2026 Summer Intern – Software Engineer, Autonomous Robot (Masters Degree)

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Job Description
To help facilitate administration of relocation benefits if you are selected, please apply using the permanent address you would move from.
Work Arrangement:
Hybrid: This internship is categorized as hybrid. The selected intern is expected to report to the office up to three times per week or as determined by the team.
Locations:
Mountain View, California
Warren, MI
We are seeking highly motivated interns to research, explore, and evaluate cutting-edge AI-driven approaches for robot localization/map construction, perception, motion planning, scenario simulation, and data engineering. The role will involve hands-on experimentation, algorithm development, and integration of multi-modal sensor data to advance autonomous robotic systems.
About the Team:
The Robotics Software team is developing the next generation of autonomous robotic systems, focusing on autonomous mobile robots (AMRs) and intelligent robotic platforms. We develop full-stack robotics capabilities—from perception and planning to control and system integration—bringing innovative, real-world autonomous solutions to the future of the work.
Role Overview:
We are looking for a self-motivated intern to prototype the development of AI-driven sense-plan-act architecture that supports the development, testing, and validation of autonomous robotic systems in manufacturing plants. In this role, you will focus on developing camera- and LiDAR-based wheel-drive robotic system, design technical specification, creating and executing test plan, integrating the software with physical and simulation platforms, and enabling teams to accomplish the technical and business objectives.
You will work cross-functionally with experts in autonomy, contributing to system-level validation and the continuous improvement of system robustness and validation workflows.
Localization
Evaluate and test LiDAR-based localization repositories.
Investigate Gaussian splatting localization pipelines and assess feasibility for embedded platforms.
Explore machine-learning techniques for feature point correspondence between image frames.
Implement and benchmark place recognition algorithms using computer vision.
Integrate dynamic object handling into localization workflows.
Develop multi-agent map-building and construction processes (offboard).
Design sensor fusion strategies for heterogeneous modalities (e.g., 3D LiDAR, 2D LiDAR, monocular camera, IMU, wheel odometer).
Apply post-processing optimization algorithms (e.g., factor graph and pose graph).
Data Engineering
Create, curate, and manage datasets for training AI models.
Ensure data quality and diversity for robust algorithm development.
Simulation
Upgrade the existing simulation environment to support generation of realistic 3D LiDAR data and photorealistic image rendering for advanced perception testing.
Design and implement adversarial scenarios to identify potential safety vulnerabilities and enhance overall system robustness.
Perception
Develop perception solutions leveraging joint representation of Bird’s Eye View (BEV) and DETR-based object detection using multi-modality inputs.
Enhance robustness in perception pipelines for dynamic environments.
Motion Planning
Research and implement denoising diffusion-based motion planning algorithms.
Reinforcement learning in simulation engine to improve path generation policy
Evaluate performance and scalability of AI-driven planning approaches in real-world scenarios.
Key Responsibilities
Design and implement high-precision localization methods using camera, LiDAR, wheel encoder and inertial sensors.
Develop scalable and real-time localization module optimized for autonomous robotic systems.
Create engineering specifications and test procedures to ensure system compliance.
Evaluate and benchmark the performance of systems.
Review the state-of-the-art in camera- and LiDAR-based algorithms.
Troubleshoot using strong knowledge of probabilistic estimation, sensor fusion, and real-time system implementation.
Adjust and fine-tune system parameters to improve accuracy and robustness
Required Qualifications:
Currently enrolled in a Masters Degree and completed at least 1 year of Masters in Robotics, Computer Science, Electrical/Mechanical Engineering, or related technical fields.
Proficiency in C++ or Python.
Adhere to continuous development and deployment practices in robotic software development
Expertise in one or more of the technical areas:
Camera- and LiDAR-based localization algorithms, statistical estimation theory, and practices such as pose graph and factor graph optimization and implementation.
Understanding state-of-the-art solutions in place recognition for addressing loop-closure detection issues.
Perception, e.g., feature embedding, object detection, bird’s eye view (BEV) semantic representation
Motion path planning algorithms, e.g., Nav2
Simulation engines: e.g., IsaacSim, IsaacLab, and etc.
Dataset curation and annotation tools
Experience optimizing algorithm/software to balance performance within resource constraints.
Familiarity with ROS2 or other robotics middleware.
Preferred Qualifications:
Machine learning knowledge and practice experience.
Proficiency with deep learning frameworks and toolchains like PyTorch and TensorFlow.
Familiarity with repositories like DETR, BEVformer, BEVfusion, SAMv2, Ceres Library/GTSAM, ORB-SLAM, VINS-Mono, and etc.
Experience working with cloud-based data collection and data pipeline systems.
AV/ADAS integration or industrial automation experience is a bonus
Graduating between December 2026 and June 2027.
Compensation:
The monthly salary range for this role is $ 7,300 - $10,600 per month.
GM will provide a one-time lump sum taxable stipend payment to eligible students selected for the 2026 Student Program.
What you’ll get from us (Benefits):
Paid US GM Holidays
GM Family First Vehicle Discount Program
Result-based potential for growth within GM
Intern events to network with company leaders and peers
About GM
Our vision is a world with Zero Crashes, Zero Emissions and Zero Congestion and we embrace the responsibility to lead the change that will make our world better, safer and more equitable for all.
Why Join Us
We believe we all must make a choice every day – individually and collectively – to drive meaningful change through our words, our deeds and our culture. Every day, we want every employee to feel they belong to one General Motors team.
Benefits Overview
From day one, we're looking out for your well-being–at work and at home–so you can focus on realizing your ambitions. Learn how GM supports a rewarding career that rewards you personally by visiting Total Rewards resources.
Non-Discrimination and Equal Employment Opportunities (U.S.)
General Motors is committed to being a workplace that is not only free of unlawful discrimination, but one that genuinely fosters inclusion and belonging. We strongly believe that providing an inclusive workplace creates an environment in which our employees can thrive and develop better products for our customers.
All employment decisions are made on a non-discriminatory basis without regard to sex, race, color, national origin, citizenship status, religion, age, disability, pregnancy or maternity status, sexual orientation, gender identity, status as a veteran or protected veteran, or any other similarly protected status in accordance with federal, state and local laws.
We encourage interested candidates to review the key responsibilities and qualifications for each role and apply for any positions that match their skills and capabilities. Applicants in the recruitment process may be required, where applicable, to successfully complete a role-related assessment(s) and/or a pre-employment screening prior to beginning employment. To learn more, visit How we Hire.
Accommodations
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