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Comparison of radio frequency and visible light propagation channel for vehicular communications.

, , , and . CarSys@MobiCom, page 66-67. ACM, (2016)

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Vehicular Visible Light Communications with LED Taillight and Rolling Shutter Camera., , , and . VTC Spring, page 1-6. IEEE, (2014)RFID Technology for Intra-Car Communications: A New Paradigm., , , , and . VTC Fall, page 1-6. IEEE, (2006)Undersampled phase shift ON-OFF keying for camera communication., , , , and . WCSP, page 1-6. IEEE, (2014)ZigBee-based Intra-car Wireless Sensor Network., , , , , and . ICC, page 3965-3971. IEEE, (2007)CELLI: Indoor Positioning Using Polarized Sweeping Light Beams., , , and . MobiSys, page 136-147. ACM, (2017)Impact of Realistic Light Radiation Pattern on Vehicular Visible Light Communication., , and . GLOBECOM, page 1-6. IEEE, (2017)POLI: Long-Range Visible Light Communications Using Polarized Light Intensity Modulation., , and . MobiSys, page 109-120. ACM, (2017)Comparison of radio frequency and visible light propagation channel for vehicular communications., , , and . CarSys@MobiCom, page 66-67. ACM, (2016)Predict Scooter's Stopping Event Using Smartphone as the Sensing Device., , , and . iThings/GreenCom/CPSCom, page 17-23. IEEE Computer Society, (2014)MouseVLC: Visible Light Communications Using Mouse Sensors., , and . iThings/GreenCom/CPSCom, page 328-331. IEEE Computer Society, (2014)