系统比传统控制系统更具动态和静态特性。

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