Evaluation of a Wi-Fi Signal Based System for Freeway Traffic States Monitoring: An Exploratory Field Test

Monitoring traffic states from the road is arousing increasing concern from traffic management authorities. To complete the picture of real-time traffic states, novel data sources have been introduced and studied in the transportation community for decades. This paper explores a supplementary and no...

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Main Authors: Fan Ding, Xiaoxuan Chen, Shanglu He, Guangming Shou, Zhen Zhang, Yang Zhou
Format: Article
Language:English
Published: MDPI AG 2019-01-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/19/2/409
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spelling doaj-9cc5d3df88ca4351a0faa31248059ed92020-11-25T01:42:58ZengMDPI AGSensors1424-82202019-01-0119240910.3390/s19020409s19020409Evaluation of a Wi-Fi Signal Based System for Freeway Traffic States Monitoring: An Exploratory Field TestFan Ding0Xiaoxuan Chen1Shanglu He2Guangming Shou3Zhen Zhang4Yang Zhou5Department of Civil and Environmental Engineering, University of Wisconsin, Madison, WI 53706, USAFord Motor Company, Dearborn, MI 48126, USASchool of Automation, Nanjing University of Science and Technology, Nanjing 210000, ChinaSchool of Cyberspace Security, Southeast University, Nanjing 210000, ChinaDepartment of Civil and Environmental Engineering, University of Wisconsin, Madison, WI 53706, USADepartment of Civil and Environmental Engineering, University of Wisconsin, Madison, WI 53706, USAMonitoring traffic states from the road is arousing increasing concern from traffic management authorities. To complete the picture of real-time traffic states, novel data sources have been introduced and studied in the transportation community for decades. This paper explores a supplementary and novel data source, Wi-Fi signal data, to extract traffic information through a well-designed system. An IoT (Internet of Things)-based Wi-Fi signal detector consisting of a solar power module, high capacity module, and IoT functioning module was constructed to collect Wi-Fi signal data. On this basis, a filtration and mining algorithm was developed to extract traffic state information (i.e., travel time, traffic volume, and speed). In addition, to evaluate the performance of the proposed system, a practical field test was conducted through the use of the system to monitor traffic states of a major corridor in China. The comparison results with loop data indicated that traffic speed obtained from the system was consistent with that collected from loop detectors. The mean absolute percentage error reached 3.55% in the best case. Furthermore, the preliminary analysis proved the existence of the highly correlated relationship between volumes obtained from the system and from loop detectors. The evaluation confirmed the feasibility of applying Wi-Fi signal data to acquisition of traffic information, indicating that Wi-Fi signal data could be used as a supplementary data source for monitoring real-time traffic states.https://www.mdpi.com/1424-8220/19/2/409Internet of Things (IoT)Wi-Fi signal detectortraffic characteristics monitoringspeed detectionperformance evaluation
collection DOAJ
language English
format Article
sources DOAJ
author Fan Ding
Xiaoxuan Chen
Shanglu He
Guangming Shou
Zhen Zhang
Yang Zhou
spellingShingle Fan Ding
Xiaoxuan Chen
Shanglu He
Guangming Shou
Zhen Zhang
Yang Zhou
Evaluation of a Wi-Fi Signal Based System for Freeway Traffic States Monitoring: An Exploratory Field Test
Sensors
Internet of Things (IoT)
Wi-Fi signal detector
traffic characteristics monitoring
speed detection
performance evaluation
author_facet Fan Ding
Xiaoxuan Chen
Shanglu He
Guangming Shou
Zhen Zhang
Yang Zhou
author_sort Fan Ding
title Evaluation of a Wi-Fi Signal Based System for Freeway Traffic States Monitoring: An Exploratory Field Test
title_short Evaluation of a Wi-Fi Signal Based System for Freeway Traffic States Monitoring: An Exploratory Field Test
title_full Evaluation of a Wi-Fi Signal Based System for Freeway Traffic States Monitoring: An Exploratory Field Test
title_fullStr Evaluation of a Wi-Fi Signal Based System for Freeway Traffic States Monitoring: An Exploratory Field Test
title_full_unstemmed Evaluation of a Wi-Fi Signal Based System for Freeway Traffic States Monitoring: An Exploratory Field Test
title_sort evaluation of a wi-fi signal based system for freeway traffic states monitoring: an exploratory field test
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2019-01-01
description Monitoring traffic states from the road is arousing increasing concern from traffic management authorities. To complete the picture of real-time traffic states, novel data sources have been introduced and studied in the transportation community for decades. This paper explores a supplementary and novel data source, Wi-Fi signal data, to extract traffic information through a well-designed system. An IoT (Internet of Things)-based Wi-Fi signal detector consisting of a solar power module, high capacity module, and IoT functioning module was constructed to collect Wi-Fi signal data. On this basis, a filtration and mining algorithm was developed to extract traffic state information (i.e., travel time, traffic volume, and speed). In addition, to evaluate the performance of the proposed system, a practical field test was conducted through the use of the system to monitor traffic states of a major corridor in China. The comparison results with loop data indicated that traffic speed obtained from the system was consistent with that collected from loop detectors. The mean absolute percentage error reached 3.55% in the best case. Furthermore, the preliminary analysis proved the existence of the highly correlated relationship between volumes obtained from the system and from loop detectors. The evaluation confirmed the feasibility of applying Wi-Fi signal data to acquisition of traffic information, indicating that Wi-Fi signal data could be used as a supplementary data source for monitoring real-time traffic states.
topic Internet of Things (IoT)
Wi-Fi signal detector
traffic characteristics monitoring
speed detection
performance evaluation
url https://www.mdpi.com/1424-8220/19/2/409
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