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储能系统技术 储能系统 ★ 4.0

探究合作式输电规划在不同空间尺度热浪期间对电网性能的影响

Investigating the effects of cooperative transmission expansion planning on grid performance during heat waves with varying spatial scales

作者 Kerem Ziya Akdemir · Kendall Mongir · Jordan D.Kern · Konstantinos Oikonomou · Nathalie Voisin · Casey D.Burleyson · Jennie S.Ri · Mengqi Zhao · Cameron Bracken · Chris Vernon
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 378 卷
技术分类 储能系统技术
技术标签 储能系统
相关度评分 ★★★★ 4.0 / 5.0
关键词 Institutional hurdles and lack of coordination can hinder transmission expansion.
语言:

中文摘要

摘要 人们日益认识到区域间输电容量在电力系统脱碳方面的优势。一个较少被探讨的潜在益处是在极端天气事件期间可能带来的电网性能改善。本研究采用先进的建模链,通过模拟美国西部互联电网在2019年和2059年不同输电规划区域协作水平下的运行情况,评估合作式输电扩展规划的影响。研究重演了2019年两次地理覆盖范围不同的历史热浪事件,并将其置于2059年未来气候变化情景下,以评估在电网压力期间输电合作所带来的效益。结果表明,无论是在整个互联电网层面还是各个输电规划区域层面,合作式输电规划在降低批发电价和减少能源中断方面均取得了最佳效果。与各区域独立规划相比,在2059年,合作式规划可使批发电价降低64.3%,全互联电网的总成本(输电投资+电网运行成本)降低34.6%。此外,该模式通过提高可再生能源利用率,有助于减少温室气体排放。然而,在大范围热浪期间,当所有区域因空间冷却需求增加而面临极端用电负荷时,合作带来的效益有所减弱。尽管如此,合作式输电规划仍然具有优势,尤其对于拥有显著日间太阳能发电能力的加州独立系统运营商而言更为明显。本研究表明,输电规划中的区域合作对于在正常运行时期和极端天气事件期间降低成本、提升供电可靠性至关重要。研究同时强调,应优化战略性投资决策,以应对未来更大规模极端天气事件所带来的挑战。

English Abstract

Abstract There is growing recognition of the advantages of interregional transmission capacity to decarbonize electricity grids. A less explored benefit is potential performance improvements during extreme weather events. This study examines the impacts of cooperative transmission expansion planning using an advanced modeling chain to simulate power grid operations of the United States Western Interconnection in 2019 and 2059 under different levels of collaboration between transmission planning regions. Two historical heat waves in 2019 with varying geographical coverage are replayed under future climate change in 2059 to assess the transmission cooperation benefits during grid stress. The results show that cooperative transmission planning yields the best outcomes in terms of reducing wholesale electricity prices and minimizing energy outages both for the whole interconnection and individual transmission planning regions. Compared to individual planning, cooperative planning reduces wholesale electricity prices by 64.3 % and interconnection-wide total costs (transmission investments + grid operations) by 34.6 % in 2059. It also helps decrease greenhouse gas emissions by increasing renewable energy utilization. However, the benefits of cooperation diminish during the widespread heat wave when all regions face extreme electricity demand due to higher space cooling needs. Despite this, cooperative transmission planning remains advantageous, particularly for California Independent System Operator with significant diurnal solar generation capacity. This study suggests that cooperation in transmission planning is crucial for reducing costs and increasing reliability both during normal periods and extreme weather events. It highlights the importance of optimizing the strategic investments to mitigate challenges posed by wider-scale extreme weather events of the future.
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SunView 深度解读

该研究揭示跨区域输电协作在极端天气下的关键价值,对阳光电源储能系统(PowerTitan/ST系列PCS)具有重要启示。研究表明协作规划可降低64.3%电价并提升电网韧性,验证了分布式储能在热浪等极端场景下的调峰价值。建议结合iSolarCloud平台开发极端天气预测算法,优化GFM控制策略以支撑跨区域功率调度,并针对加州等高光伏渗透率地区强化储能系统的日内充放电能力,提升电网应对大范围极端事件的可靠性。