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Multi-Tier UAV Edge Computing for Low Altitude Networks Towards Long-Term Energy Stability

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arxiv 2508.14601 v1 pith:5NXVIQ6M submitted 2025-08-20 cs.NI

Multi-Tier UAV Edge Computing for Low Altitude Networks Towards Long-Term Energy Stability

classification cs.NI
keywords l-uavsenergycomputingedgeh-uavstabilityaddresslong-term
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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This paper presents a novel multi-tier UAV-assisted edge computing system designed for low-altitude networks. The system comprises vehicle users, lightweight Low-Tier UAVs (L-UAVs), and High-Tier UAV (H-UAV). L-UAVs function as small-scale edge servers positioned closer to vehicle users, while the H-UAV, equipped with more powerful server and larger-capacity battery, serves as mobile backup server to address the limitations in endurance and computing resources of L-UAVs. The primary objective is to minimize task execution delays while ensuring long-term energy stability for L-UAVs. To address this challenge, the problem is first decoupled into a series of deterministic problems for each time slot using Lyapunov optimization. The priorities of task delay and energy consumption for L-UAVs are adaptively adjusted based on real-time energy status. The optimization tasks include assignment of tasks, allocation of computing resources, and trajectory planning for both L-UAVs and H-UAV. Simulation results demonstrate that the proposed approach achieves a reduction of at least 26% in transmission energy for L-UAVs and exhibits superior energy stability compared to existing benchmarks.

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