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Synthesis of a sliding loss-free resistor based on a semi-bridgeless boost rectifier for power factor correction applications.

, , , and . IECON, page 1343-1348. IEEE, (2013)

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Design of an LFR based on a SEPIC converter under sliding mode control for HBLEDs applications., , , and . ISCAS, page 2901-2904. IEEE, (2011)Stability issues in cascade connected switching converters for DC microgrid applications., , , and . ISCAS, page 1324-1327. IEEE, (2013)Modelling and Control of Modular DC-Nanogrids Based on Loss-Free Resistors., , , , , and . IEEE Access, (2020)Two-Loop Digital Sliding Mode Control of DC-DC Power Converters Based on Predictive Interpolation., , , and . IEEE Trans. Ind. Electron., 58 (6): 2491-2501 (2011)Effects of non-ideal current sensing on subharmonic oscillation boundary in DC-DC switching converters under CMC., , , and . IECON, page 8367-8372. IEEE, (2013)Synthesis of a sliding loss-free resistor based on a semi-bridgeless boost rectifier for power factor correction applications., , , and . IECON, page 1343-1348. IEEE, (2013)A novel control strategy to improve the power factor of a Ćuk converter for HBLEDs application., , , , and . IECON, page 1950-1955. IEEE, (2013)Sliding-mode approach for start-up control and voltage regulation of a boost converter driving a constant power load., , and . ISCAS, page 1-4. IEEE, (2017)Piecewise PWM-sliding global control of a boost switching regulator by means of first-order Takagi-Sugeno fuzzy control., , , , and . ISCAS (3), page 715-718. IEEE, (2001)Investigating stability and bifurcations of a boost PFC circuit under peak current mode control., , , and . ISCAS (3), page 2835-2838. IEEE, (2005)