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A two-level fuzzy based DTC using PLLC to improve the induction motor performance

机译:使用PLLC的基于模糊的两级DTC来改善感应电动机的性能

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This paper presents proportional integral direct torque control (PIDTC) and fuzzy direct torque control (FDTC) of induction motor (IM) using bus clamped space vector modulation (BCSVM), in which BCSVM always clamps any phase of the inverter for given switching period. Conventionally, the total cost of control scheme significantly increases in real time applications as it needs to sense three voltages, three currents, and speed of the IM. The proposed control scheme (PIDTC/FDTC) uses only single voltage and single current sensors are enough to estimate all voltages, currents, and speed of the IM using the phase locked loop control (PLLC) and the transport delay. The PLLC estimates frequency and amplitude of respective voltage/current waveform of the IM. The other two voltages/currents are estimated by providing proper delay using transport delay. In addition, the IM speed is estimated from the frequency command of PLLC. The PIDTC provides considerable distortion in current, flux, torque, and speed due to poor performance of PI-controllers. In order to improve the dynamic performance of IM drive the FDTC is used. In FDTC, the fuzzy controller estimates the control variable very close to practical values using Mamdani and Centroid methods. Also, the switching duty ratios of the inverter are independent of the switching period with FDTC.
机译:本文介绍了使用总线钳位空间矢量调制(BCSVM)的感应电动机(IM)的比例积分直接转矩控制(PIDTC)和模糊直接转矩控制(FDTC),其中BCSVM始终在给定的开关周期内对逆变器的任何相位进行钳位。常规上,控制方案的总成本在实时应用中会显着增加,因为它需要感测IM的三个电压,三个电流和速度。提出的控制方案(PIDTC / FDTC)仅使用单个电压,并且单个电流传感器足以使用锁相环控制(PLLC)和传输延迟来估计IM的所有电压,电流和速度。 PLLC估计IM的相应电压/电流波形的频率和幅度。通过使用传输延迟提供适当的延迟来估计其他两个电压/电流。此外,IM速度是根据PLLC的频率命令估算的。由于PI控制器的性能较差,PIDTC会在电流,通量,转矩和速度方面造成很大的失真。为了提高IM驱动器的动态性能,使用了FDTC。在FDTC中,模糊控制器使用Mamdani和Centroid方法估算非常接近实际值的控制变量。同样,逆变器的开关占空比与FDTC的开关周期无关。

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