SSPARE: Space Solar Power Autonomously Reconfigurable Elements
Dario Tscholl, Brian Gunter

TL;DR
SSPARE is a novel, cost-effective, self-servicing power system for GEO satellites that significantly enhances reliability and power generation capacity, supporting future Earth-independent space infrastructure.
Contribution
The paper introduces SSPARE, a new autonomous reconfigurable solar power system that improves satellite reliability and increases power output compared to traditional systems.
Findings
SSPARE can generate up to 6 times more power per launch.
SSPARE offers a cost-effective alternative to existing on-orbit servicing methods.
It enhances satellite reliability and supports large-scale space solar power farms.
Abstract
GEO communication satellites generate significant revenue but can only function reliably for approximately 10 years on orbit. One of the main drivers that limits the reliability of a GEO satellite is the electric power system, and in particular, anomalies related to batteries and degradation of the solar arrays. Given the high cost and relatively short lifespan of GEO satellites, there has been increased research activity towards developing on-orbit servicing systems. However, most of the existing servicing systems are expensive, highly customized, and focus on refueling tasks. On-orbit refueling can be very useful, however, it does not improve satellite reliability which is crucial for long-term missions. Therefore, we propose SSPARE (Space Solar Power Autonomously Reconfigurable Elements), a cost-effective, self-servicing power system. Aside from improving satellite reliability,…
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Taxonomy
TopicsSpacecraft Design and Technology · Space Satellite Systems and Control · Modular Robots and Swarm Intelligence
