Source description
About the role
About The Company
DiDi's autonomous driving unit was established in 2016 with the mission of developing Level 4 autonomous driving (AD) technology to make transportation safer and more efficient. In August 2019, the unit became an independent company, DiDi Autonomous Driving, dedicated to advanced AD R&D, product application, and business expansion. We believe integrating AD technology into a shared-mobility fleet will generate immense social value. By leveraging DiDi's specialized technology, operational expertise, and integrated ecosystem, we are positioned to build and operate a highly efficient, user-oriented autonomous fleet.
About The Role
We are seeking a motivated PhD graduate with a strong research background in motion planning, robotics, or autonomous systems. In this role, you will apply your expertise in algorithm design and system integration to help develop next-generation planning capabilities for autonomous vehicles.
Responsibilities
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• Implement novel solutions for Behavioral Planning, enabling high-level decision-making for lane changes, merges, yields, and multi-agent interactions.
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• Design and optimize motion planning algorithms that integrate geometry-based path reasoning and context-aware speed reasoning into smooth, safe trajectories.
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• Develop and improve core geometry and velocity planning systems to ensure feasibility, compliance, and comfort across diverse driving scenarios.
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• Model complex driving environments and agent behaviors to create a robust world representation for planning under uncertainty.
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• Formulate cost functions and optimization frameworks that balance safety, comfort, and efficiency in trajectory selection.
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• Analyze, test, and debug system performance through simulation and real-world data, conducting root-cause investigations and proposing enhancements.
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• Collaborate with researchers and engineers across Perception, Prediction, and Control to ensure an integrated, reliable autonomy stack.
Qualifications
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• Recently completed or soon-to-complete PhD in Robotics, Computer Science, Electrical Engineering, or a related field.
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• Research or Internship experience in one or more of the following:
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• Motion planning algorithms (optimization, sampling, graph/search-based methods)
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• Behavioral planning and decision-making under uncertainty
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• Trajectory optimization and control
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• Multi-agent interaction modeling
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• Proven research ability demonstrated by publications in top-tier conferences (e.g., RSS, ICRA, IROS, CVPR, NeurIPS, CoRL).
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• Hands-on experience in C++ for implementing complex, real-time algorithms.
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• Excellent analytical and communication skills, with a collaborative mindset.
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• For Internship Applicants: This role offers a clear pathway, with top-performing interns receiving the opportunity to convert to a full-time engineer upon successful completion of the program.
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The hourly rate for the Intern position in the selected city is $46. Interns will also be eligible for Intern benefits.
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Applications are accepted on an ongoing basis. This posting is for an existing vacancy.
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I acknowledge that prior to submitting this application, I have read and accepted the Privacy Notice for California Residents which is available on https://v.didi.cn/AQnxlBa
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