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במקום לעבור לבד על אלפי מודעות, Jobify מנתחת את קורות החיים שלך ומציגה לך רק משרות שבאמת מתאימות לך.
מעל 80,000 משרות • 4,000 חדשות ביום
חינם. בלי פרסומות. בלי אותיות קטנות.
This role requires deep expertise in navigation algorithms, sensor fusion, perception, and real-time software development, with the opportunity to influence the architecture and implementation of advanced navigation capabilities for autonomous UAVs.
Responsibilities
Navigation & State Estimation
Design and develop robust navigation and state estimation algorithms.
Develop algorithms to evaluate sensor reliability and dynamically fuse or select sensor inputs.
Ensure accurate and continuous state estimation (position, velocity, and orientation) under varying operational conditions.
Improve navigation robustness in GNSS-degraded and GNSS-denied environments.
Sensor Fusion
Design and implement multi-sensor fusion algorithms using IMU, cameras, radar, barometer, GNSS, and additional onboard sensors.
Develop estimation frameworks based on Kalman Filters, EKF/UKF, factor graphs, or similar approaches.
Optimize estimation accuracy, consistency, and real-time performance.
Optical & Perception-Based Navigation
Develop vision-based navigation capabilities.
Implement and optimize perception algorithms for localization and navigation.
Integrate perception outputs into the broader navigation and control pipeline.
Software Development
Design, develop, test, and maintain high-performance C++ software for real-time autonomous systems.
Write clean, maintainable, and production-quality code.
Optimize algorithms for embedded and edge computing platforms.
Participate in software architecture discussions and technical design reviews.
System Integration
Collaborate closely with control, autopilot (APS), mission software, perception, and infrastructure teams.
Ensure seamless integration between navigation outputs and guidance/control loops.
Work with simulation and QA teams to validate system performance.
Robustness & Performance
Design algorithms for real-time execution under strict latency and computational constraints.
Validate solutions through simulation, hardware-in-the-loop testing, and flight testing.
Optimize performance in challenging environments with degraded or uncertain sensor data.
B.Sc. or higher in Computer Science, Electrical Engineering, Physics, Robotics, Aerospace Engineering, or a related quantitative discipline.
5+ years of experience developing software for navigation, estimation, GNC, robotics, or autonomous systems.
Strong background in sensor fusion and state estimation (Kalman Filters, EKF/UKF, factor graphs, or similar).
Excellent C++ development skills (modern C++), with Python used for prototyping and analysis.
Experience developing real-time software for embedded or edge computing platforms.
Proven experience with autonomous systems (UAVs, drones, robotics platforms, autonomous vehicles, or similar).
Strong understanding of IMU integration, coordinate frames, motion models, and inertial navigation.
Experience designing complex software systems from concept through production deployment.
Strong analytical and problem-solving skills.
במקום לעבור לבד על אלפי מודעות, Jobify מנתחת את קורות החיים שלך ומציגה לך רק משרות שבאמת מתאימות לך.
מעל 80,000 משרות • 4,000 חדשות ביום
חינם. בלי פרסומות. בלי אותיות קטנות.