基于NOMA和有限块长码的ris辅助MEC网络节能调度

Yang Yang, M. C. Gursoy
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摘要

本文分析了可重构智能表面(RIS)辅助移动边缘计算(MEC)网络的能源效率。综合考虑了用户设备上的卸载决策、MEC服务器上的计算资源分配策略以及RIS反射系数的选择。为了满足延迟要求,在上行传输中考虑使用有限块长度(FBL)码,并利用非正交多址(NOMA)提高资源使用效率。提出了一种用于NOMA传输的ue分组方案,并在MEC服务器上开发了一种动态CPU频率分配算法。主要目标是在解码错误率和延迟限制下,最大限度地提高ris辅助MEC网络的整体能源效率。为此,设计了一个四步算法来优化RIS反射系数、卸载数据位、卸载块长度和MEC频率分配。仿真结果表明了该算法的有效性,以及在NOMA传输下进行UE调度的重要性。
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Energy-Efficient Scheduling in RIS-aided MEC Networks with NOMA and Finite Blocklength Codes
In this paper, energy efficiency is analyzed in a reconfigurable intelligent surface (RIS) aided mobile edge computing (MEC) network. The offloading decisions at the user equipments (UEs), computational resource allocation strategies at the MEC server, and the choice of RIS reflecting coefficients are jointly taken into consideration. To address the latency requirements, the use of finite blocklength (FBL) codes is considered in the uplink transmission, which also utilizes non-orthogonal multiple access (NOMA) for improved efficiency in resource usage. A UE-grouping scheme is introduced to group the UEs for NOMA transmission, and a dynamic CPU frequency allocation algorithm at the MEC server is developed. The primary objective is to maximize the overall energy efficiency of the RIS-aided MEC network under both decoding error rate and latency constraints. For this purpose, a four-step algorithm is devised to optimize RIS reflecting coefficients, offloaded data bits, offloading blocklength, and MEC frequency allocations. Simulation results illustrate the effectiveness of our proposed algorithm and the importance of UE scheduling with NOMA transmission.
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