Advanced System Engineering Approaches to Emerging Challenges in Planetary and Deep-Space Exploration
Abstract
This paper presents innovative solutions to critical challenges in planetary and deep-space exploration electronics. We synthesize findings across diverse mission profiles, highlighting advances in: (1) MARTIAN positioning systems with dual-frequency transmission to achieve 1m horizontal accuracy; (2) artificial reef platforms for Titan's hydrocarbon seas utilizing specialized sensor arrays and multi-stage communication chains; (3) precision orbital rendezvous techniques demonstrating novel thermal protection solutions; (4) miniaturized CubeSat architectures for asteroid exploration with optimized power-to-mass ratios; and (5) next-generation power management systems for MARS rovers addressing dust accumulation challenges. These innovations represent promising directions for future space exploration technologies, particularly in environments where traditional Earth-based electronic solutions prove inadequate. The interdisciplinary nature of these developments highlights the critical intersection of aerospace engineering, electrical engineering, and planetary science in advancing human exploration capabilities beyond Earth orbit.
Cite
@article{arxiv.2506.21648,
title = {Advanced System Engineering Approaches to Emerging Challenges in Planetary and Deep-Space Exploration},
author = {J. de Curtò and Cristina LiCalzi and Julien Tubiana Warin and Jack Gehlert and Brian Langbein and Alexandre Gamboa and Chris Sixbey and William Maguire and Santiago Fernández and Álvaro Maestroarena and Alex Brenchley and Logan Maroclo and Philemon Mercado and Joshua DeJohn and Cesar Velez and Ethan Dahmus and Taylor Steinys and David Fritz and I. de Zarzà},
journal= {arXiv preprint arXiv:2506.21648},
year = {2025}
}