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teaviku laadid
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autor
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TTÜ struktuuriüksus
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1
artikkel ajakirjas EST
/
artikkel ajakirjas ENG
An interleaved ZVS high step-up converter for renewable energy systems applications
Nouri, Tohid
;
Branch, Sari
;
Shaneh, Mahdi
;
Benbouzid, Mohamed
;
Vosoughi Kurdkandi, Naser
IEEE Transactions on Industrial Electronics
2022
/
p. 4786-4800
https://doi.org/10.1109/TIE.2021.3080211
Journal metrics at Scopus
Article at Scopus
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Article at WOS
artikkel ajakirjas EST
/
artikkel ajakirjas ENG
2
artikkel kogumikus
Bidirectional soft switching current source DC-DC converter for residential DC microgrids
Blinov, Andrei
;
Kosenko, Roman
;
Chub, Andrii
;
Vinnikov, Dmitri
IECON 2018 - 44th Annual Conference of the IEEE Industrial Electronics Society : proceedings
2018
/
p. 6059-6064 : ill
https://doi.org/10.1109/IECON.2018.8591103
artikkel kogumikus
3
artikkel ajakirjas EST
/
artikkel ajakirjas ENG
Bidirectional soft-switching dc-dc converter for battery energy storage systems
Blinov, Andrei
;
Kosenko, Roman
;
Chub, Andrii
;
Vinnikov, Dmitri
IET power electronics
2018
/
p. 2000-2009 : ill
https://doi.org/10.1049/iet-pel.2018.5054
Journal metrics at Scopus
Article at Scopus
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Article at WOS
artikkel ajakirjas EST
/
artikkel ajakirjas ENG
4
artikkel ajakirjas
DC-DC перетворювач з широким діапазоном забезпечення режиму природної комутації в нулях напруги
Blinov, Andrei
;
Vinnikov, Dmitri
;
Ivakhno, Volodymyr
;
Zamaruiev, Volodymyr
;
Styslo, Bogdan
Вісник НТУ "Харківський політехнічний інститут". Серія: Електричні машини та електромеханічне перетворення енергії = Bulletin of the NTU "Kharkiv Polytechnic Institute". Series: Electrical Machines and Electromechanical Energy Conversion
2019
/
c. 14-19 : іл
https://doi.org/10.20998/2409-9295.2019.20.02
artikkel ajakirjas
5
artikkel ajakirjas
Four novel PWM shoot-through control methods for impedance source DC-DC converters
Vinnikov, Dmitri
;
Roasto, Indrek
;
Liivik, Liisa
;
Blinov, Andrei
Journal of power electronics
2015
/
p. 299-308 : ill
artikkel ajakirjas
6
artikkel ajakirjas
Loss reduction method for the isolated qZS-based DC/DC converter
Zakis, Janis
;
Rankis, Ivars
;
Liivik, Liisa
Scientific Journal of Riga Technical University. Electrical, control and communication engineering
2013
/
p. 13-18 : ill
artikkel ajakirjas
7
artikkel kogumikus
A new coupled-inductor-based buck/boost DC/DC converter with soft switching for DC microgrid applications
Maheri, Hamed Mashinchi
;
Heris, Pedram Chavoshipour
;
Saadatizadeh, Zahra
;
Babaei, Ebrahim
;
Vinnikov, Dmitri
IEEE 15th International Conference on Compatibility, Power Electronics and Power Engineering (CPE-POWERENG)
2021
/
p. 1-6
https://doi.org/10.1109/CPE-POWERENG50821.2021.9501195
artikkel kogumikus
8
artikkel ajakirjas
New DC/DC converter for electrolyser interfacing with stand-alone renewable energy system
Blinov, Andrei
;
Andrijanovitš, Anna
Scientific Journal of Riga Technical University. Electrical, control and communication engineering
2012
/
p. 24-29 : ill
https://intapi.sciendo.com/pdf/10.2478/v10314-012-0004-1
artikkel ajakirjas
9
artikkel kogumikus
Simulation study of the three-level boost DC-DC converter with full ZVS for PV application
Vorobei, Vasiliy
;
Zakis, Janis
;
Husev, Oleksandr
;
Veligorskyi, Oleksandr
;
Savenko, Oleksandr
ICPE 2015 - ECCE Asia : 9th International Conference on Power Electronics - ECCE Asia : "Green World with Power Electronics" : June 1-5, 2015, 63 Convention Center, Seoul, Korea
2015
/
p. 2038-2043 : ill
http://dx.doi.org/10.1109/ICPE.2015.7168058
artikkel kogumikus
10
artikkel kogumikus
Wide output voltage range isolated buck-boost PFC converter with reconfigurable rectifier
Verbytskyi, Ievgen
;
Nadeem, Mohammad Mahad
;
Blinov, Andrei
;
Chub, Andrii
;
Vinnikov, Dmitri
2023 IEEE 17th International Conference on Compatibility, Power Electronics and Power Engineering (CPE-POWERENG)
2023
/
7 p
https://doi.org/10.1109/CPE-POWERENG58103.2023.10227389
artikkel kogumikus
Kirjeid leitud 10, kuvan
1 - 10
võtmesõna
195
1.
zero voltage switching
2.
zero voltage switching (ZVS)
3.
zero-voltage switching
4.
zero-voltage switching (ZVS)
5.
zerovoltage-switching
6.
zero current switching
7.
zero current switching (ZCS)
8.
zero-current switching (ZCS)
9.
zero-current-switching
10.
cell switching
11.
circuit switching
12.
conformational switching
13.
consumer switching behavior
14.
fixed-switching frequency
15.
full soft-switching
16.
high switching frequency
17.
Markov switching
18.
Markov switching SVAR
19.
Markov-Switching heteroscedasticity
20.
Markov-switching model
21.
multiphase switching converters
22.
optimal switching angle (OSA)
23.
permanent magnet flux-switching machine
24.
reconfigurable switching stage
25.
search and switching costs
26.
snubbering soft switching
27.
soft switching
28.
soft-switching
29.
soft-switching inverters
30.
switching
31.
switching capacitor-inductor cell
32.
switching capacity
33.
switching circuits
34.
switching control method
35.
switching converters
36.
Switching frequency
37.
switching harmonics
38.
switching intention
39.
switching issues
40.
switching loss
41.
switching losses
42.
switching performance
43.
switching properties
44.
switching sequence
45.
switching theory
46.
zerocurrent switching
47.
fractional power zero-pole
48.
Milliken-Taylor system near zero
49.
nearly zero energy building
50.
nearly zero energy buildings
51.
nearly zero energy buildings (nZEB)
52.
nearly zero-energy building
53.
Nearly Zero-Energy Buildings
54.
nearly-zero energy buildings
55.
nearly-zero energy-building
56.
net zero energy buildings
57.
net-zero energy
58.
smart zero carbon city
59.
zero and sign restrictions
60.
Zero energy
61.
zero factor
62.
zero inflated beta distribution
63.
zero injection phase
64.
zero marginal cost
65.
zero moment point
66.
zero partiality
67.
zero potential vorticity assumption
68.
zero value
69.
zero-bias
70.
zero-CO2
71.
zero-COVID
72.
zero-energy buildings
73.
zero-knowledge proof
74.
zero-salinity component
75.
zero-shot learning
76.
zero-strenght-layer
77.
zero‐strength layer
78.
zero-strength layer
79.
zero‐strength layer
80.
zero-waste
81.
assessment of voltage unbalance emission
82.
assessment of voltage unbalance sources
83.
automatic voltage control
84.
autonomous voltage inverter
85.
Back-to-Back Voltage Source Converter (VSC)
86.
BDV (Breakdown Voltage)
87.
Capacitance-voltage
88.
capacitor coupled voltage transformer
89.
capacitor voltage balance
90.
capacitor voltage balancing
91.
common-mode voltage (CMV)
92.
conservation voltage reduction (CVR)
93.
current-voltage
94.
current-voltage characteristics
95.
current–voltage characteristics
96.
dc-link voltage control
97.
droop voltage range
98.
factor of input voltage use
99.
fault current and voltage measurements
100.
fractional open circuit voltage
101.
high voltage
102.
High voltage circuit breaker
103.
high voltage engineering
104.
high voltage gain
105.
high voltage power converters
106.
high-voltage techniques
107.
identification of unbalance voltage source
108.
identification of voltage unbalance sources
109.
induced voltage
110.
input voltage sharing
111.
leg voltage
112.
load-independent voltage output
113.
low voltage
114.
low voltage distribution grid
115.
low voltage grid
116.
low voltage networks
117.
low voltage ride-through (LVRT)
118.
low voltage S/TEM
119.
low voltage stress
120.
low voltage stress of switch
121.
low voltage stresses on switches and diodes
122.
low-voltage networks
123.
medium voltage
124.
medium voltage insulator
125.
medium voltage overhead lines
126.
medium voltage power cables
127.
oil-filled voltage transformer
128.
output voltage ripple
129.
pickup voltage
130.
rapid voltage change
131.
supply voltage quality
132.
symmetrical voltage doubler
133.
three-level voltage inverter
134.
unbalance voltage
135.
universal input voltage
136.
user in low voltage area
137.
variable dc-link voltage
138.
wide input voltage range
139.
wide range voltage regulation
140.
wide voltage gain range
141.
wide voltage range operation
142.
Voltage
143.
voltage balance
144.
voltage boosting
145.
voltage boosting ability
146.
voltage boosting capability
147.
voltage control
148.
voltage controller
149.
voltage deviation
150.
voltage dips
151.
voltage distortions
152.
voltage disturbance
153.
voltage disturbances
154.
voltage divider
155.
voltage drop
156.
voltage events
157.
voltage gain
158.
voltage harmonics
159.
voltage imbalance
160.
Voltage improvement
161.
voltage instrument transformer
162.
voltage level
163.
voltage level optimisation
164.
voltage magnitude
165.
voltage measurement
166.
voltage mode control
167.
voltage multiplier
168.
voltage multiplier cell
169.
voltage multiplier cell (VMC)
170.
voltage peak estimation
171.
voltage quality
172.
voltage quality improvement
173.
voltage range
174.
voltage regulation
175.
voltage ride-through
176.
voltage source converter
177.
voltage source converter (VSC)
178.
voltage source inverter
179.
voltage source inverter (VSI)
180.
voltage stability
181.
voltage stress
182.
voltage swells
183.
voltage transformer
184.
voltage transient
185.
voltage unbalance
186.
voltage variation
187.
voltage withstand
188.
voltage-boosting feature
189.
voltage-controlled oscillator
190.
voltage-dependent anion channel VDAC
191.
voltage-fed converter
192.
voltage-lift technique
193.
voltage-oriented control (VOC)
194.
voltage-source converters
195.
voltage–source–inverter
autor
1
1.
Zero, R.
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Valikud
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ilmumisaasta
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OR
NOT
autor
AND
OR
NOT
TTÜ struktuuriüksus
AND
OR
NOT
märksõna
AND
OR
NOT
seeria-sari
AND
OR
NOT
tema kohta
AND
OR
NOT
võtmesõna
AND
OR
NOT