基于下垂控制的VSC-MTDC系统线性模型的潮流分析

Changfeng Liao, Yi Tan, Yong Li, Yijia Cao, Y. Wen
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引用次数: 1

摘要

直流下垂控制将非线性引入交直流混合系统的潮流分析中,使这种复杂混合系统的计算和优化变得更加棘手。为了解决这个问题,我们提出了一种技术来线性化基于电压源变换器的多端直流(vcs - mtdc)系统模型,并使用不同的下垂控制(例如电压-功率和电压-电流下垂控制)。新的直流系统线性模型可以很容易地嵌入到交直流混合系统的统一潮流分析中。在此基础上,我们进一步描述了具有下垂控制的交直流混合系统的线性潮流模型,该模型由于其线性特性而更容易求解。最后,在几个不同规模的交直流混合系统上验证了所提线性潮流模型的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Linear Models of the VSC-MTDC Systems with the Droop Controls for Power Flow Analysis
The DC droop control would introduce nonlinearities to the power flow analysis of hybrid AC and DC systems, making the calculation and optimization of such complex hybrid systems more intractable. To tackle this issue, we propose a technique to linearize the voltage source converter based multi-terminal DC (VSC-MTDC) system model with different droop controls (e.g., voltage-power and voltage-current droop controls). The novel linear DC system models could be easily embedded into the unified power flow analysis of the hybrid AC and DC systems. Based on this, we furthermore describe a linear power flow model for the hybrid AC and DC systems with droop control, which is much easier to be solved due to the linear nature. Finally, the accuracy of the proposed linear power flow model is verified on several hybrid AC and DC systems with different sizes.
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