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A Lyapunov Function-Based Robust Direct Torque Controller for a Switched Reluctance Motor Drive System

机译:基于Lyapunov功能的开关磁阻电机驱动系统鲁棒直接转矩控制器

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A novel Lyapunov function-based direct torque controller for minimization of torque ripples in a switched reluctance motor (SRM) drive system is reported in this paper. SRM magnetization characteristics are highly nonlinear, where torque is a complex and coupled function of the phase currents and rotor position. The direct torque control (DTC) scheme avoids the complex process of torque-to-current conversion as required in indirect torque control scheme. The traditional DTC scheme uses a hysteresis-type torque controller and it leads to large amount of torque ripples when implemented digitally. The proposed controller is intended to take care of the nonlinear system dynamics of magnetic characteristics associated with accurate torque control using DTC scheme for the SRM drive system. In the Lyapunov function-based controller, the feedback gain is varied using a heuristic technique. The stability of the proposed controller is ensured by the direct method of Lyapunov. Experimental results for a 1-hp, 4-phase SRM are provided to demonstrate the efficacy of the proposed torque control scheme.
机译:本文报道了一种新颖的基于Lyapunov函数的直接转矩控制器,该转矩控制器可最小化开关磁阻电机(SRM)驱动系统中的转矩脉动。 SRM的磁化特性是高度非线性的,其中转矩是相电流和转子位置的复杂且耦合的函数。直接转矩控制(DTC)方案避免了间接转矩控制方案中所需的复杂的转矩到电流转换过程。传统的DTC方案使用磁滞型转矩控制器,并且以数字方式实施时会导致大量的转矩波动。所提出的控制器旨在照顾与SRM驱动系统使用DTC方案进行精确转矩控制相关的磁特性的非线性系统动力学。在基于Lyapunov函数的控制器中,使用启发式技术来改变反馈增益。提出的控制器的稳定性通过Lyapunov的直接方法来确保。提供了1 hp,4相SRM的实验结果,以证明所提出的扭矩控制方案的功效。

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