Line-of-sight (LOS) wireless communication at terahertz (THz) frequency bands is envisioned to play a major role in defining next-generation wireless technologies. This work analyzes the performance of a potential LOS THz system experiencing propagation loss and misaligned antenna beams. The THz channel particularities are discussed in terms of deterministic path loss, molecular absorption effect and stochastic fading due to antenna pointing errors. Assuming phase shift keying (PSK) modulation schemes, simplified analytical expressions are approximated for computing symbol error rate (SER) of the proposed THz system. Monte Carlo simulations are applied to verify theoretical model accuracy over various transmission distances and misalignment scenarios. The derived SER formulas match simulation results for Signal-to-noise ratio (SNR) above 35 dB at transmission distance up to 100 m and antenna displacement jitter variance of 0.05 $m^2$. In general, the theoretical model mismatch does not exceed 2 dB for lower SNR levels.
翻译:设想Thahertz(Thz)频带的视线无线通信在界定下一代无线技术方面将发挥主要作用。这项工作分析潜在的LOS Thz系统在传播损失和天线波束错位方面的性能。Thz频道的特殊性在确定路径丢失、分子吸收效应和天线指点误差造成的烟雾消退方面进行了讨论。假设分阶段转换键盘(PSK)调制方案,对拟议的Thz系统的计算符号误差率(SER)将采用简化的分析表达法。Monte Carlo模拟法用于核查各种传输距离和不匹配情景的理论模型准确性。产生的SER公式在传输距离超过100米的信号对噪音比(SNR)超过35 dB的模拟结果与天线偏移加速差为0.05 0.002美元。一般来说,理论模型不匹配不超过2 dB的SNR水平。