Improved control strategy of full-bridge modular multilevel converter

G. Adam
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引用次数: 3

Abstract

This paper describes a control approach that allows the cell capacitors of the full-bridge modular multilevel converter (FB-MMC) to be controlled independent of dc link voltage. Also the control approach offers the possibility of operating the FB-MMC from bi-polar dc link voltages; thus, creating new possibilities for building generic hybrid dc grids with reversible dc link voltage, where conventional line commutated current source converters can operate in conjunction with voltage source converters. Additionally the control approach improves dc fault ride-through of the FB-MMC compared with existing approaches. This is achieved by active control of the arm currents and cell capacitor voltages, and exploitation of the FB-MMC redundant switch states. FB-MMC operation with reversible DC link voltage and decoupled control of the cell capacitor voltages from the dc link voltage are demonstrated using simulations.
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全桥模块化多电平变换器的改进控制策略
本文介绍了一种控制方法,使全桥模块化多电平变换器(FB-MMC)的单元电容器可以独立于直流链路电压进行控制。此外,控制方法提供了从双极直流链路电压操作FB-MMC的可能性;因此,为建立具有可逆直流链路电压的通用混合直流电网创造了新的可能性,在这种情况下,传统的线路换向电流源转换器可以与电压源转换器一起工作。此外,与现有控制方法相比,该控制方法提高了FB-MMC的直流故障通过率。这是通过主动控制臂电流和电池电容器电压,并利用FB-MMC冗余开关状态来实现的。通过仿真演示了具有可逆直流链路电压的FB-MMC操作以及对电池电容电压与直流链路电压的解耦控制。
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