电池储能技术和可再生能源整合对纽约州能源转型的影响

IF 13 Q1 ENERGY & FUELS Advances in Applied Energy Pub Date : 2023-02-01 DOI:10.1016/j.adapen.2023.100126
Wei-Chieh Huang , Qianzhi Zhang , Fengqi You
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引用次数: 9

摘要

鉴于目前的能源政策对迅速的气候变化作出了反应,人们非常重视制定可行的办法,使能源生产从化石资源转向可再生能源。现有研究虽然分析了可再生能源的区域调度和容量规划,但并没有充分探讨储能系统技术的技术经济特征对可再生能源并网和能源转型的影响,目前也忽视了储能系统对能源转型的重要性。为了填补这一空白,我们提出了一个集成的最优潮流和多准则决策模型,以最小化运行约束下的系统成本,并以多维标准评估可再生能源技术的运行性能。所提出的方法可以确定储能系统技术的最关键特征,以增强可再生能源的整合,实现纽约州2025年至2040年的气候目标。我们发现铅酸电池需要比锂离子电池多38.66 GW的可再生能源容量才能达到二氧化碳零排放的条件。基于多维度评价中的交叉敏感性分析,在2040年达到二氧化碳零排放目标时,钒氧化还原液流电池表现最佳,镍镉电池表现最差。该模型的结果也可以方便地推广到基于可再生能源集成和能源转型研究的标准偏好来选择ESS技术,并为未来能源和电力系统规划中的ESS配置提供参考。
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Impacts of battery energy storage technologies and renewable integration on the energy transition in the New York State

In light of current energy policies responding to rapid climate change, much attention has been directed to developing feasible approaches for transitioning energy production from fossil-based resources to renewable energy. Although existing studies analyze regional dispatch of renewable energy sources and capacity planning, they do not fully explore the impacts of the energy storage system technology's technical and economic characteristics on renewable energy integration and energy transition, and the importance of energy storage systems to the energy transition is currently ignored. To fill this gap, we propose an integrated optimal power flow and multi-criteria decision-making model to minimize system cost under operational constraints and evaluate the operational performance of renewable energy technologies with multidimensional criteria. The proposed method can identify the most critical features of energy storage system technologies to enhance renewable energy integration and achieve New York State's climate goals from 2025 to 2040. We discover that lead-acid battery requires an additional 38.66 GW capacity of renewable energy sources than lithium-ion battery to achieve the zero carbon dioxide emissions condition. Based on the cross-sensitivity analysis in the multidimensional evaluation, the vanadium redox flow battery performs the best, and the nickel-cadmium battery performs the worst when reaching the zero carbon dioxide emissions target in 2040. The results of the proposed model can also be conveniently generalized to select ESS technology based on the criteria preferences from RE integration and energy transition studies and serve as a reference for ESS configurations in future energy and power system planning.

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来源期刊
Advances in Applied Energy
Advances in Applied Energy Energy-General Energy
CiteScore
23.90
自引率
0.00%
发文量
36
审稿时长
21 days
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