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DC-AC power converters (võtmesõna)
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autor kahanevalt
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1
artikkel kogumikus
Analysis of oscillation suppression methods in the AC-AC stage of high frequency link converters
Korkh, Oleksandr
;
Blinov, Andrei
;
Vinnikov, Dmitri
2019 IEEE 60th International Scientific Conference on Power and Electrical Engineering of Riga Technical University (RTUCON), 7-9 October 2019 : conference proceedings
2019
/
5 p. : ill
https://doi.org/10.1109/RTUCON48111.2019.8982259
artikkel kogumikus
2
artikkel kogumikus
Characterisation of 1200 V reverse-blocking IGBTs for naturally commutated HF-link inverter
Zinchenko, Denys
;
Korkh, Oleksandr
;
Blinov, Andrei
;
Waind, Peter
;
Vinnikov, Dmitri
2019 IEEE 2nd Ukraine Conference on Electrical and Computer Engineering : UKRCON-2019 : conference proceedings
2019
/
p. 382-387 : ill
https://doi.org/10.1109/UKRCON.2019.8879900
artikkel kogumikus
3
artikkel ajakirjas EST
/
artikkel ajakirjas ENG
Comparative evaluation of common-ground converters for dual-purpose application
Hemmati Shahsavar, Tala
;
Rahimpour, Saeed
;
Vosoughi Kurdkandi, Naser
;
Fesenko, Artem
;
Matiushkin, Oleksandr
;
Husev, Oleksandr
;
Vinnikov, Dmitri
Energies
2023
/
art. 2977
https://doi.org/10.3390/en16072977
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artikkel ajakirjas EST
/
artikkel ajakirjas ENG
Seotud publikatsioonid
1
Common-ground energy router structure with enhanced reliability and protection = Ühise nulljuhtmega suurendatud töökindluse ja kaitsega energiaruuter
4
artikkel kogumikus
Comparison of soft switching methods of DC-AC full bridge high-frequency link converter
Korkh, Oleksandr
;
Blinov, Andrei
;
Kosenko, Roman
;
Vinnikov, Dmitri
59th Annual International Scientific Conference on Power and Electrical Engineering : November 12, 13, 2018, Riga Technical University (RTUCON) : conference proceedings
2018
/
6 p. : ill
https://doi.org/10.1109/RTUCON.2018.8659898
artikkel kogumikus
5
artikkel ajakirjas EST
/
artikkel ajakirjas ENG
Comprehensive comparative analysis of impedance-source networks for DC and AC application
Husev, Oleksandr
;
Shults, Tatiana
;
Vinnikov, Dmitri
;
Chub, Andrii
Electronics
2019
/
21 p. : ill
https://doi.org/10.3390/electronics8040405
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artikkel ajakirjas EST
/
artikkel ajakirjas ENG
6
artikkel ajakirjas EST
/
artikkel ajakirjas ENG
High gain DC-AC high-frequency link inverter with improved quasi-resonant modulation
Blinov, Andrei
;
Korkh, Oleksandr
;
Chub, Andrii
;
Vinnikov, Dmitri
;
Peftitsis, Dimosthenis
;
Norrga, Staffan
;
Galkin, Ilja
IEEE transactions on industrial electronics
2022
/
p. 1465-1476 : ill
https://doi.org/10.1109/TIE.2021.3060657
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artikkel ajakirjas EST
/
artikkel ajakirjas ENG
7
artikkel ajakirjas
On the design process of a 6-kVA quasi-Z-inverter employing SiC power devices
Zdanowski, Mariusz
;
Peftitsis, Dimosthenis
;
Piasecki, Szymon
;
Rabkowski, Jacek
IEEE transactions on power electronics
2016
/
p. 7499-7508 : ill
https://doi.org/10.1109/TPEL.2016.2527100
artikkel ajakirjas
8
artikkel kogumikus
Overview of bidirectional unfolding converters for battery energy storage systems
Bubovich, Alexander
;
Vorobyov, Maxim
;
Galkin, Ilja
;
Blinov, Andrei
;
Giannakis, Andreas
2022 IEEE 13th International Symposium on Power Electronics for Distributed Generation Systems (PEDG)
2022
/
7 p
https://doi.org/10.1109/PEDG54999.2022.9923093
artikkel kogumikus
9
artikkel kogumikus
Peculiarities of multilevel power electronic converters for interfacing battery energy storages with AC loads
Bubovich, Alexander
;
Vorobyov, Maxim
;
Blinov, Andrei
;
Peftitsis, Dimosthenis
IEEE 8th Workshop on Advances in Information, Electronic and Electrical Engineering (AIEEE)
2021
/
p. 1-4
https://doi.org/10.1109/AIEEE51419.2021.9435798
artikkel kogumikus
10
artikkel ajakirjas EST
/
artikkel ajakirjas ENG
qZS inverter as synchronverter in small-scale micro-grid
Zakis, Janis
;
Makovenko, Elena
;
Zeng, Hao
;
Husev, Oleksandr
;
Kütt, Lauri
Elektronika ir elektrotechnika = Electronics and electrical engineering
2018
/
p. 58-62 : ill
https://doi.org/10.5755/j01.eie.24.2.20636
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artikkel ajakirjas EST
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artikkel ajakirjas ENG
Kirjeid leitud 10, kuvan
1 - 10
võtmesõna
188
1.
DC-AC power converters
2.
AC-DC power converters
3.
dual-purpose dc-dc/ac power converter
4.
DC/DC power converters
5.
DC-DC power converters
6.
DC–DC power converters
7.
bidirectional ac-dc converters
8.
DC-AC converters
9.
single-stage isolated ac-dc converters
10.
AC power converters
11.
AC/DC power converter
12.
ac-dc power conversion
13.
AC-DC power converter
14.
DC-AC power conversion
15.
dc-dc/ac converter
16.
current-fed dc-dc converters
17.
DC/DC converters
18.
dc–dc converters
19.
DC-DC converters
20.
isolated buck-boost dc-dc converters (IBBCs)
21.
isolated dc-dc converters
22.
AC‐AC power convertors
23.
DC/DC power conversion
24.
DC-DC power conversion
25.
DC‐DC power conversion
26.
DC-DC power converter
27.
DC-DC power convertors
28.
DC‐DC power convertors
29.
galvanically isolated DC-DC power converter
30.
ac/dc conversion
31.
ac-dc applications
32.
AC-DC conversion
33.
AC-DC converter
34.
ac-dc hybrid house
35.
AC-DC rectifier
36.
bidirectional dc-ac converter
37.
DC/AC converter
38.
DC-AC conversion
39.
DC-AC converter
40.
DC–AC converter
41.
dc-ac inverter
42.
DC-AC inverters
43.
high frequency link DC-AC converter
44.
hybrid AC/DC microgrids
45.
metal stirring combined DC and AC supply
46.
single-stage AC-DC converter
47.
three-phase dc-ac converter
48.
grid-forming power converters
49.
high voltage power converters
50.
isolated power converters
51.
partial power converters
52.
power converters
53.
power converters design
54.
power converters for EV
55.
power electronic converters
56.
power electronics converters
57.
power-electronic converters
58.
pulse width modulated power converters
59.
pulsewidth-modulated power converters
60.
static power converters
61.
AC-AC converter
62.
DC power supply
63.
bidirectional dc-dc converter
64.
boost half-bridge DC-DC converter
65.
current-fed DC/DC
66.
current-fed DC-DC converter
67.
DC/DC converter
68.
DC/DC преобразователь
69.
DC-DC
70.
DC-DC boost converter
71.
DC-DC conversion
72.
dc–dc converter
73.
DC-DC converter
74.
DC-DC convertor
75.
dc-dc topology
76.
forward dc-dc
77.
forward dc-dc converter
78.
high gain dc/dc converter
79.
High gain step up DC-DC converter
80.
impedance-source DC-DC converter
81.
Isolated dc/dc
82.
isolated DC-DC converter
83.
nonisolated dc–dc converter
84.
qZS DC/DC converter
85.
qZS-based DC/DC converter
86.
qZSI DC/DC converter
87.
quasi-Z-source DC-DC converter
88.
series resonant DC/DC converter
89.
step-up DC-DC converter
90.
two–stage DC/DC converter
91.
power electronics applications in power systems and utilities
92.
AC
93.
AC analysis
94.
AC conductivity
95.
AC impedance spectroscopy
96.
AC loss factor
97.
AC losses
98.
AC machine
99.
AC machines
100.
AC microgrid
101.
AC motor
102.
AC motors
103.
ac side equivalent admittance
104.
ac-switch
105.
Air-conditioner (AC)
106.
active front-end converters
107.
bidirectional converters
108.
capacitive-based isolated converters
109.
control of multilevel converters
110.
converters
111.
current-fed converters
112.
electric converters
113.
Fault-tolerant (FT) converters
114.
GaN-based converters
115.
grid interface converters
116.
grid-connected converters (GCCs)
117.
grid-forming converters
118.
half-bridge converters
119.
high frequency link converters
120.
high step-up converters
121.
immittance converters
122.
impedance-source (IS) converters
123.
impedance-source converters
124.
interleaved converters
125.
isolated boost converters
126.
isolated converters
127.
level-crossing analog-to-digital converters
128.
level-crossing analogue-to-digital converters (ADC)
129.
matrix converters
130.
modular multilevel converters
131.
multilevel converters
132.
multiphase switching converters
133.
multiport converters
134.
multi-port converters
135.
off-grid hybrid photovoltaic converters
136.
pulse width modulated converters
137.
pulse width modulation converters
138.
quasi-Z-source converters
139.
resonant converters
140.
resonant push-pull converters
141.
series resonant converters
142.
series-resonant converters
143.
standards; grid interface converters
144.
step-up/down converters
145.
switching converters
146.
ZCS converters
147.
ZVS converters
148.
Wave energy converters
149.
voltage-source converters
150.
data center (DC)
151.
dc buildings
152.
dc bus signaling
153.
dc circuit breaker
154.
dc circuit breaker (DCCB)
155.
DC commercial and residential buildings
156.
DC conductivity
157.
DC contactor
158.
dc distribution
159.
dc distribution systems
160.
DC drift
161.
dc droop control
162.
DC fast charger
163.
DC fast charging station
164.
DC fast charging stations
165.
dc house
166.
DC -link control
167.
DC loads
168.
DC magnetron sputtering
169.
dc microgrid
170.
dc microgrids
171.
DC motor
172.
DC motors
173.
dc nanogrid
174.
DC nanogrids
175.
dc protection
176.
dc transformer
177.
DC volatege balancing
178.
dc-capacitor precharge
179.
DC-link control
180.
dc-link voltage control
181.
dc-powered buildings
182.
DC-ready
183.
direct current (DC) building
184.
ironless brushless dc (BLDC) motor
185.
modular DC contactor
186.
residential dc microgrid
187.
Z-source DC circuit breakers (ZSCB)
188.
variable dc-link voltage
autor
4
1.
Udayashankar, A.C.
2.
Bicknell, Russell D.C.
3.
Boon, Baayla D.C.
4.
Rubin, Sergio Dc
TTÜ märksõna
2
1.
Residential DC Innovation Hub
2.
TalTech Residential DC Innovation Hub
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