智慧能源系统运行与规划研究进展

IF 5.4 Q2 ENERGY & FUELS
Vladimir Z. Gjorgievski , Brian Vad Mathiesen
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引用次数: 0

摘要

有效的脱碳取决于采用协调技术、市场和能源部门的综合方法。孤立地应对能源挑战往往会导致效率低下和错失机会,而智能能源系统等整体方法可以实现电力、供暖、制冷和运输等部门的耦合,从而提高成本效益和整体效率。这篇社论介绍了2022年9月在丹麦奥尔堡举行的第八届智能能源系统国际会议的特刊。特色贡献涉及关键主题,如系统边缘控制解决方案,优化策略,废热集成,以及分散的,可扩展的能源解决方案的发展。总之,这些工作突出了管理能源转型的技术、经济和运营复杂性的创新方法,同时支持全球脱碳目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Advancements in smart energy system operation and planning

Advancements in smart energy system operation and planning
Effective decarbonization depends on the use integrated approaches that coordinate technologies, markets, and energy sectors. Tackling energy challenges in isolation often results in inefficiencies and missed opportunities, whereas holistic approaches like Smart Energy Systems enable sector coupling across electricity, heating, cooling, and transport to enhance cost-effectiveness and overall efficiency. This editorial introduces the Special Issue dedicated to 8th International Conference on Smart Energy Systems, held in September 2022 in Aalborg, Denmark. The featured contributions address key topics such as system-edge control solutions, optimization strategies, waste heat integration, and the development of decentralized, scalable energy solutions. Together, these works highlight innovative approaches to managing the technical, economic, and operational complexities of the energy transition while supporting global decarbonization goals.
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来源期刊
Smart Energy
Smart Energy Engineering-Mechanical Engineering
CiteScore
9.20
自引率
0.00%
发文量
29
审稿时长
73 days
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