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A Strategic Game for Task Offloading among Capacitated UAV-Mounted Cloudlets

机译:电容UAV安装Cloudlet中的任务卸载的战略游戏

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In this paper, we focus on the computational offloading problem among unmanned aerial vehicles (UAVs) acting as small flying cloudlets that receive compute-intensive tasks from Internet-of-Things (IoT) devices. Different from existing studies, we consider a network of capacitated UAV-mounted cloudlets (NUMC) covering a region, where each UAV is endowed with limited computational resources and a restricted capacity providing edge computing services to IoT users in that region. UAVs aim to optimize their energy consumption while satisfying quality of services of IoT tasks. We formulate the task offloading problem among UAVs as an integer program, and introduce a novel offloading game to model this problem. We prove the existence of pure-strategy Nash equilibrium of our game, where none of the UAVs has incentive to change its offloading decision. We propose a strategic offloading algorithm to solve our proposed game and find a Nash equilibrium. We evaluate the performance of our proposed algorithm by extensive experiments. The results show that a Nash equilibrium exists in NUMC and a desired system performance is achieved as well.
机译:在本文中,我们专注于无人驾驶飞行器(无人机)中的计算卸载问题,它起到了从事互联网(物联网)设备的计算密集型任务的小型飞行Cloudlets。与现有研究不同,我们考虑覆盖区域的电容UAV安装Cloudlet(NumC)的网络,其中每个UAV具有有限的计算资源和限制的容量向该区域中的IOT用户提供边缘计算服务。无人机旨在优化其能源消耗,同时满足IoT任务的服务质量。我们将UVS作为整数程序中的任务卸载问题,并介绍一个新颖的卸载游戏以模拟此问题。我们证明了我们游戏的纯策略纳什均衡的存在,没有一个无人机可以激励改变其卸载决定。我们提出了一种战略性卸载算法来解决我们提出的游戏并找到纳什均衡。我们通过广泛的实验评估我们所提出的算法的表现。结果表明,NASH均衡存在于NUMC中,并且也实现了所需的系统性能。

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