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2021 | OriginalPaper | Buchkapitel

Performance Enhancement of MIMO Configurations in FSO System Under Different Weather Conditions

verfasst von : Arjun Dubey, Harmeet Singh

Erschienen in: Recent Innovations in Computing

Verlag: Springer Singapore

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Abstract

Free-space optics (FSO) is an optical wireless communication technique in which free space (air, outer space or vacuum) acts as a medium between transceivers, and for the effective transmission of the optical signal, line of sight (LOS) is necessary between the transceivers. FSO works as same as in optical fiber communication but in this optical beam propagates over free space rather than cores of fiber. FSO communication is also known as terahertz communication and optical wireless communication (OWC). Weather condition (clear air, haze and fog) is one of the main impairments affecting free-space optical communication. In this simulation model under different weather conditions such as clear air, haze and fog, the two systems MIMO-FSO (4 × 4) and MIMO-FSO (8 × 8) have been analyzed. Free-space optics emerged as one of the various merits over the radio spectrum. FSO can achieve high capacity with huge unlicensed optical spectrum and less operational costs and the MIMO technique in wireless communication systems is widely used because it provides huge data throughput and increased link range without the addition of neither bandwidth nor transmitted power. To bring out results under different weather conditions (clear air, haze and fog), simulation model has been analyzed for an array of 1 km at the frequency of 193.1 GHz. The parameters of the MIMO-FSO system, i.e., Q-factor and BER, have been analyzed for MIMO-FSO (4 × 4) and MIMO-FSO (8 × 8). In this, we analyze the difference between the two MIMO-FSO (4 × 4) and MIMO-FSO (8 × 8) system and this shows that 8 × 8 MIMO-FSO has better performance to the 4 × 4 MIMO-FSO system in different weather conditions.

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Literatur
1.
Zurück zum Zitat Khalighi, M.A., Uysal, M.: Survey on free space optical communication: a communication theory perspective. IEEE Commun. Surv. Tutorials 16(4), 2231–2258, 4th Quart. (2014) Khalighi, M.A., Uysal, M.: Survey on free space optical communication: a communication theory perspective. IEEE Commun. Surv. Tutorials 16(4), 2231–2258, 4th Quart. (2014)
2.
Zurück zum Zitat Sarkar, S., Janyani, V., Singh, G., Ismail, T., Selmy, H.A.: Design of 64 QAM transceiver model and its performance analysis for FSO communication (2018) Sarkar, S., Janyani, V., Singh, G., Ismail, T., Selmy, H.A.: Design of 64 QAM transceiver model and its performance analysis for FSO communication (2018)
6.
Zurück zum Zitat Esmail, M.A., Fathallah, H., Alouini, M.S.: Channel modeling and performance evaluation of FSO communication systems in fog. In: Proceedings of 23rd International Conference on Telecommunications (ICT), IEEE, Thessaloniki, Greece (2016) Esmail, M.A., Fathallah, H., Alouini, M.S.: Channel modeling and performance evaluation of FSO communication systems in fog. In: Proceedings of 23rd International Conference on Telecommunications (ICT), IEEE, Thessaloniki, Greece (2016)
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Zurück zum Zitat Kaushal, H., Kaddoum, G., Jain, V.K., Kar, S.: Experimental investigation of optimum beam size for FSO uplink. Opt. Commun. 400, 106–114 (2017) Kaushal, H., Kaddoum, G., Jain, V.K., Kar, S.: Experimental investigation of optimum beam size for FSO uplink. Opt. Commun. 400, 106–114 (2017)
11.
Zurück zum Zitat Mahajan, S., Prakash, D., Singh, H.: Analysis of free space optical system under 4-channel spectrum slicing wavelength division multiplexing (SS-WDM). In: Proceedings of the Third International Conference on Advanced Informatics for Computing Research, p. 20. ACM (2019) Mahajan, S., Prakash, D., Singh, H.: Analysis of free space optical system under 4-channel spectrum slicing wavelength division multiplexing (SS-WDM). In: Proceedings of the Third International Conference on Advanced Informatics for Computing Research, p. 20. ACM (2019)
13.
Zurück zum Zitat Mahajan, S., Parkash, D., Singh, H.: Design and investigation of multiple TX/RX FSO systems under different weather conditions. In: Proceedings of ICRIC 2019, 2020, pp. 377–388. Springer, Cham (2019) Mahajan, S., Parkash, D., Singh, H.: Design and investigation of multiple TX/RX FSO systems under different weather conditions. In: Proceedings of ICRIC 2019, 2020, pp. 377–388. Springer, Cham (2019)
Metadaten
Titel
Performance Enhancement of MIMO Configurations in FSO System Under Different Weather Conditions
verfasst von
Arjun Dubey
Harmeet Singh
Copyright-Jahr
2021
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-15-8297-4_7

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