计算机科学
移动边缘计算
波束赋形
路径损耗
计算机网络
服务器
边缘计算
电信线路
延迟(音频)
无线
能源消耗
分布式计算
实时计算
GSM演进的增强数据速率
电信
生物
生态学
作者
Bodong Shang,H. Vincent Poor,Lingjia Liu
标识
DOI:10.1109/mwc.001.2200009
摘要
Mobile edge computing (MEC) enables users to offload their computation-intensive and latency-sensitive tasks to edge servers. Based on MEC, users can reduce their energy consumption and guarantee latency in executing computational tasks. However, current terrestrial MEC networks have some disadvantages, such as fixed deployed infrastructure and severe signal attenuation. Recently, a new paradigm of reconfigurable intelligent surface (RIS)-assisted wireless networks has drawn extensive attention due to its low cost but high spectral and energy efficiencies. This article introduces the use of aerial RIS (ARIS) mounted on an unmanned aerial vehicle (UAV) into MEC, which achieves three-dimensional signal reflections in the uplink computation offloading. The network performance can be improved by designing the communication and computation resource allocation, the ARIS's trajectory, and the amplitudes and phase shifts of passive reflecting elements. However, there are some issues that must be addressed for the ARIS-assisted MEC, including resource allocation and trajectory design, ARIS beamforming design with imperfect channel state information, and the trade-off between the non-line-of-sight excessive path loss and the doubled path loss. This article presents the motivation, applications, challenges, and opportunities of introducing ARISs into MEC. Moreover, numerical results are provided to showcase potential performance enhancement using ARISs in MEC networks.
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