Aug 2026· 2026 IEEE/CIC International Conference on Communications in China (ICCC)· pp. 890-895· 0 citations· 13 references
Abstract
In dynamic hotspot scenarios such as large-scale events and emergency gatherings, UAV-assisted edge content delivery must address challenges like fluctuating user demands, limited cache capacity, and stringent energy constraints. Existing studies primarily focus on delay, throughput, or cache replacement costs, without explicitly considering the coupling between cache and wireless transmission energy. This paper presents an energy-efficiency maximization approach for an edge caching system comprising a remote base station, multiple UAVs, and mobile users. The problem is formulated as a mixed-integer nonlinear program, aiming to maximize the ratio of weighted service utility to total energy consumption. To tackle the computational complexity, we adopt an exponential moving average (EMA) mechanism to track content popularity variations in real time and develop a four-stage alternating optimization algorithm to update user association, cache placement, cooperative transmission, and power allocation. Simulation results demonstrate that the proposed scheme consistently outperforms conventional methods in terms of energy efficiency. Specifically, it improves energy efficiency by $\mathbf{6 1. 3 \%, 4 4. 1 \%}$ and $\mathbf{3 1. 6 \%}$ compared to FIFO, Random and LRU, respectively.
The growing demand for multimedia services in Internet of Things (IoT) networks has significantly increased the traffic load on backhaul links, making Mobile Edge Caching (MEC) a key technology for reducing content delivery latency. Unmanned Aerial Vehicles (UAVs) can serve as mobile aerial caching nodes that complemen...
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The low-altitude economy is accelerating the deployment of unmanned aerial vehicles (UAVs) as flexible sensing, communication, and edge-computing platforms. In UAV-assisted Internet of Things (IoT) mobile edge computing (MEC), conventional greedy offloading can become unreliable because per-task decisions ignore shared...
Xiao-Chen Zhang, Tian-Xiang Shen, Wen-Xi Mo et al.· 2026 2nd International Confe...· 0 citations
In disaster emergency response, providing timely situational awareness information presents a significant challenge, particularly when ground infrastructure is compromised. To address this issue, this study introduces a multilayered, heterogeneous unmanned aerial vehicle (UAV)-assisted network designed for efficien...
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