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The Statistical Temporal Properties of Vehicular Visible Light Communication Channel.

, , , , and . CSNDSP, page 1-5. IEEE, (2020)

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EVM Loss: A Loss Function for Training Neural Networks in Communication Systems., , , and . Sensors, 21 (4): 1094 (2021)DSP-Based 40 GB/s Lane Rate Next-Generation Access Networks., , , , and . Future Internet, 10 (12): 118 (2018)Duobinary Modulation for Visible Light Communications., , , , and . EuCNC, page 52-56. IEEE, (2019)A Head/Taillight Featuring Hybrid Planar Visible Light Communications/Millimetre Wave Antenna for Vehicular Communications., , , , , , and . IEEE Access, (2020)Joint equalization and synchronization for carrierless amplitude and phase modulation in visible light communication., , and . IWCMC, page 876-881. IEEE, (2017)A new concept of multi-band carrier-less amplitude and phase modulation for bandlimited visible light communications., , , , and . CSNDSP, page 1-5. IEEE, (2016)Organic visible light communications: Recent progress., , , , , , , and . ICTON, page 1-5. IEEE, (2014)Next generation visible light communications: 10 Mb/s with polymer light-emitting diodes., , , , , , and . OFC, page 1-3. IEEE, (2014)Evaluation of Multi-band Carrier-less Amplitude and Phase Modulation Performance for VLC under Various Pulse Shaping Filter Parameters., , , , and . OPTICS, page 25-31. SciTePress, (2016)Experimental implementation of real-time non-orthogonal multi-carrier systems in a realistic fading channel., , , and . RWS, page 121-124. IEEE, (2018)