Haider, A.; Pigniczki, M.; Koyama, S.; Köhler, M.H.; Haas, L.; Fink, M.; Schardt, M.; Nagase, K.; Zeh, T.; Eryildirim, A.;
et al. A Methodology to Model the Rain and Fog Effect on the Performance of Automotive LiDAR Sensors. Sensors 2023, 23, 6891.
https://doi.org/10.3390/s23156891
AMA Style
Haider A, Pigniczki M, Koyama S, Köhler MH, Haas L, Fink M, Schardt M, Nagase K, Zeh T, Eryildirim A,
et al. A Methodology to Model the Rain and Fog Effect on the Performance of Automotive LiDAR Sensors. Sensors. 2023; 23(15):6891.
https://doi.org/10.3390/s23156891
Chicago/Turabian Style
Haider, Arsalan, Marcell Pigniczki, Shotaro Koyama, Michael H. Köhler, Lukas Haas, Maximilian Fink, Michael Schardt, Koji Nagase, Thomas Zeh, Abdulkadir Eryildirim,
and et al. 2023. "A Methodology to Model the Rain and Fog Effect on the Performance of Automotive LiDAR Sensors" Sensors 23, no. 15: 6891.
https://doi.org/10.3390/s23156891
APA Style
Haider, A., Pigniczki, M., Koyama, S., Köhler, M. H., Haas, L., Fink, M., Schardt, M., Nagase, K., Zeh, T., Eryildirim, A., Poguntke, T., Inoue, H., Jakobi, M., & Koch, A. W.
(2023). A Methodology to Model the Rain and Fog Effect on the Performance of Automotive LiDAR Sensors. Sensors, 23(15), 6891.
https://doi.org/10.3390/s23156891