Research Article

Analysis of LiDAR system performance through analogy with FSO communication systems

Number: 061 June 30, 2025

Analysis of LiDAR system performance through analogy with FSO communication systems

Abstract

LiDAR (Light Detection and Ranging) systems are used in autonomous vehicle technology and environmental sensing applications. In this study, the performance of LiDAR systems is simulated by adapting it to a free space optical (FSO) communication system and analyzed using this approach. OptiSystem software was used in the simulation studies and different atmospheric conditions such as clear, rainy and extremely foggy weather conditions were considered. The performance of LiDAR systems under these conditions was evaluated; the effects of features on the backscattering ratios of the backscattered signals from the target surface and the effects of these outputs on system performance were evaluated. The results were analyzed to show that atmospheric conditions and target reflection rates affect the LiDAR system performance and that the received pulse quality is negatively affected by increasing the detection distance.

Keywords

References

  1. [1] F. Scotti et. al., "Dual use architecture for innovative lidar and free space optical communications," Applied Optics, vol. 56, no. 31, pp. 8811-8815, 2017, doi:10.1364/AO.56.008811.
  2. [2] Bouchet, Olivier, et al. Free-space optics: propagation and communication. Vol. 91. John Wiley & Sons, 2010.
  3. [3] S. Bloom, E. Korevaar, J. Schuster, and H. Willebrand, "Understanding the performance of free-space optics," Journal of Optical Networking, vol. 2, no. 6, pp. 178-200, June 2003.
  4. [4] Wahab, Fauzi Abdul, et al. "Multiple transmitters & receivers for free space optical communication link performance analysis." Journal of Telecommunication, Electronic and Computer Engineering (JTEC), vol.8, no.5, pp. 29-32, 2016, https://jtec.utem.edu.my/jtec/article/view/731.
  5. [5] Ghassemlooy, Zabih, Wasiu Popoola, and Sujan Rajbhandari. Optical wireless communications: system and channel modelling with Matlab®. CRC press, 2019.
  6. [6] X. Zhu and J. M. Kahn, "Free-space optical communication through atmospheric turbulence channels," IEEE Transactions on Communications, vol. 50, no. 8, pp. 1293-1300, 2002.
  7. [7] Wu, X., Liu, P. and Matsumoto, M., “A study on atmospheric turbulence effects in full-optical free space communication systems”, In 6th International Conference on Wireless Communications Networking and Mobile Computing (WiCOM), IEEE, 2010, pp. 1-5.
  8. [8] X. Yang, W. Chunyang and L. Xuelian. "Research on the Attenuation Characteristics of LiDAR Transmission Energy in Different Atmospheric Environments." Atmosphere, vol.16, no.2/210, 2025, doi:10.3390/atmos16020210

Details

Primary Language

English

Subjects

Optical Fibre Communication Systems and Technologies

Journal Section

Research Article

Publication Date

June 30, 2025

Submission Date

January 16, 2025

Acceptance Date

May 29, 2025

Published in Issue

Year 2025 Number: 061

APA
Kaya, B., & Altuncu, A. (2025). Analysis of LiDAR system performance through analogy with FSO communication systems. Journal of Scientific Reports-A, 061, 73-87. https://doi.org/10.59313/jsr-a.1621366
AMA
1.Kaya B, Altuncu A. Analysis of LiDAR system performance through analogy with FSO communication systems. JSR-A. 2025;(061):73-87. doi:10.59313/jsr-a.1621366
Chicago
Kaya, Bünyamin, and Ahmet Altuncu. 2025. “Analysis of LiDAR System Performance through Analogy With FSO Communication Systems”. Journal of Scientific Reports-A, nos. 061: 73-87. https://doi.org/10.59313/jsr-a.1621366.
EndNote
Kaya B, Altuncu A (June 1, 2025) Analysis of LiDAR system performance through analogy with FSO communication systems. Journal of Scientific Reports-A 061 73–87.
IEEE
[1]B. Kaya and A. Altuncu, “Analysis of LiDAR system performance through analogy with FSO communication systems”, JSR-A, no. 061, pp. 73–87, June 2025, doi: 10.59313/jsr-a.1621366.
ISNAD
Kaya, Bünyamin - Altuncu, Ahmet. “Analysis of LiDAR System Performance through Analogy With FSO Communication Systems”. Journal of Scientific Reports-A. 061 (June 1, 2025): 73-87. https://doi.org/10.59313/jsr-a.1621366.
JAMA
1.Kaya B, Altuncu A. Analysis of LiDAR system performance through analogy with FSO communication systems. JSR-A. 2025;:73–87.
MLA
Kaya, Bünyamin, and Ahmet Altuncu. “Analysis of LiDAR System Performance through Analogy With FSO Communication Systems”. Journal of Scientific Reports-A, no. 061, June 2025, pp. 73-87, doi:10.59313/jsr-a.1621366.
Vancouver
1.Bünyamin Kaya, Ahmet Altuncu. Analysis of LiDAR system performance through analogy with FSO communication systems. JSR-A. 2025 Jun. 1;(061):73-87. doi:10.59313/jsr-a.1621366