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RFID-Based Vehicle Positioning and Its Applications in Connected Vehicles

机译:基于RFID的车辆定位及其在互联车辆中的应用

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This paper proposed an RFID-based vehicle positioning approach to facilitate connected vehicles applications. When a vehicle passes over an RFID tag, the vehicle position is given by the accurate position stored in the tag. At locations without RFID coverage, the vehicle position is estimated from the most recent tag location using a kinematics integration algorithm till updates from the next tag. The accuracy of RFID positioning is verified empirically in two independent ways with one using radar and the other a photoelectric switch. The former is designed to verify whether the dynamic position obtained from RFID tags matches the position measured by radar that is regarded as accurate. The latter aims to verify whether the position estimated from the kinematics integration matches the position obtained from RFID tags. Both means supports the accuracy of RFID-based positioning. As a supplement to GPS which suffers from issues such as inaccuracy and loss of signal, RFID positioning is promising in facilitating connected vehicles applications. Two conceptual applications are provided here with one in vehicle operational control and the other in Level IV intersection control.
机译:本文提出了一种基于RFID的车辆定位方法,以促进互联车辆的应用。当车辆经过RFID标签时,车辆位置由存储在标签中的准确位置给出。在没有RFID覆盖的位置,使用运动学集成算法从最近的标签位置估计车辆位置,直到从下一个标签更新为止。 RFID定位的准确性通过两种独立的方法进行了经验验证,一种使用雷达,另一种使用光电开关。前者旨在验证从RFID标签获得的动态位置是否与被认为准确的雷达测量位置相匹配。后者旨在验证从运动学集成估计的位置是否与从RFID标签获得的位置匹配。两种方法都支持基于RFID的定位精度。作为遭受诸如不准确和信号丢失之类的问题困扰的GPS的补充,RFID定位在促进互联车辆应用方面很有前途。此处提供了两个概念性应用程序,其中一个用于车辆操作控制,另一个用于IV级交叉路口控制。

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