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Enhanced Gaussian Process-Based Localization Using a Low Power Wide Area Network., , , and . IEEE Communications Letters, 23 (1): 164-167 (2019)Proximity Estimation with BLE RSSI and UWB Range Using Machine Learning Algorithm., and . IPIN, page 1-6. IEEE, (2023)Simulation and evaluation of the performance of the proposed Mars network constellation for positioning, orbit improvement, and establishment of a spatial reference frame for Mars.. University of Calgary, Alberta, Canada, (2004)base-search.net (ftunivcalgary:oai:prism.ucalgary.ca:1880/41852).Weak GPS signal acquisition using antenna diversity., , , and . UPINLBS, page 11-18. IEEE, (2014)Using Step Size and Lower Limb Segment Orientation from Multiple Low-Cost Wearable Inertial/Magnetic Sensors for Pedestrian Navigation., and . Sensors, 19 (14): 3140 (2019)Symbol Timing Acquisition for Collaborative OFDM WLAN-Based A-GPS., , and . Int. J. Wirel. Inf. Networks, 20 (4): 281-293 (2013)Pedestrian dead-reckoning using multiple low-cost inertial/magnetic sensors on lower limbs., and . IPIN (Short Papers/Work-in-Progress Papers), volume 2498 of CEUR Workshop Proceedings, page 172-179. CEUR-WS.org, (2019)Trilateration With BLE RSSI Accounting for Pathloss Due to Human Obstacles., and . IPIN, page 1-8. IEEE, (2019)Monocular-based pose estimation using vanishing points for indoor image correction., and . IPIN, page 1-7. IEEE, (2017)Detecting and Correcting for Human Obstacles in BLE Trilateration Using Artificial Intelligence., and . Sensors, 20 (5): 1350 (2020)