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Research Engineer III

Job in Bryan, Brazos County, Texas, 77801, USA
Listing for: Texas A&M University System
Full Time position
Listed on 2026-07-01
Job specializations:
  • Engineering
    Systems Engineer, AI Engineer (Applied/Software), Robotics
Salary/Wage Range or Industry Benchmark: 5084 - 9166 USD Monthly USD 5084.00 9166.00 MONTH
Job Description & How to Apply Below

Research Engineer III

Texas A&M University System Offices

Bush Combat Development Complex

Proposed Minimum Salary:
Commensurate

Job Location:

Bryan, Texas

Job Type: Staff

Job Description:

The System Offices is one of several system members within the Texas A&M University System representing one of the largest systems of higher education in the nation, with a network of 12 universities, a comprehensive health science center, nine state agencies, and the RELLIS Campus. The Texas A&M University System mission is to provide education, conduct research, commercialize technology, offer training, and deliver services for the people of Texas and beyond.

The System Offices, within the Texas A&M University System, provides an outstanding benefits package including, but not limited to: competitive health benefits; paid vacation, sick leave, and holidays; a defined benefit retirement plan to include an employer contribution through Teachers Retirement System of Texas (TRS); if applicable, a defined contribution retirement plan to include an employer contribution through an approved ORP vendor: additional voluntary tax deferred annuity (TDA) options;

tuition assistance; and wellness programs to promote work/life balance.

Salary: $5,084.33 - $9,166.67 per month commensurate with experience.

Job Description

Summary:

The Research Engineer III independently applies advanced engineering principles to design and implement the core algorithms and software architectures that power our multi-agent systems. At the George H.W. Bush Combat Development Complex (BCDC), the Research Engineer for Multi-Agent Autonomy develops next-generation autonomous systems that enable coordinated, heterogeneous fleets to operate in complex, unstructured environments. This research focuses on the integration of diverse platforms, ranging from tactical UTVs and military-grade UGVs to unmanned air vehicles (UAVs) and autonomous helicopters.

We aim to solve the fundamental challenges of multi-agent coordination and shared situational awareness, fostering the human-agent teaming essential for future mission success. By bridging the gap between sophisticated algorithms and real-world application, our team develops technologies that significantly enhance unit capabilities, mobility, and speed of action. We translate theoretical breakthroughs into field-demonstrated reality through System Experimentation and Field Testing using our multi-vehicle fleet in the diverse off-road terrain of the RELLIS campus.

Responsibilities:

  • Designs, implements, and maintains software modules for multi-agent coordination, including task allocation, decentralized path planning, and coordinated multi-vehicle behaviors.
  • Produces efficient code (Python/C++) subject to computational and resource constraints to function effectively on embedded hardware and within ROS2 middleware.
  • Implements communication protocols and data-sharing architectures to support shared situational awareness across heterogeneous air and ground assets.
  • Optimizes perception and navigation stacks for reliable operation across diverse hardware platforms (e.g., tactical UTVs, military-grade UGVs, and UAVs).
  • Troubleshoots, debugs, maintains, and improves existing software and algorithms within the BCDC autonomy stacks.
  • Develops and utilizes multi-level simulation environments to validate multi-agent strategies and algorithmic performance prior to field deployment.
  • Conducts hardware exploration and sensor selection (e.g., LiDAR, cameras, Radar, GNSS) to define perception systems tailored to specific project and algorithmic requirements.
  • Performs hands-on system hardware integration and tuning for perception, navigation, and coordination subsystems, ensuring hardware-software synergy.
  • Tests and deploys programs, applications, and ROS2 nodes in simulation and on physical hardware platforms.
  • Contributes to the development of software-hardware interfaces for new platforms, including autonomous helicopters and robotic ground vehicles.
  • Independently designs real-world experiment protocols and corresponding metrics to evaluate the performance of complex multi-agent systems in unstructured environments.
  • Participates in demonstrations to stakeholders, reviews and evaluates results, and establishes conclusions based on capability performance.
  • Generates technical documentation, system requirements, and user manuals to aid future project developments and technology transition.
  • Collaborates with faculty, senior staff, and project leads to translate high-level research goals into actionable software requirements.
  • Contributes significantly to technical reports, presentations, and peer-reviewed publications.

Education and Experience:

  • Bachelor's degree in Engineering, Science or related field or equivalent combination of education and experience.
  • Four years of related experience.

Registration, Certifications, and Licenses:

  • Must be able to obtain a U.S. Department of War Security Clearance.

Knowledge, Skills, and Abilities:

  • Advanced proficiency in modern C++ and…
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