Revolutionizing Wireless Communications with Space Data Centers: Applications and Open Challenges
For researchers and engineers in satellite communications and space computing, this work provides a conceptual framework and preliminary validation of SDCs, though it remains largely visionary and incremental.
This paper investigates how space data centers (SDCs) can transform space communication from connectivity-oriented to task-oriented paradigms, demonstrating through simulations that SDCs reduce control-layer latency in hierarchical space networks.
Space data centers (SDCs) are emerging as a promising orbital computing infrastructure for the future AI industry. Unlike conventional satellites that mainly serve as relay nodes or lightweight onboard processors, SDCs integrate communication, computing, storage, and control capabilities in orbit, enabling persistent service support for data-intensive and intelligence-driven space applications. In this article, we investigate how SDCs may transform space communication paradigms from connectivity-oriented data transmission toward task-oriented and service-centric information exchange. We first present a hierarchical SDC network architecture consisting of access, relay, computing, and control layers, and outline possible deployment strategies. We then explore representative future application scenarios enabled by SDCs, highlighting their communication characteristics and associated research challenges. Simulation results further demonstrate the effectiveness of SDCs in reducing control-layer latency in hierarchical space networks. Finally, we identify key research directions toward the practical deployment of SDCs.