The Empathetic Car: Exploring Emotion Inference via Driver Behaviour and Traffic Context
Shu Liu: ETH Zurich; Kevin Koch: University of St. Gallen; Zimu Zhou: Singapore Management University; Simon Föll: Chair of Information Management; Xiaoxi He: ETH Zürich; Tina Menke: Karlsruhe Institute of Technology; Elgar Fleisch: ETH Zurich; Felix Wortmann: University of St. Gallen
IMWUT: Interactive, Mobile, Wearable and Ubiquitous Technologies
Session: Emotion & Mental Wellbeing
Abstract
An empathetic car that is capable of reading the driver’s emotions has been envisioned by many car manufacturers. Emotion inference enables in-vehicle applications to improve driver comfort, well-being, and safety. Available emotion inference approaches use physiological, facial, and speech-related data to infer emotions during driving trips. However, existing solutions have two major limitations: Relying on sensors that are not built into the vehicle restricts emotion inference to those people leveraging corresponding devices (e.g., smartwatches). Relying on modalities such as facial expressions and speech raises privacy concerns. By contrast, researchers in mobile health have been able to infer affective states (e.g., emotions) based on behavioural and contextual patterns decoded in available sensor streams, e.g., obtained by smartphones. We transfer this rationale to an in-vehicle setting by analyzing the feasibility of inferring driver emotions by passively interpreting the data streams of the control area network (CAN-bus) and the traffic context (inferred from the front-view camera). Therefore, our approach does not rely on particularly privacy-sensitive data streams such as the driver facial video or driver speech but is built based on existing CAN-bus data and traffic information, which is available in current high-end or future vehicles. To assess our approach, we conducted a four-month field study on public roads covering a variety of uncontrolled daily driving activities. Hence, our results were generated beyond the confines of a laboratory environment. Ultimately, our proposed approach can accurately recognise drivers’ emotions and achieve comparable performance as the medical-grade physiological sensor-based state-of-the-art baseline method.
DOI:: https://doi.org/10.1145/3478078
WEB:: https://www.ubicomp.org/ubicomp2021/
Pre-recorded presentations for UbiComp/ISWC 2021, September 21–26
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