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首页> 外文期刊>IEEE transactions on industrial informatics >An Improved Sliding-Mode Current Control of Induction Machine in Presence of Voltage Constraints
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An Improved Sliding-Mode Current Control of Induction Machine in Presence of Voltage Constraints

机译:在电压约束存在下改进的电流电机滑动模式电流控制

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摘要

This article proposes a novel approach to design sliding-mode control (SMC) for an induction motor (IM) in the presence of operational constraints. Different from the traditional techniques in SMC, the proposed method assumes the existence of a constant input disturbance and incorporates it in the switching current control law. Effectively, this leads to integral action through disturbance estimation together with an antiwindup mechanism naturally occurring when the control signal reaches its operational limits. The finite-time convergence of the SMC law is established through a Lyapunov analysis. Experimental evaluations are performed on an industrial-sized IM, where the current dynamics of the motor are controlled using SMC, and a velocity proportional-integral (PI) controller is used for the outer-loop control system. Experimental results reveal that the proposed sliding-mode current control systems provide much improved closed-loop control performance over the traditional SMC system. Further comparative experimental studies with well-designed PI current controllers provide insight into the characteristics of the proposed current control systems.
机译:本文提出了一种在运行限制存在下设计用于感应电动机(IM)的设计滑模控制(SMC)的新方法。与SMC中的传统技术不同,该方法假设存在恒定的输入干扰,并将其包含在开关电流控制法中。有效地,这导致通过干扰估计与当控制信号达到其操作限制时自然发生的防延迟机制的整体作用。通过Lyapunov分析建立了SMC定律的有限时间融合。在工业尺寸的IM上进行实验评估,其中电动机的电流动力学使用SMC控制,并且使用速度比例积分(PI)控制器用于外环控制系统。实验结果表明,所提出的滑模电流控制系统通过传统的SMC系统提供大大提高的闭环控制性能。具有良好设计的PI电流控制器的进一步比较实验研究提供了洞察所提出的电流控制系统的特性。

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