移动边缘计算
计算机科学
水准点(测量)
无线
无线电源传输
最优化问题
计算卸载
GSM演进的增强数据速率
趋同(经济学)
计算
数学优化
凸优化
分布式计算
边缘计算
实时计算
算法
人工智能
正多边形
电信
数学
几何学
大地测量学
地理
经济
经济增长
作者
Fuhui Zhou,Yongpeng Wu,Haijian Sun,Zheng Chu
标识
DOI:10.1109/icc.2018.8422277
摘要
With the emergence of diverse mobile applications (such as augmented reality), the quality of experience of mobile users is greatly limited by their computation capacity and finite battery lifetime. Mobile edge computing (MEC) and wireless power transfer are promising to address this issue. However, these two techniques are susceptible to propagation delay and loss. Motivated by the chance of short-distance line-of-sight achieved by leveraging unmanned aerial vehicle (UAV) communications, an UAV-enabled wireless powered MEC system is studied. A power minimization problem is formulated subject to the constraints on the number of the computation bits and energy harvesting causality. The problem is non-convex and challenging to tackle. An alternative optimization algorithm is proposed based on sequential convex optimization. Simulation results show that our proposed design is superior to other benchmark schemes and the proposed algorithm is efficient in terms of the convergence.
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