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User Needs in Green ITS: Results of a Questionnaire Survey and Proposal for Green ITS Design.

, , and . Int. J. Intelligent Transportation Systems Research, 10 (2): 47-55 (2012)

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Gaps in the Control of Automated Vehicles on Roads., , , , , and . IEEE Intell. Transp. Syst. Mag., 13 (4): 146-153 (2021)AMSense: How Mobile Sensing Platforms Capture Pedestrian/Cyclist Spatiotemporal Properties in Cities., , , , and . IEEE Intell. Transp. Syst. Mag., 14 (1): 29-43 (2022)Improving Traffic Flow Efficiency by In-Car Advice on Lane, Speed, and Headway., and . IEEE Trans. Intell. Transp. Syst., 15 (4): 1597-1606 (2014)Introduction., , and . Comput. Aided Civ. Infrastructure Eng., 35 (1): 3 (2020)Toward effective strategies for energy efficient network management., , , and . ITSC, page 937-942. IEEE, (2010)Modeling traffic system complexity through fuzzy entropy., and . ITSC, page 540-546. IEEE, (2013)Automated lane identification using precise point positioning an affordable and accurate GPS technique., , , and . ITSC, page 939-944. IEEE, (2012)Energy efficient traffic management and control - the eCoMove approach and expected benefits., , and . ITSC, page 955-961. IEEE, (2010)MOBYSIM: An integrated traffic simulation platform., , and . ITSC, page 1301-1306. IEEE, (2010)Single Frequency Precise Point Positioning: Obtaining a map accurate to lane-level., , , and . ITSC, page 2255-2261. IEEE, (2013)