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ConSub: Incentive-Based Content Subscribing in Selfish Opportunistic Mobile Networks.

, , , , and . IEEE Journal on Selected Areas in Communications, 31 (9-Supplement): 669-679 (2013)

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MPC-based setpoint compensation with unreliable wireless communications and constrained operational conditions., , and . Neurocomputing, (2017)Performance-Based Adaptive Fuzzy Tracking Control for Networked Industrial Processes., , , , , and . IEEE Trans. Cybernetics, 46 (8): 1760-1770 (2016)Networked Multirate Output Feedback Control for Setpoints Compensation and Its Application to Rougher Flotation Process., , , , , and . IEEE Trans. Industrial Electronics, 61 (1): 460-468 (2014)Tracking Control for Linear Discrete-Time Networked Control Systems With Unknown Dynamics and Dropout., , , , and . IEEE Trans. Neural Netw. Learning Syst., 29 (10): 4607-4620 (2018)Integrated Network-Based Model Predictive Control for Setpoints Compensation in Industrial Processes., , , , and . IEEE Trans. Industrial Informatics, 9 (1): 417-426 (2013)Geocommunity-Based Broadcasting for Data Dissemination in Mobile Social Networks., , , , , and . IEEE Trans. Parallel Distrib. Syst., 24 (4): 734-743 (2013)Predicting temporal centrality in Opportunistic Mobile Social Networks based on social behavior of people., , , , and . Personal and Ubiquitous Computing, 20 (6): 885-897 (2016)ConSub: Incentive-Based Content Subscribing in Selfish Opportunistic Mobile Networks., , , , and . IEEE Journal on Selected Areas in Communications, 31 (9-Supplement): 669-679 (2013)Setpoint dynamic compensation via output feedback control with network induced time delays., , , and . ACC, page 5384-5389. IEEE, (2015)Compensation-Signal-Based Dual-Rate Operational Feedback Decoupling Control for Flotation Processes., , , and . IEEE Trans. Ind. Electron., 69 (8): 8306-8316 (2022)