This paper provides a comprehensive framework to analyze the performance of non-orthogonal multiple access (NOMA) in the downlink transmission of a single-carrier and multi-carrier terahertz (THz) network. Specifically, we first develop a novel user pairing scheme for the THz-NOMA network which ensures the performance gains of NOMA over orthogonal multiple access (OMA) for each individual user in the NOMA pair and adapts according to the molecular absorption. Then, we characterize novel outage probability expressions considering a single-carrier and multi-carrier THz-NOMA network in the presence of various user pairing schemes, Nakagami-m channel fading, and molecular absorption noise. We propose a moment-generating-function (MGF) based approach to analyze the outage probability of users in a multi-carrier THz network. Furthermore, for negligible thermal noise, we provide simplified single-integral expressions to compute the outage probability in a multi-carrier network. Numerical results demonstrate the performance of the proposed user-pairing scheme and validate the accuracy of the derived expressions.
翻译:本文提供了一个全面框架,用以分析在单一载体和多载体Thahertz(Thz)网络的下行传输中非载体多重存取(NOMA)的性能。具体地说,我们首先为Thz-NOMA网络开发一种新型用户配对计划,确保NOMA对每个用户在正向多重存取(OMA)上的性能收益,并根据分子吸收情况加以调整。然后,我们将考虑到单一载体和多载体Thz-NOMA网络的各种用户配对计划,即Nakagami-m通道阻隔和分子吸收噪音,我们首先为Thz-NOMA网络制定了一个新的用户配对计划。我们提出了一个基于时间生成功能(MGF)的方法,以分析多载体Thz网络中用户的外向概率。此外,对于可忽略的热噪音,我们提供了简化的单倍加体表达方式,以便在多载体网络中计算出出出的概率。数字结果显示拟议的用户配制图计划的性能,并验证出结果的准确性。