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Kaukokartoitus ja fotogrammetria – julkaisut

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2022

Bhuiyan, M. Zahidul H.; Söderholm, Stefan; Ferrara, Giorgia; Thombre, Sarang et al. 2022.
SDR MATLAB Package. Cambridge University Press, Cambridge. GNSS Software Receivers.
Bhuiyan, M. Zahidul H.; Söderholm, Stefan; Thombre, Sarang; Kuusniemi, Heidi. 2022.
BeiDou B1I Receiver Processing. Cambridge University Press, Cambridge. GNSS Software Receivers.
Borre, Kai; Bhuiyan, M. Zahidul H.; Söderholm, Stefan; Kuusniemi, Heidi et al. 2022.
GPS L1 C/A Receiver Processing. Cambridge University Press, Cambridge. GNSS Software Receivers.
Borre, Kai; Fernández-Hernández, Ignacio; Lopez-Salcedo, José A.; Bhuiyan, M. Zahidul H.. 2022.
GNSS Software Receivers. Cambridge University Press.
Elsanhoury, Mahmoud; Mäkelä, Petteri; Koljonen, Janne; Välisuo, Petri et al. 2022.
Precision Positioning for Smart Logistics using Ultra-Wideband Technology-Based Indoor Navigation : a Review. Institute of Electrical and Electronics Engineers (IEEE). IEEE access, 10.
Ferre, Ruben Morales; Lohan, Elena Simona; Kuusniemi, Heidi; Praks, Jaan et al. 2022.
Is LEO-Based Positioning with Mega-Constellations the Answer for Future Equal Access Localization?. IEEE communications magazine, 60(6).
Horst, Oliver; Kirkko-Jaakkola, Martti; Malkamäki, Tuomo; Kaasalainen, Sanna et al. 2022.
HASlib: An Open-Source Decoder for the Galileo High Accuracy Service. Institute of Navigation. ION GNSS+, The International Technical Meeting of the Satellite Division of The Institute of Navigation.
Ikonen, Pasi; Hokkanen, Jere; Uskali, Turo; Manninen, Ville J. E. et al. 2022.
The Networked Utilisation of Satellite Images and Geospatial Technology in Journalism. Palgrave Macmillan, Cham.
Islam, Saiful; Bhuiyan, Mohammad Zahidul Hasan; Thombre, Sarang; Kaasalainen, Sanna. 2022.
Combating Single-Frequency Jamming through a Multi-Frequency, Multi-Constellation Software Receiver: A Case Study for Maritime Navigation in the Gulf of Finland. MDPI AG. Sensors, 22(6), 2294.
Kaasalainen, Sanna. 2022.
Satelliittipaikannus muodostaa tietoyhteiskunnan selkärangan ja on siksi kriisivalmiuden ytimessä – ensimmäiseksi tarvitaan ajantasainen tilannekuva. Positio, 2022, 11.5.2022.
Lehtola, Ville V.; Mäkelä, Maija; de Oliveira Marques, Tiago; Montloin, Leslie. 2022.
Tropospheric wet tomography and PPP: Joint estimation from GNSS crowdsourcing data. Elsevier BV. Advances in Space Research, 70(8).
Lopez-Salcedo, José A.; Fernández-Hernández, Ignacio; Bhuiyan, M. Zahidul H.; Lohan, Elena Simona et al. 2022.
GNSS Signals and Receivers. Cambridge University Press. GNSS Software Receivers.
Monico, João Francisco Galera; de Paula, Eurico Rodrigues; Moraes, Alison de Oliveira; Costa, Emanoel et al. 2022.
The GNSS NavAer INCT Project Overview and Main Results. Journal of Aerospace Technology and Management, 14, e0722.
Mäkelä, Maija; Kirkko-Jaakkola, Martti; Hammarberg, Toni; Malkamäki, Tuomo et al. 2022.
Cooperative Heading Estimation with von Mises-Fisher Distribution and Particle Filtering. IEEE. 2022 25th International Conference on Information Fusion (FUSION).
Prol, Fabricio dos Santos. 2022.
Challenges of Global-Scale Ionospheric Tomography using GNSS: A brief overview.
Prol, Fabricio S. ; Morales Ferre, Ruben; Saleem, Zainab ; Välisuo, Petri et al. 2022.
Position, Navigation, and Timing (PNT) Through Low Earth Orbit (LEO) Satellites: A Survey on Current Status, Challenges, and Opportunities. IEEE access, 10.
Prol, Fabricio S.; Hoque, Mohammed Mainul. 2022.
A Tomographic Method for the Reconstruction of the Plasmasphere Based on COSMIC/ FORMOSAT-3 Data. Institute of Electrical and Electronics Engineers (IEEE). IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 15.
Prol, Fabricio S.; Smirnov, Artem G.; Hoque, M. Mainul; Shprits, Yuri Y.. 2022.
Combined model of topside ionosphere and plasmasphere derived from radio-occultation and Van Allen Probes data. Springer Science and Business Media LLC. Scientific Reports, 12, 9732.
Siemuri, Akpojoto; Elsanhoury, Mahmoud; Välisuo, Petri; Kuusniemi, Heidi et al. 2022.
Application of Machine Learning to GNSS/IMU Integration for High Precision Positioning on Smartphones. Institute of Navigation. ION GNSS+, The International Technical Meeting of the Satellite Division of The Institute of Navigation.
Siemuri, Akpojoto; Selvan, Kannan; Kuusniemi, Heidi; Välisuo, Petri et al. 2022.
A Systematic Review of Machine Learning Techniques for GNSS Use Cases. Institute of Electrical and Electronics Engineers (IEEE). IEEE transactions on aerospace and electronic systems, 58(6).
Spogli, Luca; Ghobadi, Hossein; Cicone, Antonio; Alfonsi, Lucilla et al. 2022.
Adaptive Phase Detrending for GNSS Scintillation Detection: A Case Study Over Antarctica. IEEE. IEEE geoscience and remote sensing letters, 19, 8009905.
Söderholm, Stefan; Bhuiyan, M. Zahidul H.; Ferrara, Giorgia; Thombre, Sarang et al. 2022.
A Multi-GNSS Software Receiver. Cambridge University Press, Cambridge. GNSS Software Receivers.
Thombre, Sarang; Bhuiyan, M. Zahidul H.; Söderholm, Stefan; Kuusniemi, Heidi. 2022.
NavIC L5 Receiver Processing. Cambridge University Press, Cambridge. GNSS Software Receivers.
Thombre, Sarang; Zhao, Zheng; Ramm-Schmidt, Henrik; Garcia, Jose M. Vallet et al. 2022.
Sensors and AI Techniques for Situational Awareness in Autonomous Ships: A Review. IEEE. IEEE transactions on intelligent transportation systems, 23(1).