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Modular Multilevel Converter Circulating Current Reduction Using Model Predictive Control

机译:基于模型预测控制的模块化多电平转换器环流降低

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摘要

Modular multilevel converter (MMC) is a promising new topology for high-voltage applications. The MMC is made of several identical submodules. For proper operation, each submodule can be considered as a controlled voltage source where capacitor’s voltage should be maintained at a certain level. Besides, the minimization of the circulating current, which does not flow to the load, is crucial for achieving stable and efficient operation of the MMC. The interrelations among the load current, circulating current, and capacitor voltages complicate the MMC control. This paper aims to achieve stable and balanced voltage and current control with reduced circulating current in various operating conditions. The proposed control uses weighted model predictive control based on a normalized cost function to select the inverter switching patterns, which control the load current, while minimizing voltage fluctuation and circulating current. The weighting factors were selected based on minimizing the load-current total harmonic distortion (THD) and circulating current. The analysis is conducted on a low-power case study of single-phase four-cells MMC with possible extension to higher number of cells. The low-power three-level prototype is designed and built to validate this proposed method. Theoretical analysis, simulation, and experimental results are presented and compared. Parameter sensitivity analysis was also conducted. They all confirm the effectiveness of the proposed control method.
机译:模块化多电平转换器(MMC)是一种有前途的高压应用新拓扑。 MMC由几个相同的子模块组成。为了正确操作,每个子模块都可以视为受控电压源,在此处电容器的电压应保持在一定水平。此外,不流向负载的循环电流的最小化对于实现MMC的稳定高效运行至关重要。负载电流,循环电流和电容器电压之间的相互关系使MMC控制变得复杂。本文旨在通过在各种工作条件下降低循环电流来实现稳定,平衡的电压和电流控制。所提出的控制使用基于归一化成本函数的加权模型预测控制来选择逆变器开关模式,该模式控制负载电流,同时最大程度地减小电压波动和循环电流。基于最小化负载电流总谐波失真(THD)和循环电流来选择加权因子。该分析是在单相四单元MMC的低功耗案例研究中进行的,并可能扩展到更多单元。设计并构建了低功耗三级原型,以验证该建议方法。提出并比较了理论分析,仿真和实验结果。还进行了参数敏感性分析。它们都证实了所提出的控制方法的有效性。

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