基于最优开关状态选择的交流电容箝位多级矩阵变换器电压平衡控制

Lin Qiu, Lie Xu, Yongdong Li
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引用次数: 1

摘要

矩阵变换器(MC)是一组受控的双向半导体开关,可以实现直接的ac-ac转换,而不需要中间的直流链路。多电平矩阵变换器具有多电平输出、高电压应用、高功率转换、改善谐波问题、电压阶跃小等优点,可以作为扩展其未来应用的一种解决方案。提出了一种利用效用函数对电容箝位型多电平矩阵变换器进行电压平衡控制的改进方法;采用改进的基于幅度系数的调制策略,从调制精度方面提高了性能。通过小型实验样机的仿真和实验结果验证了理论结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Voltage balancing control of AC-capacitor clamped multi-level matrix converter based on optimal switching status selection
The matrix converter (MC) is an array of controlled bidirectional semi-conductor switches that allows direct ac-ac conversion without an intermediate dc link. To extend its future application, multilevel matrix converter can be a proposed solution due to its merits in multilevel output, high voltage application, high power conversion, improved harmonics issue and less voltage step, etc. This paper presents an improved voltage balancing control using utility function on a capacitor-clamped multilevel matrix converter; the improved modulation strategy based on amplitude coefficient is employed to improve the performance in terms of modulation precision. Simulations and experimental results from a small-scale experimental prototype are presented to validate the theoretical findings.
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