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Encoderless Direct Torque Controller for Limited Speed Range Applications of Brushless Doubly Fed Reluctance Motors

机译:无编码器直接转矩控制器,用于无刷双馈磁阻电机的有限速度范围应用

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摘要

The paper proposes a direct torque control (DTC) algorithm suitable for low-variable-frequency operation of the brushless doubly fed reluctance machine (BDFRM) and considers aspects of its practical implementation. The simulation and experimental results show that a small BDFRM prototype can successfully operate down to zero supply frequency of the inverter-fed (secondary) winding, unlike cage induction or many other alternating current machines with DTC. This BDFRM advantage is a consequence of using a flux estimation technique not relying on the secondary voltage integration and therefore avoiding the well-known problems at low secondary frequencies, being typical for the BDFRM normal operation. The developed algorithm also offers the prospect for optimizing the machine performance in a manner similar to conventional vector controllers but with control actions executed in a stationary reference frame as usual for all traditional DTC methods. The maximum torque per inverter ampere control strategy has been chosen as a case study.
机译:本文提出了一种适用于无刷双馈磁阻电机(BDFRM)低频率运行的直接转矩控制(DTC)算法,并考虑了其实际实现方面。仿真和实验结果表明,与笼式感应或带有DTC的许多其他交流电机不同,小型BDFRM原型可以成功工作至逆变器馈电(次级)绕组的零电源频率。 BDFRM的这一优势是使用磁通估计技术而不依赖于次级电压积分的结果,因此避免了在低次级频率下众所周知的问题,这是BDFRM正常运行的典型问题。所开发的算法还提供了一种以类似于传统矢量控制器的方式优化机器性能的前景,但具有对所有传统DTC方法通常在固定参考系中执行的控制动作。案例研究选择了每个逆变器的最大转矩安培控制策略。

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