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A Unified Modeling Approach of Multi-Terminal VSC-HVDC Links for Dynamic Simulations of Large-Scale Power Systems

机译:大型电力系统动态仿真的多端子VSC-HVDC链路统一建模方法

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This paper introduces a new and general frame-of-reference for dynamic solutions of multi-terminal VSC-HVDC systems using the Newton-Raphson method. Three VSC dynamic models are derived to conform to each pairing AC sub-network-the slack converter whose aim is to control its DC voltage, the scheduled-power converter which injects a scheduled amount of power and the passive converter which is connected to an AC network with no frequency control equipment. Each VSC unit makes provisions for the phase reactor, AC filter, DC capacitor, DC smoothing inductor and LTC transformer. The VSC itself is a positive-sequence lumped-type model whose core elements are a phase-shifting transformer and an equivalent shunt susceptance which account for the phase-shifting and scaling nature of the PWM control. In turn, the DC side of each pairing VSC unit is linked to a DC system of an arbitrary configuration. All this enables the assembly of any number of VSCs, giving rise to a comprehensive formulation of multi-terminal VSC-HVDC systems. The prowess of the proposed multi-terminal dynamic model is demonstrated by carrying out a comparison against the widely-used EMT-type package Simulink, using a three terminal VSC-HVDC system, with very good results. Furthermore, a six-terminal VSC-HVDC system forming a DC ring is used to show the applicability of the proposed unified approach when solving multi-terminal VSC-HVDC links for system-wide dynamic studies.
机译:本文介绍了一种使用牛顿-拉夫森方法的多端子VSC-HVDC系统动态解决方案的新的通用参考框架。导出了三个VSC动态模型以符合每个配对的AC子网-旨在控制其DC电压的松弛转换器,注入预定量功率的预定功率转换器以及连接到AC的无源转换器没有频率控制设备的网络。每个VSC单元都为相电抗器,交流滤波器,直流电容器,直流平滑电感器和LTC变压器提供电源。 VSC本身是一个正序集总型模型,其核心元素是移相变压器和等效的分流电纳,这说明了PWM控制的相移和缩放特性。反过来,每个配对VSC单元的DC端都链接到任意配置的DC系统。所有这些使任何数量的VSC组装成为可能,从而形成了多端子VSC-HVDC系统的全面配方。通过使用三端VSC-HVDC系统与广泛使用的EMT型封装Simulink进行比较,证明了所提出的多端动态模型的能力。此外,使用一个形成DC环的六端子VSC-HVDC系统来显示所提出的统一方法在解决多端子VSC-HVDC链路以进行系统范围的动态研究时的适用性。

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