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Low-Complexity Iterative Receiver for Orthogonal Chirp Division Multiplexing.

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

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Robust and Low-Complexity Waveform Design for Wireless Communications Systems Under Doubly Dispersive Channels. University of Dresden, Germany, (2021)base-search.net (fttudresden:oai:qucosa:de:qucosa:77404).Position-Driven Wireless Multipath Channel Simulator for Square-Shaped Environments., , , , , and . JC&S, page 1-6. IEEE, (2021)Deep Learning-Enabled Angle Estimation in Bistatic ISAC Systems., , , and . GLOBECOM (Workshops), page 854-859. IEEE, (2023)Low-Complexity Iterative Receiver for Orthogonal Chirp Division Multiplexing., , and . WCNC Workshops, page 1-6. IEEE, (2019)A Robust Baseband Transceiver Design for Doubly-Dispersive Channels., , , and . IEEE Trans. Wirel. Commun., 20 (8): 4781-4796 (2021)Maximum a-Posteriori Equalizer for Sparse Walsh Hadamard Modulation., , , and . GLOBECOM, page 5917-5922. IEEE, (2022)A Study on Iterative Equalization for DFTs-OFDM Waveform under sub-THz Channels., , and . CCNC, page 1-6. IEEE, (2022)USRP-Based Platform for 26/28 GHz mmWave Experimentation., , , , and . WCNC Workshops, page 1-6. IEEE, (2020)A Robust and Low-Complexity Walsh-Hadamard Modulation for Doubly-Dispersive Channels., , , and . IEEE Commun. Lett., 25 (3): 897-901 (2021)Iterative Receiver for Power-Domain NOMA with Mixed Waveforms., , , , and . WCNC, page 602-607. IEEE, (2022)