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Cyclostationary codec: An implementation enabling alternative networks.

, , , and . DySPAN, page 380-391. IEEE, (2014)

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Cognitive radio for disaster response networks: survey, potential, and challenges., , , and . IEEE Wirel. Commun., 21 (5): 70-80 (2014)Bandwidth-adaptive MIMO OFDM for dynamic spectrum access networks., , and . Phys. Commun., 2 (3): 194-203 (2009)A software radio LTE network testbed for video quality of experience experimentation., , , , , , and . QoMEX, page 1-3. IEEE, (2017)Exploring the Reconfigurability Options of Multi-Carrier CDMA in Cognitive Radio Systems., , , and . PIMRC, page 1-5. IEEE, (2007)Cyclostationary codec: An implementation enabling alternative networks., , , and . DySPAN, page 380-391. IEEE, (2014)Real-time interference reduction for OFDM-based DSA networks using cancellation carriers., , , and . DySPAN, page 372-373. IEEE, (2014)An Encapsulation for Reasoning, Learning, Knowledge Representation, and Reconfiguration Cognitive Radio Elements., , and . CrownCom, page 1-5. IEEE, (2006)Multi-platform demonstrations using the Iris architecture for cognitive radio network testbeds., , , , , , , and . CrownCom, page 1-5. ICST / IEEE, (2010)Accelerating software radio: Iris on the Zynq SoC., , and . VLSI-SoC, page 294-295. IEEE, (2013)A Reconfigurable Platform for Cognitive Networks., , and . CrownCom, page 1-5. IEEE, (2006)