Senior Machine Learning Perception Engineer - Fallback Driving System

General Motors
Sunnyvale, CA, United States
6 days ago

Role details

Contract type
Permanent contract
Employment type
Full-time (> 32 hours)
Experience level
Expert
Experience required
3 years minimum
Compensation
$170,600.0 - $261,300.0
Working hours
Regular working hours

Tech stack

Systems Engineering C++ (Programming Language) Program Optimization Code Review Python (Programming Language) Machine Learning Object Detection Performance Tuning Tensorflow Software Engineering Software Requirements Analysis Verification and Validation (Software)
+7 more
Pytorch Safety Critical Systems Deep Learning Information Technology Machine Learning Operations Data Pipelines Data Selection

Job description

As a Senior Machine Learning Engineer on the State Estimation and Mapping (SEAM) organization, you will develop and improve the ML perception model that powers the secondary (fallback) autonomy stack for Super Cruise 3. You will focus on building robust perception from multi-modal camera, lidar, and radar data so the vehicle can safely bring itself to a stop when the primary autonomy stack is unavailable.

You will lead the design, implementation, and continuous improvement of ML models for object detection, segmentation, tracking, and prediction, working closely with partner teams across perception, planning, controls, and safety.

What You’ll Do

  • Design, train, and evaluate ML perception models for object detection, semantic/instance segmentation, tracking, and short-horizon prediction using multi-modal camera, lidar, and radar data.
  • Develop and maintain the secondary stack perception model that enables the fallback autonomy system to safely bring the vehicle to a minimal risk condition when the primary system experiences a fault.
  • Define clear ML success metrics (e.g., precision/recall, latency, robustness under edge cases) and drive systematic experimentation to improve model performance against those metrics.
  • Analyze large-scale datasets, curate challenging scenarios, and build data selection and labeling strategies that improve robustness for long-tail and degraded-sensor conditions.
  • Implement efficient training and inference pipelines, including model optimization techniques (e.g., pruning, quantization, distillation) to meet on-vehicle compute and latency budgets.
  • Collaborate with software and infra engineers to integrate models into production systems, including interfaces, configuration, deployment, monitoring, and regression safeguards.
  • Partner with Safety, Systems Engineering, and Product to translate system requirements into concrete ML model requirements, metrics, and validation criteria.
  • Contribute to verification and validation strategies for the fallback perception model, including offline evaluation, simulation, hardware-in-the-loop, and on-road testing.
  • Participate in code reviews, promote ML and software engineering best practices, and provide technical mentorship to other engineers., Remote: This role is based remotely but if you live within a 50-mile radius of Atlanta, Austin, Detroit, Warren, Milford or Mountain View, you are expected to report to that location three times per week, at minimum., Compensation : The compensation information is a good faith estimate only. It is based on what a successful applicant might be paid in accordance with applicable state laws. The compensation may not be representative for positions located outside of the California Bay Area.

Requirements

  • BS, MS, or PhD in Machine Learning, Robotics, Computer Science, or a related technical field; or equivalent practical experience building ML perception systems.
  • 3-5 years of experience developing ML solutions in perception, prediction, and/or autonomous driving or related domains.
  • Strong experience with multi-modal sensor data (camera, lidar, radar), including data preprocessing, synchronization, and fusion.
  • Deep expertise in modern deep learning for perception, such as convolutional and transformer-based architectures for:
  • 2D/3D object detection
  • Semantic and instance segmentation
  • Multi-object tracking and motion prediction
  • Proficiency in at least one major ML framework (e.g., PyTorch, TensorFlow, JAX) and Python for model development, training, and analysis.
  • Solid software engineering skills, including experience working in C++ or similar languages in large, collaborative codebases.
  • Demonstrated ability to define ML metrics, design experiments, and systematically improve model performance and robustness.
  • Strong problem-solving, communication, and cross-functional collaboration skills.
  • Self-motivated, with a passion for autonomous driving technology and its potential impact on safety and mobility.

Nice to have

  • Experience deploying ML models on embedded or resource-constrained platforms, including model optimization and performance tuning for real-time inference.
  • Experience with AV/ADAS perception stacks, robotics, or ROS.
  • Familiarity with safety-critical systems and development practices.
  • Experience with large-scale data pipelines, labeling workflows, and experiment management for ML.

Benefits & conditions

  • The salary range for this role is $170,600.00 to $261,300.00. The actual base salary a successful candidate will be offered within this range will vary based on factors relevant to the position.

  • Bonus Potential: An incentive pay program offers payouts based on company performance, job level, and individual performance.

Benefits:

  • Benefits: GM offers a variety of health and wellbeing benefit programs. Benefit options include medical, dental, vision, Health Savings Account, Flexible Spending Accounts, retirement savings plan, sickness and accident benefits, life insurance, paid vacation & holidays, tuition assistance programs, employee assistance program, GM vehicle discounts and more.

About the company

At General Motors, our product teams are redefining mobility. Through a human-centered design process, we create vehicles and experiences that are designed not just to be seen, but to be felt. We’re turning today’s impossible into tomorrow’s standard -from breakthrough hardware and battery systems to intuitive design, intelligent software, and next-generation safety and entertainment features.

Every day, our products move millions of people as we aim to make driving safer, smarter, and more connected, shaping the future of transportation on a global scale., 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., 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.

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