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Research and Application of Dual Drive Synchronous Control Algorithm

机译:双驱动同步控制算法的研究与应用

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According to the real time rapidity characteristic of generalized predictive control, dual drive control synchronous subsystem based on generalized predictive is designed. Based on coordinated control principle, a fuzzy controller is added between the channels of two drive subsystems. Aiming to minimize the corresponding state difference of two subsystems, control scheme with synchronous error non-equal common feedback fuzzy correction is adopted, which keep the output of two synchronous subsystems consistent, improve the response speed of synchronous error to system, and reduce the synchronous error of two drive subsystems effectively. The simulation results show that synchronous control strategy presented in this paper improve the response speed of synchronous error to system, reduce the synchronous error of two motors effectively, and provide advantageous guarantee for the high precision of large rotary dual drive synchronous systems.
机译:根据广义预测控制的实时性,设计了基于广义预测的双驱动控制同步子系统。基于协调控制原理,在两个驱动子系统的通道之间添加了模糊控制器。为了使两个子系统之间的状态差异最小化,采用了具有同步误差非相等共反馈模糊校正的控制方案,使两个同步子系统的输出保持一致,提高了同步误差对系统的响应速度,减少了同步误差。两个驱动器子系统的错误有效。仿真结果表明,本文提出的同步控制策略提高了同步误差对系统的响应速度,有效降低了两电机的同步误差,为大型旋转双驱动同步系统的高精度提供了有利的保证。

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