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Design considerations for primary control in multi-terminal VSC-HVDC grids

机译:多端子VSC-HVDC电网中主要控制的设计注意事项

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Multi-terminal dc networks based on voltage source converters (VSC) are the latest trend in dc-systems; the interest in the area is being fueled by the increased feasibility of these systems for the large scale integration of remote offshore wind resources. Despite the active research effort in the field, at the moment, issues related to the operation and control of these networks, as well as sizing, are still uncertain. This paper intends to make a contribution in this field by analyzing the sizing of droop control for VSC together with the output capacitors. Analytical formulas are developed for estimating the voltage peaks during transients, and then it is shown how these values can be used to dimension the dc-bus capacitor of each VSC. Further on, an improved droop control strategy that attenuates the voltage oscillations during transients is proposed. The proposed methods are validated on the dc-grid benchmark proposed by the CIGRE B4 working group. Starting from the structure of the network and the power rating of the converters at each terminal, the output capacitors and the primary control layer are designed together in order to ensure acceptable voltage transients.(C) 2014 Elsevier B.V. All rights reserved.
机译:基于电压源转换器(VSC)的多端子直流网络是直流系统中的最新趋势。这些系统用于远程海上风电资源大规模整合的可行性的增加,激发了对该地区的兴趣。尽管在该领域进行了积极的研究,但目前仍不确定与这些网络的操作和控制以及规模相关的问题。本文旨在通过分析VSC与输出电容器一起的下垂控制的大小来对此领域做出贡献。开发了用于估算瞬态过程中电压峰值的分析公式,然后说明了如何使用这些值来确定每个VSC的直流总线电容器的尺寸。进一步地,提出了一种改进的下降控制策略,该策略降低了瞬变期间的电压振荡。所提出的方法已在CIGRE B4工作组提出的dc-grid基准上得到验证。从网络结构和每个端子转换器的额定功率开始,输出电容器和初级控制层是一起设计的,以确保可接受的电压瞬变。(C)2014 Elsevier B.V.保留所有权利。

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