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Robust optimal speed tracking control of a current sensorless synchronous reluctance motor drive using a new sliding mode controller

机译:使用新型滑模控制器的无传感器电流同步磁阻电机驱动器的鲁棒最佳速度跟踪控制

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This paper presents the robust optimal position control of a current sensorless synchronous reluctance motor (SynRM), which is specified by the specific speed profiles. The proposed control scheme is a combination of the conventional linear quadratic (LQ) control method and sliding mode control. A new type of sliding surface is employed first that makes the states of the SynRM to follow its nominal trajectory controlled by any type of nominal controller. The different torque control schemes related to SynRM are examined below and above the base speed. Then, the current sensors are eliminated and the simulated currents are used for current control. Finally A digital simulation study is carried out to demonstrate the effectiveness of the proposed control strategy.
机译:本文介绍了无电流同步磁阻电动机(SynRM)的鲁棒的最佳位置控制,该控制由特定的速度曲线指定。所提出的控制方案是常规线性二次(LQ)控制方法和滑模控制的组合。首先使用一种新型的滑动表面,该表面使SynRM的状态遵循由任何类型的标称控制器控制的标称轨迹。在基本速度以下和以上检查与SynRM相关的不同转矩控制方案。然后,消除电流传感器,并将模拟电流用于电流控制。最后,进行了数字仿真研究,以证明所提出的控制策略的有效性。

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