为小学生设计的带ardublock编程的轮式机器人

F. Purnomo, M. A. Firmansyah
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引用次数: 0

摘要

机器人技术可以通过课外机器人的存在来实施到小学课程中,或者更好的是仅仅作为机器人。学生学习机器人学是为了组装和编程简单的机器人,这些机器人包装在机器人学习媒体中。机器人活动基本上使用轮式机器人,但功能不同。在机器人的基本假设下,我们可以通过制造一个只有一个轮子但具有多种功能的机器人来降低采购成本。轮式机器人是便携式的,所以很容易拆卸。机器人活动一般使用Arduino控制器与C编程语言。小学生理解这种语言有困难。Ardublock作为一个简单的开源解决方案。本研究重点研究了一种具有多种功能的轮式机器人的工作系统(线路跟踪、传送和墙壁跟踪),并成功地使用了ardublock逻辑作为机器人的编程语言。测试结果表明,ardublock程序可用于对机器人上的Arduino控制器进行编程。具有直线跟随功能的轮式机器人在200厘米的轨迹上记录了6.0秒的行驶时间。在200厘米的轨道上,具有运输功能的轮式机器人平均耗时8.9秒,在10次尝试中有7次成功举起物体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
WHEELED ROBOT WITH ARDUBLOCK PROGRAMMING FOR ELEMENTARY SCHOOL STUDENTS
Robotics technology can be implemented into the elementary school curriculum with the presence of extracurricular robotics or better as robotics only. Robotics in students is taught to assemble and program simple robots packaged in robotics learning media. Robotics activities basically use wheelled robots but have different functions. With the basic assumption of the robot, we can reduce the cost of procurement by making a robot with one wheel but with various functions. The wheeled robot is portable, so it is easy to disassemble. Robotics activities in generaly uses an Arduino controller with the C programming language. Elementary school students have difficulty understanding the language. Ardublock as one of the easy and open-source solutions. This research focused on the working system of a wheeled robot with various features (line tracer, transporter, and wall tracking) as well as the success in using ardublock logic as the programming language of the robot. The results test show that the ardublock program can be used to program the Arduino controller on the robot. The wheeled robot with the line follower feature recorded a travel time of 6.0 seconds on a 200cm trajectory. The wheeled robot with a transporter feature on a 200 cm trajectory takes an average of 8.9 seconds with the success of lifting objects 7 times out of 10 attempts.
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