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首页> 外文期刊>IEEE Transactions on Energy Conversion >Impedance Modeling of Three-Phase Voltage Source Converters in DQ, Sequence, and Phasor Domains
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Impedance Modeling of Three-Phase Voltage Source Converters in DQ, Sequence, and Phasor Domains

机译:DQ,序列和相量域中的三相电压源转换器的阻抗建模

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摘要

This paper presents a modular approach for the impedance modeling of three-phase voltage source converters (VSC) by representing the VSC dynamics using three-by-three transfer matrix in the dq, sequence, and phasor domains. The transfer matrix form simplifies the modeling process by separately modeling the ac and dc side dynamics, and describing the VSC dynamics independent of the ac and dc side networks. It also explicitly captures coupling among the dominant frequency components of the ac and dc side voltages and currents in the off-diagonal elements. Modeling of the VSC ac and dc side impedances, including the effects of the network on the other side of the VSC, is presented using the transfer matrix models. Transfer matrix based impedance modeling in the three domains and several stability analysis case studies are presented for a VSC-based HVDC station in an offshore wind farm. It is shown that the coupling between the ac and dc networks, and between the positive and negative sequence components of the three-phase quantities, play an important role in the low-frequency stability of the VSC. Impedance models and stability analysis predictions are validated using the wind farm simulations.
机译:本文通过在dq,序列和相量域中使用三乘三传递矩阵表示VSC动态,提出了一种用于三相电压源转换器(VSC)阻抗建模的模块化方法。传递矩阵形式通过分别对交流和直流侧动态建模,并描述独立于交流和直流侧网络的VSC动态,简化了建模过程。它还明确捕获了非对角线元件中交流和直流侧电压和电流的主要频率分量之间的耦合。使用转移矩阵模型介绍了VSC交流和直流侧阻抗的模型,包括网络在VSC另一侧的影响。针对海上风力发电场中基于VSC的HVDC站,在三个领域中基于传递矩阵的阻抗建模和几个稳定性分析案例研究进行了介绍。结果表明,交流和直流网络之间以及三相量的正序和负序分量之间的耦合在VSC的低频稳定性中起着重要的作用。阻抗模型和稳定性分析预测均使用风电场仿真进行了验证。

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