Laser based Optical Wireless Communication using Log Normal Distribution and SIM BPSK Modulation

Main Article Content

Vijayashri V Belgaonkar
R. Sundaraguru

Abstract

Laser based Optical Wireless Communication(OWC) is emerging as one of the key advancements for the 5G and beyond technologies. This technology provides high bandwidth, extremely high data rate and high speed communication due to the use of optical waves for data transmission in the field of wireless communication. The system performance is limited due to the presence of turbulence in the atmosphere.We have developed system model using log normal channel distribution in the weak to moderate atmospheric turbulence. Closed form of expression is derived which provides the channel capacity in the presence of weak turbulence using log normal distribution. Subcarrier Internsity Modulation (SIM) BPSK modulation  technique is used in OWC system which  provides bettter performance in terms of received BER as compared to NRZ – OOK modulation.

Article Details

How to Cite
Belgaonkar, V. V. ., & Sundaraguru, R. . (2023). Laser based Optical Wireless Communication using Log Normal Distribution and SIM BPSK Modulation. International Journal on Recent and Innovation Trends in Computing and Communication, 11(9), 207–214. https://doi.org/10.17762/ijritcc.v11i9.8336
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References

A. N. Khan, S. Saeed, Y. Naeem, M. Zubair, Y. Massoud and U. Younis, "Atmospheric Turbulence and Fog Attenuation Effects in Controlled Environment FSO Communication Links," in IEEE Photonics Technology Letters, vol. 34, no. 24, pp. 1341-1344, 15 Dec.15, 2022, doi: 10.1109/LPT.2022.3217072.

X. Yu et al., "Atmospheric Turbulence Suppression Algorithm Based on APD Adaptive Gain Control for FSO Links of 5G Floating Base Stations," in IEEE Photonics Journal, vol. 12, no. 4, pp. 1-11, Aug. 2020, Art no. 7904011, doi: 10.1109/JPHOT.2020.3006511.

V. V. Belgaonkar, R. Sundaraguru, J. U. Kumar Reddy, B. Mohan, K. U. Shridhar and A. Gandham, "Weak to strong atmospheric turbulence analysis in Free Space Optical Communication and mitigation using M-ary QAM," 2020 IEEE International Conference on Electronics, Computing and Communication Technologies (CONECCT), Bangalore, India, 2020, pp. 1-6, doi: 10.1109/CONECCT50063.2020.9198360.

S. A. Al-Gailani et al., "A Survey of Free Space Optics (FSO) Communication Systems, Links, and Networks," in IEEE Access, vol. 9, pp. 7353-7373, 2021, doi: 10.1109/ACCESS.2020.3048049.

M. A. Esmail, A. Ragheb, H. Fathallah and M. -S. Alouini, "Investigation and Demonstration of High Speed Full-Optical Hybrid FSO/Fiber Communication System Under Light Sand Storm Condition," in IEEE Photonics Journal, vol. 9, no. 1, pp. 1-12, Feb. 2017, Art no. 7900612, doi: 10.1109/JPHOT.2016.2641741.

M. A. Esmail, A. M. Ragheb, H. A. Fathallah, M. Altamimi and S. A. Alshebeili, "5G-28 GHz Signal Transmission Over Hybrid All-Optical FSO/RF Link in Dusty Weather Conditions," in IEEE Access, vol. 7, pp. 24404-24410, 2019, doi: 10.1109/ACCESS.2019.2900000.

S. Shah, M. Siddharth, N. Vishwakarma, R. Swaminathan and A. S. Madhukumar, "Adaptive-Combining-Based Hybrid FSO/RF Satellite Communication With and Without HAPS," in IEEE Access, vol. 9, pp. 81492-81511, 2021, doi: 10.1109/ACCESS.2021.3086024.

S. Sharma, A. S. Madhukumar and R. Swaminathan, "Effect of Pointing Errors on the Performance of Hybrid FSO/RF Networks," in IEEE Access, vol. 7, pp. 131418-131434, 2019, doi: 10.1109/ACCESS.2019.2940630.

W. M. R. Shakir, "Performance Evaluation of a Selection Combining Scheme for the Hybrid FSO/RF System," in IEEE Photonics Journal, vol. 10, no. 1, pp. 1-10, Feb. 2018, Art no. 7901110, doi: 10.1109/JPHOT.2017.2771411.

M. Ijaz, Z. Ghassemlooy, J. Pesek, O. Fiser, H. Le Minh and E. Bentley, "Modeling of Fog and Smoke Attenuation in Free Space Optical Communications Link Under Controlled Laboratory Conditions," in Journal of Lightwave Technology, vol. 31, no. 11, pp. 1720-1726, June1, 2013, doi: 10.1109/JLT.2013.2257683.

Verma, D. N. . (2022). Access Control-Based Cloud Storage Using Role-Fully Homomorphic Encryption Scheme. Research Journal of Computer Systems and Engineering, 3(1), 78–83. Retrieved from https://technicaljournals.org/RJCSE/index.php/journal/article/view/46

B. Bag, A. Das, I. S. Ansari, A. Prokeš, C. Bose and A. Chandra, "Performance Analysis of Hybrid FSO Systems Using FSO/RF-FSO Link Adaptation," in IEEE Photonics Journal, vol. 10, no. 3, pp. 1-17, June 2018, Art no. 7904417, doi: 10.1109/JPHOT.2018.2837356.

V. V. Belgaonkar and R. Sundaraguru, "Performance Evaluation of OWC System in different weather conditions using Wavelength and Spatial Diversity," 2022 IEEE International Conference on Electronics, Computing and Communication Technologies (CONECCT), Bangalore, India, 2022, pp. 1-6, doi: 10.1109/CONECCT55679.2022.9865848..

M. A. Esmail, H. Fathallah and M. -S. Alouini, "Outdoor FSO Communications Under Fog: Attenuation Modeling and Performance Evaluation," in IEEE Photonics Journal, vol. 8, no. 4, pp. 1-22, Aug. 2016, Art no. 7905622, doi: 10.1109/JPHOT.2016.2592705.

S. Sharma, A. S. Madhukumar and R. Swaminathan, "Effect of Pointing Errors on the Performance of Hybrid FSO/RF Networks," in IEEE Access, vol. 7, pp. 131418-131434, 2019, doi: 10.1109/ACCESS.2019.2940630.

M. Ijaz, Z. Ghassemlooy, J. Perez, V. Brazda and O. Fiser, "Enhancing the Atmospheric Visibility and Fog Attenuation Using a Controlled FSO Channel," in IEEE Photonics Technology Letters, vol. 25, no. 13, pp. 1262-1265, July1, 2013, doi: 10.1109/LPT.2013.2264046.

R. Nebuloni and E. Verdugo, "FSO Path Loss Model Based on the Visibility," in IEEE Photonics Journal, vol. 14, no. 2, pp. 1-9, April 2022, Art no. 7318609, doi: 10.1109/JPHOT.2022.3152728.

I. Kalesnikau, M. Pióro, J. Rak, H. Ivanov, E. Fitzgerald and E. Leitgeb, "Enhancing Resilience of FSO Networks to Adverse Weather Conditions," in IEEE Access, vol. 9, pp. 123541-123565, 2021, doi: 10.1109/ACCESS.2021.3107243.

S. Hu, H. Liu, L. Zhao and X. Bian, "The Link Attenuation Model Based on Monte Carlo Simulation for Laser Transmission in Fog Channel," in IEEE Photonics Journal, vol. 12, no. 4, pp. 1-10, Aug. 2020, Art no. 6100910, doi: 10.1109/JPHOT.2020.3006853.

M. A. Esmail, H. Fathallah and M. -S. Alouini, "Outage Probability Analysis of FSO Links Over Foggy Channel," in IEEE Photonics Journal, vol. 9, no. 2, pp. 1-12, April 2017, Art no. 7902312, doi: 10.1109/JPHOT.2017.2672641.

P. Kaur, V. K. Jain and S. Kar, "Performance Analysis of FSO Array Receivers in Presence of Atmospheric Turbulence," in IEEE Photonics Technology Letters, vol. 26, no. 12, pp. 1165-1168, June15, 2014, doi: 10.1109/LPT.2014.2316534.

M. A. Esmail, H. Fathallah and M. -S. Alouini, "On the Performance of Optical Wireless Links Over Random Foggy Channels," in IEEE Access, vol. 5, pp. 2894-2903, 2017, doi: 10.1109/ACCESS.2017.2670682.

O. O. Kolawole, T. J. O. Afullo and M. Mosalaosi, "Terrestrial Free Space Optical Communication Systems Availability based on Meteorological Visibility Data for South Africa," in SAIEE Africa Research Journal, vol. 113, no. 1, pp. 20-36, March 2022, doi: 10.23919/SAIEE.2022.9695423.

Z. Rahman, S. M. Zafaruddin and V. K. Chaubey, "Performance of Opportunistic Receiver Beam Selection in Multiaperture OWC Systems Over Foggy Channels," in IEEE Systems Journal, vol. 14, no. 3, pp. 4036-4046, Sept. 2020, doi: 10.1109/JSYST.2019.2962580.