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A Generic Scheduling Algorithm for Low-Frequency Switching in Modular Multilevel Converters With Parallel Functionality

机译:一种具有并行功能模块化多级转换器低频切换的通用调度算法

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Since the introduction of modular multilevel converters (MMC), various additional features have been introduced for MMCs, among them parallel inter-module connectivity. However, such a parallel mode requires appropriate modulation and switching strategies to exploit its full potential. Low-frequency switching modulation is widely used with half-bridge modules and a large body of research focusses on the optimum control and scheduling of these methods. However, so far, a suitable adaptation for MMCs with parallel mode is missing, and existing methods perform suboptimum. This article proposes a generic scheduling algorithm for simple and low-cost integration with low-frequency switching modulation. The proposed method reduces control complexity, minimizes power loss, and can be combined with most modulation techniques, including nearest-level modulation (NLM) and selective harmonic elimination. The text in this article provides a general algorithm for integrating this method with other control levels and analyzes its effect on MMCs with parallel functionality. Moreover, it examines the performance of the system with NLM combined with the proposed scheduler and compares it to other alternatives. Results show up to a 50% reduction in power loss with a similar modulation technique as well as significantly lower THD and power loss compared to optimized phase-shifted carrier modulation as another sensorless alternative method.
机译:由于引入模块化多级转换器(MMC),因此已经为MMCS引入了各种附加功能,其中包括并行模块间连接。然而,这种并行模式需要适当的调制和切换策略来利用其全部潜力。低频切换调制广泛应用于半桥模块,大量研究侧重于这些方法的最佳控制和调度。然而,到目前为止,缺少具有并行模式的MMC的合适适应,并且现有方法执行次优。本文提出了一种具有低频率切换调制的简单和低成本集成的通用调度算法。所提出的方法可降低控制复杂性,最大限度地减少功率损耗,并且可以与大多数调制技术组合,包括最近的级别调制(NLM)和选择性谐波消除。本文中的文本提供了一种与其他控制级别集成该方法的一般算法,并分析其对具有并行功能的MMC的影响。此外,它检查了系统与NLM的性能与所提出的调度程序相结合,并将其与其他替代方案进行比较。结果显示,与另一种无传感器替代方法的优化相移载体调制相比,具有类似的调制技术,具有类似的调制技术的功率损耗减少了50%,以及显着降低的THD和功率损耗。

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