Distance-Based Risk Analysis Using Monocular BEV Transformation for Blind-Spot Assistance
Driver assistance techniques are increasingly required to operate in real-world environments with low cost and limited computational resources. However, most existing schemes rely on multi-sensor configurations or complex calibration procedures, which increase system cost and limit scalability. This paper presents a lightweight monocular methodology for real-time risk analysis, designed for embedded automotive applications. It integrates a homography-based calibration procedure, bird’s eye view transformation, and distance estimation to obtain spatial information from a single camera. Based on this representation, it computes proximity to critical regions and assigns risk levels using a distance-based approach, avoiding dependency on predefined polygonal zones. Experimental observations show that the proposed approach provides consistent risk estimation and stable behavior across different scenarios, while maintaining low computational cost and real-time performance.
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- Anton-Wilhelm-Amo-Straße 30
- Berlin, Berlin
- Germany 10117
- Building: Hilton Hotel
- Room Number: Corinth
Speakers
Laura Martinho
Distance-Based Risk Analysis Using Monocular BEV Transformation for Blind-Spot Assistance
Driver assistance techniques are increasingly required to operate in real-world environments with low cost and limited computational resources. However, most existing schemes rely on multi-sensor configurations or complex calibration procedures, which increase system cost and limit scalability. This paper presents a lightweight monocular methodology for real-time risk analysis, designed for embedded automotive applications. It integrates a homography-based calibration procedure, bird’s eye view transformation, and distance estimation to obtain spatial information from a single camera. Based on this representation, it computes proximity to critical regions and assigns risk levels using a distance-based approach, avoiding dependency on predefined polygonal zones. Experimental observations show that the proposed approach provides consistent risk estimation and stable behavior across different scenarios, while maintaining low computational cost and real-time performance.
Agenda
The webinar will take place on the sidelines of the 15th IEEE International Conference on Consumer Electronics (ICCE Berlin 2026), held on 5–7 September 2026 in Berlin, Germany.
Greetings and Introduction: 5 minutes
Presentation: 15-20 minutes
Q&A: 3-5 minutes
Chapter time: 15 minutes