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Control Strategy Implemented in Modular Multilevel Converter to Improve the Operation During Variable DC Bus Voltage

机译:模块化多电平转换器中实现的控制策略可改善可变直流母线电压下的操作

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The modular multilevel converter (MMC) in high voltage direct current (HVDC) is equipped with hundreds of sub-modules (SMs), so the detailed model consist of hundreds of switching devices and consequently large computational effort but mathematical converter model with Arm Level Averaged (ALA) allows to know the dynamic and converter control decreasing simulation time. This paper presents a control strategy decou- pling the modulation index implemented in MMC-ALA model, it allows MMC operation with variable DC bus voltage but keeping constant the capacitor voltage in upper and lower arms, the evaluations consider the next operations: boost mode reducing DC bus voltage to 0.5.p.u., DC fault and SM voltage increased. The upper and lower capacitor voltages in all cases follow the reference independently to DC bus voltage value, the strategy is simulated in 150 MW converter using Matlab/Simulink.
机译:高压直流(HVDC)中的模块化多电平转换器(MMC)配备了数百个子模块(SM),因此详细模型由数百个开关设备组成,因此需要大量的计算工作,但是具有平均臂级的数学转换器模型(ALA)允许了解动态和转换器控制减少的仿真时间。本文提出了一种控制策略,该策略与在MMC-ALA模型中实现的调制指数不同,它允许MMC在可变DC总线电压下工作,但在上下臂中保持电容器电压恒定,评估考虑了下一个工作:升压模式降低直流母线电压降至0.5.pu,直流故障和SM电压升高。在所有情况下,电容器的上下电压均独立于直流母线电压值而遵循基准电压,该策略在使用Matlab / Simulink的150 MW变频器中进行了仿真。

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