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首页> 外文期刊>IEEE Transactions on Industry Applications >Impedance-Decoupled Modeling Method of Multiport Transmission Network in Inverter-Fed Power Plant
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Impedance-Decoupled Modeling Method of Multiport Transmission Network in Inverter-Fed Power Plant

机译:逆变供电电厂多端口传输网络的阻抗解耦建模方法

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摘要

This article presents an impedance-decoupled modeling method of multiport transmission network in an inverter-fed power plant, which is able to simplify modeling and stability analysis procedure for power plant with complicated transmission network. Impedance-decoupled models of three-port and four-port transmission networks are first established. On the basis of them, impedance-decoupled model of multiport transmission network is derived, where transmission node with multiple branches is modeled by means of Norton equivalent circuit. Furthermore, based on the proposed impedance-decoupled network modeling method, the whole power plant is divided into multiple subsystems, and Nyquist stability criterion is performed for all subsystems, where oscillation source can be identified in an explicit way. Simulation and experimental results are given to validate effectiveness of the proposed impedance-decoupled modeling and stability analysis method. The proposed modeling method is able to simplify modeling procedure of large-scale power plant with complicated transmission network, which is also applicable in power plant with various transmission network topologies.
机译:本文提出了一种逆变供电电厂多端口传输网络的阻抗解耦建模方法,能够简化具有复杂传输网络的电厂的建模和稳定性分析程序。首先建立了三端口和四端口传输网络的阻抗去耦模型。在此基础上,推导了多端口传输网络的阻抗解耦模型,利用诺顿等效电路对具有多分支的传输节点进行了建模。此外,基于提出的阻抗解耦网络建模方法,将整个电厂分为多个子系统,并对所有子系统执行奈奎斯特稳定性判据,从而可以明确地确定振动源。仿真和实验结果证明了所提出的阻抗解耦建模和稳定性分析方法的有效性。所提出的建模方法能够简化具有复杂传输网络的大型电厂的建模过程,也适用于具有各种传输网络拓扑的电厂。

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