Fibonacci Path Planning Algorithm for Robotic Waiters

C. Sowmya, A. S. Menon, Garapati Sri Maanvitha, Sharan Vijayraghavan, M. Jayakumar
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引用次数: 2

Abstract

This paper portrays the idea and implementation of Robotic Waiters. This project implements a path planning algorithm for hotel management. Usually, we find humans serving food at the restaurants, sometimes there might be errors while delivering the food at the defined table or serving wrong order at a wrong table. So, to overcome these errors, we have tried to implement a prototype of Robotic Waiter to serve the food. With Raspberry pi as the main controller, we have integrated L298N motor driver and IR sensor array. The Robotic Waiter works on a path planning algorithm, “Fibonacci algorithm”, to count the table number through which it can check if the entered table exists or not. This method aims in reducing the work of going to each table and check for its existence. Further the line following algorithm makes the robot to follow the laid track properly.
机器人服务员的斐波那契路径规划算法
本文描述了机器人服务员的思想和实现。本课题实现了一种用于酒店管理的路径规划算法。通常,我们发现人类在餐馆里上菜,有时可能会出现错误,在指定的桌子上菜,或者在错误的桌子上菜。因此,为了克服这些错误,我们尝试实现一个机器人服务员的原型来提供食物。以树莓派为主控制器,集成了L298N电机驱动器和红外传感器阵列。机器人服务员使用一种路径规划算法,即“斐波那契算法”,来计算桌子的数量,从而检查输入的桌子是否存在。这种方法的目的是减少访问每个表并检查其存在的工作。此外,直线跟踪算法使机器人能够正确地跟踪铺设的轨迹。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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