Smart Parking System Using IoT Sensors

Steven Yong Choong Hong, C. C. Kang, Jian Ding Tan, Mohammad Mehdi Ariannejad
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Abstract

Due to the increasing difficulty of finding vacant parking slots in urban cities, Smart Parking System has been developed to solve the problem. It is a system that can show the status of all parking slots in an area which allows drivers to find parking easily. The objective of this paper is to design a Smart Parking System by using Internet of things (IoT) sensors and evaluate the system’s performance. In this paper, ultrasonic sensors will be used as the IoT sensors while the microcontroller of the system is the NodeMCU ESP8266. The ultrasonic sensors will be placed in each parking slot to detect the presence of a vehicle. When the sensor detects a car, it will send this information to the microcontroller and the microcontroller will update the parking data stored in the cloud server via an internet connection. The users can then access the parking information in the cloud with their mobile devices by scanning the Quick Response (QR) code provided or directly visiting the cloud online. In addition, unique designs are proposed to solve some common problems faced by the parking systems such as the ultrasonic sensor might be malfunctioning and the sensor is unable to differentiate between a vehicle and a pedestrian. The performance of the system will then be evaluated based on its accuracy. From the results obtained, the system prototype achieved an accuracy of 100 %. Comparing this system with other Smart Parking Systems proposed, it proves that this method has higher cost-efficiency and reliability. This shows the significance of this research since higher system reliability and cost-efficiency can increase the confidence of the parking area owners to implement this Smart Parking System which can save the driver’s time and reduce air pollution.
使用物联网传感器的智能停车系统
由于城市中停车位难找,智能停车系统应运而生。这是一个可以显示一个地区所有停车位的状态的系统,让司机很容易找到停车位。本文的目的是设计一个基于物联网传感器的智能停车系统,并对系统的性能进行评估。本文将采用超声波传感器作为物联网传感器,系统的微控制器为NodeMCU ESP8266。超声波传感器将被放置在每个停车位,以检测车辆的存在。当传感器检测到车辆时,它会将此信息发送给微控制器,微控制器将通过互联网连接更新存储在云服务器中的停车数据。然后,用户可以通过扫描提供的快速响应(QR)码或直接在线访问云,使用移动设备访问云中的停车信息。此外,提出了独特的设计,以解决停车系统面临的一些常见问题,如超声波传感器可能出现故障,传感器无法区分车辆和行人。然后,系统的性能将根据其准确性进行评估。从所获得的结果来看,系统原型实现了100%的精度。将该系统与其他智能停车系统进行比较,证明了该方法具有更高的成本效益和可靠性。这表明了本研究的意义,因为更高的系统可靠性和成本效益可以增加停车场所有者实施智能停车系统的信心,从而节省驾驶员的时间并减少空气污染。
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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