An Automated Real-Time Localization System in Highway and Tunnel Using UWB DL-TDoA Technology
There exists an electromagnetic shielding effect on radio signals in a tunnel, which results in no satellite positioning signal in the tunnel scenario. Moreover, because vehicles always drive at a high speed on the highway, the real-time localization system (RTLS) has a bottleneck in a highway scena...
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doaj-4e15271216194f60a90e2b9364342f622020-12-07T09:08:24ZengHindawi-WileyWireless Communications and Mobile Computing1530-86691530-86772020-01-01202010.1155/2020/88776548877654An Automated Real-Time Localization System in Highway and Tunnel Using UWB DL-TDoA TechnologyLong Wen0Jinkun Han1Liangliang Song2Qi Zhang3Kai Li4Zhi Li5Weimin Zhang6Beihai Zhang7Xin You8Yunsick Sung9Sumi Ji10Wei Song11Beijing Municipal Engineering Research, Beijing, ChinaDepartment of Computer Science, Georgia State University, Atlanta, 30303 GA, USARoadway Smart (Beijing) Technology Co., Ltd., Beijing, ChinaBeijing Capital Road Development Group Co., LTD., Beijing, ChinaBeijing Municipal Engineering Research, Beijing, ChinaBeijing Capital Road Development Group Co., LTD., Beijing, ChinaBeijing Sutong Technology Co., Ltd., Beijing, ChinaBeijing Sutong Technology Co., Ltd., Beijing, ChinaBeijing Sutong Technology Co., Ltd., Beijing, ChinaDepartment of Multimedia Engineering, Dongguk University-Seoul, Seoul 04620, Republic of KoreaDepartment of Multimedia Engineering, Dongguk University-Seoul, Seoul 04620, Republic of KoreaSchool of Information Science and Technology, North China University of Technology, Beijing 100144, ChinaThere exists an electromagnetic shielding effect on radio signals in a tunnel, which results in no satellite positioning signal in the tunnel scenario. Moreover, because vehicles always drive at a high speed on the highway, the real-time localization system (RTLS) has a bottleneck in a highway scenario. Thus, the navigation and positioning service in tunnel and highway is an important technology difficulty in the construction of a smart transportation system. In this paper, a new technology combined downlink time difference of arrival (DL-TDoA) is proposed to realize precise and automated RTLS in tunnel and highway scenarios. The DL-TDoA inherits ultra-wideband (UWB) technology to measure the time difference of radio signal propagation between the location tag and four different location base stations, to obtain the distance differences between the location tag and four groups of location base stations. The proposed solution achieves a higher positioning efficiency and positioning capacity to achieve dynamic RTLS. The DL-TDoA technology based on UWB has several advantages in precise positioning and navigation, such as positioning accuracy, security, anti-interference, and power consumption. In the final experiments on both static and dynamic tests, DL-TDoA represents high accuracy and the mean errors of 11.96 cm, 37.11 cm, 50.06 cm, and 87.03 cm in the scenarios of static tests and 30 km/h, 60 km/h, and 80 km/h in dynamic tests, respectively, which satisfy the requirements of RTLS.http://dx.doi.org/10.1155/2020/8877654 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Long Wen Jinkun Han Liangliang Song Qi Zhang Kai Li Zhi Li Weimin Zhang Beihai Zhang Xin You Yunsick Sung Sumi Ji Wei Song |
spellingShingle |
Long Wen Jinkun Han Liangliang Song Qi Zhang Kai Li Zhi Li Weimin Zhang Beihai Zhang Xin You Yunsick Sung Sumi Ji Wei Song An Automated Real-Time Localization System in Highway and Tunnel Using UWB DL-TDoA Technology Wireless Communications and Mobile Computing |
author_facet |
Long Wen Jinkun Han Liangliang Song Qi Zhang Kai Li Zhi Li Weimin Zhang Beihai Zhang Xin You Yunsick Sung Sumi Ji Wei Song |
author_sort |
Long Wen |
title |
An Automated Real-Time Localization System in Highway and Tunnel Using UWB DL-TDoA Technology |
title_short |
An Automated Real-Time Localization System in Highway and Tunnel Using UWB DL-TDoA Technology |
title_full |
An Automated Real-Time Localization System in Highway and Tunnel Using UWB DL-TDoA Technology |
title_fullStr |
An Automated Real-Time Localization System in Highway and Tunnel Using UWB DL-TDoA Technology |
title_full_unstemmed |
An Automated Real-Time Localization System in Highway and Tunnel Using UWB DL-TDoA Technology |
title_sort |
automated real-time localization system in highway and tunnel using uwb dl-tdoa technology |
publisher |
Hindawi-Wiley |
series |
Wireless Communications and Mobile Computing |
issn |
1530-8669 1530-8677 |
publishDate |
2020-01-01 |
description |
There exists an electromagnetic shielding effect on radio signals in a tunnel, which results in no satellite positioning signal in the tunnel scenario. Moreover, because vehicles always drive at a high speed on the highway, the real-time localization system (RTLS) has a bottleneck in a highway scenario. Thus, the navigation and positioning service in tunnel and highway is an important technology difficulty in the construction of a smart transportation system. In this paper, a new technology combined downlink time difference of arrival (DL-TDoA) is proposed to realize precise and automated RTLS in tunnel and highway scenarios. The DL-TDoA inherits ultra-wideband (UWB) technology to measure the time difference of radio signal propagation between the location tag and four different location base stations, to obtain the distance differences between the location tag and four groups of location base stations. The proposed solution achieves a higher positioning efficiency and positioning capacity to achieve dynamic RTLS. The DL-TDoA technology based on UWB has several advantages in precise positioning and navigation, such as positioning accuracy, security, anti-interference, and power consumption. In the final experiments on both static and dynamic tests, DL-TDoA represents high accuracy and the mean errors of 11.96 cm, 37.11 cm, 50.06 cm, and 87.03 cm in the scenarios of static tests and 30 km/h, 60 km/h, and 80 km/h in dynamic tests, respectively, which satisfy the requirements of RTLS. |
url |
http://dx.doi.org/10.1155/2020/8877654 |
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