论文标题

电网电池系统的障碍:西班牙电力市场的证据

Barriers to grid-connected battery systems: Evidence from the Spanish electricity market

论文作者

Hu, Yu, Soneira, David Soler, Sánchez, María Jesús

论文摘要

电能存储对于未来的能源系统被认为是必不可少的。在所有储能技术中,电池系统可以以更分布和分散的方式为电网提供灵活性。在电力市场放松管制的国家中,应在该国的特定市场设计下运营与网格连接的电池系统。在这项工作中,以西班牙电力市场为例,使用利用分析研究了与网格连接的电池系统的障碍。提出并引入了“潜在利用利用时间”的概念,以识别和评估电池系统的未来潜在网格应用程序。数值和经验分析表明,电池系统的高周期成本仍然是电网连接电池系统的主要障碍。在西班牙,对于日间市场内的能源套利,需要电池磨损成本降至15欧元/MWH,以使潜在的有利可图的利用率高于20%。然而,当需要更高的灵活性时,在应用中,电池的潜在利用可能要高得多。最小所需的电池磨损成本对应于20%的潜在利润利用时间增加到35欧元/MWH,用于日前市场和辅助服务中的能源套利,以及50欧元/MWH的次要储备。这项研究的结果有助于对电池存储技术的意识及其在网格应用中的灵活性。这些发现还对有兴趣在放松管制的电力市场下促进与网格连接的电池存储感兴趣的政策制定者和市场运营商具有重大影响。

Electrical energy storage is considered essential for the future energy systems. Among all the energy storage technologies, battery systems may provide flexibility to the power grid in a more distributed and decentralized way. In countries with deregulated electricity markets, grid-connected battery systems should be operated under the specific market design of the country. In this work, using the Spanish electricity market as an example, the barriers to grid-connected battery systems are investigated using utilization analysis. The concept of "potentially profitable utilization time" is proposed and introduced to identify and evaluate future potential grid applications for battery systems. The numerical and empirical analysis suggests that the high cycle cost for battery systems is still the main barrier for grid-connected battery systems. In Spain, for energy arbitrage within the day-ahead market, it is required that the battery wear cost decreases to 15 Euro/MWh to make the potentially profitable utilization rate higher than 20%. Nevertheless, the potentially profitable utilization of batteries is much higher in the applications when higher flexibility is demanded. The minimum required battery wear cost corresponding to 20% potentially profitable utilization time increases to 35 Euro/MWh for energy arbitrage within the day-ahead market and ancillary services, and 50 Euro/MWh for upward secondary reserve. The results of this study contribute to the awareness of battery storage technology and its flexibility in grid applications. The findings also have significant implications for policy makers and market operators interested in promoting grid-connected battery storage under a deregulated power market.

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