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Comparison of RSSI-Based Fingerprinting Methods for Indoor Localization.

, , and . SISY, page 273-278. IEEE, (2022)

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A Neural Network-Based Approach for the Identification and Compensation of Magnetic Disturbances in Mobile Robot Localization., , and . SACI, page 393-398. IEEE, (2023)Comparison of different classifiers in movement recognition using WSN-based wrist-mounted sensors., , and . SAS, page 1-6. IEEE, (2015)A Novel Fuzzy-Adaptive Extended Kalman Filter for Real-Time Attitude Estimation of Mobile Robots., , , , , and . Sensors, 20 (3): 803 (2020)Indoor 2D Positioning Method for Mobile Robots Based on the Fusion of RSSI and Magnetometer Fingerprints., , and . Sensors, 23 (4): 1855 (February 2023)Fingerprint-based fusion of magnetic field data with multiple wireless technologies for indoor mobile robot positioning., , , , , and . IPIN, page 1-6. IEEE, (2023)New methods in the application of inertial and magnetic sensors in online pattern recognition problems. University of Szeged, Hungary, (2019)Comparison of RSSI-Based Fingerprinting Methods for Indoor Localization., , and . SISY, page 273-278. IEEE, (2022)Real-Time Vehicle Classification System Using a Single Magnetometer., , and . Sensors, 22 (23): 9299 (2022)Particle swarm optimization aided calibration of sensor installation errors for MEMS accelerometers., , , and . SACI, page 493-498. IEEE, (2023)Examining the Efficiency of Magnetometers in Movement Classification Systems.. SACI, page 241-246. IEEE, (2020)