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SimShiftDB: Chemical-Shift-Based Homology Modeling.

, , and . BIRD, volume 4414 of Lecture Notes in Computer Science, page 357-370. Springer, (2007)

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LDACS Flight Trials: Demonstration and Performance Analysis of the Future Aeronautical Communications System., , , , , , , , , and . IEEE Trans. Aerosp. Electron. Syst., 58 (1): 615-634 (2022)Flight trial demonstration of seamless aeronautical networking., , , , , , , , , and 5 other author(s). IEEE Communications Magazine, 52 (5): 119-128 (2014)Feasibility of Cell Planning for the L-Band Digital Aeronautical Communications System Under the Constraint of Secondary Spectrum Usage., , and . IEEE Trans. Veh. Technol., 67 (10): 9721-9733 (2018)Efficient Control-Channel Security for the Aeronautical Communications System LDACS., , and . WoWMoM, page 407-412. IEEE, (2023)FACTS2: Framework for Aeronautical Communications and Traffic Simulations 2., , and . PE-WASUN, page 63-66. ACM, (2019)Impact Assessment of the L-Band Digital Aeronautical Communications System on the Joint Tactical Information Distribution System., , and . IEEE Trans. Veh. Technol., 68 (4): 3629-3641 (2019)Rapid Prototyping and International Validation Activity for the L-Band Digital Aeronautical Communications System (LDACS)., , , , , , and . IEEE Open J. Commun. Soc., (2023)L-Band Digital Aeronautical Communications System (LDACS)., , and . RFC, (March 2023)Formal Security Verification of the Station-to-Station based Cell-attachment Procedure of LDACS., , , and . SECRYPT, page 603-610. SCITEPRESS, (2021)Semi-Stochastic Aircraft Mobility Modelling for Aeronautical Networks: An Australian Case-Study Based on Real Flight Data., , , , , , , , and . IEEE Trans. Veh. Technol., 70 (10): 10763-10779 (2021)