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Sliding mode control of a boost-buck converter for AC signal tracking task.

, , , and . ISCAS (5), page 242-245. IEEE, (1999)

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Sliding mode control of a boost-buck converter for AC signal tracking task., , , and . ISCAS (5), page 242-245. IEEE, (1999)Sliding mode control of a m-phase DC/DC buck converter with chattering reduction and switching frequency regulation., , , and . VSS, page 290-295. IEEE, (2016)Restricted Boltzmann Machines for the Prediction of Trends in Financial Time Series., , , , and . IJCNN, page 1-8. IEEE, (2018)Sliding-mode control design of parallel-connected switching converters for modular transformerless DC-AC step-up conversion., , , , and . ISCAS (4), page 3067-3070. IEEE, (2005)Learning Data Representation and Emotion Assessment from Physiological Data., , , , , , and . ICASSP, page 3452-3456. IEEE, (2020)Design considerations in sliding-mode controlled parallel-connected inverters., , , and . ISCAS (4), page 357-360. IEEE, (2002)Interleaving Quasi-Sliding-Mode Control of Parallel-Connected Buck-Based Inverters., , , and . IEEE Trans. Ind. Electron., 55 (11): 3865-3873 (2008)FPGA-Based Implementation of an Adaptive Canceller for 50/60-Hz Interference in Electrocardiography., , , and . IEEE Trans. Instrumentation and Measurement, 56 (6): 2633-2640 (2007)A heuristic to schedule flexible job-shop in a glass factory., , , , and . Eur. J. Oper. Res., 165 (2): 525-534 (2005)Programmable logic device applied to the quasi-sliding control implementation based on zero averaged dynamics., , , and . CDC, page 1825-1830. IEEE, (2001)