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Multilevel power converter
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Part 1 book "Power electronics - Devices, circuits, and applications" includes content: Introduction; power diodes and switched RLC circuits; diode rectifiers; power transistors; DC-DC converters; DC-AC converters; resonant pulse inverters; multilevel inverters, thyristors.
527p
muasambanhan06
03-02-2024
5
2
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In this paper, the control design for the grid-connected converter used as a part of the wind turbine generator is discussed. First, the three-phase T-type multilevel converter, which exhibits several advantages such as low total harmonic distortion, reduced voltage stress, and switching loss, is employed for the power stage. Second, finite control set model predictive control (FCS-MPC) is adopted to achieve a multi-objective optimization solution for the inner grid-connected current control loop.
8p
vibranson
30-11-2023
5
5
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In modern industrial and power electronics applications, high-voltage and high-current integrated modular power transistors (IGBTs) are increasingly being utilized. The F-type inverter, which is a modified version of the T-type inverter, has emerged as a promising option.
11p
viisac
15-09-2023
5
2
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The VIENNA converter is best known for using the fewest semiconductor devices. The purpose of this paper is to do a comparative analysis of the overall loss of the 5-level VIENNA converter, and to compare the fault tolerance of this converter with equivalent 5-level Stacked multicell converter (SMC).
10p
viwolverine
11-07-2023
6
3
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The Modular Multilevel Converter (MMC) is worldwide recognized as one of the most innovative converter topologies regarding renewable energy applications. The most significant features of using this configuration are less component count, less switching losses, and improved output voltage/current waveform.
4p
vistephenhawking
26-04-2022
18
2
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This paper presents a new multilevel topology based on cascaded hybrid multi-level (HCS) inverter. There are different topologies for cascaded inverters for reducing the switches, power loss. The output voltage is increased and the number of switches is reduced with the HCS inverter. Due to this reduction in number of on-state switches, power loss and voltage drop is reduced. Simulation results for 11 level symmetric form of converter is described.
4p
phanngocminhtam
14-09-2021
10
1
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This study presents the application of a decentralized control structure of multilevel inverters using the level shift carrier pulse width modulation method (LSC-PWM) as the control algorithm. For the traditional control method, the carrier signal is provided by a central controller.
13p
trinhthamhodang1219
06-05-2021
16
3
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Introduction Multilevel Voltage Source Modulation Fundamental Multilevel Converter Topologies Diode-Clamped Multilevel Converters • Flying-Capacitor Multilevel Converters • Cascaded H-Bridge Multilevel Converters • Multilevel H-Bridge Converters 6.4 6.5 6.6 Cascaded Multilevel Converter Topologies Cascaded Multilevel Converters • Cascaded Multilevel H-Bridge Converters Multilevel Converter Laboratory Examples Three-Level Diode-Clamped Inverter • The Cascade-3/2 Inverter • The Cascade-5/3H Inverter Conclusion 6.
23p
daohuongthon
22-01-2010
98
20
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Power Electronic Circuits and Controls 2 DC-DC Converters Richard Wies, Bipin Satavalekar, Ashish Agrawal, Javad Mahdavi, Ali Agah, Ali Emadi, Daniel Jeffrey Shortt Overview • Choppers • Buck Converters • Boost Converters • Cúk Converter • Buck–Boost Converters 3 AC-AC Conversion Sándor Halász Introduction • Cycloconverters • Matrix Converters 4 Rectifiers Sam Guccione, Mahesh M.
31p
daohuongthon
22-01-2010
168
38
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