Energy Efficient Reconfigurable Intelligent Surface Enabled Mobile Edge Computing Networks with NOMA
Zhiyang Li, Ming Chen, Zhaohui Yang, Jingwen Zhao, Yinlu Wang,, Jianfeng Shi, Chongwen Huang

TL;DR
This paper proposes an energy-efficient RIS-assisted NOMA-enabled MEC system, optimizing resource allocation to minimize energy consumption, and demonstrates significant performance improvements over benchmark schemes.
Contribution
It introduces a joint optimization framework for RIS phase shifts, power control, and offloading in NOMA MEC networks, using advanced algorithms to enhance energy efficiency.
Findings
Proposed algorithm reduces total energy consumption.
Achieves higher energy efficiency compared to benchmarks.
Demonstrates significant performance gains through simulations.
Abstract
Reconfigurable intelligent surface (RIS) has emerged as a promising technology for achieving high spectrum and energy efficiency in future wireless communication networks. In this paper, we investigate an RIS-aided single-cell multi-user mobile edge computing (MEC) system where an RIS is deployed to support the communication between a base station (BS) equipped with MEC servers and multiple single-antenna users. To utilize the scarce frequency resource efficiently, we assume that users communicate with BS based on a non-orthogonal multiple access (NOMA) protocol. Each user has a computation task which can be computed locally or partially/fully offloaded to the BS. We aim to minimize the sum energy consumption of all users by jointly optimizing the passive phase shifters, the size of transmission data, transmission rate, power control, transmission time and the decoding order. Since the…
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Taxonomy
TopicsAdvanced Wireless Communication Technologies · IoT Networks and Protocols · UAV Applications and Optimization
