Multi-UAV Collaborative Edge Computing Algorithm for Joint Task Offloading and Channel Resource AllocationOA
Multi-UAV Collaborative Edge Computing Algorithm for Joint Task Offloading and Channel Resource Allocation
Unmanned aerial vehicle(UAV)-based edge computing is an emerging technology that provides fast task processing for a wider area.To address the issues of limited computation resource of a single UAV and finite communication resource in multi-UAV networks,this paper joints consideration of task offloading and wireless channel allocation on a collaborative multi-UAV com-puting network,where a high altitude platform station(HAPS)is adopted as the relay device for communication between UAV clusters consisting of UAV cluster heads(ch-UAVs)and mission UAVs(m-UAVs).We propose an algorithm,jointing task offloading and wireless channel allocation to maximize the average service success rate(ASSR)of a period time.In particular,the simulated an-nealing(SA)algorithm with random perturbations is used for optimal channel allocation,aiming to reduce interfer-ence and minimize transmission delay.A multi-agent deep deterministic policy gradient(MADDPG)is proposed to get the best task offloading strategy.Simulation results demonstrate the effectiveness of the SA algorithm in channel allocation.Meanwhile,when jointly considering computation and channel resources,the proposed scheme effectively enhances the ASSR in comparison to other benchmark algorithms.
Yuting Wei;Sheng Wu;Zhe Ji;Zhigang Yu;Chunxiao Jiang;Linling Kuang
School of Information and Communication Engineering,Beijing University of Posts and Telecommunications,Bei-jing 100876,ChinaChina Academy of Electronics and Information Technology,Bei-jing 100041,ChinaBeijing National Research Center for Informa-tion Science and Technology,Tsinghua Space Center,Tsinghua University,Beijing 100084,China
UAV-based edge computingmulti-UAV col-laborationjoint task offloading and wireless channel al-locationsimulated annealing(SA)algorithmmulti-agent deep deterministic policy gradient(MADDPG)
《通信与信息网络学报(英文)》 2024 (002)
137-150 / 14
This work was supported in part by the National Natural Science Foundation of China under Grants 62341104,62201085,62325108,and 62341131.
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