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Robotics Perception Jobs in Mississippi (NOW HIRING)

Experience developing robotic or autonomous systems, using data from various perception sensor types (sonar, magnetic, cameras, lidar, etc.) to enhance a robotic platform's perception of its ...

Maintenance Technician 3rd Shift

Madison, MS · On-site

$20.25 - $25.75/hr

... peripheral vision, depth perception and the ability to focus. WORK ENVIRONMENT AND OTHER ... Required Skills • Ability to manipulate and modify robot programs. Fanuc, ABB, Motoman • ...

Maintenance Technician 3rd Shift

Madison, MS · On-site

$20.25 - $25.75/hr

... peripheral vision, depth perception and the ability to focus. WORK ENVIRONMENT AND OTHER ... Required Skills · Ability to manipulate and modify robot programs. Fanuc, ABB, Motoman · ...

Maintenance Electrician

Horn Lake, MS · On-site

$26.25 - $33.75/hr

Familiarity with robotic programing, PLC hardware and software. * Excellent computer skills ... perception, and ability to adjust focus. WORK ENVIRONMENT While performing the duties of this job ...

Maintenance Electrician

Horn Lake, MS

$26.25 - $33.75/hr

Familiarity with robotic programing, PLC hardware and software. * Excellent computer skills ... perception, and ability to adjust focus. WORK ENVIRONMENT While performing the duties of this job ...

Robotics Perception information

What are some common challenges faced by professionals in Robotics Perception roles when integrating perception systems with real-world robotics applications?

A key challenge in Robotics Perception is ensuring that perception algorithms—such as object detection, mapping, and localization—operate reliably in dynamic, unstructured environments. Professionals often need to address sensor noise, variable lighting conditions, and occlusions that can impact data quality. Integrating perception systems with robotic hardware requires close collaboration with mechanical, software, and controls engineers to ensure real-time performance and robustness. Adapting solutions to different platforms and continuously validating them in field tests is also an essential, ongoing responsibility.

What is robotics perception?

Robotics perception refers to the ability of robots to interpret and understand their environment using sensors such as cameras, LIDAR, and radar. This field combines elements of computer vision, machine learning, and sensor fusion to help robots identify objects, navigate spaces, and interact with the world safely and effectively. Robotics perception is crucial for autonomous systems like self-driving cars, drones, and industrial robots, enabling them to make decisions based on real-time data from their surroundings.

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

AspectRobotics PerceptionRobotics Software Engineer
Required CredentialsBachelor's or Master's in Robotics, Computer Science, or related fields; experience with perception algorithmsBachelor's or Master's in Computer Science, Software Engineering, or related; programming skills in C++, Python
Work EnvironmentResearch labs, R&D departments, industry settings focused on sensor data processingDevelopment teams, industrial or research settings, focusing on software development for robots
Industry UsageUsed in autonomous vehicles, drones, and robotic systems for environment understandingDevelops the software that enables robotic functionalities, including perception modules

Robotics Perception specialists focus on developing algorithms that interpret sensor data to understand the environment, while Robotics Software Engineers build the overall software systems that incorporate perception modules. Both roles often collaborate but differ in their core focus and skill sets.

What are the key skills and qualifications needed to thrive as a Robotics Perception Engineer, and why are they important?

To thrive as a Robotics Perception Engineer, you need a solid background in computer vision, machine learning, and robotics, typically supported by a degree in computer science, engineering, or a related field. Experience with tools like ROS (Robot Operating System), OpenCV, and programming languages such as Python or C++ is essential, along with familiarity with sensor technologies and perception algorithms. Strong problem-solving skills, teamwork, and clear communication are crucial soft skills for addressing complex challenges and collaborating effectively. These abilities ensure robust perception systems, enabling robots to interpret and interact safely and efficiently with their environments.
What are popular job titles related to Robotics Perception jobs in Mississippi? For Robotics Perception jobs in Mississippi, the most frequently searched job titles are:
What cities in Mississippi are hiring for Robotics Perception jobs? Cities in Mississippi with the most Robotics Perception job openings:
Infographic showing various Robotics Perception job openings in Mississippi as of June 2026, with employment types broken down into 73% Full Time, and 27% Part Time. Highlights an 99% Physical, and 1% Remote job distribution.

Postdoctoral Research Associate - Robotics and AI

University of Mississippi

Oxford, MS

Full-time

Posted 3 days ago

New


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Job description

The University of Mississippi - fondly referred to as Ole Miss - stands as a premier public research institution with a proud legacy of academic distinction. We are devoted to nurturing a vibrant, inclusive community where every member - student, faculty, and staff - can achieve their fullest potential.

Job Summary:

The Department of Mechanical Engineering at the University of Mississippi seeks a Postdoctoral Research Associate in robotics and AI to join Dr. Xiaopeng Zhao's research group. We welcome applicants from across engineering and computer science with expertise in any area of robotics, including manipulation, mobile and legged robots, autonomous navigation, perception and computer vision, motion planning and control, learning-based control, human-robot interaction, and sensing and state estimation.
The group's distinctive focus is making AI-enabled robots reliable and deployable in the real world: not only building capable systems, but validating them, monitoring them, and establishing the credibility that lets them be trusted in clinical and industrial settings. You will apply your robotics expertise to real hardware on various testbeds. The role includes a named part in proposal development, mentoring of graduate students, and a clear path toward research-faculty status as external funding grows.

Job Description:

  • Develop, implement, and deploy robotics and AI methods on real hardware, in the area that fits your strengths (for example perception, control, planning, learning, manipulation, navigation, or human-robot interaction).
  • Help make those systems reliable and deployable: validation, testing, runtime monitoring, and building the case for safe real-world use.
  • Lead publications, present at leading venues, and co-develop federal and foundation proposals.
  • Mentor graduate and undergraduate students and develop reusable methods, demonstrations, and shared testbeds that build lasting research capacity.
  • Collaborate with clinical, industrial, and academic partners across disciplines.

Job Responsibilities:

Required Qualifications
  • Ph.D.in Mechanical Engineering, Electrical or Computer Engineering, Computer Science, Robotics, Aerospace Engineering, Mechatronics, or a closely related field by the time of appointment.
  • Research experience in one or more areas of robotics or autonomous systems (for example manipulation, mobile or legged robots, navigation, perception, motion planning and control, learning-based control, sensing and state estimation, or human-robot interaction).
  • Hands-on experience building or deploying robotic systems on physical hardware (for example ROS / ROS 2), or a clear track record of moving work from simulation to hardware.
  • Proficiency in Python and modern machine-learning tools (for example PyTorch), and systems-level programming (C++ / ROS).
  • A strong publication record relative to career stage, including at least one first-author paper, and excellent written and verbal communication in English.

Preferred Qualifications
  • Interest or experience in making AI-enabled systems trustworthy: verification and validation, uncertainty quantification, runtime monitoring, safety cases, or reliability.
  • Experience with medical or physiological devices, or with industrial automation and manufacturing robotics.
  • Experience contributing to research proposals and mentoring students across disciplines.

Compensation and Benefits
  • Salary will be commensurate with qualifications and experience and will follow institutional guidelines. The position includes a competitive benefits package.

Application Materials
  • A cover letter describing research interests, relevant experience, and career goals.
  • A curriculum vitae.
  • A statement of research accomplishments and future goals (maximum two pages).
  • Up to two representative publications.
  • Contact information for three professional references.

Education Qualifications:

PhD (Required)

Experience:

Interview Requirement:

Interview Requirements: Any candidate who is called for an interview must notify the Department of Equal Opportunity/Regulatory Compliance in writing of any reasonable accommodation needed prior to the date of the interview.

EEO Statement:

The University of Mississippi provides equal opportunity in any employment practice, education program, or education activity to all qualified persons. The University complies with all applicable laws regarding equal opportunity and does not unlawfully discriminate against any employee or applicant for employment based upon race, color, gender, sex, pregnancy, sexual orientation, gender identity or expression, religion, national origin, ethnicity, citizenship, age, disability, military status, protected veteran status, genetic information, or any other legally protected status.

Background Check Statement:

The University of Mississippi is committed to providing a safe campus community. UM conducts background investigations for applicants being considered for employment. Background investigations include a criminal history record check, and when appropriate, a financial (credit) report or driving history check.

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