电力建设2026,Vol.47Issue(7):1-13,13.DOI:10.12204/j.issn.1000-7229.2026.07.001
计及多元绿电消费与时空灵活性的算电协同优化
Optimization of Computing Power and Electricity Synergy Considering Diverse Green Electricity Consumption Modes and Spatio-Temporal Flexibility
摘要
Abstract
[Objective]Driven by the carbon peaking and carbon neutrality goals and the strategy of national computing network to synergize east and west,data centers have become crucial high-density flexible loads,making the coordinated optimization of their green transition and power systems increasingly vital.Focusing on the policy requirement for new data centers at hub nodes to achieve 80%green electricity consumption,this paper aims to explore the impact mechanisms of diverse green electricity consumption modes and computing load flexibility on the operational costs and carbon emissions of data centers,providing a decision-making basis for resource planning and coordinated dispatching in computing hubs.[Methods]A bidirectional coordinated optimization model for computing-power nodes is constructed,comprehensively considering the temporal and spatial flexibility of computing tasks alongside the physical and contractual constraints of diverse green electricity consumption modes,including direct green energy connection,power purchase agreements(PPA),and grid power supplementation.The levelized cost of electricity(LCOE)and consequential carbon emissions are introduced as dual evaluation metrics.Using the integrated computing-power project group in the Ganzi region as a case study,simulation scenarios are designed with a gradient decrease in the direct green energy connection ratio from 80%to 20%,comparing PPA and grid supplementation strategies while exploring the operational characteristics of data centers under four schemes:no flexibility,temporal flexibility,spatial flexibility,and spatio-temporal synergistic flexibility.[Results]Simulation results indicate that under the 80%green electricity consumption constraint,the LCOE of data centers exhibits a significant"U-shaped"evolution as the direct green energy connection ratio decreases.The dispatching under the spatio-temporal synergistic flexibility achieves a"Pareto improvement"in both economic and environmental benefits through full-dimensional resource optimization,serving as the optimal dispatching paradigm for the low-carbon and economic operation of large-scale integrated computing-power clusters.[Conclusions]The proposed model and evaluation framework quantify the cost boundaries between physical connection and virtual matching and effectively reveal the impact laws of flexibility strategies,offering valuable reference for optimizing the configuration of data centers at computing hubs.关键词
算电协同/绿电消费方式/时空灵活性/后果性碳排放/平准化度电成本(LCOE)Key words
computing-power synergy/green electricity consumption modes/spatio-temporal flexibility/consequential carbon emissions/levelized cost of electricity(LCOE)分类
信息技术与安全科学引用本文复制引用
凃陈,潘萱颖,王欢,孟垚,戴璟,王骁宇..计及多元绿电消费与时空灵活性的算电协同优化[J].电力建设,2026,47(7):1-13,13.基金项目
国家自然科学基金项目(52577116) This work is supported by National Natural Science Foundation of China(No.52577116). (52577116)