The non-terrestrial networks (NTNs) are recognized as a key component to provide cost-effective and high-capacity ubiquitous connectivity in the future wireless communications. In this paper, we investigate the secure transmission in a terahertz (THz)-empowered reconfigurable intelligent surface (RIS)-assisted NTN (T-RANTN), which is composed of a low-Earth orbit satellite transmitter, an RIS-installed high-altitude platform (HAP) and two unmanned aerial vehicle (UAV) receivers, only one of which is trustworthy. An approximate ergodic secrecy rate (ESR) expression is derived when the atmosphere turbulence and pointing error due to the characteristics of THz as well as the phase errors resulting from finite precision of RIS and imperfect channel estimation are taken into account simultaneously. Furthermore, according to the statistical and perfect channel state information of the untrustworthy receiver, we optimize the phase shifts of RIS to maximize the lower bound of secrecy rate (SR) and instantaneous SR, respectively, by using semidefinite relaxation method. Simulation results show that both the approximate expression for the ESR and the optimization algorithms are serviceable, and even when the jitter standard variance of the trustworthy receiver is greater than that of the untrustworthy one, a positive SR can still be guaranteed.
翻译:非地球网络(NTN)被认为是在未来无线通信中提供成本效益高且能力强的无线通信连接的一个关键组成部分。在本文件中,我们调查了由低地轨道卫星发射机、安装RIS高空平台和两台无人驾驶航空飞行器接收器组成的NTN(T-RANTN),只有其中一台是可信赖的。当由于THZ的特性造成的大气动荡和指向错误以及由于TRIS的有限精确度和不完善的频道估计而导致的阶段错误被同时考虑在内时,即可得出一种近似异端保密率的表达方式。此外,根据不可靠的接收器的统计和完美频道状态信息,我们仍然优化了RIS的阶段转移,以最大限度地降低保密率(SR)和即时空飞行器(UAV)的下限,同时使用半确定性放松方法。在大气层动荡和指向因THZ的特性以及由于TRIS的有限性和不完善的频道估计而导致的阶段错误同时被同时考虑在内。我们仍然优化了RIS的阶段性转移,通过使用半定式的放松法和瞬时,可以使SR的一种最可靠的服务最可靠地表现。