From post

A Nonlinear Recursive Model Based Optimal Transmission Scheduling in RF Energy Harvesting Wireless Communications.

, , , , и . IEEE Trans. Wirel. Commun., 19 (5): 3449-3462 (2020)

Please choose a person to relate this publication to

To differ between persons with the same name, the academic degree and the title of an important publication will be displayed.

 

Другие публикации лиц с тем же именем

Optimization of the Coil to Focalize the Electrical Field Induced by Magnetic Stimulation in the Human Brain, , , , и . 7th Asian-Pacific Conference on Medical and Biological Engineering, стр. 366--372. Springer, (2008)Aqua-Sim Next Generation: A NS-3 Based Simulator for Underwater Sensor Networks., , , , , , и . WUWNet, стр. 18:1-18:2. ACM, (2015)Dynamic control channel MAC for underwater cognitive acoustic networks., , , и . INFOCOM, стр. 1-9. IEEE, (2016)Harness Interference for Performance Improvement in Underwater Sensor Networks., , , и . IEEE Syst. J., 13 (1): 258-269 (2019)Optimal CPU Frequency Scaling Policies for Sustainable Edge Computing., , и . PIMRC, стр. 1291-1297. IEEE, (2021)Prediction-Based Spectrum Management in Cognitive Radio Networks., , , , и . IEEE Syst. J., 12 (4): 3303-3314 (2018)Comparing underwater MAC protocols in real sea experiments., , , , , , и . Comput. Commun., (2015)Challenges and Opportunities of Underwater Cognitive Acoustic Networks., , , , и . IEEE Trans. Emerg. Top. Comput., 2 (2): 198-211 (2014)Cognitive Acoustics: Making Underwater Communications Environment-friendly., , , , и . WUWNet, стр. 48:1-48:2. ACM, (2014)RISM: An efficient spectrum management system for underwater cognitive acoustic networks., , , , и . SECON, стр. 414-422. IEEE, (2014)