Li, H.; Mao, K.; Ye, X.; Zhang, T.; Zhu, Q.; Wang, M.; Ge, Y.; Li, H.; Ali, F.
Air-to-Ground Path Loss Model at 3.6 GHz under Agricultural Scenarios Based on Measurements and Artificial Neural Networks. Drones 2023, 7, 701.
https://doi.org/10.3390/drones7120701
AMA Style
Li H, Mao K, Ye X, Zhang T, Zhu Q, Wang M, Ge Y, Li H, Ali F.
Air-to-Ground Path Loss Model at 3.6 GHz under Agricultural Scenarios Based on Measurements and Artificial Neural Networks. Drones. 2023; 7(12):701.
https://doi.org/10.3390/drones7120701
Chicago/Turabian Style
Li, Hanpeng, Kai Mao, Xuchao Ye, Taotao Zhang, Qiuming Zhu, Manxi Wang, Yurao Ge, Hangang Li, and Farman Ali.
2023. "Air-to-Ground Path Loss Model at 3.6 GHz under Agricultural Scenarios Based on Measurements and Artificial Neural Networks" Drones 7, no. 12: 701.
https://doi.org/10.3390/drones7120701
APA Style
Li, H., Mao, K., Ye, X., Zhang, T., Zhu, Q., Wang, M., Ge, Y., Li, H., & Ali, F.
(2023). Air-to-Ground Path Loss Model at 3.6 GHz under Agricultural Scenarios Based on Measurements and Artificial Neural Networks. Drones, 7(12), 701.
https://doi.org/10.3390/drones7120701