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基于三方演化博弈视角的充电桩配比微更新研究

LU Ziqi LIN Jianxin

北京建筑大学学报2025,Vol.41Issue(6):66-76,11.
北京建筑大学学报2025,Vol.41Issue(6):66-76,11.DOI:10.19740/j.2096-9872.2025.06.08

基于三方演化博弈视角的充电桩配比微更新研究

Research on the Micro Renewal of Charging Pile Ratio through Tripartite Evolutionary Game Theory

LU Ziqi 1LIN Jianxin1

作者信息

  • 1. School of Civil and Transportation Engineering,Beijing University of Civil Engineering and Architecture,Beijing 100044
  • 折叠

摘要

Abstract

In resource-constrained urban centers,optimizing micro renewal of charging infrastructure holds significant implications for enhancing residents' well-being and advancing urban green transitions.To address multi-agent coordination challenges in charging pile ratio adjustments,this study first establishes a tripartite strategy adaptation framework under the bounded rationality hypothesis,employing replicator dynamics equations to quantify stakeholder cost-benefit trade-offs and environmental externalities.A government-operator-user dynamic evolutionary game model with incentive-penalty mechanisms is then constructed to analyze strategy evolutionary stability,supported by system dynamics simulation algorithms.Finally,the Matlab numerical simulation experiment shows that:Governmental oversight plays a pivotal guiding role in micro-updates,where increasing regulatory costs effectively drives timely operator upgrades;When regulatory constraints falter,rational subsidies for operators or users emerge as viable alternatives;Penalty mechanisms must balance deterrence intensity with social reputation impacts to achieve multi-agent synergies.The research verified the effectiveness of the model in balancing the interests of multiple parties,and provided a quantitative decision-making tool for the collaborative governance of new urban infrastructure.

关键词

充电基础设施/演化博弈/数值仿真/微更新/优化策略

Key words

charging infrastructure/evolutionary game/numerical simulation/micro renewal/optimizing strategy

分类

建筑与水利

引用本文复制引用

LU Ziqi,LIN Jianxin..基于三方演化博弈视角的充电桩配比微更新研究[J].北京建筑大学学报,2025,41(6):66-76,11.

基金项目

国家自然科学基金项目(52372295). (52372295)

北京建筑大学学报

1004-6011

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