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Radiological Mapping of Post-Disaster Nuclear Environments Using Fixed-Wing Unmanned Aerial Systems: A Study From Chornobyl.

, , , , , , , , , , and . Front. Robotics and AI, (2020)

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The renaissance of Gallager's low-density parity-check codes., and . IEEE Communications Magazine, 41 (8): 126-131 (2003)Remote sensing and identification of volcanic plumes using fixed-wing UAVs over Volcán de Fuego, Guatemala., , , , , , , , , and 2 other author(s). J. Field Robotics, 36 (7): 1192-1211 (2019)FlashLinQ: enabling a mobile proximal internet., , , , , , and . IEEE Wireless Commun., 20 (5): 110-117 (2013)Analysis of Coupled Scalar Systems by Displacement Convexity., , , and . CoRR, (2017)Analysis of Saturated Belief Propagation Decoding of Low-Density Parity-Check Codes., , and . CoRR, (2014)Mobile device positioning using learning and cooperation., , , , and . CISS, page 1-6. IEEE, (2012)Radiological Mapping of Post-Disaster Nuclear Environments Using Fixed-Wing Unmanned Aerial Systems: A Study From Chornobyl., , , , , , , , , and 1 other author(s). Front. Robotics and AI, (2020)Corrigendum: Radiological Mapping of Post-Disaster Nuclear Environments Using Fixed-Wing Unmanned Aerial Systems: A Study From Chornobyl., , , , , , , , , and 1 other author(s). Front. Robotics and AI, (2020)Superposition by Position., , and . ITW, page 222-226. IEEE, (2006)Distributed Synchronization for Device-to-Device Communications in an LTE Network., , , and . IEEE Trans. Wireless Communications, 15 (2): 1547-1561 (2016)