arXiv:2512.04415cs.RO2025-12被引 1

构建物理仿真基准,评估机器人实时箱体打包的可行性与安全性

RoboBPP: Benchmarking Robotic Online Bin Packing with Physics-based Simulation

  • 用真实工业尺度的物理引擎模拟机器人装箱流程
  • 基于三个真实产线数据集,测试算法在结构稳定与操作安全上的表现
  • 开源可复现,适合机器人、物流自动化研究者使用

三维箱体打包的物理可行性是现代工业物流与机器人自动化的关键要求。随着工业自动化普及,在线箱体打包受到越来越多关注。然而,问题设定、测试数据集与评估指标不一致,阻碍了领域进展,缺乏全面的基准系统。直接在真实硬件上测试成本高,构建真实仿真环境也困难。为此,我们提出RoboBPP,一个面向机器人在线箱体打包的基准系统。该系统集成物理引擎以评估物理可行性,在仿真中引入真实尺度的机械臂与箱子,复现工业实际打包流程。通过模拟真实工业场景,确保算法具备实际部署能力。此前研究多依赖分布偏离真实工业数据的合成数据集。为此,我们收集了来自装配线生产、物流包装和家具制造的三个真实工业数据集。基准包含三个精心设计的测试场景,并扩展了现有评估指标,新增结构稳定性与操作安全性指标。我们设计评分系统并得出多项洞见。RoboBPP完全开源,配备可视化工具与在线排行榜,为未来研究与工业应用提供可复现、可扩展的基础平台(https://robot-bin-packing-benchmark.github.io)。

原文摘要 · Abstract (English)

Physical feasibility in 3D bin packing is a key requirement in modern industrial logistics and robotic automation. With the growing adoption of industrial automation, online bin packing has gained increasing attention. However, inconsistencies in problem settings, test datasets, and evaluation metrics have hindered progress in the field, and there is a lack of a comprehensive benchmarking system. Direct testing on real hardware is costly, and building a realistic simulation environment is also challenging. To address these limitations, we introduce RoboBPP, a benchmarking system designed for robotic online bin packing. RoboBPP integrates a physics-based simulator to assess physical feasibility. In our simulation environment, we introduce a robotic arm and boxes at real-world scales to replicate real industrial packing workflows. By simulating conditions that arise in real industrial applications, we ensure that evaluated algorithms are practically deployable. In addition, prior studies often rely on synthetic datasets whose distributions differ from real-world industrial data. To address this issue, we collect three datasets from real industrial workflows, including assembly-line production, logistics packing, and furniture manufacturing. The benchmark comprises three carefully designed test settings and extends existing evaluation metrics with new metrics for structural stability and operational safety. We design a scoring system and derive a range of insights from the evaluation results. RoboBPP is fully open-source and is equipped with visualization tools and an online leaderboard, providing a reproducible and extensible foundation for future research and industrial applications (https://robot-bin-packing-benchmark.github.io).

机器人物流自动化物理仿真打包优化

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