Galván Luis, Gómez Pablo Jesús, Galván Eduardo, Carrasco Juan Manuel
Electronical Engineering Department, University of Seville, 41092 Seville, Spain;
Energies (Basel). 2021 Dec 30;15(1):243. doi: 10.3390/en15010243. eCollection 2022 Jan.
From its introduction to the present day, Cascaded H-Bridge multilevel converters were employed on numerous applications. However, their floating capacitor, while advantageous for some applications (such as photovoltaic) requires the usage of balancing methods by design. Over the years, several such methods were proposed and polished. Some of these methods use optimization techniques or inject a zero-sequence voltage to take advantage of the converter redundancies. This paper describes an optimization-based capacitor balancing method with additional features. It can drive each module DC-Link to a different voltage for independent maximum power point tracking in photovoltaic applications. Moreover, the user can specify the independent active power set points to modules connected to batteries or any other energy storage systems. Finally, DC current ripple can be reduced on some modules, which can extend the lifespan of any connected ultra-capacitors. The method as a whole is tested on real hardware and compared with the state-of-the-art. In its simplest configuration, the presented method shows greater speed, robustness, and current wave quality than the state-of-the-art alternative in spite of producing about 1/3 fewer commutations. Its other characteristics provide additional functionalities and improve the adaptability of the converter to other applications.
自级联H桥多电平变换器问世至今,已在众多应用中得到使用。然而,其浮动电容虽对某些应用(如光伏发电)有利,但从设计角度需要采用平衡方法。多年来,人们提出并完善了多种此类方法。其中一些方法利用优化技术或注入零序电压来利用变换器的冗余度。本文介绍了一种具有附加特性的基于优化的电容平衡方法。在光伏应用中,它能将每个模块的直流母线驱动到不同电压,以实现独立的最大功率点跟踪。此外,用户可以为连接到电池或任何其他储能系统的模块指定独立的有功功率设定点。最后,某些模块上的直流电流纹波可以降低,这可以延长任何连接的超级电容器的使用寿命。该方法整体在实际硬件上进行了测试,并与现有技术进行了比较。在其最简单的配置中,尽管换相次数减少了约1/3,但所提出的方法比现有技术的替代方法具有更高的速度、更强的鲁棒性和更好的电流波形质量。其其他特性提供了额外的功能,并提高了变换器对其他应用的适应性。