能量转换
环境经济学
高效能源利用
能源消耗
可再生能源
持续性
人力资本
转化式学习
能源安全
能源供应
商业模式
产业组织
能源管理
弹性(材料科学)
经济
经济体制
计算机科学
能源工程
业务
可持续发展
消费(社会学)
心理弹性
能量(信号处理)
技术变革
智能电网
过渡管理(治理)
路径分析(统计学)
Boosting(机器学习)
电
共享经济
面板数据
数字化转型
城市复原力
能源政策
网格
温室气体
能量转换
分布式发电
作者
Zhiyuan Gao,Mengwen Hua,Ziying Jia,Lianqing Li,Yu Hao
摘要
ABSTRACT As artificial intelligence (AI) becomes increasingly integrated into economic and societal domains, it emerges as a pivotal force driving the shift toward low‐carbon energy systems. This study examines how AI impacts the transformation of urban energy systems by utilizing a panel dataset comprising 278 Chinese spanning the years 2010–2019. The findings confirm that AI significantly enhances energy transition performance in urban settings. By precisely optimizing the integration and consumption of renewable energy, driving the energy efficiency revolution, and breaking the dependence on high‐carbon energy development models, as well as enhancing grid resilience and ensuring energy supply security to overcome the vulnerabilities of the energy transition, AI also strengthens the innovation capacity of energy transition through accelerating technological breakthroughs and incubating new business models. Heterogeneity analysis reveals that AI better facilitates energy transition in those cities that are small and medium in size, cities with a solid industrial base, cities with a high level of economic clustering, and cities located in central and eastern China. Mechanism tests show that during AI‐enabled transition processes, green technology innovation, human–machine compatibility, and energy efficiency play significant roles. Further analysis using a threshold model reveals that as electronic commerce, human capital, and business growth increase, AI's marginal effects on energy transition exhibit an incremental trend. This implies that improving digital infrastructure, raising human capital levels, and boosting economic growth are pathways to realizing the transformative effects of AI. This study assesses AI technology's effectiveness in promoting energy sustainability and high‐quality development goals.
科研通智能强力驱动
Strongly Powered by AbleSci AI