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Real-time and decision taking selection of single-particles during automated cryo-EM sessions based on neuro-fuzzy method.

, , , , , , and . Expert Syst. Appl., (2016)

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Design and implementation of an easy-to-use automated system to build Beowulf parallel computing clusters., , , and . ICAT, page 1-6. IEEE, (2009)A control technique for hybrid floating offshore wind turbines using oscillating water columns for generated power fluctuation reduction., , , and . J. Comput. Des. Eng., 10 (1): 250-265 (January 2023)A Comparative Analysis of Self-Rectifying Turbines for the Mutriku Oscillating Water Column Energy Plant., , , and . Complex., (2019)Fuzzy inference system as decision-maker to automate cryo-EM data acquisition on a transmission electron microscope., , , , and . CIVEMSA, page 1-6. IEEE, (2015)A Control Approach on Hybrid Floating Offshore Wind Turbines for Platform and Generated Power Oscillations Reduction at Below-rated Wind Speed., , , , and . SOCO, volume 531 of Lecture Notes in Networks and Systems, page 505-514. Springer, (2022)Enhancing Stability and Performance of Hybrid Offshore Wind Platforms: A Novel Fuzzy Logic Control Approach with Computational Machine Learning., , , , and . ICCMA, page 346-351. IEEE, (2023)Real-time and decision taking selection of single-particles during automated cryo-EM sessions based on neuro-fuzzy method., , , , , , and . Expert Syst. Appl., (2016)Symmetry-Breaking for Airflow Control Optimization of an Oscillating-Water-Column System., , and . Symmetry, 12 (6): 895 (2020)Flow Control in Wells Turbines for Harnessing Maximum Wave Power., , , , and . Sensors, 18 (2): 535 (2018)Rotational Speed Optimization in Oscillating Water Column Wave Power Plants Based on Maximum Power Point Tracking., , and . IEEE Trans Autom. Sci. Eng., 14 (2): 681-691 (2017)