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Comparative analysis of single-channel direction finding algorithms for automotive applications at 2400 MHz in a complex reflecting environment.

, и . Phys. Commun., 3 (1): 19-27 (2010)

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Investigating the effect of grounding GPS antennas on their radiation properties on vehicular platforms., , , и . RWS, стр. 28-30. IEEE, (2014)Comparative Performance Analysis of a Kalman Filter and a Modified Double Exponential Filter for GPS-Only Position Estimation of Automotive Platforms in an Urban-Canyon Environment., и . IEEE Trans. Vehicular Technology, 56 (5): 2880-2892 (2007)Design of a Compact GNSS Antenna for Vehicular Applications., и . EIT, стр. 759-763. IEEE, (2018)Portable 3D visual sensor based indoor localization on mobile device., , и . CCNC, стр. 1125-1128. IEEE, (2016)MIMO-Based Physical Layer Evaluation on IEEE 802.11bd., , , и . IEEE Access, (2023)DUAL BAND GNSS ANTENNA PHASE CENTER CHARACTERIZATION FOR AUTOMOTIVE APPLICATIONS, и . (октября 2021)C/No Estimation in a GPS Software Receiver in the Presence of RF Interference Mitigation via Null Steering for the Multipath Limiting Antenna., и . GLOBECOM, IEEE, (2006)Comparative analysis of single-channel direction finding algorithms for automotive applications at 2400 MHz in a complex reflecting environment., и . Phys. Commun., 3 (1): 19-27 (2010)WiFi based indoor localization with adaptive motion model using smartphone motion sensors., , и . ICCVE, стр. 786-791. IEEE, (2014)Ultra Wide Planar Monopole Antenna for LTE Application in Automobile., и . EIT, стр. 774-777. IEEE, (2018)