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Evaluation of positioning and ranging errors for UWB indoor applications.

, , , и . IPIN (Short Papers/Work-in-Progress Papers), том 2498 из CEUR Workshop Proceedings, стр. 227-234. CEUR-WS.org, (2019)

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Model Validation of an Open-source Framework for Post-processing INS/GNSS Systems., , , , и . GISTAM, стр. 201-208. SciTePress, (2017)Indoor positioning using Ultra-wide band (UWB) technologies: Positioning accuracies and sensors' performances., , , , и . PLANS, стр. 175-184. IEEE, (2018)GNSS Positioning using Android Smartphone., , , и . GISTAM, стр. 135-142. SciTePress, (2019)Comparison of two different mass-market IMU generations: Bias analyses and real time applications., и . PLANS, стр. 34-41. IEEE, (2016)Monocular Visual Odometry with Unmanned Underwater Vehicle Using Low Cost Sensors., , и . PLANS, стр. 810-816. IEEE, (2020)Evaluation of positioning and ranging errors for UWB indoor applications., , , и . IPIN (Short Papers/Work-in-Progress Papers), том 2498 из CEUR Workshop Proceedings, стр. 227-234. CEUR-WS.org, (2019)A low-cost open-source GNSS network for network real-time kinematic positioning: which future and performances?, и . PLANS, стр. 272-279. IEEE, (2023)Automatic Features Detection in a Fluvial Environment through Machine Learning Techniques Based on UAVs Multispectral Data., , , и . Remote. Sens., 13 (19): 3983 (2021)Potential and Limitations of Free Online Precise Point Positioning Services for GNSS Rover-Base Surveys in Low-Density CORS Areas., , , , и . GISTAM (Selected Papers), том 1908 из Communications in Computer and Information Science, стр. 68-85. Springer, (2022)Performances and New Aspects of Multi-GNSS, Dual Frequency and Low-Cost Receivers in Harsh Urban Environments., , и . R3GEO, том 1246 из Communications in Computer and Information Science, стр. 77-90. Springer, (2019)