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首页> 外文期刊>Emerging and Selected Topics in Power Electronics, IEEE Journal of >Dynamic Average-Value Modeling of Three-Level T-Type Grid-Connected Converter System
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Dynamic Average-Value Modeling of Three-Level T-Type Grid-Connected Converter System

机译:三级T型并网换流器系统的动态平均值建模

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摘要

Three-level T-type converter (3LT(2)C) possesses the advantages of simple structure and high efficiency, which makes it appealing especially in low- and medium-voltage applications. Dynamic average-value modeling (AVM) has become an effective methodology for small-signal analysis and large-signal transients of power electronic subsystems in power systems applications. In this paper, a dynamic AVM for the three-phase 3LT(2)C is presented for the first time. The proposed model is derived using the state-space average approach, where the averaging process is implemented over each pulsewidth modulation switching period. The ac- and dc-side dynamics are represented by a fourth-order time-invariant system. The accuracy of the developed AVM is validated against the detailed switching model, while demonstrating its computational advantages. The new model is also verified using experimental tests on a prototype.
机译:三电平T型转换器(3LT(2)C)具有结构简单和效率高的优点,这使其特别适合中低压应用。动态平均值建模(AVM)已成为电力系统应用中电力电子子系统的小信号分析和大信号瞬变的有效方法。本文首次提出了针对三相3LT(2)C的动态AVM。所提出的模型是使用状态空间平均方法导出的,其中平均过程是在每个脉宽调制切换周期上实施的。交流和直流侧动态由一个四阶时不变系统表示。相对于详细的切换模型验证了开发的AVM的准确性,同时证明了其计算优势。新模型还通过对原型的实验测试得到了验证。

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