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Robotics Phd Positions Jobs in Michigan (NOW HIRING)

This position reports to the Senior Vice President of Autonomy and is responsible for providing ... PhD or masters degree in a relevant, highly technical field (e.g. robotics, computer science ...

Staff Software Engineer

Detroit, MI · On-site

$210 - $320/hr

Primary Function of Position As a Staff Software Engineer reporting to the Managing Staff Software ... You'll define how a next‑generation surgical robotic system safely consolidates critical ...

Sr Research Engineer-RF

Ann Arbor, MI · On-site

$130K - $194K/yr

This is an in-office position with flexibility to work remotely occasionally. This position is ... Bachelors with 8+ years OR MS with 6+ years OR PhD with 3+ years of related experience. Area of ...

Sr Research Engineer-RF

Ann Arbor, MI · On-site

$130K - $194K/yr

This is an in-office position with flexibility to work remotely occasionally. This position is ... Bachelors with 8+ years OR MS with 6+ years OR PhD with 3+ years of related experience. Area of ...

This is an in-office position with flexibility to work remotely occasionally. This position is ... Bachelors with 8+ years OR MS with 6+ years OR PhD with 3+ years of related experience. Area of ...

Showing results 21-40

Robotics Phd Positions information

What is a robotics PhD position?

Robotics PhD positions are research-focused academic roles for students pursuing a doctoral degree in robotics. These positions typically involve conducting original research in areas such as artificial intelligence, mechanical engineering, computer vision, or control systems related to robotics. Students often work under the supervision of a faculty advisor, contribute to academic publications, and may also assist in teaching or mentoring. Admission to these positions usually requires a strong academic background in engineering, computer science, or related fields, as well as a demonstrated interest in robotics research.

What are the common research areas and collaboration opportunities for students in robotics PhD positions?

Robotics PhD students typically focus on advanced topics such as machine learning for robotics, human-robot interaction, autonomous systems, and robotic perception. These positions often involve interdisciplinary collaboration, working closely with faculty, industry partners, and peers from fields such as computer science, electrical engineering, and mechanical engineering. Students regularly participate in lab meetings, joint research projects, and may have opportunities to contribute to conference publications or internships. This collaborative environment not only enhances learning but also opens pathways for future academic and industry careers in robotics.

What are the key skills and qualifications needed to thrive as a robotics PhD candidate, and why are they important?

To thrive as a Robotics PhD candidate, you need a strong background in robotics, computer science, engineering, mathematics, and a relevant undergraduate or master's degree. Familiarity with programming languages (like Python, C++), robotics simulation tools (such as ROS, Gazebo), and experience with research methodologies are typically important. Critical thinking, creativity, and effective communication are essential soft skills for contributing novel ideas and collaborating within research teams. These skills and qualifications are crucial for successfully conducting advanced research, publishing results, and advancing the field of robotics.

What is the difference between Robotics Phd Positions vs Robotics Engineer?

AspectRobotics Phd PositionsRobotics Engineer
Required CredentialsPhD in Robotics, Engineering, or related fieldBachelor's or Master's in Robotics, Mechanical, Electrical, or Computer Engineering
Work EnvironmentResearch labs, universities, academic settingsIndustry, manufacturing, technology companies, startups
Employer & Industry UsageAcademic institutions, research organizationsPrivate companies, tech firms, industrial sectors
Common Search & Comparison IntentAcademic research, advanced study, research positionsPractical application, product development, engineering roles

Robotics Phd Positions focus on advanced research, theoretical development, and academic pursuits, often requiring a doctoral degree. Robotics Engineers typically work on designing, developing, and implementing robotic systems in industry, often with a bachelor's or master's degree. Both roles involve robotics but differ in their focus, environment, and qualifications.

Is a robotics PhD position worth it?

A robotics PhD position provides advanced training in areas such as machine learning, control systems, and sensor integration, which can lead to research roles, academia, or specialized industry positions. It typically requires several years of study and research commitment but can enhance career prospects and earning potential in robotics and related fields.

What cities in Michigan are hiring for Robotics Phd Positions jobs?

Cities in Michigan with the most Robotics Phd Positions job openings:

Infographic showing various Robotics Phd Positions job openings in Michigan as of August 2026, with employment types broken down into 1% As Needed, 75% Full Time, 17% Part Time, 2% Temporary, 4% Contract, and 1% Nights. Highlights an 97% Physical, 1% Hybrid, and 2% Remote job distribution.

Autonomous Driving Kit Software Engineer

ISUZU NORTH AMERICA CORPORATION

Plymouth, MI • On-site

$87 - $124/hr

Other

Medical, Dental, Vision, Life, Retirement, PTO

Posted 3 days ago

New


Job description

Job DetailsLevel: ExperiencedJob Location: Plymouth - Plymouth, MI 48170Salary Range: $87,448.00 - $123,755.00 Salary/yearWe are looking to hire an Engineer I or Engineer II. This position is based inPlymouth, MI,and compensation is aligned with this designated work location.

JOB SUMMARY

Supports/leads development of Autonomous Driving software such as Perception/Localization, Planning/Prediction or Control modules. Focuses on a single module to progressively expand into multiple modules as project demands and organizational priorities evolve. Verifies the developed software, conducts vehicle tests on test track or public road and runs simulation evaluations.

Designs, implements, and optimizes software systems that enable safe, reliable, and intelligent driving behavior. Works on both rule-based and data driven approaches for autonomous driving software stack which may include onboard stack development, Machine Learning (ML) model, and data pipeline developments for ML training. Works closely with Isuzu US and Japan teams, leading autonomous driving partner companies, and reputed research institutes on the development and validation of autonomous Depending on the experience level, position might work under close supervision from more senior staff and follow established procedures or independent judgment is required and can guide junior staffs.

WHY JOIN US?
  • Work with industry-leading partners and institutions on cutting-edge AI for future mobility and logistics solutions
  • Gain hands‑on experience in simulation, validation, and deployment of production driven AI systems
  • Exposure to global collaboration across U.S. and Japan technical teams
  • Opportunity to make a meaningful contribution to the future of transportation and mobility autonomy
PRINCIPAL DUTIES & RESPONSIBILITIES
  • 35%1. Develops software for Autonomous Driving software stack (Perception/Localization, Planning/Prediction or Control).
  • 30%2. Collaborates on tasks with partnership organizations (including both Isuzu group companies and external companies) by participating in discussion/negotiation and reviewing documents/source code.
  • 15%3. Analyzes driving log data and prepares data pipeline for ML model training.
  • 10%4. Evaluates Autonomous Driving system performance by executing simulation/emulation.
  • 5%5. Develops advanced technology or research in Autonomous Driving algorithm.
  • 5%6. Supports vehicle testing to verify and evaluate the Autonomous Driving system.
  • 7. Performs miscellaneous job‑related duties as assigned.
ORGANIZATIONAL RELATIONSHIPS

Reports to: Supervisor, Autonomous

EDUCATION, EXPERIENCE & TRAINING
  • Master’s degree in Computer Science, Electrical Engineering, Robotics, Data science or related fields. PhD preferred.
  • Minimum one year of working experience in data analysis, robotics, programming, or automotive systems
KNOWLEDGE
  • Fundamentals of autonomous driving, robotics, signal processing, and data science
  • Academic background in autonomous systems, ML (DL/RL/VLM/LLM), vehicle dynamics, or simulation
  • Depending on the experience level, understanding of ADAS/AD architecture, module interfaces, and production software
  • Depending on the experience level, familiarity with ISO 26262 and functional safety standards
  • Depending on the experience level, knowledge of end-to-end autonomous driving systems
  • Domain-specific knowledge (based on role):
    • Perception/Localization: Probabilistic filtering, sensor fusion, SLAM, GNSS/IMU, HD maps, image and point cloud processing, DL(CNN and Transformer)
    • Planning/Prediction: Path/trajectory planning, motion prediction, optimization, MRM, DL(RNN and Transformer)
    • Control: Classical/MPC control, vehicle dynamics, actuator modeling, RL for control tuning
SKILLS AND ABILITIES
  • Strong analytical, problem-solving, and critical thinking
  • Effective communication and teamwork, both independently and collaboratively
  • Proficiency in Python and C++
  • Experience with ML frameworks (PyTorch, TensorFlow), simulation tools, and robotic middleware (ROS 2)
  • Depending on the experience level, familiarity with Docker, Bazel, CAN communication, and profiling tools (Nsight, nvprof, perf)
  • Hands‑on deployment of autonomous driving algorithms or DL models on embedded systems
  • Control-specific tools: MATLAB‑Simulink/Stateflow
  • Depending on the experience level, practical experience in real‑time testing, tuning, and closed‑loop validation
Job Specific Skills:
  • Experience with data transmission through Controller Area Network (CAN)
  • Hands‑on experience with TensorRT, CUDA, cuDNN, or custom GPU kernel optimization
  • Understanding of ADAS/AD system architecture including interface between modules and production software development
  • Knowledge of ISO 26262 or functional safety standards
  • Familiarity with profiling tools (Nsight Systems, nvprof, perf)
  • Hands‑on experience deploying Autonomous Driving algorithms or DL models, in real‑time systems or automotive environments (on embedded or automotive‑grade hardware)
  • Basic understanding of End‑to‑end autonomous driving system (e.g. BEV feature based, Vision‑Language‑Action Model)
(Preferred: Perception/Localization Engineer)
  • Understanding of probabilistic filtering (e.g., Kalman Filter, Particle Filter) and nonlinear optimization.
  • Solid understanding of computer vision and point cloud processing
  • Solid understanding of deep learning architectures, including CNNs and Transformers.
  • Knowledge of GNSS/IMU error models and sensor calibration.
  • Experience with multi‑sensor fusion (camera, LiDAR, radar)
  • Practical experience implementing or adapting Graph‑SLAM systems (e.g., g2o, GTSAM, Ceres Solver).
  • Experience using HD maps, lane‑level localization, and map matching techniques.
(Preferred: Planning/Prediction Engineer)
  • Practical experience implementing path planner (e.g. Dijkstra, A* algorithm) or trajectory planner (e.g. Frenet frame)
  • Practical experience developing ML model of motion prediction or time series data analysis
  • Solid understanding of deep learning architectures, including RNNs and Transformers
  • Experience using HD maps, and basic understanding of map data format
  • Basic understanding of optimization solver (e.g. QP Solver)
  • Solid understanding of feasibility of planned trajectory under vehicle dynamic limits
  • Knowledge of Minimum Risk Maneuver (MRM) concept and algorithm
(Preferred: Control Engineer)
  • Solid understanding of classical control theory including PID controller
  • Hands‑on experience of tuning control performance by changing control parameters in test vehicle
  • Solid understanding of Model Predictive Control (MPC)
  • Basic understanding of vehicle dynamics (e.g. bicycle model) and actuator modeling constrains and latency (steering, throttle, brake, powertrain)
  • Practical experience with integrated control, localization, and sensor fusion systems closed‑loop testing (both simulation and on‑road) is a plus.
  • Experience in applying Reinforcement Learning (RL) to vehicle controller or controller parameter tuning is a plus
PHYSICAL STANDARDS

The employee must be able to access, enter, and retrieve data using a computer. This is primarily a sedentary position in a controlled office environment which requires only occasional reaching, stooping, and lifting of office files, reports or records, typically weighing 5 lbs. or less. Requires occasional light lifting (5-25 lbs). Must be able on rare occasions to bend, crawl, climb, crouch, kneel and reach above shoulder level in the performance of job duties. Must be able to work in hot and cold weather extremes.

Position requires up to 5% travel, mostly domestic. Occasional overnight or weekend trips; rare chance of international travel.

We are looking to hire an Engineer I or II level in our Plymouth, MI location.Compensation for this role varies by location and is informed by cost of living and local market benchmarks. The pay scale for an Engineer I in Plymouth, MI is$87,448 to $111,496. The pay scale for an Engineer II in Sunnyvale, CA is $97,063 to $123,755. The base salary will be determined based on a variety of factors, such as relevant experience and education.

Exceptional Perks That Go Beyond the Basics
  • Join a workplace that invests in your well‑being—mind, body, and future:
  • Comprehensive Health Coverage
    • Medical, dental, vision, and fertility benefits to support you through every stage of life
  • Fertility & Family-Building Supportthrough WIN Fertility: Includes Adoption & Surrogacy Benefits, WINMaternity, and PowerPause, offering up to $25,000 in lifetime benefits for fertility-related services such as IVF, IUI, and preconception support
  • Generous Time Off
    • Enjoy a healthy work‑life balance with paid vacation, 15 paid holidays annually, sick leave, parental leave, and MTO (Miscellaneous Time Off) for volunteering or a compelling personal need
  • Smart Retirement Planning
    • Build long‑term financial security with a 401(k) plan featuring a company match and an additional Annual Retirement Contribution (ARC)
  • Peace of Mind
    • Company-paid Basic Life and AD&D Insurance, as well as Travel Insurance, so you're covered wherever life takes you
  • Wellness Program
    • Access a variety of tools and resources designed to support your physical and mental well‑being
  • Tuition Reimbursement
    • Pursue continued education with financial support for job‑related coursework, degree programs, and professional growth
  • Exclusive Employee Discounts
    • Save on insurance, travel, entertainment, car purchases/rentals, retail purchases, and more

#ITCA Qualifications

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