arXiv:2509.11025cs.ROcs.SY2025-09被引 6

解决果园机器人协同采摘中的耗时与耗电矛盾问题

Multi-objective task allocation for electric harvesting robots: a hierarchical route reconstruction approach

  • 分层重构算法结合任务序列优化,提升多机协同效率
  • 在45组测试中优于7种主流算法,显著降低完成时间和能耗
  • 适合农业自动化、智能农机研发人员参考

农业劳动力成本上升推动了果园采摘多机器人系统的应用。然而,在负载依赖速度变化和电池容量限制等实际约束下,如何高效协调多机器人系统仍具挑战性,尤其在缩短任务完成时间(makespan)与降低能量消耗之间存在权衡。本文首次系统定义了多目标农业电动机器人任务分配(AMERTA)问题,整合了这些常被忽略的真实约束。为此提出混合分层路线重构算法(HRRA),包含分层编码结构、双阶段初始化方法、任务序列优化器及专用路线重构算子。在45个测试实例上的大量实验表明,HRRA在性能上优于7种先进算法。威尔科克森符号秩检验和弗里德曼检验进一步验证了其竞争力,以及探索此前未触及解空间区域的独特能力。本研究不仅丰富了多机器人协同的理论认知,也为农业自动化提供了实用解决方案。

原文摘要 · Abstract (English)

The increasing labor costs in agriculture have accelerated the adoption of multi-robot systems for orchard harvesting. However, efficiently coordinating these systems is challenging due to the complex interplay between makespan and energy consumption, particularly under practical constraints like load-dependent speed variations and battery limitations. This paper defines the multi-objective agricultural multi-electrical-robot task allocation (AMERTA) problem, which systematically incorporates these often-overlooked real-world constraints. To address this problem, we propose a hybrid hierarchical route reconstruction algorithm (HRRA) that integrates several innovative mechanisms, including a hierarchical encoding structure, a dual-phase initialization method, task sequence optimizers, and specialized route reconstruction operators. Extensive experiments on 45 test instances demonstrate HRRA's superior performance against seven state-of-the-art algorithms. Statistical analysis, including the Wilcoxon signed-rank and Friedman tests, empirically validates HRRA's competitiveness and its unique ability to explore previously inaccessible regions of the solution space. In general, this research contributes to the theoretical understanding of multi-robot coordination by offering a novel problem formulation and an effective algorithm, thereby also providing practical insights for agricultural automation.

机器人协同农业自动化多目标优化

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