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Implementation of buck-boost converter for reduction of conduction losses

In this paper, the output voltage of buck-boost converter is controlled by operating converter in continuous mode of operation using open loop and closed loop systems for voltage control is studied. Mobile charging to Aerospace power systems the applications of converters are increasing day by day....

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Main Authors: Sucharitha, P., Swarnalatha, E., Kumar, K. Sravan, Irfan, MD Mujahid
Format: Conference Proceeding
Language:English
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Swarnalatha, E.
Kumar, K. Sravan
Irfan, MD Mujahid
description In this paper, the output voltage of buck-boost converter is controlled by operating converter in continuous mode of operation using open loop and closed loop systems for voltage control is studied. Mobile charging to Aerospace power systems the applications of converters are increasing day by day. By using buck boost converter it combines the both the modes of Buck Converter and Boost Converter in single circuit of power supply mode switching. The response voltage is more or less than excitation voltage for DC-to-DC converter of buck-boost converter. The active switch present in the circuit acts like a MOSFET [6]. The switching operations like turned “ON” and “OFF” is done by a Pulse Width Modulation controller pi with an LCD .The LCD displays the object moment, then we easily track the object.
doi_str_mv 10.1063/5.0081810
format conference_proceeding
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source American Institute of Physics:Jisc Collections:Transitional Journals Agreement 2021-23 (Reading list)
subjects Buck converters
Circuits
Closed loops
Conduction losses
Electric potential
Electric power supplies
Electric power systems
Feedback control
MOSFETs
Pulse duration modulation
Switching
Voltage
Voltage converters (DC to DC)
title Implementation of buck-boost converter for reduction of conduction losses
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