为幕墙安装机器人设计多目标轨迹规划算法,提升复杂环境下的作业效率与精度。
Multi-Objective Trajectory Planning for a Robotic Arm in Curtain Wall Installation
- 融合串并联折叠结构设计机器人臂,适配复杂施工场景。
- 提出NSGA-III-FO算法,在DTLZ3/WFG3测试中收敛速度优于主流算法。
- 实测验证算法在真实机器人平台上的高效性,适合高精度工业安装任务。
面对劳动力短缺与成本上升的挑战,建筑机器人被视为革新传统施工方式、提升效率与质量的关键。为使机器人在复杂施工环境中高效精准作业,传统的单目标轨迹优化方法难以满足动态变化的需求。为此,本文针对幕墙安装机器人提出一种多目标轨迹优化方法。首先,设计了一种集成串行、并行与折叠臂结构的机器人臂,兼顾其物理特性与运动性能。其次,提出一种融合聚焦算子筛选机制的NSGA-III-FO算法(NSGA-III with Focused Operator),通过加速算法向帕累托前沿收敛,有效平衡多目标约束。该算法在DTLZ3和WFG3测试函数上进行十次连续试验,结果表明其收敛效率显著优于NSGA-III、MOEA/D与MSOPS-II。最后,在所设计的机器人平台上开展两组实验,验证了NSGA-III-FO算法在解决幕墙安装任务多目标轨迹规划问题上的有效性与实用性。
原文摘要 · Abstract (English)
In the context of labor shortages and rising costs, construction robots are regarded as the key to revolutionizing traditional construction methods and improving efficiency and quality in the construction industry. In order to ensure that construction robots can perform tasks efficiently and accurately in complex construction environments, traditional single-objective trajectory optimization methods are difficult to meet the complex requirements of the changing construction environment. Therefore, we propose a multi-objective trajectory optimization for the robotic arm used in the curtain wall installation. First, we design a robotic arm for curtain wall installation, integrating serial, parallel, and folding arm elements, while considering its physical properties and motion characteristics. In addition, this paper proposes an NSGA-III-FO algorithm (NSGA-III with Focused Operator, NSGA-III-FO) that incorporates a focus operator screening mechanism to accelerate the convergence of the algorithm towards the Pareto front, thereby effectively balancing the multi-objective constraints of construction robots. The proposed algorithm is tested against NSGA-III, MOEA/D, and MSOPS-II in ten consecutive trials on the DTLZ3 and WFG3 test functions, showing significantly better convergence efficiency than the other algorithms. Finally, we conduct two sets of experiments on the designed robotic arm platform, which confirm the efficiency and practicality of the NSGA-III-FO algorithm in solving multi-objective trajectory planning problems for curtain wall installation tasks.
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。