用于测试和验证仓库自动化算法的机器人实验平台

Mehmet Ali Guney, I. Raptis
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引用次数: 4

摘要

近年来,自动导引车(agv)逐渐融入到仓库管理系统中。与传统的仓库系统相比,agv的使用在成本、可扩展性和效率方面具有许多优势。在这项工作中,我们提出了一个小型测试平台的开发,用于测试和验证利用一群agv的仓库自动化控制算法。所提出的平台在成本和维度上都是可伸缩的、快速的和有效的。机器人驱动器是厘米级的叉车,可以自动将任意数量的圆形托盘运送到预定义的参考位置。实现了一种冲突解决算法,使得驱动器在其操作期间不会相互碰撞。此外,任务分配逻辑处理托盘的分配,以避免被运输对象包围的驱动器。实验结果验证了该试验台平台的适用性。
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A robotic experimental platform for testing and validating warehouse automation algorithms
In the recent years, Autonomous Guided Vehicles (AGVs) are gradually integrated to warehouse management systems. The employment of AGVs has numerous advantages over conventional warehouse systems in terms of cost, scalability and efficiency. In this work, we present the development of a small-scale test-bed platform for testing and validating warehouse automation control algorithms utilizing a swarm of AGVs. The proposed platform is scalable, fast, and effective in both cost and dimensions. The robotic drives are centimeter-scale forklifts that transport autonomously an arbitrary number of circular pallets to predefined reference locations. A conflict resolution algorithm is implemented such that the drives do not collide with each other during their operation. In addition, a task allocation logic handles the pallets' assignment to avoid the enclosure of the drives by the transported objects. The applicability of the testbed platform is demonstrated through experimental results.
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