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Offshore Wind Farms and HVDC Grids Modeling as a Feedback Control System for Stability Analysis

机译:海上风电场和HVDC电网建模作为稳定性分析的反馈控制系统

摘要

The low impedance characteristics of DC transmission lines cause the voltage source converter (VSC) in HVDC networks to become electrically closer together and increase the risk of severe interactions between the converters. Such interactions, in turn, intensify the implementation of the grid control schemes and may lead the entire system to instability. Assessing the stability and adopting complex coordinated control schemes in an HVDC grid and wind farm turbines are challenging and require a precise model of the HVDC grid, wind farm, and the controllers. In this paper, a linear multivariable feedback control system (FCS) model is proposed to represent the dynamic characteristicsof HVDC grids and their controllers. The FCS model can be used for different dynamic analyses in time and frequency domains. Moreover, using the FCS model the system stability is analyzed in both open- and closed-loop forms. The standard eigenanalysis identifies the modes of only the closed-loop system and detects the pertaining state variables. The open-loop model, in the frequency domain, is a complementary tool that helps to have more intuitive insight into the system stability. A four terminal HVDC grid with two OWPPs and two AC grids is used for simulations and verification of the proposed FCS model.
机译:DC传输线的低阻抗特性导致HVDC网络中的电压源转换器(VSC)在电气上变得更靠近,并增加了转换器之间严重相互作用的风险。这样的交互反过来会加剧网格控制方案的实施,并可能导致整个系统不稳定。在HVDC电网和风电场涡轮机中评估稳定性并采用复杂的协调控制方案具有挑战性,并且需要HVDC电网,风电场和控制器的精确模型。本文提出了一种线性多变量反馈控制系统(FCS)模型来表示HVDC电网及其控制器的动态特性。 FCS模型可用于时域和频域中的不同动态分析。此外,使用FCS模型,可以以开环和闭环形式分析系统稳定性。标准特征分析仅识别闭环系统的模式,并检测相关的状态变量。频域中的开环模型是一种补充工具,有助于更直观地了解系统稳定性。具有两个OWPP和两个AC电网的四端子HVDC电网用于仿真和验证所提出的FCS模型。

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