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Design and implementation of robotic system to transport disabled people

机译:残疾人运输机器人系统的设计与实现

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The use of robotics in human healthcare is growing interest. In most institutions, services provided to the elderly and disabled are unsatisfactory, mainly due to their dependence on human assistance. Utilizing robots will spare human work force and help decreasing the risk of infection; and subsequently, economizing on personnel and hygiene expenses. This paper discussed these issues in three points, in order to present a low cost autonomous robotic wheelchair design to transport the elderly and disabled within hospitals. First, a design of a robot was implemented on a small prototype. The robot was navigated using line-following with obstacle detection technique; which is economical, simple and easily executed. Second, a design of a robotic wheelchair was presented. The wheelchair was developed from manual wheelchairs used in hospitals after proper adjustments, and a design of two gearboxes has been proposed. Third, the advantage of using robotic wheelchairs inside hospitals was discussed by utilizing findings from previous studies. The robot prototype circuit was built using optical and ultrasonic sensors, two DC motors and L293D motor driver; and programmed with Atmega16L Microcontroller. The robot was able to follow a predetermined line-path and detect obstacles within an acceptable range.
机译:在人类医疗保健中使用机器人技术的兴趣日益浓厚。在大多数机构中,向老年人和残疾人提供的服务并不令人满意,这主要是因为他们依赖于人类的援助。利用机器人可以节省人力,并有助于降低感染风险;随后,节省了人员和卫生费用。本文从三个方面讨论了这些问题,以提出一种低成本的自主式机器人轮椅设计,以在医院内运送老年人和残疾人。首先,在小型原型机上实现了机器人的设计。机器人使用跟随障碍物的线跟踪技术进行导航;经济,简单且易于执行。其次,提出了机器人轮椅的设计。轮椅是在经过适当调整后由医院使用的手动轮椅开发而成的,并且已经提出了两个变速箱的设计方案。第三,通过利用以前的研究结果讨论了在医院内使用自动轮椅的优势。机器人原型电路是使用光学和超声波传感器,两个直流电动机和L293D电动机驱动器构建的;并使用Atmega16L单片机编程。机器人能够遵循预定的路线并检测到可接受范围内的障碍物。

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