Senior Research Engineer I
Texas A&M University SystemAbout the role
Job Title
Senior Research Engineer IAgency
Texas A&M University System OfficesDepartment
Bush Combat Development ComplexProposed Minimum Salary
CommensurateJob Location
Bryan, TexasJob Type
StaffJob 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:
$6,251.00 - $10,000.00 per month commensurate with experience.
Job Description Summary:
The Senior Research Engineer I serves as a lead technical architect and contributor, driving the high-level design of the BCDC autonomy stacks while scoping and prototyping solutions for emerging technical challenges. 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:
- Architects and implements the core frameworks for multi-agent coordination, setting the standard for modularity, performance, and scalability across all BCDC autonomy stacks.
- Conducts targeted background research in unfamiliar technical domains to scope emerging problems and develop initial proof-of-concept prototypes, accelerating the team's ability to adopt new methodologies.
- Acts as a primary developer for the most complex algorithmic challenges, producing high-performance, robust code (Python/C++) for embedded hardware and ROS2 middleware.
- Drives the development of cross-platform communication and shared situational awareness architectures, ensuring the seamless integration of air and ground assets.
- Serves as a technical authority on the evolution of the autonomy stacks, identifying and implementing emerging technologies that enhance multi-agent performance.
- Directs the design of multi-level simulation environments, ensuring they accurately reflect the complexities of field deployment for heterogeneous fleets.
- Architects integrated hardware-software systems, conducting technical trade studies to select sensor suites and compute platforms that optimize mission-level capabilities.
- Oversees the system-level integration of ROS2 nodes across complex platforms, including autonomous helicopters and robotic ground vehicles, to ensure hardware-software synergy.
- Leads high-stakes System Experimentation and Field Testing at the RELLIS campus, serving as the technical lead for large-scale demonstrations and ensuring mission success.
- Analyzes complex field data to generate system-level requirements and performance metrics, closing the loop between experimental results and future development cycles.
- Ensures technical continuity across multiple projects, helping the team balance efforts between est
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