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A Weather-Dependent Hybrid RF/FSO Satellite Communication for Improved Power Efficiency
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O. B. Yahia Et Al. , "A Weather-Dependent Hybrid RF/FSO Satellite Communication for Improved Power Efficiency," IEEE WIRELESS COMMUNICATIONS LETTERS , vol.11, no.3, pp.573-577, 2022

Yahia, O. B. Et Al. 2022. A Weather-Dependent Hybrid RF/FSO Satellite Communication for Improved Power Efficiency. IEEE WIRELESS COMMUNICATIONS LETTERS , vol.11, no.3 , 573-577.

Yahia, O. B., ERDOĞAN, E., Karabulut Kurt, G. Z., Altunbaş, İ., & Yanikomeroglu, H., (2022). A Weather-Dependent Hybrid RF/FSO Satellite Communication for Improved Power Efficiency. IEEE WIRELESS COMMUNICATIONS LETTERS , vol.11, no.3, 573-577.

Yahia, Olfa Et Al. "A Weather-Dependent Hybrid RF/FSO Satellite Communication for Improved Power Efficiency," IEEE WIRELESS COMMUNICATIONS LETTERS , vol.11, no.3, 573-577, 2022

Yahia, Olfa B. Et Al. "A Weather-Dependent Hybrid RF/FSO Satellite Communication for Improved Power Efficiency." IEEE WIRELESS COMMUNICATIONS LETTERS , vol.11, no.3, pp.573-577, 2022

Yahia, O. B. Et Al. (2022) . "A Weather-Dependent Hybrid RF/FSO Satellite Communication for Improved Power Efficiency." IEEE WIRELESS COMMUNICATIONS LETTERS , vol.11, no.3, pp.573-577.

@article{article, author={Olfa Ben Yahia Et Al. }, title={A Weather-Dependent Hybrid RF/FSO Satellite Communication for Improved Power Efficiency}, journal={IEEE WIRELESS COMMUNICATIONS LETTERS}, year=2022, pages={573-577} }