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首頁 > 期刊 > 自然科學與工程技術 > 信息科技 > 無線電電子學 > 紅外與毫米波學報 > Orthogonal frequency division multiplexing for improving the performance of terahertz channel 【正文】

Orthogonal frequency division multiplexing for improving the performance of terahertz channel

M.Bharathi; A.Amsaveni; S.Sasikala Kumaraguru; College; of; Technology; Coimbatore; 641049; India
  • terahertz
  • communication
  • channel
  • modeling
  • los

摘要:Terahertz( THz) communication is considered to be one of the demanding technology for the upcoming 5G standards. The incredible demand for high rate through wireless channel necessitates the use of THz frequency for communication. The development of communication systems in this frequency band possess technical challenges as the characteristic of THz band is very different from the present wireless channel. However,the advancements in the development of transceiver and antenna systems are rapidly bringing the THz communication into reality. The high path loss in THz band limits the communication range of this channel. Even,for a distance of few meters( >5 m),the absorption coefficient is very high and hence the performance of the system is poor. Performance over this frequency channel can be enhanced by considering transmission windows over this band instead of the entire band. The transmission windows are the frequencies over which the absorption is relatively low. Though there is an improvement in the performance with this adaptive modulation scheme,but not sufficient for longer distance. Apart from path loss,the frequency selective nature of this high bandwidth channel is also a major reason for the poor performance of THz channel. Orthogonal Frequency Division Multiplexing( OFDM) is a promising solution to mitigate the effects of frequency selective nature of the wireless channel. OFDM has been exploited in this paper to improve the performance of terahertz channel. The results show that the Bit Error Rate( BER) of the terahertz channel is considerably improved with OFDM.

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紅外與毫米波學報

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主管單位:中國科學院;主辦單位:中國科學院上海技術物理研究所;中國光學學會

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