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This paper proposes a novel soft switching isolated dc to dc converter.
Stability of the designed soft switching process is analysed and sufficient stabilization conditions are derived.
The soft switching concepts were examined based on wastewater system in Kartuzy, Poland.
The stability of the designed soft switching process is analysed and sufficient conditions for stability are derived.
In the present paper, an MPPT with soft switching boost converter is designed, simulated and experimentally tested.
It became clear that soft switching converters perform satisfactorily at high frequencies in reducing switching losses, decreasing the inductor and capacitor size, and increasing efficiency.
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Simulations and comparisons with soft-switching method, hard-switching method and MLD method, confirm that a satisfactory performance can be obtained using the presented approach.
All semiconductor components operate under soft-switching, safe from any additional voltage and current stresses.
The presented results confirm the soft-switching operation of the converter.
In addition, ZVS soft-switching operation for all active switches is realized to minimize the switching losses.
Switching power circuits, such as power DC/DC converters, power PWM DC/AC inverters, soft-switching converters, resonant rectifiers and soft-switching AC/AC matrix converters, have pumping-filtering process, resonant process, and/or voltage-lift operation.
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