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Robust Direct Torque Control with Super-Twisting Sliding Mode Control for an Induction Motor Drive

机译:具有用于感应电动机驱动的超扭转滑动模式控制的鲁棒直接扭矩控制

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摘要

A field-programmable gate array- (FPGA-) based nonlinear Direct Torque Control (DTC) associated with Space Vector Modulation (SVM), Input-Output Feedback Linearization (IOFL), and second-order super-twisting speed controller is proposed to control an induction motor drive. First, the nonlinear IOFL is proposed to achieve a decoupled flux and torque control and the SVM technique is used to control the inverter switching frequency which reduces the torque ripples and noise. Next, to enhance the speed regulation, a super-twisting speed controller is added to an SVM-DTC-IOFL scheme. The nonlinear SVM-DTC-IOFL ensures a high dynamic response, good robustness under the external load disturbances. The Lyapunov theory is used to analyze the system stability. Then, this paper presents the interest of implementing the suggested SVM-DTC-IOFL using a Field-Programmable Gate Array (FPGA) circuit. The main interest of the FPGA-implementation is the reduction of the control loop delay, which is evaluated to a few microseconds, thanks to the parallel processing offered by the FPGA. The performances of the proposed control algorithm are investigated by digital simulation using the Xilinx system generator tool and an experimental implementation utilizing an FPGA-Virtex-5-ML507.
机译:建议使用现场可编程门阵列 - (FPGA-)与空间矢量调制(SVM),输入输出反馈线性化(IOF)和二阶超捻速度控制器相关联的基于FPGA-)的非线性直接转矩控制(DTC)和二阶超捻速度控制器一个感应电机驱动器。首先,提出非线性IOF1以实现去耦通量和扭矩控制,并且SVM技术用于控制逆变器开关频率,从而降低扭矩涟漪和噪声。接下来,为了增强速度调节,将超时捻度控制器添加到SVM-DTC-IOFL方案中。非线性SVM-DTC-IOFL确保了高动态响应,在外部负荷扰动下的良好稳健性。 Lyapunov理论用于分析系统稳定性。然后,本文介绍了使用现场可编程门阵列(FPGA)电路实现所建议的SVM-DTC-IOFL的兴趣。 FPGA实现的主要兴趣是减少控制回路延迟,这是由于FPGA提供的并行处理评估为几微秒。使用Xilinx系统发生工具的数字仿真研究了所提出的控制算法的性能,以及利用FPGA-Virtex-5-ML507的实验实现。

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