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Novel vehicle and motorcycle classification using single element piezoelectric sensor.

, , and . ITSC, page 496-501. IEEE, (2012)

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Toward enhanced wireless coexistence in ISM band via temporal characterization and modelling of 802.11b/g/n networks., , and . Wirel. Commun. Mob. Comput., 16 (18): 3212-3229 (2016)Vehicle classification and accurate speed calculation using multi-element piezoelectric sensor., , and . Intelligent Vehicles Symposium, page 894-899. IEEE, (2014)Comprehensive study of spectrum occupancy for 802.11b/g/n homogeneous networks., , and . I2MTC, page 1741-1746. IEEE, (2015)Comprehensive study of spectrum utilization for 802.11b/g/n networks., , and . IWCMC, page 1526-1531. IEEE, (2015)Creating an automated and emulated 802.11g wireless interfering network for wireless coexistence testing., , , and . I2MTC, page 1022-1027. IEEE, (2013)Cognitive extensions to existing wireless technology., , , and . IWCMC, page 615-620. IEEE, (2013)Energy detection and machine learning for the identification of wireless MAC technologies., , , and . IWCMC, page 1440-1446. IEEE, (2015)A single element piezoelectric sensor for vehicle classification using the ratio of track width to length., and . Intelligent Vehicles Symposium, page 1463-1468. IEEE, (2014)Developing a Reproducible Non-Line-of-Sight Experimental Setup for Testing Wireless Medical Device Coexistence Utilizing ZigBee., , and . IEEE Trans. Biomed. Eng., 59 (11-2): 3221-3229 (2012)Novel vehicle and motorcycle classification using single element piezoelectric sensor., , and . ITSC, page 496-501. IEEE, (2012)