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Reduction of Both Harmonic Current and Torque Ripple for Dual Three-Phase Permanent-Magnet Synchronous Machine Using Modified Switching-Table-Based Direct Torque Control

机译:改进的基于切换表的直接转矩控制可降低双三相永磁同步电机的谐波电流和转矩纹波

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摘要

Due to the fixed and limited sampling period in the real-time system, three-phase permanent-magnet synchronous machine (PMSM) drives using switching-table-based direct torque control (ST-DTC) usually suffer from steady-state error and ripple of torque. For the case of the dual three-phase system that has been widely investigated recently, the harmonic currents inevitably occur, which can be regarded as the third issue. This harmonic currents lead to the increase of losses and the decrease of system efficiency. Previous literature has addressed the aforementioned issues but only deals with either the torque ripple issues or harmonic currents. Therefore, this paper first introduces two types of synthetic vectors, which can reduce the harmonic currents effectively, as well as the most suitable switching sequences. Then, a modified five-level torque regulator has been proposed to improve the torque performance. With the proposed method, not only the harmonic currents have been suppressed, but also the steady-state error and ripple of torque can be considerably reduced, whereas the merits of classical ST-DTC, such as simple structure and excellent dynamic performance, are preserved. The experimental results validate the effectiveness of the proposed strategy.
机译:由于实时系统中采样周期的固定和有限,使用基于切换表的直接转矩控制(ST-DTC)的三相永磁同步电机(PMSM)驱动器通常会遇到稳态误差和纹波扭矩。对于最近已被广泛研究的双三相系统的情况,不可避免地会产生谐波电流,这可被视为第三个问题。该谐波电流导致损耗增加和系统效率降低。先前的文献已经解决了上述问题,但是仅涉及转矩脉动问题或谐波电流。因此,本文首先介绍两种可以有效降低谐波电流的合成矢量,以及最合适的开关顺序。然后,提出了改进的五级扭矩调节器以改善扭矩性能。该方法不仅可以抑制谐波电流,而且可以大大减少稳态误差和转矩脉动,同时保留了传统ST-DTC的优点,如结构简单,动态性能优异。 。实验结果验证了所提策略的有效性。

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