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Secure Task Offloading and Resource Allocation Design for Multi-Layer Non-Terrestrial Networks
FLORES CABEZAS, Xavier Alejandro; Da Silva, Isabella W. G.; HA, Vu Nguyen et al.
2026In IEEE INFOCOM 2026 - IEEE Conference on Computer Communications
Peer reviewed
 

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Keywords :
Multiaccess edge computing; non-terrestrial networks; physical layer authentication; task offloading
Abstract :
[en] Remote and resource-constrained Internet-of-Things (IoT) deployments often lack terrestrial connectivity for task offloading, motivating non-terrestrial networks (NTNs) with onboard multiaccess edge computing (MEC) capabilities. Nevertheless, in the presence of malicious actors, authentication needs to be performed to avoid non-authorized nodes from draining the computing resources of the NTN nodes. As a solution, we propose a four-layer MEC-enabled NTN with unmanned aerial vehicles (UAVs) acting as access nodes, a high altitude platform station (HAPS) acting as coordinator and authenticator, and a constellation of low-Earth orbit satellites (LEOSats) acting as remote MEC servers. We consider a tag-based physical-layer authentication (PLA) scheme to authenticate legitimate users, and formulate a joint task offloading decision and resource allocation for the admitted tasks, which is solved via block coordinate descent. Numerical results show that the PLA scheme is efficient and performs better than the benchmark schemes. We also demonstrate that the proposed scheme is robust against malicious attacks even under relaxed false-alarm constraints.
Research center :
Interdisciplinary Centre for Security, Reliability and Trust (SnT) > SIGCOM - Signal Processing & Communications
Centre for Wireless Innovation (CWI), Queen’s University Belfast
Disciplines :
Electrical & electronics engineering
Author, co-author :
FLORES CABEZAS, Xavier Alejandro  ;  University of Luxembourg > Interdisciplinary Centre for Security, Reliability and Trust (SNT) > SigCom
Da Silva, Isabella W. G.;  Queen's University Belfast > Centre for Wireless Innovation (CWI)
HA, Vu Nguyen  ;  University of Luxembourg > Interdisciplinary Centre for Security, Reliability and Trust (SNT) > SigCom
NTONTIN, Konstantinos ;  University of Luxembourg > Interdisciplinary Centre for Security, Reliability and Trust (SNT) > SigCom
Ngo, Hien Quoc;  Queen's University Belfast > Centre for Wireless Innovation (CWI)
Matthaiou, Michail;  Queen's University Belfast > Centre for Wireless Innovation (CWI)
CHATZINOTAS, Symeon  ;  University of Luxembourg > Interdisciplinary Centre for Security, Reliability and Trust (SNT) > SigCom
External co-authors :
yes
Language :
English
Title :
Secure Task Offloading and Resource Allocation Design for Multi-Layer Non-Terrestrial Networks
Publication date :
29 June 2026
Event name :
IEEE INFOCOM 2026 - IEEE Conference on Computer Communications
Event organizer :
IEEE
Event place :
Tokyo, Japan
Event date :
18-21 May 2026
Audience :
International
Main work title :
IEEE INFOCOM 2026 - IEEE Conference on Computer Communications
Publisher :
Institute of Electrical and Electronics Engineers Inc.
Peer review/Selection committee :
Peer reviewed
Development Goals :
9. Industry, innovation and infrastructure
European Projects :
HE - 101120135 - ELIXIRION - rEaLIzing healthcare 4.0 eXploIting the 6G netwoRk evolutION
H2020 - 101001331 - BEATRICE - Beyond Massive MIMO: Living at the Interface of Electromagnetics and Information Theory
Funders :
ERC - European Research Council
UKRI - UK Research and Innovation
EPSRC - Engineering and Physical Sciences Research Council
European Union
Funding text :
This work is funded by the Horizon Europe under the Marie Sklodowska Curie actions: ELIXIRION (GA 101120135) and by the U.K. Engineering and Physical Sciences Research Council (EPSRC) grant (EP/X04047X/2) for TITAN Telecoms Hub. The work of H.~Q.~Ngo was supported by the U.K. Research and Innovation Future Leaders Fellowships under Grant MR/X010635/1. The work of M. Matthaiou was supported by the European Research Council (ERC) under the European Union’s Horizon 2020 research and innovation programme (grant agreement No. 101001331). The work of I. W. G. da Silva, H. Q. Ngo and M. Matthaiou was also supported by a research grant from the Department for the Economy Northern Ireland under the US-Ireland R\&D Partnership Programme.
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