论文标题

迈向区域组之间的最佳协调:HVDC补充功率控制

Towards Optimal Coordination between Regional Groups: HVDC Supplementary Power Control

论文作者

Tosatto, Andrea, Misyris, Georgios, Junyent-Ferré, Adrià, Teng, Fei, Chatzivasileiadis, Spyros

论文摘要

随着欧洲致力于限制气候变化和温室气体的排放,大量可再生能源(RES)的份额正在集成到国家电网中,从而逐步淘汰了传统的一代。能源过渡引起的新挑战将需要在附近的系统操作员之间进行更好的协调,以维持系统安全。为此,本文研究了使用高压直流电流(HVDC)线的补充功率控制(SPC)功能在异步区域之间交换原始频率储量的好处。首先,我们关注的是由HVDC互连器耦合的异步AC系统的频率指标的推导。我们比较了HVDC转换器的两个不同的控制方案,这些方案允许相邻系统之间的单侧或双边交换。其次,我们制定频率约束,并将其包括在单位承诺问题中,以确保N-1安全标准。提出了一种数据驱动的方法,以更好地代表频率NADIR约束,通过切割超平面。我们的结果表明,通过HVDC交换主要储备金,可以在维护N-1安全的同时降低储备购买成本的10%。

With Europe dedicated to limiting climate change and greenhouse gas emissions, large shares of Renewable Energy Sources (RES) are being integrated in the national grids, phasing out conventional generation. The new challenges arising from the energy transition will require a better coordination between neighboring system operators to maintain system security. To this end, this paper studies the benefit of exchanging primary frequency reserves between asynchronous areas using the Supplementary Power Control (SPC) functionality of High-Voltage Direct-Current (HVDC) lines. First, we focus on the derivation of frequency metrics for asynchronous AC systems coupled by HVDC interconnectors. We compare two different control schemes for HVDC converters, which allow for unilateral or bilateral exchanges of reserves between neighboring systems. Second, we formulate frequency constraints and include them in a unit commitment problem to ensure the N-1 security criterion. A data-driven approach is proposed to better represent the frequency nadir constraint by means of cutting hyperplanes. Our results suggest that the exchange of primary reserves through HVDC can reduce up to 10% the cost of reserve procurement while maintaining the system N-1 secure.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源