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Towards Sustainable Satellite Edge Computing

Qing Li, Shangguang Wang, Xiao Ma, Ao Zhou, Fangchun Yang

202116 citationsDOI

Abstract

Recently, Low Earth Orbit (LEO) satellites experience rapid development and satellite edge computing emerges to address the limitation of bent-pipe architecture in existing satellite systems. Introducing energy-consuming computing components in satellite edge computing increases the depth of battery discharge. This will shorten batteries' life and influences the satellites' operation in orbit. In this paper, we aim to extend batteries' life by minimizing the depth of discharge for Earth observation missions. Facing the challenges of wireless uncertainty and energy harvesting dynamics, our work develops an online energy scheduling algorithm within an online convex optimization framework. Our algorithm achieves sub-linear regret and the constraint violation asymptotically approaches zero. Simulation results show that our algorithm can reduce the depth of discharge significantly.

Topics & Concepts

SatelliteComputer scienceEdge computingRegretGeocentric orbitScheduling (production processes)Enhanced Data Rates for GSM EvolutionMathematical optimizationReal-time computingDistributed computingAerospace engineeringEngineeringTelecommunicationsMathematicsMachine learningSatellite Communication SystemsEnergy Harvesting in Wireless NetworksOpportunistic and Delay-Tolerant Networks
Towards Sustainable Satellite Edge Computing | Litcius