Vehicular navigation based on the fusion of 3D-RISS and machine learning enhanced visual data in challenging environments

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Abstract

Based on the 3D Reduced Inertial Sensor System (3D-RISS) and the Machine Learning Enhanced Visual Data (MLEVD), an integrated vehicle navigation system is proposed in this paper. In demanding conditions such as outdoor satellite signal interference and indoor navigation, this work incorporates vehicle smooth navigation. Firstly, a landmark is set up and both of its size and position are accurately measured. Secondly, the image with the landmark information is captured quickly by using the machine learning. Thirdly, the template matching method and the Extended Kalman Filter (EKF) are then used to correct the errors of the Inertial Navigation System (INS), which employs the 3D-RISS to reduce the overall cost and ensuring the vehicular positioning accuracy simultaneously. Finally, both outdoor and indoor experiments are conducted to verify the performance of the 3D-RISS/MLEVD integrated navigation technology. Results reveal that the proposed method can effectively reduce the accumulated error of the INS with time while maintaining the positioning error within a few meters.

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Sun, Y., Guan, L., Wu, M., Gao, Y., & Chang, Z. (2020). Vehicular navigation based on the fusion of 3D-RISS and machine learning enhanced visual data in challenging environments. Electronics (Switzerland), 9(1). https://doi.org/10.3390/electronics9010193

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