
Algorithms Engineer – 3D Perception
Mobileye is leading the mobility revolution with its autonomous-driving and driver-assist technologies, harnessing world-renowned expertise in computer vision, machine learning, mapping, and data analysis. Our technology enables self-driving vehicles and mobility solutions, powers industry-leading advanced driver-assistance systems, and delivers valuable intelligence to optimize mobility infrastructure. Mobileye pioneered such groundbreaking technologies as True Redundancy™ sensing, REM™ crowdsourced mapping, and Responsibility Sensitive Safety (RSS) technologies that are driving the ADAS and AV fields towards the future of mobility.
Which department will you join?
The AV sensing group is responsible for the critical and challenging task of object detection and scene comprehension using LiDAR and Radar sensors.
** This role requires working at our Ramat Gan offices at least 1 day per week.
What will your job look like:
- Develop algorithms for processing and validating 3D sensor data.
- Build and maintain geometric libraries and tools for spatial data processing.
- Combine classic programming with algorithm development in Python.
- Work on problems involving 3D geometry, coordinate systems, and sensor calibration.
- Take ownership of algorithmic challenges from research to production implementation.
- Collaborate with other teams to integrate solutions into the broader system.
All you need is:
- Master\'s degree in CS, Mathematics, Physics, or Engineering (exceptional Bachelor\'s with strong industry experience will be considered).
- Strong foundation in algorithms and data structures – comfortable implementing and analyzing classic algorithms.
- Experience in Python development with NumPy/SciPy and understanding of algorithmic complexity.
- Mathematical maturity to work with 3D geometry, linear algebra, and coordinate transformations.
- Proven ability to solve complex algorithmic problems independently.
Advantages:
Experience with:
- Radar, lidar or other 3D sensors.
- Sensor fusion, calibration, or state estimation.
- Classical computer vision, SLAM, or multi-view geometry.
- Building mathematical/geometric software.
- Graduate research from strong programs in relevant fields.
- Track record of implementing complex algorithms from research papers.
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