2015 International Conference on Electrical, Electronics, Signals, Communication and Optimization (EESCO) 2015
DOI: 10.1109/eesco.2015.7253683
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Closed loop control of soft switched KY step up converter

Abstract: This paper presents a novel voltage gain enhanced KY step up converter with soft switching. A KY converter is a voltage step up converter which always operates in continuous conduction mode. To further improve the voltage gain a coupled inductor can be employed. Soft switching is applied for reducing the switching losses and it improves the efficiency of the converter. Simulation is done with 12V input voltage. The obtained output voltage is 72V, output current is 0.8A, and output power is 60W.

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Cited by 2 publications
(2 citation statements)
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“…The various steps to choosing the right TEG for a specific resistive burden are obliged by switching to the near-most special power. Amusements are required to have a specific resistive weight whose output potential is overseen and controlled using a KY Converter for a TEG input [35]. Jose Anjaly et al developed a closedloop control of the soft-switched KY step-up converter, which is used to increase the voltage obtained when a fixed inductor is taken.…”
Section: Various Techniques Of Ky Converter Voltage Boostingmentioning
confidence: 99%
“…The various steps to choosing the right TEG for a specific resistive burden are obliged by switching to the near-most special power. Amusements are required to have a specific resistive weight whose output potential is overseen and controlled using a KY Converter for a TEG input [35]. Jose Anjaly et al developed a closedloop control of the soft-switched KY step-up converter, which is used to increase the voltage obtained when a fixed inductor is taken.…”
Section: Various Techniques Of Ky Converter Voltage Boostingmentioning
confidence: 99%
“…Due to the high bandwidth of KY converter and response speed, [3] proposed the other type of KY converter. [4] can achieve higher voltage gain. [5] presents a buck-boost KY converter with the combination of inductor and capacitor circuit.…”
Section: Introductionmentioning
confidence: 99%