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Robot Perception Jobs in Warren, MI (NOW HIRING)

About the Role As an AI Researcher for Computer Vision & Autonomous Robots at TCS, you'll work on the frontier of applied artificial intelligence, where perception meets physical intelligence. This ...

About the Role As an AI Researcher for Computer Vision & Autonomous Robots at TCS, you'll work on the frontier of applied artificial intelligence, where perception meets physical intelligence. This ...

The Advanced Robotics team is focused on developing novel technologies that give robots human-like capabilities in perception and dexterity. The candidate will design, develop and evaluate Task and ...

The Advanced Robotics team is focused on developing novel technologies that give robots human-like capabilities in perception and dexterity. The candidate will design, develop and evaluate Task and ...

Collaborate with robotics teams developing perception, localization, navigation, planning, mission management, and control software. * Design middleware and communication frameworks leveraging ...

Program Manager - Robotics & Drones We are Aptiv - a global technology company with 200,000 ... A core differentiator of these systems is robust, reliable, and scalable perception across diverse ...

Program Manager - Robotics & Drones We are Aptiv - a global technology company with 200,000 ... A core differentiator of these systems is robust, reliable, and scalable perception across diverse ...

Program Manager - Robotics & Drones

Troy, MI ยท On-site

$140 - $190/hr

Program Manager - Robotics & Drones We are Aptiv - a global technology company with 200,000 ... A core differentiator of these systems is robust, reliable, and scalable perception across diverse ...

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Robot Perception information

See Warren, MI salary details

$14

$26

$42

How much do robot perception jobs pay per hour?

As of Sep 6, 2026, the average hourly pay for robot perception in Warren, MI is $26.53, according to ZipRecruiter salary data. Most workers in this role earn between $20.77 and $30.91 per hour, depending on experience, location, and employer.

What is robot perception?

Robot perception refers to the ability of robots to interpret and understand their environment using sensors and algorithms. This field involves processing data from cameras, lidar, radar, and other sensors to recognize objects, map surroundings, and make decisions. Effective robot perception is essential for tasks like navigation, object manipulation, and autonomous operation in dynamic environments. It combines elements of computer vision, machine learning, and sensor fusion to enable robots to function reliably and safely.

What are some common challenges faced by professionals in robot perception roles, and how can they be addressed?

Professionals in Robot Perception roles often encounter challenges such as dealing with noisy sensor data, ensuring real-time processing, and integrating data from multiple sources to create an accurate understanding of the environment. Addressing these requires strong skills in sensor fusion, robust algorithm design, and close collaboration with robotics engineers and software developers. Continuous learning and staying updated with advancements in machine learning and computer vision are also key to overcoming these challenges and contributing effectively to the team's goals.

What are the key skills and qualifications needed to thrive in a robot perception role, and why are they important?

To excel in Robot Perception, you need a strong background in computer vision, machine learning, and sensor data processing, typically backed by a degree in computer science, robotics, or a related field. Familiarity with tools like ROS (Robot Operating System), OpenCV, PCL, and deep learning frameworks such as TensorFlow or PyTorch, as well as experience with LiDAR and camera systems, is highly valued. Creative problem-solving, adaptability, and effective teamwork are crucial soft skills for addressing complex perception challenges in dynamic environments. These competencies enable the development of robust perception systems, which are essential for safe and autonomous robotic operation.

What is the difference between Robot Perception vs Robot Software Engineer?

AspectRobot PerceptionRobot Software Engineer
Required CredentialsBachelor's or Master's in Robotics, Computer Science, or related fields; knowledge of perception algorithmsBachelor's or Master's in Software Engineering, Computer Science; programming skills in C++, Python
Work EnvironmentResearch labs, robotics companies, industrial settings focusing on sensor data processingSoftware development teams, robotics companies, embedded systems environments
Industry UsageUsed in autonomous vehicles, service robots, industrial automation for sensor data interpretationDevelops robot control software, integrates perception modules, and ensures system functionality

Robot Perception specialists focus on processing sensor data to enable robots to understand their environment, while Robot Software Engineers develop the software systems that control robot functions, including perception modules. Both roles often collaborate but have distinct focuses within robotics development.

What are popular job titles related to Robot Perception jobs in Warren, MI?

For Robot Perception jobs in Warren, MI, the most frequently searched job titles are:

What job categories do people searching Robot Perception jobs in Warren, MI look for?

The top searched job categories for Robot Perception jobs in Warren, MI are:

What cities near Warren, MI are hiring for Robot Perception jobs?

Cities near Warren, MI with the most Robot Perception job openings:

Infographic showing various Robot Perception job openings in Warren, MI as of August 2026, with employment types broken down into 82% Full Time, 14% Part Time, 1% Contract, and 3% Nights. Highlights an 99% Physical, and 1% Remote job distribution, with an average salary of $55,175 per year, or $26.5 per hour.

Embedded Systems Architect - Robotics & Drones

Aptiv PLC

Troy, MI โ€ข On-site

$164K/yr

Full-time

Posted 12 days ago


Job description

Embedded Systems Architect - Robotics & Drones
We are Aptiv - a global technology company with 200,000 specialists in 48 countries. We develop innovative software and build the hardware to bring autonomous driving cars, advanced driver-assistance systems, connected vehicles and smart cities to life in a way that only we can. We work in partnership with almost all car manufacturers. Our sensors, systems and software can already be found in almost all passenger cars today.
Aptiv is building a new Robotics business focused on Autonomous Mobile Robots (AMRs) and Drones for warehouse, industrial, and adjacent markets. A core differentiator of these systems is robust, reliable, and scalable perception across diverse environments and customer use cases.
We are seeking an Embedded Systems Architect to design, develop, integrate, and optimize robotics and drone hardware and software systems. In this role, you will contribute to the architecture, implementation, and deployment of embedded platforms spanning sensor integration, edge computing, autonomy, and machine learning-based perception technologies.
You will apply strong technical expertise to deliver reliable, scalable, and production-ready robotics and autonomous systems. Working closely with autonomy, localization, safety, hardware, data, and product teams, you will help ensure system capabilities meet performance, safety, and commercial requirements. You will also play a key role in transforming early-stage concepts and prototypes into robust, data-driven products that can be deployed across multiple platforms, applications, and customer environments.
Key Responsibilities
Technical Design & System Development
  • Design, develop, and maintain embedded system architectures across AMR and drone platforms.
  • Contribute to technical decisions involving sensing, compute platforms, data pipelines, perception algorithms, embedded software, and system integration.
  • Collaborate with Product Managers and Technical Program Managers to ensure technical solutions align with product requirements, schedules, and business objectives.
  • Evaluate emerging technologies, tools, and methodologies to improve system performance, scalability, and maintainability.
  • Analyze and implement solutions that balance performance, latency, reliability, safety, power consumption, compute resources, and cost.
  • Provide technical expertise and recommendations during architecture reviews, design discussions, and system trade-off evaluations.

Systems, Software & Perception Requirement Engineering
  • Develop requirements for:
    • Embedded systems architecture and platform software.
    • Sensor integration and data acquisition for cameras, lidar, radar, depth sensors, IMUs, and related technologies.
    • Sensor data ingestion, synchronization, preprocessing, and transport frameworks.
    • Runtime inference, diagnostics, monitoring, and health management capabilities.
    • Interfaces and integration between perception, localization, planning, safety, and control subsystems.
  • Develop requirements that support scalable, reusable, and production-ready robotics platforms.
  • Contribute throughout the product lifecycle, from concept development and prototyping through deployment and maintenance.
  • Translate customer, product, and operational requirements into effective technical solutions.

Product Development & Technical Execution
  • Perform system bring-up, integration, validation, and troubleshooting activities across hardware and software domains.
  • Resolve complex technical issues and support root-cause analysis efforts across hardware and software systems.
  • Identify technical risks early and develop mitigation strategies throughout the product development lifecycle.
  • Collaborate with cross-functional teams to solve challenges involving embedded hardware, software, autonomy, safety, and system integration.
  • Contribute to engineering process improvements that enhance product quality, reliability, and development efficiency.
  • Support verification, validation, testing, and deployment activities for production systems.

Cross-Functional Collaboration & Platform Integration
  • Partner closely with hardware, SoC, and platform engineering teams to:
    • Evaluate sensors, compute platforms, and hardware acceleration technologies.
    • Optimize system architectures for performance, power efficiency, scalability, and cost.
    • Ensure robust timing, synchronization, communication, and bandwidth management.
  • Collaborate with autonomy, localization, planning, controls, and safety teams to define system interfaces, requirements, diagnostics, and performance expectations.
  • Participate in build-versus-buy evaluations of sensors, software frameworks, SDKs, and third-party technologies.

Quality, Reliability & Safety
  • Develop and implement solutions that achieve reliability, latency, availability, robustness, scalability, and operational performance targets.
  • Ensure systems perform reliably in challenging real-world environments, including changing environmental conditions, dynamic obstacles, and sensor degradation scenarios.
  • Support safety engineering activities including hazard analysis, FMEA, fault injection testing, and degraded-mode operation validation.
  • Implement monitoring, diagnostics, observability, and health-management capabilities to improve system reliability and serviceability.
  • Analyze field performance data and support corrective actions, root-cause investigations, and continuous product improvements.

Basic Qualifications
  • Bachelor's or Master's degree in Systems Engineering, Electrical Engineering, Computer Engineering, Computer Science, or a related technical field.
  • 5+ years of experience developing embedded systems for robotics, automotive, consumer electronics, aerospace, drones, or related products.
  • Strong experience designing and developing embedded software and systems.
  • Experience working across hardware, software, systems, and product development teams.
  • Strong understanding of embedded architectures, sensor integration, and real-time software systems.
  • Experience with systems engineering, requirements analysis, and Model-Based Systems Engineering (MBSE).
  • Experience with requirements management tools such as Polarion, DOORS, or similar platforms.
  • Proven track record of translating customer requirements into production-ready products.
  • Proven ability to independently solve complex technical challenges and deliver high-quality products.
  • Experience with system integration, validation, and troubleshooting.
  • Strong communication and collaboration skills.

Preferred Qualifications
  • Experience with robotics software frameworks and middleware, including ROS and ROS 2.
  • Familiarity with Agile development processes, CI/CD pipelines, automated testing, and DevOps practices.
  • Experience with perception systems, sensor processing, computer vision, and machine learning technologies.
  • Experience deploying ML-based perception or inference systems on embedded hardware platforms.
  • Experience with Linux-based embedded systems and debugging tools.
  • Experience optimizing software workloads on embedded CPUs, GPUs, NPUs, DSPs, or hardware accelerators under real-time constraints.
  • Familiarity with Automotive SPICE, ISO 26262, functional safety, or safety-critical robotics development processes.
  • Knowledge of cybersecurity principles and secure embedded system design.
  • Experience with microprocessor-, MCU-, FPGA-, or DSP-based architectures and hardware/software integration.
  • Experience with embedded communications protocols and interfaces such as CAN, Ethernet, SPI, I2C, UART, USB, and wireless technologies.
  • Experience working in startup, incubation, or fast-paced product development environments.

Traits we seek:
  • Curiosity-driven problem solvers who investigate deeply and think systemically.
  • Confident leaders who empower teams, set direction, and earn trust.
  • Hands-on learners with an experimental, builder mindset.
  • Resilient thinkers who see challenges as opportunities to learn and improve.

Privacy Notice - Active Candidates: https://www.aptiv.com/privacy-notice-active-candidates
Aptiv is an equal employment opportunity employer. All qualified applicants will receive consideration for employment without regard to race, color, religion, national origin, sex, gender identity, sexual orientation, disability status, protected veteran status or any other characteristic protected by law.