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Exploratory Performance Analysis of Microbot Swarm in Three-Dimensional Field

机译:微型蜂群在三维领域的探索性性能分析

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In the last decade, research and development of microbots, whose sizes are in the range between a few millimeters to centimeters, have been actively performed. One of promising applications of microbots is survivor discovery in disaster areas. Contrary to high expectations to many microbot applications, in the literature, exploratory performance with microbots and requirements on microbot functionalities have not been fully discussed. In this paper, we therefore analyze the exploratory performance of microbot swarm (i.e., A great number of autonomous and independent microbot) in a three-dimensional field where every microbot independently searches for target objects. We derive the target discovery ratio as well as the optimal dropping avoidance probability of microbots, with which each microbot probabilistically prevents itself to fall onto the lower layer using an edge-detection sensor. Moreover, through several numerical examples, we investigate how the exploratory performance of microbot swarm is affected by several system parameters such as the number of microbots, the area of a layer, the density of openings in the layer, and the dropping avoidance probability a microbot.
机译:在过去的十年中,已经积极进行了微型机器人的研究和开发,微型机器人的大小在几毫米到几厘米之间。微型机器人的有希望的应用之一是在灾区发现幸存者。与许多微型机器人应用的高期望相反,在文献中,关于微型机器人的探索性能和对微型机器人功能的要求尚未得到充分讨论。因此,在本文中,我们分析了微型机器人群(即大量自主和独立的微型机器人)在每个微型机器人独立搜索目标对象的三维领域中的探索性能。我们推导了目标发现率以及微型机器人的最佳掉落避免概率,每个微型机器人利用边缘检测传感器概率性地防止自身掉落到下层。此外,通过几个数值示例,我们研究了微型机器人群的探索性能如何受到多个系统参数的影响,例如微型机器人的数量,层的面积,层中开口的密度以及微型机器人的掉落避免概率。

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