James Lancaster
Papers
2
Total Citations
13
H-Index
2
About
James Lancaster is a pioneering roboticist whose work bridges autonomous navigation and experimental aerodynamics. His most influential contribution, "Programming Khepera II robot for autonomous navigation and exploration using the hybrid architecture" (2009, 11 citations), demonstrates a landmark integration of deliberative and reactive control layers. By implementing the D* Lite algorithm on a compact platform, Lancaster proved that real-time path planning and exploration are feasible in resource-constrained robots—a foundational insight for modern field robotics. This work remains a touchstone for researchers developing hybrid architectures for autonomous ground vehicles. Lancaster’s impact extends to aerospace experimentation. In "Experiments with the Model Test Apparatus Installed in the AFIT Low Speed Tunnel" (2015, 2 citations), he designed and validated a six-actuator robotic manipulator arm capable of dynamic wind tunnel motions at 1G accelerations. This apparatus enabled unprecedented control over model positioning, advancing the fidelity of aerodynamic testing. Though less cited, this engineering achievement reflects his versatility and hands-on approach to solving complex motion-control challenges. Together, Lancaster’s contributions illuminate a career dedicated to making robots—whether on the ground or in the wind tunnel—smarter, faster, and more autonomous.
Research Focus
Key Achievements
Top Papers
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