新型电力系统发展路径机制设计

IF 1.9 Q4 ENERGY & FUELS Global Energy Interconnection Pub Date : 2023-04-01 DOI:10.1016/j.gloei.2023.04.004
Xiangyu Chen , Guang Tian , Yan Huang , Yang Yang , Jialin Li , Yuxi Wu , Yuanying Chi
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引用次数: 2

摘要

实施绿色能源转型,实施清洁能源替代和供电,发展新型电力体系,是中国实现碳峰值和碳中和战略目标的主要动力。中国各省市新型电力系统建设发展迅速,缺乏典型的推广模式。新型电力系统路径设计应根据不同地区电网的实际发展情况、能源使用特点等实际需要进行差异化路径设计。在此背景下,本研究基于国内新型电力系统的政策背景,分析了国内新型电力系统的特点,构建了电力系统发展阶段识别的新模型,并从供电侧、输配电侧和负荷侧提出了国内新型电力系统发展路径的总体设计。并以河北南网为例,结合实际发展需要,探讨河北南网的发展阶段。最后,本文为河北南网设计了全新的电力系统全供需链发展路径,为构建中国新型电力系统,助力绿色能源转型提供思路。
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New power system development path mechanism design

Carrying out green energy transformation, implementing clean energy power replacement and supply, and developing a new power system are some primary driving forces needed to fulfill China’s carbon-peak and carbon-neutral strategic goals. The construction of new power systems in China’s provinces and cities is developing rapidly, and the lack of a typical model promotes the application. The new power system path design should be based on the actual development of the power grid in different regions, energy use characteristics, and other actual needs to carry out the differentiated path design. In this context, this study analyzes the characteristics of the new domestic power system based on the policy background of the new domestic power system, constructs a new model for power system development stage identification, and proposes the overall design of the new power system development path from the power supply, transmission and distribution, and load sides. It also uses the Hebei South Network as an example to explore the development stage of the Hebei South Grid based on actual development needs. Finally, this study designs a novel power system development path for the entire supply and demand chain for the Hebei South Grid to propose ideas for constructing a new power system in China and to help green energy transformation.

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来源期刊
Global Energy Interconnection
Global Energy Interconnection Engineering-Automotive Engineering
CiteScore
5.70
自引率
0.00%
发文量
985
审稿时长
15 weeks
期刊最新文献
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