This inventor holds 1 USPTO granted patent. Top assignee: United States of America as Represented by the Administrator of NASA. Active years: 2025.
Company Filing History:
Years Active: 2025
Title: Innovations by Julia E Cline in Space Assembly Systems
Introduction
Julia E Cline is an accomplished inventor based in Yorktown, Virginia. He has made significant contributions to the field of space assembly systems. His innovative work focuses on creating systems and methods that enhance the efficiency of modular unit assembly in space environments.
Latest Patents
Julia E Cline holds a patent for a "Tessellation and connection system for space assembly of modular units." This invention outlines systems and methods for mapping a planar surface to a curved surface. One method involves providing a planar lattice pattern with identical regular polygon shapes that can serve as truss support modules for a curved surface structure. The method includes determining the positions of nodal points of the polygon shapes by placing a starting nodal point on an axis of symmetry and iteratively positioning each nodal point in relation to neighboring nodes. This process aims to optimize the distance between positioned nodal points according to a set value of the planar lattice pattern. Furthermore, the method comprises forming a curved lattice pattern of the truss support module based on the positions of the nodal points.
Career Highlights
Julia E Cline is currently associated with the National Aeronautics and Space Administration (NASA) as represented by the Administrator of NASA. His work has been pivotal in advancing technologies that support space exploration and assembly.
Collaborations
He has collaborated with notable colleagues, including William R Doggett and Brace W White, contributing to various projects that enhance the capabilities of space systems.
Conclusion
Julia E Cline's innovative contributions to space assembly systems demonstrate his expertise and commitment to advancing technology in this critical field. His patent reflects a significant step forward in the efficient assembly of modular units in space environments.