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Augmenting Autonomous Vehicular Communication Using the Appreciation Emotion: A Mamdani Fuzzy Inference System Model.

, , , and . FIT, page 178-184. IEEE Computer Society, (2015)

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Towards Social Autonomous Vehicles: Efficient Collision Avoidance Scheme Using Richardson's Arms Race Model., and . CoRR, (2017)A validated fuzzy logic inspired driver distraction evaluation system for road safety using artificial human driver emotion., , , , , and . Comput. Networks, (2018)Efficient spectrum optimization and mobility in cognitive radio based inter-vehicle communcation system., , , , , and . FGCT, page 190-195. IEEE, (2013)Emotion-controlled spectrum mobility scheme for efficient syntactic interoperability in cognitive radio-based unmanned vehicles., , , , , , , and . Comput. Commun., (2020)Enhanced emotion enabled cognitive agent-based rear-end collision avoidance controller for autonomous vehicles., and . Simulation, (2018)Internet of Things Based Driver Distraction Detection and Assistance System: A Novel Approach., , , , , and . Ad Hoc Sens. Wirel. Networks, 44 (3-4): 305-336 (2019)Lateral Pre-crash Sensing and Avoidance in Emotion Enabled Cognitive Agent based Vehicle-2-Vehicle Communication System., , , , and . Int. J. Commun. Networks Inf. Secur., (2013)Steering Angle Prediction Techniques for Autonomous Ground Vehicles: A Review., , , , , and . IEEE Access, (2021)Spectrum Mobility in Cognitive Radio-Based Vehicular Cyber Physical Networks: A Fuzzy Emotion-Inspired Scheme., and . FIT, page 264-270. IEEE Computer Society, (2015)Augmenting Autonomous Vehicular Communication Using the Appreciation Emotion: A Mamdani Fuzzy Inference System Model., , , and . FIT, page 178-184. IEEE Computer Society, (2015)