论文标题
模块化多级转换器,具有无传感器二极管链接的平衡,通过级别调整的相移调制
Modular Multilevel Converter with Sensorless Diode-Clamped Balancing through Level-Adjusted Phase-Shifted Modulation
论文作者
论文摘要
级联的H桥和模块化多级转换器(MMC)正在上升,随着可再生能源产生,能源存储和电动机驱动器的新兴应用。但是,它们众所周知的优势是以复杂的平衡,高带宽隔离监控的价格以及可以防止MMC扩展到高成本驱动市场的众多传感器。因此,研究的一个明显趋势是发展控制和拓扑,这些控制和拓扑较少取决于测量,并受益于更简单的控制。在更适用的解决方案中,认为二极管夹具的拓扑被认为是。二极管斜线拓扑的主要问题是,它只能在一个方向上平衡字符串的模块电压。因此,它不能提供完全平衡的操作。本文提出了一种有效的平衡技术,用于二极管斜拓扑。提出的解决方案通过引入对称级别调整后的相移调制方案来利用ARM电流的直流分量,并确保平衡电流始终朝着正确的方向。该方法的主要优点是无传感器操作,没有添加的计算和控制工作,并且整体成本较低。分析和详细的模拟提供了对系统运行以及新平衡技术的见解,实验结果证实了提供的讨论。
Cascaded H-bridge and modular multilevel converters (MMC) are on the rise with emerging applications in renewable energy generation, energy storage, and electric motor drives. However, their well-known advantages come at the price of complicated balancing, high-bandwidth isolated monitoring, and numerous sensors that can prevent MMCs from expanding into highly cost driven markets. Therefore, an obvious trend in research is developing control and topologies that depend less on measurements and benefit from simpler control. Diode-clamped topologies are considered among the more applicable solutions. The main problem with a diode-clamped topology is that it can only balance the module voltages of a string in one direction; therefore, it cannot provide a completely balanced operation. This paper proposes an effective balancing technique for the diode-clamped topology. The proposed solution exploits the dc component of the arm current by introducing a symmetrically level-adjusted phase-shifted modulation scheme, and ensures the balancing current flow is always in the correct direction. The main advantages of this method are sensorless operation, no added computation and control effort, and low overall cost. Analysis and detailed simulations provide insight into the operation of the system as well as the new balancing technique and the experimental results confirm the provided discussions.