arXiv:2604.10343cs.LG2026-04被引 1

用AI代理分层优化社区供水,兼顾实时适应与节能可靠

WaterAdmin: Orchestrating Community Water Distribution Optimization via AI Agents

论文配图:WaterAdmin: Orchestrating Community Water Distribution Optimization via AI Agents
图 1 · 摘自论文原文
  • 上层用大模型理解动态社区环境,下层用优化算法生成控制指令
  • 在动态场景下压力可靠性提升18%,能耗降低23%
  • 适合智慧水务、城市基础设施智能化研究者参考

我们研究社区供水系统运行问题,需调度水泵与阀门以可靠满足用水需求并最小化能耗。现有基于优化的方法在理想建模环境下有效,但在真实场景中,人类活动、天气变化等高度动态因素显著影响各区域用水模式与运行目标。传统优化方法难以实时聚合与适应这种异构且快速演变的上下文信息。虽然大语言模型(LLM)能有效理解复杂社区上下文,但无法直接生成可靠的实时控制动作。为此,我们提出双层AI代理框架WaterAdmin,上层利用LLM进行社区上下文抽象,下层采用优化方法实现运行控制。该设计融合两种范式优势,实现自适应与高可靠性运行。我们在液压仿真平台EPANET上实现WaterAdmin,证明其在高度动态社区场景下显著提升压力可靠性并降低能耗。

原文摘要 · Abstract (English)

We study the operation of community water systems, where pumps and valves must be scheduled to reliably meet water demands while minimizing energy consumption. While existing optimization-based methods are effective under well-modeled environments, real-world community scenarios exhibit highly dynamic contexts-such as human activities, weather variations, etc-that significantly affect water demand patterns and operational targets across different zones. Traditional optimization approaches struggle to aggregate and adapt to such heterogeneous and rapidly evolving contextual information in real time. While Large Language Model (LLM) agents offer strong capabilities for understanding heterogeneous community context, they are not suitable for directly producing reliable real-time control actions. To address these challenges, we propose a bi-level AI-agent-based framework, WaterAdmin, which integrates LLM-based community context abstraction at the upper level with optimization-based operational control at the lower level. This design leverages the complementary strengths of both paradigms to enable adaptive and reliable operation. We implement WaterAdmin on the hydraulic simulation platform EPANET and demonstrate superior performance in maintaining pressure reliability and reducing energy consumption under highly dynamic community contexts.

智能水务AI代理优化控制城市基建

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