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Latency Minimization for UAV-Enabled URLLC-Based Mobile Edge Computing Systems

delete2024-04-01
delete10
PRE
AI
Q
Qingjie Wu
崔苗 封面图
崔苗 (Miao Cui)
张广驰 封面图
张广驰 (Guangchi Zhang) *
王丰 封面图
王丰 (Feng Wang)
Q
Qingqing Wu
X
Xiaoli Chu
DOI:10.1109/TWC.2023.3307154delete
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摘要

摘要

En 中文
In this paper, we consider an unmanned aerial vehicle (UAV)-enabled mobile edge computing (MEC) system, where multiple ground devices offload portions of their latency-sensitive and mission-critical computational tasks to a UAV-carried MEC server for remote computing and compute the remaining portions locally. To meet the low-latency requirements of the MEC, ultra-reliable and low-latency communication (URLLC) is used to offload tasks from the devices to the UAV. We minimize the maximum computation latency among all devices by jointly optimizing the computing times and CPU frequencies of the devices and the UAV, the offloading bandwidths of the devices, and the three-dimensional location of the UAV. We propose an algorithm that decomposes the joint optimization problem into three subproblems, which optimize the UAV's horizontal location, the UAV's altitude, and the offloading bandwidths and computing CPU frequencies, respectively. In solving the subproblems, the data rate expression of the devices' finite-blocklength offloading is accurately approximated by a tractable logarithmic function, and the successive convex approximation technique is applied to tackle the non-convex structure. Furthermore, a semi-closed-form solution to the subproblem that optimizes the bandwidths and CPU frequencies is derived to reduce the complexity. Simulation results show that the proposed algorithm can significantly reduce the system's computation latency compared to the benchmark schemes.
Keyword:
Unmanned aerial vehicle
mobile edge computing
ultra-reliable and low-latency communications
computation latency

期刊

IEEE Transactions on Wireless Communications 封面图
IEEE Transactions on Wireless Communications
IF:
10.7
论文数:
1.3W
被引数:
5.3W

机构

U
University of Sheffield
学者数:
3.0W
论文数: 2.9W
被引数: 3.9W
S
shanghai jiao tong university
学者数:
15.7W
论文数: 11.7W
被引数: 159
G
guangdong university of technology
学者数:
3.0W
论文数: 2.0W
被引数: 36
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引用论文

引用论文

Air-Ground Integrated Mobile Edge Networks: Architecture, Challenges, and Opportunities
err2018-08-01
err255
errOAAI
errCheng, Nan; Xu, Wenchao; Shi, Weisen; Zhou, Yi; Lu, Ning; Zhou, Haibo; Shen, Xuemin (Sherman)
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