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首页> 外文期刊>Internet of Things Journal, IEEE >Blockchain-Enabled Internet of Vehicles With Cooperative Positioning: A Deep Neural Network Approach
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Blockchain-Enabled Internet of Vehicles With Cooperative Positioning: A Deep Neural Network Approach

机译:具有合作定位的支持区块链式车辆:深度神经网络方法

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摘要

Although vehicular global positioning system (GPS) has been widely applied in many traffic scenarios, it is far from achieving lane-level positioning due to its low accuracy. Existing cooperative positioning (CP) methods have improved vehicular positioning accuracy to varying degrees, which still have challenges in further improving the system's robustness and security. In this article, we propose a novel framework of blockchain-enabled Internet of Vehicles (IoV) with CP for improving vehicular GPS positioning accuracy, system robustness, and security. First, a self-positioning correction scheme for the intelligent vehicles is proposed to improve their positioning accuracy, which uses the multitraffic signs as benchmarks to correct the vehicular position (given by GPS) by deep neural network (DNN) algorithm. We further design a multi-intelligent vehicle positioning error sharing model to reduce GPS positioning error of common vehicles (CoVs) in the same segment or area. In addition, to realize information sharing between vehicles and ensure system security, the connections among intelligent vehicles, CoVs, and roadside units are built by proposing a blockchain-enabled architecture that includes IoV subsystem and blockchain subsystem, where the corresponding mechanism of the information choosing, information sharing, and penalty is designed. Extensive simulation results show the accuracy, robustness, and security of our proposal in terms of vehicular positioning, information transferring, and sharing.
机译:虽然车辆全球定位系统(GPS)已被广泛应用于许多交通方案,但由于其低精度而导致的道路级定位远远不已。现有的合作定位(CP)方法具有改善的车辆定位精度,以不同程度的程度,这仍然具有进一步提高系统的鲁棒性和安全性的挑战。在本文中,我们提出了一种具有CP的支持区块链式车辆(IOV)的新框架,用于提高车辆GPS定位精度,系统鲁棒性和安全性。首先,提出了一种用于智能车辆的自定位校正方案来提高其定位精度,其使用多胍标志作为基准,以通过深神经网络(DNN)算法校正车辆位置(由GPS给出)。我们进一步设计了一种多智能车辆定位误差共享模型,以减少同一段或区域中的普通车辆(COV)的GPS定位误差。此外,为了实现车辆之间的信息共享并确保系统安全性,通过提出包括IOV子系统和区块链子系统的基块的架构,构建了智能车辆,COV和路边单元之间的连接,其中信息选择的相应机制设计信息共享和罚款是设计的。广泛的仿真结果表明,在车辆定位,信息转移和共享方面,我们提案的准确性,稳健性和安全性。

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