Numerous studies claim that terahertz (THz) communication will be an essential piece of sixth-generation wireless communication systems. Its promising potential also comes with major challenges, in particular the reduced coverage due to harsh propagation loss, hardware constraints, and blockage vulnerability. To increase the coverage of THz communication, we revisit cooperative communication. We propose a new type of cooperative rate-splitting (CRS) called extraction-based CRS (eCRS). Furthermore, we explore two extreme cases of eCRS, namely, identical eCRS and distinct eCRS. To enable the proposed eCRS framework, we design a novel THz cooperative channel model by considering unique characteristics of THz communication. Through mathematical derivations and convex optimization techniques considering the THz cooperative channel model, we derive local optimal solutions for the two cases of eCRS and a global optimal closed form solution for a specific scenario. Finally, we propose a novel channel estimation technique that not only specifies the channel value, but also the time delay of the channel from each cooperating user equipment to fully utilize the THz cooperative channel. In simulation results, we verify the validity of the two cases of our proposed framework and channel estimation technique.
翻译:许多研究认为,Thahertz(Thz)通信将是第六代无线通信系统的一个基本部分,其潜力大有可为,但也面临重大挑战,特别是由于传播损失、硬件限制和阻塞性等原因,覆盖范围缩小。为了扩大Thz通信的覆盖面,我们重新研究合作通信。我们建议一种新的合作分率(CRS)类型,称为基于提取的CRS(eCRS)。此外,我们探索电子CRS的两个极端案例,即相同的eCRS和不同的eCRS。为了使拟议的eCRS框架成为可能,我们设计了一个新型的Thz合作频道模型,通过考虑Thz通信的独特特性,我们设计了一个新型的Thz合作频道模型。通过数学衍生和Convex优化技术,考虑到Thz合作频道模式,我们为两种ECRS案例和一种特定情景的全球最佳封闭形式解决方案找到地方最佳解决办法。最后,我们提出了一个新的频道估计技术,不仅说明频道的价值,而且说明每个合作用户设备的频道为充分利用Thz合作渠道而拖延的时间。在模拟结果中,我们核查了拟议框架和渠道的两个案例的有效性。