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Control of three-phase cascaded multilevel converter based power electronic transformer under unbalanced input voltages

机译:输入电压不平衡下基于三相级联多电平变换器的电力电子变压器的控制

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As one of the most important parts of the future smart grid system, the three-phase cascaded multilevel converter based power electronic transformer (PET) is mainly composed of three parts: the three-phase input rectifier, middle dual active bridges (DAB) and output inverter. The three-phase input rectifier stage adopts pulse width modulation (PWM) rectifier. But there exists harmonic power in the power grid under unbalanced voltages which can affect the grid power quality seriously. Positive and negative sequence separating method is presented to solve the issue. The current references under positive and negative sequence d-q axis are obtained by using the relation of voltage, current and power, through which the control method is improved and simulation model is set up. Phase shifting control is adopted in DAB stage of three-phase PET. The result shows that the new method can control the input current, decrease the harmonic power, keep the DC voltage of rectifier stage steady and ensure that the whole system runs at unity power factor under unbalanced grid voltages.
机译:作为未来智能电网系统中最重要的部分,基于三相级联多电平转换器的电力电子变压器(PET)主要由三个部分组成:三相输入整流器,中间双有源电桥(DAB)和输出逆变器。三相输入整流器级采用脉冲宽度调制(PWM)整流器。但是,电网中存在不平衡电压下的谐波功率,会严重影响电网的电能质量。为了解决这个问题,提出了正负序列分离方法。利用电压,电流和功率的关系,得到了正负序d-q轴上的电流参考,通过改进了控制方法,建立了仿真模型。三相PET的DAB级采用相移控制。结果表明,该新方法可以控制输入电流,降低谐波功率,保持整流级的直流电压稳定,并确保整个系统在电网电压不平衡下以统一的功率因数运行。

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