Democratizing Direct-to-Cell Low Earth Orbit Satellite Networks
Lixin Liu, Yuanjie Li, Hewu Li, Jiabo Yang, Wei Liu, Jingyi Lan, Yufeng Wang, Jiarui Li, Jianping Wu, Qian Wu, Jun Liu, Zeqi Lai
摘要
The emergent Direct-to-cell Low Earth Orbit (LEO) satellites promise to eliminate cellular coverage dead zones by enabling direct network access to our regular phones and IoTs everywhere on Earth via 4G, 5G, and beyond. However, their large-scale deployment can be impeded by scarce orbital slots in space, a lack of licensed cellular spectrums, and prohibitive capital costs for satellite deployment and operation. This article explores how to enable multi-tenant direct-to-cell LEO satellites as a cost-effective win-win solution for satellite operators, mobile operators, and users. We demonstrate that the state-of-the-art cellular networks' stateful hop-by-hop session-based architecture restricts the LEO satellite multi-tenancy. To remove this technical barrier, we propose MOSAIC [1], an alternative scheme to shift from the hop-by-hop session-based cellular service to pay-as-you-go satellite self-service. MOSAIC lets mobile operators supply their users with one-time digitally signed tokens as "coins" to pay for local satellite access on demand. Any satellite operator's authentic satellite can accept these tokens to serve this user without pre-establishing sessions or contacting mobile operators. Akin to cloud computing, this paradigm lets satellite operators flexibly lease their satellites to more mobile operators or higher revenues and return on investment, and allows mobile operators and users to enjoy competitive satellites for complementary coverage and cost optimizations. Our evaluations with the real satellite data and commodity 3GPP NTN protocol stack validate MOSAIC's scalability and performance advantages compared to the state-of-the-art.
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引用它的顶会 Paper5
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- LPG: Raise Your Location Privacy Game in Direct-to-Cell LEO Satellite NetworksQuan Shi, Liying Wang, Prosanta Gope, Qi Liang 等USENIX Security 2026
它引用的顶会 Paper8
- Orbital Edge Computing: Nanosatellite Constellations as a New Class of Computer SystemBradley Denby, Brandon LuciaASPLOS 2020 · 被引用 272 次
- Network Characteristics of LEO Satellite Constellations: A Starlink-Based Measurement from End UsersSami Ma, Yi Ching Chou, Haoyuan Zhao, Long Chen 等INFOCOM 2023 · 被引用 214 次
- L2D2: low latency distributed downlink for LEO satellitesDeepak Vasisht, Jayanth Shenoy, Ranveer ChandraSIGCOMM 2021 · 被引用 146 次
- A case for stateless mobile core network functions in spaceYuanjie Li, Hewu Li, Wei Liu, Lixin Liu 等SIGCOMM 2022 · 被引用 59 次
- A Networking Perspective on Starlink's Self-Driving LEO Mega-ConstellationYuanjie Li, Hewu Li, Wei Liu, Lixin Liu 等MobiCom 2023 · 被引用 58 次
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