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Visible light communications cooperative architecture for the intelligent transportation system.

, , , , , and . SCVT, page 1-5. IEEE, (2013)

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Addressing Multi-User Interference in Vehicular Visible Light Communications: A Brief Survey and an Evaluation of Optical CDMA MAC Utilization in a Multi-Lane Scenario., , , , , and . Sensors, 23 (8): 3831 (2023)Experimental Evaluation of Traffic Light to Vehicle Visible Light Communications in Snowfall Conditions., , , , and . CoDIT, page 693-696. IEEE, (2020)Visible light communications: Application to cooperation between vehicles and road infrastructures., , , , , and . Intelligent Vehicles Symposium, page 1055-1059. IEEE, (2012)Visible light communications cooperative architecture for the intelligent transportation system., , , , , and . SCVT, page 1-5. IEEE, (2013)A Comprehensive Investigation on Multi-User Interference Effects in Vehicular Visible Light Communications., , , , , and . Sensors, 23 (5): 2553 (March 2023)Miller code usage in Visible Light Communications under the PHY I layer of the IEEE 802.15.7 standard., , , , and . COMM, page 1-4. IEEE, (2014)Design and performance evaluation of a DSP visible light communication receiver., , , , and . SCVT, page 30-34. IEEE, (2014)A survey on the usage of DSRC and VLC in communication-based vehicle safety applications., , , , and . SCVT, page 69-74. IEEE, (2014)Digital Signal Processing Sensor for Automotive Visible Light Communications Applications., , , , and . NGCAS, page 225-228. IEEE, (2017)Toward a hybrid vehicle communication platform based on VLC and DSRC technologies., , , , and . ICCP, page 103-107. IEEE, (2019)