首页|期刊导航|Global Energy Interconnection|From carbon reduction to negative carbon:a comprehensive review of regional integrated energy system planning theory and methods

From carbon reduction to negative carbon:a comprehensive review of regional integrated energy system planning theory and methodsOA

中文摘要

Driven by the global energy transition and the urgent“dual carbon”goals,regional integrated energy system(RIES)planning is undergoing a paradigm shift from carbon reduction to negative carbon emissions.This paper provides a comprehensive review of the theoretical frameworks and technical pathways for RIES planning from a carbon-centric perspective.A key contribution is the proposed Carbon-Energy-Economy(CEE)triple-dimensional governance framework,which endogenizes carbon factors into planning decisions through emission constraints,trading mechanisms,and capture technologies.We first analyze the fundamental characteristics of RIES and their critical role in achieving carbon neutrality,detailing advancements in multi-energy coupling models,energy router concepts,and standardized energy hub modeling.The paper further explores multi-energy flow analysis methods,and systematically compares the applicability and limitations of various planning algorithms,with emphasis on addressing uncertainties from renewable integration.Finally,we highlight the integration of artificial intelligence with traditional optimization methods,offering new pathways for intelligent,adaptive,and low-carbon RIES planning.This review underscores the transition towards data-physical fusion models,cooperative uncertainty optimization,multi-market planning,and innovative zero/negative-carbon technological routes.

Ruopu Yang;Jia Liu;Mohan Lin;Pingliang Zeng

Department of Automation,Hangzhou Dianzi University,Hangzhou 310018,P.R.ChinaDepartment of Automation,Hangzhou Dianzi University,Hangzhou 310018,P.R.ChinaDepartment of Automation,Hangzhou Dianzi University,Hangzhou 310018,P.R.ChinaDepartment of Automation,Hangzhou Dianzi University,Hangzhou 310018,P.R.China

能源科技

Regional integrated energy systemCarbon neutralityMulti-energy couplingPlanning optimizationArtificial intelligence

《Global Energy Interconnection》 2026 (1)

P.159-185,27

supported by the Natural Science Foundation of China(Grants U2166211)Zhejiang Provincial Natural Science Foundation of China(Grants LY24E070006 and LMS25E070002).

10.1016/j.gloei.2025.11.004

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