A Practical and Economical Ultra-wideband Base Station Placement Approach for Indoor Autonomous Driving Systems

Automated valet parking (AVP) has attracted much attention as the entry point to autonomous driving. In an indoor environment, high-precision positioning systems are essential for AVP. Ultra-wideband (UWB) is one of the most widely adopted techniques. However, the base station placement significantl...

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Published inJournal of advanced transportation Vol. 2022; pp. 1 - 12
Main Authors Jiang, Shengchuan, Zhao, Cong, Zhu, Yifan, Wang, Chenwei, Du, Yuchuan
Format Journal Article
LanguageEnglish
Published London Hindawi 03.03.2022
John Wiley & Sons, Inc
Wiley
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Abstract Automated valet parking (AVP) has attracted much attention as the entry point to autonomous driving. In an indoor environment, high-precision positioning systems are essential for AVP. Ultra-wideband (UWB) is one of the most widely adopted techniques. However, the base station placement significantly influences the system’s positioning accuracy, especially for the irregular architecture of underground parking lots. This article proposes a three-stage practical and economical layout planning approach for UWB base stations, including determining the deployment strategy and layout parameters and comprehensive adjustment and scheme verification. The approach considers regional differentiation accuracy requirements for AVP, such as ramp area, surface fluctuation area, and narrow area. The adopted positioning method of a UWB system is the time difference of arrival (TDOA), and the evaluation index of positioning accuracy is the horizontal dilution of precision (HDOP). Through experimental tests in an actual parking lot, the proposed approach is confirmed to ensure stability and economy with fewer UWB base stations and can meet the positioning accuracy requirements of AVP.
AbstractList Automated valet parking (AVP) has attracted much attention as the entry point to autonomous driving. In an indoor environment, high-precision positioning systems are essential for AVP. Ultra-wideband (UWB) is one of the most widely adopted techniques. However, the base station placement significantly influences the system's positioning accuracy, especially for the irregular architecture of underground parking lots. This article proposes a three-stage practical and economical layout planning approach for UWB base stations, including determining the deployment strategy and layout parameters and comprehensive adjustment and scheme verification. The approach considers regional differentiation accuracy requirements for AVP, such as ramp area, surface fluctuation area, and narrow area. The adopted positioning method of a UWB system is the time difference of arrival (TDOA), and the evaluation index of positioning accuracy is the horizontal dilution of precision (HDOP). Through experimental tests in an actual parking lot, the proposed approach is confirmed to ensure stability and economy with fewer UWB base stations and can meet the positioning accuracy requirements of AVP.
Audience Academic
Author Zhao, Cong
Du, Yuchuan
Wang, Chenwei
Zhu, Yifan
Jiang, Shengchuan
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Copyright Copyright © 2022 Shengchuan Jiang et al.
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Snippet Automated valet parking (AVP) has attracted much attention as the entry point to autonomous driving. In an indoor environment, high-precision positioning...
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SubjectTerms Accuracy
Automation
Automobile parking
Automobiles
Cellular telephone equipment industry
Design techniques
Dilution
Genetic algorithms
Indoor environments
Internet of Things
Layouts
Linear programming
Methods
Optimization
Parking facilities
Parking lots
Performance evaluation
Placement
Sensors
Simulation
Transportation
Ultrawideband
Vehicles
Wireless telecommunications equipment
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Title A Practical and Economical Ultra-wideband Base Station Placement Approach for Indoor Autonomous Driving Systems
URI https://dx.doi.org/10.1155/2022/3815306
https://www.proquest.com/docview/2638548419
https://doaj.org/article/f173b2de289447e1879b513db0489101
Volume 2022
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