arXiv:2506.18697cs.RO2025-06中稿 · publication at the…被引 3

多无人机协作砌墙,兼顾施工效率与安全

Safety-Aware Optimal Scheduling for Autonomous Masonry Construction using Collaborative Heterogeneous Aerial Robots

  • 异构无人机分工协作,自动规划砌墙任务
  • 优化调度缩短工期,同时满足水泥固化时间
  • 适合智能建筑、无人施工场景

本文提出一种面向异构空中机器人团队的自主砌墙高阶任务规划与协同优化框架。系统由负责砖块放置与砂浆涂抹的不同类型无人机组成,面临砂浆固化时限与多机安全间距的双重挑战。通过自动化流程生成施工计划,识别结构依赖关系与潜在冲突,结合动态耦合的前后置截止时间约束(考虑固化过程)和静态结构依赖约束,同时强制执行时空防撞约束。调度目标为最小化整体工期,兼顾物流成本、移动耗时与固化时间,确保粘结质量与作业安全。在Gazebo仿真中验证了该方法在提升无人机协同效率、保障结构完整性和作业安全性方面的有效性。

原文摘要 · Abstract (English)

This paper presents a novel high-level task planning and optimal coordination framework for autonomous masonry construction, using a team of heterogeneous aerial robotic workers, consisting of agents with separate skills for brick placement and mortar application. This introduces new challenges in scheduling and coordination, particularly due to the mortar curing deadline required for structural bonding and ensuring the safety constraints among UAVs operating in parallel. To address this, an automated pipeline generates the wall construction plan based on the available bricks while identifying static structural dependencies and potential conflicts for safe operation. The proposed framework optimizes UAV task allocation and execution timing by incorporating dynamically coupled precedence deadline constraints that account for the curing process and static structural dependency constraints, while enforcing spatio-temporal constraints to prevent collisions and ensure safety. The primary objective of the scheduler is to minimize the overall construction makespan while minimizing logistics, traveling time between tasks, and the curing time to maintain both adhesion quality and safe workspace separation. The effectiveness of the proposed method in achieving coordinated and time-efficient aerial masonry construction is extensively validated through Gazebo simulated missions. The results demonstrate the framework's capability to streamline UAV operations, ensuring both structural integrity and safety during the construction process.

无人机施工智能建造任务调度

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