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◆ Nature communications2026-08-17

Facilitating megacity electricity decarbonization via grid-interactive demand-side resource management.

Kaisan Li, Shengyu Tao, Zuxun Xiong, Ruojun Ren, Yuhang Zhang, Rui Miao, He Qi, Borong Lin, Jian Kang, Yi Jiang, Yi Zhang

原始摘要(英文原文)· Original abstract
City power systems face intensified mismatches between generation and dynamic demand under rising zero-carbon energy penetration levels. Although demand-side resource management offers mismatch mitigation potential by regulating load patterns, its city-level capability remains unclear. This study develops a community-to-grid framework to assess how demand-side resources could mitigate generation-demand mismatches at the megacity scale. A case study is performed in Shenzhen, China, covering 4,549 community units with energy profiles and rooftop photovoltaics of 479,259 buildings, and travel-charge profiles of 1,080,000 private plug-in electric vehicles. Under an assumed 80% zero-carbon electricity penetration level, the proposed framework could reduce weekly power supply deficits by 54.5%, or 266.2 gigawatt-hours, corresponding to an estimated reduction of 83.6 kilotonnes of carbon dioxide. Different governing paradigms may affect grid infrastructure upgrade paths: prioritizing administrative equity supports temporally consistent planning, whereas prioritizing mismatch-mitigation efficiency promotes spatially clustered retrofitting. This study may inform city-specific demand-side resource excavation under national electricity decarbonization planning.
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Facilitating megacity electricity decarbonization via grid-interactive demand-side resource management. — 科研速览 Science Skim