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A multidimensional variable band flux modulator for four-phase-leg voltage source inverters

机译:用于四相腿电压源逆变器的多维变频磁通调制器

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This paper presents a multidimensional flux modulator for closed-loop control of the output voltage of a four-phase-leg inverter. The proposed strategy uses flux regulated hysteresis with a rectangular bounding cube in the synchronous d-q-o reference frame, and a simple set of switching rules to ensure the selection of only the nearest active space vectors to the target reference phasor. In addition, the inherent optimal sequencing and central placement of active vectors between successive s result in the modulator having an improved performance as compared to other reported hysteresis schemes. A further enhancement is achieved by adjusting the dimensions of the bounding cube to restrict the switching process to the nearest three active vectors (and vectors) within a constant switching period. Under this constraint, the modulator achieves a harmonic performance virtually identical to the well-known open-loop space vector modulation. But since the modulator is a closed-loop system, it also exhibits excellent robustness to system parameter variations. The performance and practicability of the modulator have been verified both in simulation and experimentally.
机译:本文介绍了一种多维磁通调制器,用于闭环控制四相斜逆转器的输出电压。所提出的策略使用磁通调节滞后在同步D-Q-O参考帧中具有矩形边界立方体,以及一组简单的交换规则,以确保仅选择最近的活动空间向量到目标参考量程。另外,与其他报告的滞后方案相比,在连续的S结果之间的固有最佳测序和中央放置在具有改进的性能的调制器之间。通过调整边界立方体的尺寸来实现进一步的增强,以限制在恒定切换时段内的最接近的三个有效向量(和向量)中的切换过程。在该约束下,调制器实现了与众所周知的开环空间矢量调制几乎相同的谐波性能。但由于调制器是闭环系统,因此它还表现出对系统参数变化的优异的鲁棒性。调制器的性能和实用性已经在模拟和实验中验证。

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