Integration of Backscatter Communication with Multi-cell NOMA: A Spectral Efficiency Optimization under Imperfect SIC

W. U. Khan, E. Lagunas, A. Mahmood, Zain Ali, S. Chatzinotas, B. Ottersten, O. Dobre
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引用次数: 13

Abstract

Future wireless networks are expected to connect large-scale low-powered communication devices using the available spectrum resources. Backscatter communications (BC) is an emerging technology towards battery-free transmission in future wireless networks by leveraging ambient radio frequency (RF) waves that enable communications among wireless devices. Non-orthogonal multiple access (NOMA) has recently drawn significant attention due to its high spectral efficiency. The combination of these two technologies can play an important role in the development of future networks. This paper proposes a new optimization approach to enhance the spectral efficiency of nonorthogonal multiple access (NOMA)-BC network. Our framework simultaneously optimizes the power allocation of base station and reflection coefficient (RC) of the backscatter device in each cell under the assumption of imperfect signal decoding. The problem of spectral efficiency maximization is coupled on power and RC which is challenging to solve. To make this problem tractable, we first decouple it into two subproblems and then apply the decomposition method and Karush-Kuhn-Tucker conditions to obtain the efficient solution. Numerical results show the performance of the proposed NOMA-BC network over the pure NOMA network without BC.
后向散射通信与多小区NOMA的集成:不完全SIC下的频谱效率优化
未来的无线网络有望利用可用的频谱资源连接大规模的低功耗通信设备。反向散射通信(BC)是一种新兴的无线网络无电池传输技术,它利用环境射频(RF)波实现无线设备之间的通信。近年来,非正交多址(NOMA)技术因其频谱效率高而受到广泛关注。这两种技术的结合可以在未来网络的发展中发挥重要作用。为了提高非正交多址(NOMA)-BC网络的频谱效率,提出了一种新的优化方法。该框架在假设信号解码不完全的情况下,同时优化了基站的功率分配和每个小区中后向散射装置的反射系数。频谱效率最大化是一个与功率和RC耦合的问题,是一个具有挑战性的问题。为了使问题易于处理,我们首先将其解耦为两个子问题,然后应用分解方法和Karush-Kuhn-Tucker条件得到有效解。数值结果表明,所提出的NOMA-BC网络的性能优于无BC的纯NOMA网络。
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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