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Improved Transient-Based Overmodulation Method for Increased Torque Capability of Direct Torque Control With Constant Torque-Switching Regulator of Induction Machines

机译:改进的基于瞬态的过调制方法,用于通过感应电机恒定转矩切换调节器提高直接转矩控制的转矩能力

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In this article, a simple overmodulation method is proposed for achieving fast direct torque control with a constant torque-switching controller (CTSR-DTC) in induction machines. The conventional overmodulation method applied to CTSR-DTC focuses on attaining and maintaining the voltage vector with the largest tangential component to the locus of the stator flux. The selected voltage vector is held during the transient state and fed into the switching table. Nevertheless, unlike a classical DTC, the CTSR activates both zero- and active-voltage vectors owing to the nature of its operation. As a result, the optimized active voltage during an overmodulation cannot be maintained throughout the complete torque transient owing to an interruption by the zero-voltage vectors. To overcome this problem, the proposed method modifies the CTSR output to eliminate the zero-voltage vectors only during a transient state. Consequently, a full exploitation of the overmodulation is achieved, and hence an excellent torque dynamic response can be obtained when torque is demanded. Simulation and experimental results are provided to validate the effectiveness of the proposed overmodulation strategy.
机译:在本文中,提出了一种简单的过调制方法,该方法可通过感应电机中的恒定转矩切换控制器(CTSR-DTC)实现快速直接转矩控制。应用于CTSR-DTC的常规过调制方法着重于获得和保持与定子磁通轨迹的切向分量最大的电压矢量。所选电压矢量在瞬态期间保持不变并馈入开关表。然而,与传统的故障诊断代码不同,CTSR由于其工作性质而同时激活了零电压矢量和有功电压矢量。结果,由于零电压矢量的中断,过调制期间的最优有功电压无法在整个扭矩瞬变中保持。为了克服这个问题,所提出的方法修改了CTSR输出以仅在瞬态期间消除零电压矢量。因此,可以充分利用过调制,因此在需要扭矩时可以获得出色的扭矩动态响应。提供仿真和实验结果以验证所提出的过调制策略的有效性。

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