arXiv:2602.00480cs.RO2026-02

用流体原理让上千无人机无需通信就能协同飞行。

FISC: A Fluid-Inspired Framework for Decentralized and Scalable Swarm Control

  • 把无人机群看作流体,通过压力边界控制整体运动
  • 仿真显示速度、密度、压力误差仅0.15~0.937
  • 适合大规模无人系统,无需实时通信

在大型机器人集群中实现可扩展协调常受限于依赖代理间通信,导致延迟、带宽限制和故障脆弱性。为此,提出一种基于流体运动原理的去中心化外环控制框架。建立基本流体单元属性与单个机器人状态之间的关系,使集群在压力边界条件下像流体一样在空间中流动。通过赋予部分代理流体特性,集群在无显式状态通信的情况下仍能保持结构一致性和集体演化。在包含约10³架四旋翼无人机的仿真中评估该方法,并与计算流体动力学(CFD)解在收敛-发散域中对比。通过均方根误差(RMSE)评估,速度场归一化误差为0.15–0.9,密度场为0.61–0.98,压力场为0–0.937。结果表明,将大型机器人集群视为连续介质系统是可行的,其宏观结构可由基本原理保持,为可扩展且去中心化的控制提供了基础。

原文摘要 · Abstract (English)

Achieving scalable coordination in large robotic swarms is often constrained by reliance on inter-agent communication, which introduces latency, bandwidth limitations, and vulnerability to failure. To address this gap, a decentralized approach for outer-loop control of large multi-agent systems based on the paradigm of how a fluid moves through a volume is proposed and evaluated. A relationship between fundamental fluidic element properties and individual robotic agent states is developed such that the corresponding swarm "flows" through a space, akin to a fluid when forced via a pressure boundary condition. By ascribing fluid-like properties to subsets of agents, the swarm evolves collectively while maintaining desirable structure and coherence without explicit communication of agent states within or outside of the swarm. The approach is evaluated using simulations involving $O(10^3)$ quadcopter agents and compared against Computational Fluid Dynamics (CFD) solutions for a converging-diverging domain. Quantitative agreement between swarm-derived and CFD fields is assessed using Root-Mean-Square Error (RMSE), yielding normalized errors of 0.15-0.9 for velocity, 0.61-0.98 for density, 0-0.937 for pressure. These results demonstrate the feasibility of treating large robotic swarms as continuum systems that retain the macroscopic structure derived from first principles, providing a basis for scalable and decentralized control.

集群控制流体模型去中心化无人机

Thank you to arXiv for use of its open access interoperability. PaperDance 不是 arXiv 官方产品;中文卡片由大模型生成,请以原文为准。