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A robotic system for researching social integration in honeybees

机译:研究蜜蜂社会融合的机器人系统

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摘要

In this paper, we present a novel robotic system developed for researching collective social mechanisms in a biohybrid society of robots and honeybees. The potential for distributed coordination, as observed in nature in many different animal species, has caused an increased interest in collective behaviour research in recent years because of its applicability to a broad spectrum of technical systems requiring robust multi-agent control. One of the main problems is understanding the mechanisms driving the emergence of collective behaviour of social animals. With the aim of deepening the knowledge in this field, we have designed a multi-robot system capable of interacting with honeybees within an experimental arena. The final product, stationary autonomous robot units, designed by specificaly considering the physical, sensorimotor and behavioral characteristics of the honeybees (lat. Apis mallifera), are equipped with sensing, actuating, computation, and communication capabilities that enable the measurement of relevant environmental states, such as honeybee presence, and adequate response to the measurements by generating heat, vibration and airflow. The coordination among robots in the developed system is established using distributed controllers. The cooperation between the two different types of collective systems is realized by means of a consensus algorithm, enabling the honeybees and the robots to achieve a common objective. Presented results, obtained within ASSISIbf project, show successful cooperation indicating its potential for future applications.
机译:在本文中,我们提出了一种新颖的机器人系统,用于研究机器人和蜜蜂的生物杂交社会中的集体社会机制。正如在自然界中许多不同动物物种中观察到的那样,分布式协调的潜力近年来引起了人们对集体行为研究的兴趣,因为它适用于需要强大的多主体控制的广泛技术系统。主要问题之一是了解驱动社交动物集体行为出现的机制。为了加深该领域的知识,我们设计了一种多机器人系统,该系统能够在实验领域与蜜蜂进行交互。最终产品是固定自主的机器人单元,其设计是通过特别考虑蜜蜂(拉丁蜜蜂)的物理,感觉运动和行为特征而设计的,具有感应,促动,计算和通信功能,能够测量相关的环境状态(例如蜜蜂的存在),并通过产生热量,振动和气流来对测量产生足够的响应。使用分布式控制器在开发的系统中的机器人之间进行协调。两种不同类型的集合系统之间的协作是通过共识算法实现的,从而使蜜蜂和机器人可以达到一个共同的目标。在ASSISIbf项目中获得的呈现结果表明成功的合作表明了其在未来应用中的潜力。

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