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Design of New SVPWM Mechanism for Three-Level NPC ZSI via Line-Voltage Coordinate System

机译:三级NPC ZSI通过线电压坐标系设计设计新的SVPWM机制

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摘要

In this article, a novel space-vector pulsewidth modulation (SVPWM) mechanism is proposed for a three-level neutral-point clamped (NPC) Z-source inverter (ZSI) via the line-voltage coordinate system. In order to solve the problems of the adjustment of the complicated operational region and the complex computation of lookup tables in conventional methods, the newly designed SVPWM mechanism is developed from the basis of the vector synthesis. With this mechanism, switching vectors required to synthesize the reference vector can be easily identified, and the corresponding duty ratios can be directly obtained. According to the volt-second balanced principle and three operational modes of the three-level NPC ZSI, the up shoot-through status is inserted into the left side of the intersection point of the maximum phase modulation signal and the carrier wave signal. On the other hand, the down shoot-through status is inserted into the right side of the intersection point of the minimum phase modulation signal and the carrier wave signal. The effectiveness of the proposed SVPWM mechanism is verified by numerical simulations and experimental results. The salient features of the proposed SVPWM method are easiness in digital implementation, less computation time, and better power quality in comparison with traditional SVPWM schemes.
机译:在本文中,通过线电压坐标系提出了一种新的空间 - 矢量脉冲宽调制(SVPWM)机构,用于三级中性点钳位(NPC)Z源逆变器(ZSI)。为了解决传统方法中复杂操作区域的调整和查找表的复杂计算问题,从载体合成的基础开发了新设计的SVPWM机制。利用这种机制,可以容易地识别合成参考矢量所需的切换矢量,并且可以直接获得相应的占空比。根据三级NPC ZSI的伏特 - 第二平衡原理和三种操作模式,将上升射击状态插入最大相位调制信号的交叉点的左侧和载波信号。另一方面,向下射击状态插入到最小相位调制信号的交叉点的右侧和载波信号的右侧。通过数值模拟和实验结果验证了所提出的SVPWM机制的有效性。与传统的SVPWM方案相比,所提出的SVPWM方法的突出特征在数字实现中,计算时间较少,更好的电能质量。

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