新型冠状病毒病(COVID-19)主动红外传感器控制自动推拉门原型设计与实现

A. Amole, M. Oyediran, O. Olusanya, W. Elegbede, A. Olusesi, A. Adeleye
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引用次数: 3

摘要

门是任何结构的重要组成部分,为生命和财产提供通道和安全。在客流量大的情况下,人工开门是一件繁琐费力的事情。有人观察到,门有可能成为传播新型冠状病毒感染症(COVID-19)的媒介。因此,本文设计并实现了一种对抑制该传染病传播起关键作用的自动推拉门原型。原型推拉门的设计分为两部分,即;结构部分和自动化部分。门的结构设计使用Microsoft Visio 2016实现,自动化系统的设计使用express印刷电路板实现。结构部分的实现是使用1英寸刨花板实现的,而自动化系统的实现是基于主动红外传感器、电阻(10 kΩ)、电容器(1000µF)、晶体管(TIP41 Q8、BC548 Q7)、LED指示灯、按钮开关、滑轮系统、传动带、步进电机(IP65)和ATMEGA 8微控制器等组件。在门上进行的试验结果表明,原型自动推拉门的平均开启时间、关闭时间、延迟时间和最佳感知范围分别为3.10 s、3.05 s、5.72 s和23.5 cm。由此可以得出结论,原型自动推拉门可以有效地取代人工操作。
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Design and implementation of a prototype active infrared sensor controlled automatic sliding door for mitigation of coronavirus disease 2019 (COVID-19)
The door is an essential part of any structure that provides access and security of lives and properties. The manual operation of a door could be cumbersome and laborious when the traffic volume is high. Also, it has been observed that doors could serve as a medium of spreading the deadly coronavirus disease 2019 (COVID-19) infection. Therefore, a prototype automatic sliding door that plays a crucial role in curbing the spread of this infectious diseases has been designed and implemented in this paper. The design of the prototype sliding door is in two parts namely; the structural part and the automation part. The structural design of the door was achieved using the Microsoft Visio 2016 while the design of the automation system was achieved using express printed circuit board. The implementation of the structural part was achieved using 1 inch particle board while the implementation of the automation system was based on the components like the active infrared sensor, resistors (10 kΩ), capacitor (1000 µF), transistors (TIP41 Q8, BC548 Q7), LED indicators, press button switch, pulley system, drive belt, stepper motor (IP65), and ATMEGA 8 microcontroller. The result of the tests carried out on the door showed that the prototype automatic sliding door was characterized by average opening time, closing time, delay time, and optimal sensing range of 3.10 s, 3.05 s, 5.72 s, and 23.5 cm, respectively. It can therefore be concluded from this work that the prototype automatic sliding door is effective in overriding the manual operation of the door.
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