Results 21 to 30 of about 263,510 (245)
Extended Analysis of Non-Isolated Bidirectional High Gain Converter
This paper focuses on developing a non-isolated bidirectional high gain converter suited for EV charging. This converter has two ports with bidirectional features which functions in both buck and boost operation.
ANJANA, E., RAMAPRABHA, R.
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DESAIN DAN SIMULASI DC-DC SHUNT BUCK CONVERTER EFISIENSI TINGGI MENGGUNAKAN KONTROL LOGIKA FUZZY
The development of electronic component and circuit technology is able to produce a direct current voltage power supply system or more briefly DC (Direct Current), which is produced by converting the input voltage to the desired output voltage form (DC ...
Sofian Ichsan Muladi +2 more
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In this paper, a comparative analysis has been presented of two equivalent circuits of non-isolated buck/buck-boost converters under synchronous control, used in a stand-alone Photovoltaic-battery-load system.
Ehsan Jamshidpour +2 more
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Analysis of Non-minimum Phase in Buck-Boost Converter
In this paper, relations among the parameters of the non-minimum phase for the Buck-Boost converter are studied. It is demonstrated that when the Buck-Boost converter works in Buck mode, the negative regulation voltage is determined by the converter with
Huang Jinfeng, Liu Shulin
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Human Machine Interface Visual Basic Arduino untuk DC – DC converter Type Buck
Pada era teknologi yang semakin berkembang pesat, penggunaan elektronika daya semakin banyak digunakan seperti untuk penggontrolan motor dan lain – lain.
Mohammed Abdul Aziz Alhaqeem +1 more
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Analysis and simulation of automotive interleaved Buck Converter [PDF]
This paper will focus on modeling, analysis and simulation of a 42V/14V dc/dc converter based architecture. This architecture is considered to be technically a viable solution for automotive dual-voltage power system for passenger car in the near further.
Shrud, Mohamed A. +9 more
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Microcontroller based bidirectional buck–boost converter for photo-voltaic power plant
A common configuration for a stand-alone PV power system may consist of three converters: a buck converter for the PV panel to charge the battery, a boost converter for the battery to discharge to the load and one for the load voltage regulation.
Viswanatha V., Venkata Siva Reddy R.
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Buck Converter with Soft-Switching Cells for PV Panel Applications
In power conversion of photovoltaic (PV) energy, a hard-switching buck converter always generates some disadvantages. For example, serious electromagnetic interference (EMI), high switching losses, and stresses on an active switch (metal-oxide ...
Cheng-Tao Tsai, Wang-Min Chen
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A new approach to improve dynamic characteristics of digitally controlled buck-boost dc-dc converter [PDF]
This paper presents a new digital control buck-boost dc-dc converter with bias model to improve dynamic characteristics. The buck-boost converter needs to respond appropriately to changing input voltage and load change with wide input voltage.
Junya Sakemi +7 more
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Buck-boost converter Fed nine level cascaded H-bridge inverter [PDF]
This research investigates on simulation of a traditional cascaded H-bridge (CHB) five-level inverter and proposes a nine-level cascaded H-bridge inverter system. The performance of both five-level and nine-level inverter systems is evaluated by modeling
Babu, R. Samuel Rajesh +2 more
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