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A comprehensive modeling framework for dynamic and steady-state analysis of voltage droop control strategies in HVDC grids

机译:高压直流输电电网电压降控制策略的动态和稳态分析的综合建模框架

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This paper presents a comprehensive modeling framework to analyze and compare the performance of different voltage droop control characteristics in an HVDC grid. All models are fully derived mathematically, both for dynamic simulations and for steady-state power flow analysis. The main contribution lies in the development of a common modeling and control approach for the different droop-based control schemes that have been presented in the literature. The discussion includes power- and current-based droop control, either in their standard form or combined with a deadband, a constant voltage control or consisting of different slopes. Dynamic simulations show that, when applying a comparable underlying dynamic converter control framework, similar dynamic responses can be expected from the different droop control schemes, while the steady-state voltage deviations and power sharing after a contingency are different. A comparison with results from a full-detailed power flow implementation shows that these voltage deviations and power sharing can accurately be predicted by the derived steady-state power flow models, thereby avoiding the need for time-consuming dynamic simulations. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文提出了一个综合的建模框架,用于分析和比较高压直流输电电网中不同电压下降控制特性的性能。所有模型都是数学上完全推导的,用于动态仿真和稳态潮流分析。主要的贡献在于针对文献中已经介绍过的基于下垂的不同控制方案的通用建模和控制方法的开发。讨论内容包括标准形式或与死区结合的基于功率和电流的下降控制,恒定电压控制或由不同的斜率组成。动态仿真表明,当应用可比较的基础动态转换器控制框架时,可以从不同的下垂控制方案获得相似的动态响应,而在意外情况之后,稳态电压偏差和功率分配也有所不同。与来自详细的潮流实现的结果的比较表明,可以通过导出的稳态潮流模型准确地预测这些电压偏差和功率共享,从而避免了耗时的动态仿真。 (C)2015 Elsevier Ltd.保留所有权利。

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