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首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >Direct Interfacing of Dynamic Average Models of Line-Commutated Rectifier Circuits in Nodal Analysis EMTP-Type Solution
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Direct Interfacing of Dynamic Average Models of Line-Commutated Rectifier Circuits in Nodal Analysis EMTP-Type Solution

机译:节点分析EMTP型解决方案中的线路换向整流电路动态平均模型的直接接口

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摘要

Dynamic average-value models (AVMs) for AC-DC rectifier circuits are generally formulated in state-space form and hence are straightforward to implement in state-variable-based simulation languages. In the nodal analysis-based approach used in electromagnetic transient (EMTP-type) simulation packages, the development of AVMs requires additional effort to reformulate and interface the models with the external ac and dc networks. This paper proposes a new averaged-circuit model for three-phase line-commutated rectifiers which is directly interfaced with the ac and dc networks, thereby achieving a simultaneous solution of the respective variables in EMTP-type solution. The proposed model is verified against conventionally interfaced model, as well as detailed switching model of the original rectifier circuit. A significant improvement of numerical accuracy and stability of the solution is demonstrated even at fairly large time steps.
机译:用于AC-DC整流器电路的动态平均值模型(AVM)通常以状态空间形式表示,因此可以直接在基于状态变量的仿真语言中实现。在电磁瞬态(EMTP型)仿真程序包中使用的基于节点分析的方法中,AVM的开发需要额外的精力来重新构建模型并将其与外部交流和直流网络连接。本文提出了一种新的三相线路换向整流器平均电路模型,该模型直接与交流和直流网络连接,从而在EMTP型解中实现了各个变量的同时解。针对传统接口模型以及原始整流器电路的详细开关模型,对所提出的模型进行了验证。即使在相当大的时间步长下,也证明了数值精度和解决方案稳定性的显着提高。

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