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Performance Analysis of Proximity and Light Sensors for Smart Parking

机译:智能泊车距离和光传感器的性能分析

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摘要

The rapid increase in vehicle population in recent years have given rise to a number of global problems such as air pollution, blockage of roads, waste of fuel and time. These issues exist due to the congestion caused by vehicles while finding the parking slot especially in metropolitan cities. Even today, many of the existing parking systems provide a passive information to the drivers regarding the availability of parking slots. Currently, the sensors deployed for detecting the vehicle presence in parking facilities are not reliable and are expensive. This paper presents a comprehensive analysis on crucial aspects for designing a smart parking system such as sensor selection and optimal position for sensor deployment for accurate detection. Initially, two most common sensor, Light Dependable Resistor (LDR) sensor that works on shadow detection principal and Infra-Red (IR) sensor which works on object detection mechanism are used. The performance analysis of the accuracy for detection of vacant parking slots and vehicle detection under different conditions is presented. It is concluded that IR sensor outperforms LDR sensor in terms of it's accuracy in detecting the vacant parking slots and vehicle detection in different environmental factors.
机译:近年来,车辆数量的迅速增加引起了许多全球性问题,例如空气污染,道路阻塞,燃料浪费和时间浪费。这些问题的存在是由于在寻找停车位时车辆造成的拥挤,尤其是在大城市中。即使在今天,许多现有的停车系统仍向驾驶员提供有关停车位可用性的被动信息。当前,被部署用于检测停车设施中的车辆存在的传感器不可靠且昂贵。本文对设计智能停车系统的关键方面进行了全面分析,例如传感器选择和传感器部署的最佳位置,以进行精确检测。最初,使用了两种最常见的传感器:用于阴影检测原理的光敏电阻(LDR)传感器和用于物体检测机制的红外(IR)传感器。提出了在不同条件下对空车位和车辆检测精度的性能分析。结论是,在不同环境因素下,IR传感器在检测空车位和车辆检测方面的准确性优于LDR传感器。

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