UxV Applied Research L.L.C.
Advanced Autonomy Solutions for Uncrewed Vehicle Systems
About UxV Applied Research L.L.C.
UxV Applied Research L.L.C. is a specialized engineering research and consulting firm dedicated to advancing autonomy technologies for uncrewed vehicle systems (UxVs) across air, land, and sea domains. We combine rigorous research methodologies with practical engineering expertise to deliver cutting-edge solutions that address the most complex autonomy challenges facing government agencies, defense contractors, and industry partners.
Our comprehensive service portfolio encompasses vehicle guidance, navigation, and control (GNC) systems, trajectory optimization and path planning algorithms, and coordinated motion control for mobile sensing applications including target tracking, environmental monitoring, and cooperative navigation. We pride ourselves on delivering research-grade solutions through algorithm development, advanced modeling and simulation, technical analysis, and rapid prototyping—transforming theoretical innovations into real-world autonomy systems.
Our Services
Guidance, Navigation & Control (GNC) Systems
Develop and optimize vehicle guidance, navigation, and control systems for autonomous uncrewed vehicles. Our expertise ensures precise vehicle operation and stability across diverse operational environments and mission profiles. We specialize in efficient trajectory optimization and intelligent path planning algorithms that enable autonomous vehicles to navigate complex environments while meeting mission objectives.
Prototype Development and Testing
Develop and test small-scale uncrewed systems, including marine vehicles, aerial drones, and their supporting components. We take concepts from design through prototype evaluation — developing hardware, autonomy software, and sensing subsystems, and validating them in controlled, small-scale field tests.
Coordinate Control of Multi-Vehicle Teams
Engineer coordinated motion control systems for multi-vehicle operations and mobile sensing applications including target tracking, environmental monitoring, and cooperative navigation. Enable seamless collaboration between autonomous systems for enhanced mission effectiveness.