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A mode switching control design for fast position servo systems with permanent magnet synchronous motor

机译:具有永磁同步电动机的快速位置伺服系统的模式切换控制设计

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A mode switching control scheme is proposed to achieve fast set-point tracking in motor servo systems. The control scheme incorporates a composite nonlinear feedback (CNF) control law into the framework of proximate time-optimal servomechanisms (PTOS). The CNF control law consists of a linear feedback part for achieving fast response and a nonlinear feedback part for suppressing the overshoot, so as to improve the transient performance in short span positioning, while the PTOS control law is responsible for fast acceleration and deceleration when the tracking error is large. A parameterized MSC controller is designed and the closed-loop stability is analyzed theoretically. The control scheme was then applied to the position-velocity control loop in a permanent magnet synchronous motor servo system. Experimental test has been conducted using the TMS320F2812 DSP. The results verify that the servo system is capable of fast and smooth positioning on a wide range of target locations
机译:提出了一种模式切换控制方案,以实现电动机伺服系统中的快速设定点跟踪。该控制方案将复合非线性反馈(CNF)控制律纳入了接近时间最优伺服机构(PTOS)的框架中。 CNF控制法则包括一个用于实现快速响应的线性反馈部分和一个用于抑制过冲的非线性反馈部分,以改善短跨距定位中的瞬态性能,而PTOS控制法则则是在加速过程中实现快速加速和减速。跟踪误差大。设计了参数化的MSC控制器,并对闭环稳定性进行了理论分析。然后将控制方案应用于永磁同步电动机伺服系统中的位置-速度控制回路。使用TMS320F2812 DSP进行了实验测试。结果证明,伺服系统能够在广泛的目标位置上快速平稳地定位

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