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Improving Temperature Tracking Control for Solar Collector Fields Based on Reference Feedforward.

, , , , , and . IEEE Trans. Control. Syst. Technol., 31 (6): 2596-2607 (November 2023)

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An IoT Architecture for Water Resource Management in Agroindustrial Environments: A Case Study in Almería (Spain)., , , , and . Sensors, 20 (3): 596 (2020)Robust Nonlinear Predictive Control Applied to a Solar Collector Field in a Solar Desalination Plant., , , , and . IEEE Trans. Control. Syst. Technol., 18 (6): 1430-1439 (2010)Optimal operation of a Solar Membrane Distillation pilot plant via Nonlinear Model Predictive Control., , , , and . Comput. Chem. Eng., (2018)Control strategies applied in the HYSOL demonstrator: A simulation-based evaluation., , , , and . MED, page 991-995. IEEE, (2016)Solar membrane distillation: A control perspective., , , , and . MED, page 796-802. IEEE, (2015)Multivariable controller for stationary flat plate solar collectors*., , , , and . ICSC, page 7-12. IEEE, (2018)Using a Nonlinear Model Predictive Control strategy for the efficient operation of a solar-powered membrane distillation system., , , , , and . MED, page 1189-1194. IEEE, (2017)Improving Temperature Tracking Control for Solar Collector Fields Based on Reference Feedforward., , , , , and . IEEE Trans. Control. Syst. Technol., 31 (6): 2596-2607 (November 2023)Economic optimal control applied to a solar seawater desalination plant., , and . Comput. Chem. Eng., (2014)An IoT based Control System for a Solar Membrane Distillation Plant used for Greenhouse Irrigation., , , , and . GIoTS, page 1-6. IEEE, (2019)