Collaborative Computation Offloading at UAV-Enhanced Edge

Jingyu Xiong, Hongzhi Guo, Jiajia Liu, N. Kato, Yanning Zhang
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引用次数: 7

Abstract

In conventional terrestrial cellular networks, mobile devices at the cell edge often suffer from poor channel conditions, and thus unmanned aerial vehicles (UAVs) are introduced in recent years to improve the reliability of communication links. However, with the rapid development of Internet of Things (IoT) technology, the emerging IoT applications have blooming demands for high computation capacity from the resource-constrained IoT mobile devices (IMDs), motivated by which, mobile edge computing has been envisioned as an appealing solution to the resource bottleneck problem of IMDs. In order to cope with poor communication performance and high computation demands of cell-edge IMDs, we in this paper leverage UAV-aided edge computing to collaboratively assist computation offloading, taking account of the limited battery life of both IMDs and the UAV. We investigate a joint optimization problem of collaborative computation offloading, bandwidth portion, bit allocation, and UAV trajectory design, aiming to minimize the weighted energy consumption of IMDs and the UAV. Extensive numerical results validate the necessity of introducing UAV-aided edge computing to cellular networks, and the advantages of our proposed scheme on energy savings.
无人机增强边缘的协同计算卸载
在传统的地面蜂窝网络中,蜂窝边缘的移动设备经常受到信道条件差的影响,因此近年来引入了无人机(uav)来提高通信链路的可靠性。然而,随着物联网(IoT)技术的快速发展,新兴的物联网应用对资源受限的物联网移动设备(imd)的高计算能力需求旺盛,移动边缘计算被认为是解决imd资源瓶颈问题的一个有吸引力的解决方案。为了解决蜂窝边缘imd通信性能差、计算需求高的问题,考虑到imd和无人机的电池寿命有限,本文利用无人机辅助边缘计算协同辅助计算卸载。为了使imd和无人机的加权能耗最小,研究了协同计算卸载、带宽分配、比特分配和无人机轨迹设计的联合优化问题。大量的数值结果验证了将无人机辅助边缘计算引入蜂窝网络的必要性,以及我们提出的方案在节能方面的优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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