arXiv:2511.20590cs.MAcs.AI2025-11被引 1

用多智能体模拟微电网,让能源自洽更智能。

EnergyTwin: A Multi-Agent System for Simulating and Coordinating Energy Microgrids

  • 将每个能源设备设为智能体,通过合同协商实现协同调度。
  • 滚动预测规划使本地自给率提升,电池储备更高,抗扰能力增强。
  • 适合研究韧性微电网与分布式能源协调的学者与工程师。

微电网用于降低购电成本、规避波动电价,并在扰动时保障供电连续性。这需要在多时间尺度和变工况下协调异构分布式能源。现有工具中,电力系统仿真器虽能捕捉物理特性,但假设集中控制;多智能体框架可模拟分散决策,却缺乏物理基础。为此提出EnergyTwin,一种基于智能体的微电网仿真环境,融合物理模型、预报驱动的滚动规划及协商机制。每个资产作为智能体,与中央智能体交互,由其获取预报、生成预测并以合同形式分配能源。EnergyTwin面向三级决策层,具备数字孪生扩展性。在大学园区微电网场景中验证,对比多种规划策略,结果表明:预报驱动的滚动规划显著提升本地能源自给率,维持更高电池储备,减少处于低韧性状态的频率。实验还证明EnergyTwin可作为研究韧性、协商驱动型微电网的平台。

原文摘要 · Abstract (English)

Microgrids are deployed to reduce purchased grid energy, limit exposure to volatile tariffs, and ensure service continuity during disturbances. This requires coordinating heterogeneous distributed energy resources across multiple time scales and under variable conditions. Among existing tools, typically, power-system simulators capture physical behaviour but assume centralized control, while multi-agent frameworks model decentralized decision-making but represent energy with no physical grounding. In this context, the EnergyTwin is introduced, an agent-based microgrid simulation environment that couples physically grounded models with forecast-informed, rolling-horizon planning, and negotiations. Each asset is modeled as an agent, interacting with a central agent that obtains forecasts, formulates predictions, and allocates energy through contract-based interactions. EnergyTwin targets tertiary-layer decision making and is extensible for digital-twin use. Its feasibility was evaluated in a university campus microgrid scenario where multiple planning strategies were compared. Achieved results show that forecast-driven rolling-horizon planning increases local energy self-sufficiency, maintains higher battery reserves, and reduces exposure to low-resilience operating states. They demonstrate also potential of EnergyTwin as platform supporting research on resilient, negotiation-driven microgrids.

微电网多智能体数字孪生能源管理

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