一种最大升压能力和最小开关频率的改进z源逆变器控制策略

Yan Zhang, Xiaolong Ma, Jinjun Liu, Z. Dong, Jiuqiang Han
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引用次数: 2

摘要

z源逆变器引入了一个独特的x形阻抗网络,并利用通射(ST)状态提高输入电压。它提供了一种在相对低电压升压比范围内(1-2)进行直流到交流功率转换的有竞争力的单级方法。提出了一种新的z源逆变器控制策略。采用这种策略,只有一个相支路在高开关频率下工作,以实现ST占空比控制和输出电压调节,而其他两个相支路在一个六分仪期间保持固定的开关状态。因此,将逆变器桥中功率器件的等效开关频率降低到1/3左右。但是,在电感和电容中引入了与输出电压基频有关的低频电流和电压纹波。特别是在高开关频率和中频直流-交流电源应用中,具有提高效率的潜力。然后,本文给出了一种详细的闭环控制器设计方法。在此基础上,对现有控制策略和提出的控制策略进行了详细的理论比较。最后,通过仿真结果验证了理论分析和计算的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An improved control strategy for Z-source inverter with maximum boost capability and minimum switching frequency
Z-source inverter introduces a unique X-shaped impedance network and boosts the input voltage by utilizing shoot-through (ST) states. It provides a competitive single-stage approach for DC to AC power conversion in relatively low voltage boost ratio range (1-2). This paper proposes a novel control strategy for Z-source inverter. With this strategy, only one phase leg operates at high switching frequency to achieve both ST duty ratio control and output voltage regulation, while the other two phase legs maintain the fixed switching states during one sextant. Therefore, it reduces the equivalent switching frequency of power devices in the inverter bridge to about 1/3. However, it introduces the low frequency current and voltage ripple in the inductor and capacitor which related to the fundamental frequency of output voltage. It has the potential to achieve higher efficiency especially in high-switching-frequency and medium-frequency DC-AC power application. Then, the paper provides a detailed close-loop controller design approach for the novel modulation strategy. Furthermore, the detailed comparisons among the existing strategies and proposed control strategy are conducted in theory. Finally, all the theoretical analysis and calculation are verified by simulation results.
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