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首页> 外文期刊>Electric Power Components and Systems >Modeling and Full Decoupling Control of a Grid-Connected Five-Level Diode-Clamped Converter
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Modeling and Full Decoupling Control of a Grid-Connected Five-Level Diode-Clamped Converter

机译:并网五电平二极管钳位转换器的建模和完全解耦控制

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摘要

This paper presents a novel approach to deal with the regulation of the dc-link capacitor voltages and ac-side currents in a grid-connected five-level diode-clamped converter. Due to the controllability problems of this topology, guaranteeing a solid current control and, mainly, a correct dc-link voltage sharing, represents a complex technical challenge. With the purpose of coping with it, an averaged model that describes the system dynamics at both sides of the converter is presented, assuming that a modulation strategy is integrated in the system to generate the switching sequence. In order to derive the proposed model, no restriction concerning the use of only the three nearest vectors to the desired voltage reference is taken into account. Then, several changes of variables are carried out in the model equations to obtain control input decoupling for control purposes, while reducing the complexity of the model as well. Finally, the voltage and current controllers are designed separately using different control inputs in a straightforward way. Neither auxiliary hardware nor complicated mathematical calculations are required to achieve the control objectives. The effectiveness and good performance of the system under the proposed control approach are validated by simulation results, suggesting that the five-level diode-clamped converter can be a solid solution as an interfacing system connected to the utility grid for, e.g., industrial drives or renewable energy applications.
机译:本文提出了一种新颖的方法来处理并网五电平二极管钳位转换器中直流链路电容器电压和交流侧电流的调节。由于这种拓扑结构的可控性问题,要保证可靠的电流控制,主要是正确的直流母线电压共享,就代表了一项复杂的技术挑战。为了解决这个问题,假设在系统中集成了调制策略以生成开关序列,则提出了描述转换器两侧系统动力学的平均模型。为了导出所提出的模型,没有考虑关于仅使用三个与期望电压基准最接近的矢量的限制。然后,在模型方程式中对变量进行几次更改,以获得用于控制目的的控制输入去耦,同时也降低了模型的复杂性。最后,电压和电流控制器是通过不同的控制输入以直接方式分别设计的。无需辅助硬件或复杂的数学计算即可达到控制目标。仿真结果验证了所提出的控制方法下系统的有效性和良好的性能,表明五电平二极管钳位转换器可以作为连接到公用电网的接口系统(例如,工业驱动器或工业驱动器)的可靠解决方案。可再生能源应用。

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