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Modeling and Design of a Neutral-Point Voltage Regulator for a Three-Level Diode-Clamped Inverter Using Multiple-Carrier Modulation

机译:采用多载波调制的三电平二极管钳位型逆变器中性点稳压器的建模与设计

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The three-level diode-clamped multilevel converter commonly called the neutral-point-clamped converter has become established to be a preferred topology for high-power motor drive applications operating at several kilovolts. Although solutions to the problem of maintaining a stable neutral-point voltage in the converter continue to be the topic of research, a simple solution based on a design-oriented dynamic model of the system is not widely known. This paper presents the design, analysis, and implementation of a simple neutral-point voltage regulator for a three-level diode-clamped multilevel inverter, which uses a multiple-carrier sine-triangle modulator in conjunction with a closed-loop controller for neutral-point regulation. Redundant state choices are controlled via a continuous offset voltage that regulates the dc injection into the midpoint of the dc bus. A small-signal transfer function is developed in closed form, for neutral-point regulation, with the voltage offset as the control variable. Besides maintaining de-bus voltage balance, the use of the approach leads to a significant reduction in the voltage distortion at the neutral point, allowing a definitive reduction in the required dc bus capacitance. Analytical, computer simulation, and experimental results verifying the approach are presented in this paper.
机译:三电平二极管钳位多电平转换器(通常称为中性点钳位转换器)已被确立为工作在几千伏的大功率电机驱动应用的首选拓扑。尽管解决转换器中保持中性点电压稳定问题的方法仍然是研究的主题,但基于系统的面向设计的动态模型的简单解决方案仍未广为人知。本文介绍了一种用于三电平二极管钳位多电平逆变器的简单中性点稳压器的设计,分析和实现,该稳压器使用多载波正弦三角形调制器和闭环控制器进行中性点控制。点规。冗余状态选择是通过一个连续的失调电压来控制的,该失调电压可调节直流注入直流母线中点的电压。小信号传递函数以闭环形式开发,用于中性点调节,电压偏移作为控制变量。除了保持总线电压平衡以外,使用该方法还可以显着降低中性点处的电压失真,从而可以显着降低所需的直流总线电容。本文介绍了分析,计算机仿真和实验结果验证了该方法。

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