规划工具中的高压直流输电系统模型概述:意大利的经验

L. Michi, G. Donnini, P. Capurso, A. C. Bugliari, F. Falorni, M. Quadrio, D. Canever, L. Giorgi
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引用次数: 7

摘要

输电系统运营商(TSO)必须解决电力系统规划中的新挑战,如大量可再生能源(RES)的整合、全球脱碳和效率目标,以确保最佳管理、可靠性和电网灵活性。在这种情况下,高压直流(HVDC)可能发挥关键作用,与HVAC传输线相比,它提供了额外的好处。因此,电网规划和中长期研究需要一个有效的、详细的不同高压直流技术和配置模型。本文的目的是报告意大利在高压直流输电系统稳态研究模型方面的经验,特别提到LCC或CSC(线路换流变换器或电流源变换器)和VSC(电压源变换器)高压直流,分析它们对负荷流求解技术的影响。本文还介绍了通用电网模型交换数据(CGMES)中的HVDC实现,CGMES是ENTSO-E框架中定义的数据交换标准,用于改进泛欧电网建模和tso之间的信息交换,以用于TYNDP研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An overview of the HVDC transmission system models in planning tools: the Italian experience
New challenges in power system planning, such as integration of massive amount of Renewable Energy Resources (RES), global decarbonization and efficiency targets, must be addressed by the Transmission System Operator (TSO) to guarantee optimal management, reliability and power grid flexibility. In this context, High Voltage Direct Current (HVDC) may play a key role, providing additional benefits compared to HVAC transmission line. Therefore, a valid and detailed model of different HVDC technologies and configurations is needed for grid planning and middle-long term studies. The aim of this paper is reporting the Italian experience in HVDC transmission system models for steady state studies, with special reference to LCC or CSC (line-commutated converter or current-source converter) and VSC (voltage-source converter) HVDC, analyzing their impact in load-flow solution techniques. The HVDC implementation in Common Grid Model Exchange Data (CGMES), the data exchange standard defined in ENTSO-E framework, used to improve Pan-European grid modelling and information exchange among TSOs for TYNDP studies are also presented.
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