Resource Allocation in OMA-NOMA based Two-Tier Heterogeneous Networks

M. Hadi, R. Ghazizadeh
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Abstract

In this paper, we investigate the sub-channel assignment and power allocation for a heterogeneous network based on orthogonal multiple access (OMA) - non-orthogonal multiple access (NOMA) scheme. We divide the total bandwidth into OMA and NOMA based sub-channels. Small cell base station (SBS) can use OMA and NOMA sub-channels, and OMA sub-channels are available for macro cell base station (MBS) to interference control with small cell users (SCUs). Our aim is to maximize the total data rate of SCUs in the OMA-NOMA scheme and provide the quality of service for macro cell users (MCUs). To solve the NP-hard optimization, we decompose the introduced problem into two problems: sub-channel and power allocation problems. Then we propose a sub-optimal iterative approach to provide the solutions. In our algorithm, the sub-channel assignment is updated by solving the linear problem, while the power allocation policy is obtained using the Lagrange dual method. The results illustrate that the proposed OMA-NOMA scheme outperforms traditional OMA-based scheme in terms of sum data rate performance.
基于OMA-NOMA的两层异构网络资源分配
本文研究了基于正交多址(OMA) -非正交多址(NOMA)方案的异构网络的子信道分配和功率分配问题。我们将总带宽分为基于OMA和基于NOMA的子信道。小蜂窝基站(SBS)可以使用OMA和NOMA子信道,宏蜂窝基站(MBS)可以使用OMA子信道对小蜂窝用户(scu)进行干扰控制。我们的目标是在OMA-NOMA方案中最大限度地提高scu的总数据速率,并为宏小区用户(mcu)提供服务质量。为了解决NP-hard优化问题,我们将引入的问题分解为两个问题:子信道和功率分配问题。然后,我们提出了一种次优迭代方法来提供解决方案。该算法通过求解线性问题更新子信道分配,利用拉格朗日对偶方法获得功率分配策略。结果表明,本文提出的OMA-NOMA方案在总数据速率性能上优于传统的基于oma的方案。
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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