Renewable energy sources (RES) has gained significant interest in recent years. However, due to favourable weather conditions, the RES is installed in remote locations with limited transmission capacity. As a result, it can lead to major curtailments of the free resource when the network is congested. Therefore, energy storage system (ESS) is considered as a viable solution to store energy and address the intermittent nature of RES though ESS is often distributed and may not be geographically close to RES. Therefore, ESS may also suffer from limited transmission capacity due to network congestion. Currently, grid operators overlook network flexibility as a congestion management tool in day-ahead scheduling. This paper addresses these issues and studies the benefits of introducing network reconfiguration (NR) as a preventive and corrective action for transmission flexibility in day-ahead stochastic security-constrained unit-commitment (SSCUC-PC) while considering a multi-scenario RES output. Simulation results demonstrate that NR can lower total system cost, reduce RES curtailments and utilize ESS for better impact by alleviating network congestion in both base-case and post-contingency networks.
翻译:可再生能源近年来引起了很大的兴趣,然而,由于天气条件有利,可再生能源在传送能力有限的偏远地区安装,因此,在网络拥挤时,可以导致大量限制免费资源,因此,能源储存系统被视为储存能源的可行办法,并解决可再生能源的间歇性,尽管ESS经常分布,在地理上可能不靠近RESS。因此,ESS还可能由于网络拥挤而受传输能力有限的影响。目前,电网经营者忽视网络灵活性,将其作为日头排时的拥堵管理工具。本文处理这些问题,并研究采用网络重组作为预防和纠正行动,在日头随机安全限制的单位化(SSCUC-PC)中灵活传输的好处,同时考虑多角度的RES产出。模拟结果显示,NR可以降低系统总成本,减少资源限制,并利用ES来改善影响,办法是减轻基地和冲突后网络的网络拥堵。