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Intelligent HMI and Control for Steering a Powered Wheelchair Using a Raspberry Pi Microcomputer

机译:使用Raspberry Pi微型计算机的智能HMI和转向助力电动轮椅控制

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This paper presents a new technique for controlling powered wheelchairs. A Raspberry Pi microcomputer is used to assist in controlling direction. A Raspberry Pi is inserted between user input switches and powered wheelchair motors to create a more intelligent Human Machine Interface (HMI). An electronic circuit is created that consists of an ultrasonic sensor array and a set of control relays. The sensors provided information about obstacles surrounding the wheelchair. Python programming language was used to create a code that digitized the output from the user switches and assessed information provided by the ultrasonic sensor array. The code was loaded onto a Raspberry Pi and the Raspberry Pi controlled voltages supplied to the motors. Tests were conducted and results showed that the new system can successfully assist a wheelchair user in avoiding obstacles. The system can be used as an intelligent interface between any input device or sensor system and wheelchair motors.
机译:本文介绍了一种用于控制电动轮椅的新技术。使用Raspberry Pi微型计算机来辅助控制方向。在用户输入开关和电动轮椅电机之间插入了Raspberry Pi,以创建更智能的人机界面(HMI)。创建一个由超声波传感器阵列和一组控制继电器组成的电子电路。传感器提供有关轮椅周围障碍物的信息。使用Python编程语言来创建一个代码,该代码将用户开关的输出数字化,并评估超声传感器阵列提供的信息。该代码被加载到Raspberry Pi上,并且Raspberry Pi控制了向电机提供的电压。进行了测试,结果表明,新系统可以成功地帮助轮椅使用者避免障碍物。该系统可用作任何输入设备或传感器系统与轮椅电动机之间的智能接口。

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