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Adaptive Neural Network-based OFDM Receivers

, , , , , and . 2022 IEEE 23rd International Workshop on Signal Processing Advances in Wireless Communication (SPAWC), IEEE, (2022)
DOI: 10.1109/SPAWC51304.2022.9833970

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RSSI-Based Ranging for Pedestrian Localization., , , and . VTC-Fall, page 1-5. IEEE, (2018)Balancing broadcast reliability and transmission range in VANETs., and . Mobile Computing and Communications Review, 14 (4): 25-27 (2010)Correspondence identification for collaborative multi-robot perception under uncertainty., , , and . Auton. Robots, 46 (1): 5-20 (2022)On the Implementation of Neural Network-based OFDM Receivers, , , , , and . 2024 IEEE 99th Vehicular Technology Conference (VTC2024-Spring), IEEE, (2024)Applying DDDAS Principles to Command, Control and Mission Planning for UAV Swarms., , , , , and . ICCS, volume 9 of Procedia Computer Science, page 1177-1186. Elsevier, (2012)A Stochastic Geometry Approach to the Modeling of DSRC for Vehicular Safety Communication., , , and . IEEE Trans. Intelligent Transportation Systems, 17 (5): 1448-1458 (2016)Evolution of vehicular congestion control without degrading legacy vehicle performance., , , , , and . WoWMoM, page 1-6. IEEE Computer Society, (2016)Analysis of application-specific broadcast reliability for vehicle safety communications., and . Vehicular Ad Hoc Networks, page 67-72. ACM, (2011)A Light-Weight Smartphone GPS Error Model for Simulation., , , , and . VTC-Fall, page 1-5. IEEE, (2019)Reducing Unnecessary Pedestrian-to-Vehicle Transmissions Using a Contextual Policy., , , , and . CarSys@MobiCom, page 3-10. ACM, (2017)