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Channel Characteristics Based on Ray Tracing Methods in Indoor Corridor at 300 GHz
Abstract:With the rapid development of communication technology, people's demand for ultra-high-speed wireless links becomes higher, among which terahertz spectra are considered as one of the most promising spectra. In this paper, we analyze the channel characteristics at 300 GHz in indoor corridor based on ray tracing methods, including the large-scale and small-scale fading parameters. Simulation results show that it is suitable for short distance transmission due to its large path loss(PL). Firstly, compared with line-of-sight(LoS), the correlation of frequency components in non-line-of-sight(NLoS) is much better, but LoS has more abundant circle angular spread(CAS). Then, a stochastic model is well derived to describe the distance-dependent behaviour of root-mean-square delay spread(RMS-DS) as well as root-mean-square CAS(RMS-CAS). Besides, we find that the channel capacity can effectively increase by increasing the transmitted power in both LoS and NLoS. Finally, it can be seen that the RMS-DS can be significantly reduced in LoS and the channel capacity can increase by changing the position of the transceivers. The simulation results will provide references for future indoor communication.
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