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Power and DC link voltage control considerations for indirect AC/AC Modular Multilevel Converters

机译:用于间接AC / AC模块化多电平转换器的电源和直流链路电压控制考虑因素

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A highly interesting application field of the Modular Multilevel Converter is the interconnection of the European three-phase 50 Hz industrial grid with the single-phase 16 2/3 Hz railway supply. Contrary to existing technologies, the utilization of a bulky and costly transformer on the low frequency side as well as additional filtering components on the AC lines or DC link are avoided. However, the inherent converter dynamics still pose challenges in the design of control systems, which should ensure safe operation as well as high performance in steady state and transient conditions. This paper investigates an effective way to control the power as well as the DC link voltage in such a Modular Multilevel Converter-based network interface. The additional control objectives, such as branch energy stabilization as well as sub-module capacitor voltage balancing are maintained, regardless of the aforementioned externally controlled magnitudes. The DC link second harmonic power fluctuation, which is a property of the single-phase side, is also compensated by means of proper circulating current control. The analyzed concepts are evaluated by means of simulation results, using a discrete-time model of a real power application.
机译:模块化多电平转换器的高度有趣的应用领域是欧洲三相50Hz工业网格与单相16 2/3 Hz铁路供应的互连。与现有技术相反,避免了在低频侧的笨重和昂贵的变压器的利用以及交流线路或直流链路上的额外滤波组件。然而,固有的转换器动态仍然在控制系统的设计中造成挑战,这应该确保安全操作以及在稳态和瞬态条件下的高性能。本文调查了控制电力以及基于模块化多级转换器的网络接口中的功率以及直流链路电压的有效方法。无论上述外部控制的大小如何,维持额外的控制目标,例如分支能量稳定化以及子模块电容器电压平衡。作为单相侧的特性的DC连杆第二谐波功率波动也通过适当的循环电流控制来补偿。通过仿真结果,使用实际功率应用的离散时间模型来评估分析的概念。

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