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Dynamic Average-Value Modeling of CIGRE HVDC Benchmark System

机译:CIGRE HVDC基准系统的动态平均值建模

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摘要

High-voltage direct-current (HVDC) systems play an important role in modern energy grids, whereas efficient and accurate models are often needed for system-level studies. Due to the inherent switching in HVDC converters, the detailed switch-level models are computationally expensive for the simulation of large-signal transients and hard to linearize for small-signal frequency-domain characterization. In this paper, a dynamic average-value model (AVM) of the first CIGRE HVDC benchmark system is developed in a state-variable-based simulator, such as Matlab/Simulink, and nodal-analysis-based electromagnetic transient program (EMTP), such as PSCAD/EMTDC. The 12-pulse converters in the HVDC system are modeled with a set of nonlinear algebraic functions that are extracted numerically. The results from the average-value models are compared with the results of the detailed simulation to verify the accuracy of the AVMs in predicting the large-signal time-domain transients. The developed dynamic average models are shown to have computational advantages.
机译:高压直流(HVDC)系统在现代能源网格中起着重要作用,而系统级研究通常需要高效且准确的模型。由于HVDC转换器具有固有的开关功能,因此详细的开关级模型对于大信号瞬态的仿真在计算上是昂贵的,而对于小信号频域表征则很难进行线性化。本文在基于状态变量的仿真器(例如Matlab / Simulink)和基于节点分析的电磁暂态程序(EMTP)中开发了第一个CIGRE HVDC基准测试系统的动态平均值模型(AVM),例如PSCAD / EMTDC。 HVDC系统中的12脉冲转换器使用一组非线性代数函数进行建模,这些函数通过数字提取。将平均值模型的结果与详细模拟的结果进行比较,以验证AVM在预测大信号时域瞬变中的准确性。所开发的动态平均模型具有计算优势。

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