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首页> 外文期刊>International Journal Of Modelling & Simulation >MODELLING AND SIMULATION OF DIRECT TORQUE CONTROLLED INDUCTION MOTOR DRIVE USING SLIP SPEED CONTROL
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MODELLING AND SIMULATION OF DIRECT TORQUE CONTROLLED INDUCTION MOTOR DRIVE USING SLIP SPEED CONTROL

机译:滑差速度控制的直接转矩控制感应电动机驱动器的建模与仿真

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摘要

In this paper an effective control strategy to reduce the torque and flux ripple in direct torque control (DTC) of induction motor drive based on a slip speed control of stator flux is presented. This control strategy is applied to three-level inverter configuration using cascaded two two-level inverters for improving the performance of the system. Torque control is achieved by reference stator flux angle which is generated from the sum of incremental change in stator flux angle and actual stator flux angle. Modelling and simulation of proposed DTC is presented and results of the simulation are compared with basic DTC. From the simulation results it is observed that the torque and flux ripple are less with proposed DTC and also an improvement in the steady-state performance of the drive system at high and low speed operation.
机译:本文提出了一种有效的控制策略,该方法基于定子磁通的滑差速度控制来减小感应电动机驱动器的直接转矩控制(DTC)中的转矩和磁通波动。此控制策略应用于级联的两个两级逆变器的三级逆变器配置,以提高系统性能。通过参考定子磁通角来实现转矩控制,该参考磁通角由定子磁通角和实际定子磁通角的增量变化之和产生。给出了提出的故障码的建模和仿真,并将仿真结果与基本故障码进行了比较。从仿真结果可以看出,采用建议的DTC时,转矩和磁通波动较小,并且在高速和低速运行时,驱动系统的稳态性能也得到改善。

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