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Resonant electromagnetic vibration harvesters applications: Optimization of P&O MPPT technique parameters., и . EVER, стр. 1-8. IEEE, (2018)Photovoltaic inverters with Perturb&Observe MPPT technique and one-cycle control., , , , , и . ISCAS, IEEE, (2006)Analysis of hard synchronous commutations in switching converters., , , и . ISCAS, стр. 251-254. IEEE, (2000)Train Suspension Energy Harvesting System Maximizing the Output DC Power., , , и . ISCAS, стр. 1-5. IEEE, (2020)Analysis of soft synchronous commutations in switching converters., , , и . ISCAS, стр. 268-271. IEEE, (2000)The ideal utilization factor: A tool to optimize the energetic performances of resonant electromagnetic vibration energy harvesters., и . EVER, стр. 1-7. IEEE, (2018)Simulation and laboratory characterization of a hybrid MPPT technique based on the fast estimate of the maximum power voltages in PV applications., , , , и . I2MTC, стр. 218-223. IEEE, (2013)Design and characterization of a HMPPT technique for PV applications., , , , , и . AMPS, стр. 162-167. IEEE, (2013)Nominal and tolerance design of closed-loop controllers for DC-DC voltage regulators., , , , , и . ISCAS (4), стр. 747-750. IEEE, (2002)Tolerance design of DC-DC switching regulators., , и . ISCAS (4), стр. 751-754. IEEE, (2002)