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Low complexity Detector for massive uplink random access with NOMA in IoT LPWA networks.

, , and . WCNC Workshops, page 1-6. IEEE, (2019)

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On the benefits of successive interference cancellation for ultra narrow band networks : Theory and application to IoT., , and . ICC, page 1-6. IEEE, (2017)Theoretical analysis of UNB-based IoT networks with path loss and random spectrum access., , and . PIMRC, page 1-6. IEEE, (2016)2-Dimensional optical CDMA system performance with parallel interference cancellation., , , , , , and . Microprocess. Microsystems, 31 (4): 215-221 (2007)A Performance Comparison of Classical and Quantum Algorithm for Active User Detection., , and . SPAWC, page 1-5. IEEE, (2022)On the benefits of random FDMA schemes in ultra narrow band networks., , and . WiOpt, page 672-677. IEEE, (2014)Massive Machine Type Communications Uplink Traffic: Impact of Beamforming at the Base Station., , and . ICT, page 493-497. IEEE, (2018)Up-Link Capacity Derivation for Ultra-Narrow-Band IoT Wireless Networks., , , and . Int. J. Wirel. Inf. Networks, 24 (3): 300-316 (2017)Prime Code Efficiency in DS-OCDMA Systems using Parallel Interference Cancellation., , and . J. Commun., 2 (3): 51-57 (2007)Adaptive Multi-Channels Allocation in LoRa Networks., , , , , , and . IEEE Access, (2020)Deep Learning-Based User Clustering For Mimo-Noma Networks., , , , and . WCNC, page 1-6. IEEE, (2021)