4.7 Article

Vehicle Position Correction: A Vehicular Blockchain Networks-Based GPS Error Sharing Framework

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TITS.2019.2961400

关键词

Global Positioning System; Blockchain; Sensors; Security; Edge computing; Distance measurement; Computational modeling; Positioning error evolution; edge computing; DNN; vehicular blockchain; smart contract

资金

  1. National Natural Science Foundation of China [U1801266, 61571350, 61601344]
  2. Key Research and Development Program of Shaanxi [2018ZDXM-GY-038, 2018ZDCXL-GY-04-02]
  3. Youth Innovation Team of Shaanxi Universities
  4. Science and Technology Projects of Xi'an, China [201809170CX11JC12]

向作者/读者索取更多资源

This paper proposes a secure and efficient GPS positioning error evolution sharing framework based on vehicle blockchain, which improves vehicle positioning accuracy by analyzing GPS errors and solves the issue of cooperators providing false data. Extensive simulations based on actual data show the accuracy and security of the proposed framework in terms of positioning error correction and data sharing.
The positioning accuracy of the existing vehicular Global Positioning System (GPS) is far from sufficient to support autonomous driving and ITS applications. To remedy that, leading methods such as ranging and cooperation have improved the positioning accuracy to varying degrees, but they are still full of challenges in practical applications. Especially for cooperative positioning, in addition to the performance of methods, cooperators may provide false data due to attacks or selfishness, which can seriously affect the positioning accuracy. By fully exploiting the characteristics of blockchain and edge computing, this paper proposes a vehicular blockchain-based secure and efficient GPS positioning error evolution sharing framework, which improves vehicle positioning accuracy from ensuring security and credibility of cooperators and data. First, by analyzing the GPS error, a bridge can be established between the sensor-rich vehicles and the common vehicles to achieve cooperation by sharing the positioning error evolution at a specific time and location. Particularly, the positioning error evolution is obtained by a deep neural network (DNN)-based prediction algorithm running on the edge server. We further propose to use blockchain technology for storage and sharing the evolution of positioning errors, mainly to guarantee the security of cooperative vehicles and mobile edge computing nodes (MECNs). In addition, the corresponding smart contracts are designed to automate and efficiently perform storage and sharing tasks as well as solve inconsistencies in time scales. Extensive simulations based on actual data indicate the accuracy and security of our proposal in terms of positioning error correction and data sharing.

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