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A DSP-based modified slip energy recovery drive using a 12-pulse converter and shunt chopper for a speed control system of a wound rotor induction motor

机译:基于DSP的改进型滑差能量回收驱动器,使用12脉冲转换器和并联斩波器,用于绕线转子感应电动机的速度控制系统

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This paper introduces a modified slip energy recovery drive system for speed control of a wound rotor induction motor offering improvement of drive performance, particularly line power factor and overall system efficiency. A 12-pulse line commutated thyristor converter operating in an inverter mode in conjunction with an additional IGBT shunt chopper is employed to transfer slip energy back to ac mains supply via three phase transformers. This approach offers motor speed control by varying the duty cycle of the chopper instead of changing the inverter firing angle. As a consequence, supply power factor can be improved. The servo state feedback designed by linear quadratic regulator (LQR) with observer is also included in order to keep motor speed to be constant over a certain range of operating conditions by using the estimated dc link current derived from motor speed. The advantage of this technique is absence of current transducers for current feedback control loop. The overall control system is implemented on DSP, DS1104'TMS320F240 controller board. Experimental results are illustrated in order to validate performance of the proposed system.
机译:本文介绍了一种改进的滑差能量回收驱动系统,用于绕线转子感应电动机的速度控制,可改善驱动性能,尤其是线路功率因数和整体系统效率。一个以逆变器模式运行的12脉冲线路换向晶闸管变流器与一个附加的IGBT并联斩波器一起使用,可将滑差能量通过三相变压器传递回交流电源。这种方法通过改变斩波器的占空比而不是改变逆变器的触发角来提供电动机速度控制。结果,可以改善电源功率因数。还包括由线性二次调节器(LQR)与观察器一起设计的伺服状态反馈,以便通过使用从电动机速度得出的估计直流链路电流,在一定的工作条件范围内保持电动机速度恒定。该技术的优点是没有用于电流反馈控制回路的电流传感器。整个控制系统在DSP DS1104'TMS320F240控制器板上实现。为了验证所提出系统的性能,说明了实验结果。

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