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X-Hab 2026: LiDAR-Powered Autonomous Charging Service Capability for Surface Rovers and SystemsThis document details the timeline of the LiDAR-Powered Autonomous Charging Service Capability for Surface Rovers and Systems project, initiated by the Fall 2025 semester class and completed by the Spring 2026 semester class. This project focuses on developing a fully autonomous system composed of a mobile surface rover and an induction charging station with a robotic arm, both controlled by their own NVIDIA Jetson Orin Nano.

Structural improvements to the rover suspension system and body eliminated excessive camber, reduced stress and strain on the plexiglass body, and improved maneuverability and durability of the rover. The charging station robotic arm was fully redesigned to increase reach while minimizing weight and increasing misalignment tolerance during docking on uneven terrain. Electrical system improvements addressed previous torque and power limitations of both the rover and charging station arm. High-torque servo motors were selected based on updated calculations which incorporated terrain slope and Factor of Safety, enabling zero-point turning for the rover and increased payload capacity of the charging station arm. Significant progress was made in autonomy and perception. The rover now employs 3D LiDAR and SLAM mapping for localization, mapping, and path planning.

The Battery Monitoring System (BMS) was created to coordinate battery management between the rover and charging station. The BMS provides continuous monitoring of battery state of charge, temperature, current, and will enable the autonomous initiation, execution, and termination of the charging cycle via Bluetooth communication. Testing of the WIBOTIC induction charging system demonstrated reliable power transfer under both aligned and misaligned conditions. This project demonstrated the ability of an autonomously navigating surface rover to independently plan a path to the charging station, dock, and the charging station to autonomously deploy a robotic charging arm and initiate charging of the rover. This work details the progress made to demonstrate the feasibility of autonomous surface rover navigation and recharging systems.
Document ID
20260004612
Acquisition Source
Kennedy Space Center
Document Type
Contractor or Grantee Report
Authors
Megan Steele
(Georgia Southern University Statesboro, United States)
Rafe Hamilton
(Georgia Southern University Statesboro, United States)
Kyle Henderson
(Georgia Southern University Statesboro, United States)
Abigeal McCarthy
(Georgia Southern University Statesboro, United States)
Aidan Real
(Georgia Southern University Statesboro, United States)
Amadou Mbye
(Georgia Southern University Statesboro, United States)
Austen Almeida
(Georgia Southern University Statesboro, United States)
Austin Barnes
(Georgia Southern University Statesboro, United States)
Austin Herndon
(Georgia Southern University Statesboro, United States)
Austin Nobis
(Georgia Southern University Statesboro, United States)
Axel Salazar
(Georgia Southern University Statesboro, United States)
Ayden Perez
(Georgia Southern University Statesboro, United States)
BaJeah Rhoden
(Georgia Southern University Statesboro, United States)
Bryan Acosta
(Georgia Southern University Statesboro, United States)
Bryce Freeman
(Georgia Southern University Statesboro, United States)
Christopher Proctor
(Georgia Southern University Statesboro, United States)
Clinton Madden
(Georgia Southern University Statesboro, United States)
Cohen Cox
(Georgia Southern University Statesboro, United States)
Cole Vandiver
(Georgia Southern University Statesboro, United States)
Coleman Norton
(Georgia Southern University Statesboro, United States)
Collin Thompson
(Georgia Southern University Statesboro, United States)
Dawson Peek
(Georgia Southern University Statesboro, United States)
Ethan Brown
(Georgia Southern University Statesboro, United States)
Garrett Murdock
(Georgia Southern University Statesboro, United States)
Hunder Mace
(Georgia Southern University Statesboro, United States)
Isaiah Lee
(Georgia Southern University Statesboro, United States)
Jacob Allan
(Georgia Southern University Statesboro, United States)
James Young
(Georgia Southern University Statesboro, United States)
Javier Bejarano
(Georgia Southern University Statesboro, United States)
Javon Montford
(Georgia Southern University Statesboro, United States)
Josh Hawkins
(Georgia Southern University Statesboro, United States)
Justin Tyre
(Georgia Southern University Statesboro, United States)
Katie Brown
(Georgia Southern University Statesboro, United States)
Kevin McElrath
(Georgia Southern University Statesboro, United States)
Matt Langley
(Georgia Southern University Statesboro, United States)
Matthew Walvoord
(Georgia Southern University Statesboro, United States)
Micheal Taylor
(Georgia Southern University Statesboro, United States)
Nichole Christian
(Georgia Southern University Statesboro, United States)
Noah Barker
(Georgia Southern University Statesboro, United States)
Payton Fuller
(Georgia Southern University Statesboro, United States)
Peyton Sperier
(Georgia Southern University Statesboro, United States)
Peyton Stanfield
(Georgia Southern University Statesboro, United States)
Stephen Nicholas
(Georgia Southern University Statesboro, United States)
Timothy Mayo
(Georgia Southern University Statesboro, United States)
Tristan Graham
(Georgia Southern University Statesboro, United States)
Wesley Powell
(Georgia Southern University Statesboro, United States)
Zach Davis
(Georgia Southern University Statesboro, United States)
Liam Fox
(Georgia Southern University Statesboro, United States)
Reasun Allah-U-Akbar
(Georgia Southern University Statesboro, United States)
Valentin Soloiu
(Georgia Southern University Statesboro, United States)
Brian Vlcek
(Georgia Southern University Statesboro, United States)
Marcel Ilie
(Georgia Southern University Statesboro, United States)
Timothy Sutton
(Georgia Southern University Statesboro, United States)
Date Acquired
May 21, 2026
Publication Date
May 1, 2026
Subject Category
Ground Support Systems and Facilities (Space)
Mechanical Engineering
Electronics and Electrical Engineering
Funding Number(s)
WBS: 566548
Distribution Limits
Public
Copyright
Use by or on behalf of the US Gov. Permitted.
Technical Review
NASA Technical Management
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