On Interference Alignment Based NOMA for Downlink Multicell Transmissions

Micael Bernhardt, J. Cousseau
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Abstract

The upcoming wireless communication systems are expected to integrate a number of nodes remarkably greater than those observed in current technologies, while offering a sensibly improved service quality for critical applications. This generates a need for innovative schemes to share the available resources among the served terminals as well as to increase the system efficiency and node fairness. Aiming to this objective, we propose a combination of non-orthogonal multiple access and interference alignment schemes applied to the downlink transmissions in a multi-cell environment. The two methods presented in this work enable an efficient reutilization of resources and the suppression of intra-and inter-cell interference in a single step during signal reception. We derive the expressions for the feasibility of our proposed solution from an analysis applied to generic system configurations. Additionally, we show numerical results that highlight the benefits of this scheme in a system setup resembling an Internet-of-things scenario.
基于NOMA的下行多小区传输干扰对准研究
即将到来的无线通信系统预计将集成比当前技术中观察到的更大的节点,同时为关键应用提供显着改进的服务质量。这就产生了对创新方案的需求,以便在服务终端之间共享可用资源,并提高系统效率和节点公平性。针对这一目标,我们提出了一种应用于多小区环境下下行传输的非正交多址和干扰对准组合方案。在这项工作中提出的两种方法能够有效地重复利用资源,并在信号接收过程中一步抑制细胞内和细胞间的干扰。我们从应用于一般系统配置的分析中推导出我们提出的解决方案的可行性表达式。此外,我们展示了数值结果,突出了该方案在类似于物联网场景的系统设置中的好处。
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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