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Ultra-broadband Chirp Spread Spectrum Communication in the Terahertz Band

机译:太赫兹频段的超宽带线性调频扩频通信

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Terahertz (THz) band (0.1-10 THz) communication is envisioned as a key wireless technology to support faster and denser wireless networks. However, absorption by water vapor molecules splits the THz band into multiple transmission windows, each tens to hundreds of Gigahertz (GHz) wide. Because of the broadening of the absorption lines, the available bandwidth within each transmission window changes drastically with distance. As a result, a large portion of the bandwidth close to the absorption lines is considered not practical for communications or, in the best case, practical only for short-range applications. In this paper, chirp spread spectrum communication is proposed as a way to enable ultra-broadband communication links spanning across absorption lines in -the THz band. More specifically, first, the performance of Chirp-Spread Binary Phase Shift Keying (CS-BPSK) is analytically derived and compared to that of Binary Chirp Spread Spectrum (BCSS) as well as non-spread Binary Phase Shift Keying (BPSK). Extensive numerical results based on an analytical channel model of the THz band are provided to illustrate the performance of the proposed scheme. Finally, experimental results above conducted in the first absorption-defined window above 1 THz are provided, validating the original hypothesis and highlighting the opportunities and challenges in communication across absorption lines at THz frequencies.
机译:太赫兹(THz)频带(0.1-10 THz)通信被设想为支持更快,更密集的无线网络的关键无线技术。然而,水蒸气分子的吸收将THz频段分成多个传输窗口,每个传输窗口的宽度为几十到几百兆赫兹(GHz)。由于吸收线的加宽,每个传输窗口内的可用带宽随距离而急剧变化。结果,接近吸收线的带宽的很大一部分被认为对于通信是不实际的,或者在最佳情况下,仅对于短距离应用才是实际的。在本文中,提出了线性调频扩频通信,作为实现跨越THz频带内吸收线的超宽带通信链路的一种方法。更具体地说,首先,通过分析得出线性调频扩频二进制相移键控(CS-BPSK)的性能,并将其与二进制线性调频扩频(BCSS)和非扩展二进制相移键控(BPSK)的性能进行比较。提供了基于THz频带分析通道模型的大量数值结果,以说明所提出方案的性能。最后,提供了以上在1 THz以上的第一个吸收定义窗口中进行的实验结果,验证了原始假设并突出了跨THz频率的吸收线进行通信的机会和挑战。

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