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Modeling of VSCs Considering Input and Output Active Power Dynamics for Multi-Terminal HVDC Interaction Analysis in DC Voltage Control Timescale

机译:考虑输入和输出有功功率动态变化的VSC建模,用于DC电压控制时标中的多端子HVDC相互作用分析

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Multi-terminal high-voltage direct current (MTDC) systems based on voltage source converters (VSCs) are increasingly utilized. In such a case, dynamic interactions among different VSCs of each terminal become one of the leading problems for the acdc interconnected system. This paper presents a frequency-domain small-signal model of MTDC-linked VSCs in dc voltage control (DVC) timescale based on the motion equation concept. Control schemes, including two typical dc voltage-droop control, phase-locked loop, and vector control in DVC timescale are taken into account adequately. By considering the dynamics of both input and output active powers across the dc capacitor, the proposed model aims to describe the external characteristics of MTDC-linked VSCs independent of grid conditions, which makes it easy to extend in various types of MTDC systems. Interaction analysis of a typical four-terminal HVdc system was conducted to validate the feasibility of the presented model.
机译:越来越多地利用基于电压源转换器(VSC)的多端子高压直流(MTDC)系统。在这种情况下,每个终端的不同VSC之间的动态交互成为acdc互连系统的主要问题之一。本文提出了基于运动方程概念的直流电压控制(DVC)时标中MTDC链接的VSC的频域小信号模型。充分考虑了控制方案,包括两个典型的直流电压降控制,锁相环和DVC时标中的矢量控制。通过考虑跨直流电容器的输入和输出有功功率的动态特性,所提出的模型旨在描述独立于电网条件的,与MTDC相连的VSC的外部特性,这使其易于扩展到各种类型的MTDC系统中。进行了典型的四端HVdc系统的相互作用分析,以验证所提出模型的可行性。

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