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three-level inverter (keyword)
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1
journal article EST
/
journal article ENG
An SVM scheme for three-level quasi-switched boost T-type inverter with Enhanced voltage gain and capacitor voltage balance
Tran, Vinh-Thanh
;
Nguyen, Minh-Khai
;
Do, Duc-Tri
;
Vinnikov, Dmitri
IEEE transactions on power electronics
2021
/
p. 11499-11508
https://doi.org/10.1109/TPEL.2021.3071011
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Article at Scopus
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Article at WOS
journal article EST
/
journal article ENG
2
book article
Evaluation of losses in three-level neutral-point-clamped and T-type quasi-Z-source inverters with modified carrier based modulation method
Ruiz-Cortes, M.
;
Romero-Cadaval, Enrique
;
Roncero-Clemente, Carlos
;
Gonzalez-Romera, Eva
;
Husev, Oleksandr
2017 11th International Conference on Compatibility, Power Electronics and Power Engineering (CPE-POWERENG 2017) : Cadiz, Spain, 4-6 April 2017
2017
/
p. 638-643 : ill
https://doi.org/10.1109/CPE.2017.7915247
book article
3
journal article EST
/
journal article ENG
Experimental comparison of two-level full-SiC and three-level Si–SiC quasi-Z-source inverters for PV applications
Stepenko, Serhii
;
Husev, Oleksandr
;
Vinnikov, Dmitri
;
Roncero-Clemente, Carlos
;
Pires Pimentel, Sergio
;
Santasheva, Elena
Energies
2019
/
2509 ; 17 p. : ill
https://doi.org/10.3390/en12132509
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Article at Scopus
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Article at WOS
journal article EST
/
journal article ENG
4
book article
Experimental comparison of two-level full-SiC and three-level Si–SiC quasi-Z-source inverters for PV applications
Stepenko, Serhii
;
Husev, Oleksandr
;
Vinnikov, Dmitri
;
Roncero-Clemente, Carlos
;
Pimentel, Sergio Pires
;
Santasheva, Elena
Emerging converter topologies and control for grid connected photovoltaic systems
2021
/
P. 121-137 : ill
https://doi.org/10.3390/books978-3-03943-910-2
book article
5
book article
Feasibility study of inductor coupling in three-level neutral-point-clamped quasi-Z-source DC/AC converter
Zakis, Janis
;
Husev, Oleksandr
;
Strzelecki, Ryszard
PQ2014 : the 9th International 2014 Electric Power Quality and Supply Reliability Conference (PQ) : June 11-13, 2014, Rakvere, Estonia : proceedings
2014
/
p. 273-276 : ill
book article
6
journal article EST
/
journal article ENG
Induction generator with direct control and a limited number of measurements on the side of the converter connected to the power grid
Kasprowicz, Andrzej Bogdan
;
Husev, Oleksandr
;
Strzelecki, Ryszard
Energies
2023
/
art. 63, 23 p. : ill
https://doi.org/10.3390/en16010063
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Article at Scopus
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Article at WOS
journal article EST
/
journal article ENG
7
book article
Three-level neutral-point-clamped quasi-Z-source inverter with maximum power point tracking for photovoltaic systems
Roncero-Clemente, Carlos
;
Stepenko, Serhii
;
Husev, Oleksandr
;
Minambres-Marcos, Victor
;
Romero-Cadaval, Enrique
;
Vinnikov, Dmitri
Technological innovation for the Internet of things : 4th IFIP WG 5.5/SOCOLNET Doctoral Conference on Computing, Electrical and Industrial Systems : DoCEIS 2013 : Costa de Caparica, Portugal, April 15-17, 2013 : proceedings
2013
/
p. 334-342
book article
8
journal article EST
/
journal article ENG
Three-level three-phase quasi-Z-source neutral-point-clamped inverter with novel modulation technique for photovoltaic application
Husev, Oleksandr
;
Roncero-Clemente, Carlos
;
Romero-Cadaval, Enrique
;
Vinnikov, Dmitri
;
Jalakas, Tanel
Electric power systems research
2016
/
p. 10-21 : ill
https://doi.org/10.1016/j.epsr.2015.08.018
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Article at Scopus
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journal article EST
/
journal article ENG
9
book article
Экспериментальное исследование трёхуровневого инвертора напряжения с квази-импедансным звеном на входе [Компьют. файл]
Stepenko, Serhii
Международная Научно-Техническая Конференция "Силовая Электроника и Энергоэффективность" : 23-27.IX 2013, Алушта, Крым
2013
/
[3] с. : ил [CD-ROM]
book article
Number of records 9, displaying
1 - 9
keyword
204
1.
three-level inverter
2.
three-level neutral-point-clamped inverter
3.
three-level NPC inverter
4.
three-level T-type inverter
5.
three-level T-type quasi-impedance-source inverter (3L-T-type qZSI)
6.
three-level voltage inverter
7.
multi-level inverter
8.
two-level inverter
9.
3-level T-type inverter
10.
three-level
11.
three-level T-type
12.
quasi-impedance-source inverter (3L-T-type qZS inverter)
13.
logic level and high level BDDs
14.
active NPC qZS inverter
15.
autonomous voltage inverter
16.
buck-boost inverter
17.
buck–boost inverter
18.
cascaded inverter
19.
current inverter
20.
current source inverter
21.
current–source–inverter
22.
dc-ac inverter
23.
dual boost inverter
24.
flying inductor based inverter
25.
grid connected inverter
26.
grid tied inverter
27.
grid-connected inverter
28.
grid-tied inverter
29.
half-bridge inverter
30.
hybrid inverter
31.
impedance source inverter
32.
impedance-source inverter
33.
impedance-source-inverter
34.
interleaved inverter
35.
inverter
36.
inverter sizing
37.
inverter topologies
38.
inverter-fed induction motor
39.
isolated matrix inverter
40.
multilevel inverter
41.
multilevel inverter
42.
multilevel inverter (MLI)
43.
neutral point clamped inverter
44.
neutral-point-clamped inverter
45.
NPC-based inverter
46.
power inverter
47.
PV micro inverter
48.
PWM inverter
49.
qZ-inverter
50.
qZS inverter
51.
quasi Z-source inverter
52.
quasi-impedance source inverter
53.
quasi-impedance-source inverter
54.
quasi-switched boost inverter
55.
quasi-Z Source Inverter (qZSI)
56.
quasi-Z-source inverter
57.
quasi-Z-source inverter (qZSI)
58.
quasi-Z-source inverter (qZSI) supercapcitor
59.
quazi-Z-source inverter
60.
resonant inverter
61.
single phase inverter
62.
single-phase inverter
63.
single-stage inverter
64.
solar inverter
65.
step-up inverter
66.
switched-boost inverter
67.
switched-capacitor inverter
68.
Z-inverter
69.
Z-source inverter
70.
transformer-less common grounded inverter
71.
transformerless grid connected inverter
72.
transformer-less inverter
73.
T-type inverter
74.
voltage source inverter
75.
voltage source inverter (VSI)
76.
voltage–source–inverter
77.
abrasive three-body wear
78.
novel three-dimensional morphology
79.
three body abrasion
80.
three calcium aluminate content
81.
three-body abrasion
82.
Three-body abrasive wear
83.
three-dimensional (3-D) printing
84.
three-dimensional palaeohistology
85.
three-dimensional printing
86.
three-phase
87.
three-phase dc-ac converter
88.
three-phase power factor correction (PFC) converter
89.
Three-phase rectifier
90.
three-phase unbalance mitigation
91.
Three-point bending test
92.
three-port converter
93.
absolute sea level
94.
airport level of service
95.
arousal level
96.
assurance level
97.
behaviour level test generation
98.
bi-level optimization
99.
CO2 level in classrooms
100.
CO2 level in classrooms and kindergartens
101.
confidence level
102.
country-level logistics
103.
customer compatibility level
104.
deep level
105.
deep level traps
106.
determination of the CO2 level
107.
determining the level of creatine
108.
digitalisation level
109.
distribution-level phasor measurement units (D-PMUs)
110.
exposure level
111.
extreme penetration level of non synchronous generation
112.
extreme water level
113.
gate-level analysis
114.
gate-level circuit abstraction
115.
gate-level netlist
116.
graduate level
117.
hierarchical two-level analysis
118.
high level DD (HLDD)
119.
high level synthesis
120.
high-level control fault model
121.
high-level control faults
122.
high-level decision diagram
123.
high-level decision diagrams
124.
high-level decision diagrams (HLDD) synthesis
125.
high-level expert group on AI
126.
high-level fault coverage
127.
high-level fault model
128.
high-level fault simulation
129.
high-level functional fault model
130.
high-level synthesis
131.
High-Level Synthesis (HLS)
132.
high-level synthesis for test
133.
high-level test data generation
134.
improvement of safety level at enterprises
135.
improvement of safety level at SMEs
136.
level control
137.
level set
138.
level(s) methodology
139.
level-crossing ADC
140.
level-crossing analog-to-digital converters
141.
level-crossing analogue-to-digital converters (ADC)
142.
logic level
143.
lower trophic level models
144.
low-level control system transportation
145.
low-level fault redundancy
146.
low-level radiation
147.
Low-level RF EMF
148.
macro-level industry influences
149.
mean sea level
150.
module level power electronics (MLPE)
151.
module-level power electronics (MLPE)
152.
multi-level governance
153.
multi-level modeling
154.
multi-level perspective
155.
multi-level perspective of sustainability transitions
156.
multi-level selection and processing environment
157.
operational level (OL)
158.
Price level
159.
Process/Product Sigma Performance Level (PSPL)
160.
PV module level power electronics
161.
register transfer and gate level simulation
162.
Register Transfer Level - RTL
163.
register transfer level modeling decision diagams
164.
register-transfer level
165.
relative sea level
166.
relative sea-level change
167.
RH level
168.
school-level policies
169.
sea level
170.
sea level rise
171.
sea level series
172.
sea level trend
173.
sea level: variations and mean
174.
sea-level
175.
sea-level changes
176.
sea-level equation
177.
Sea-level indicator
178.
sea-level prediction
179.
sea-level rise
180.
sea-level trend
181.
service-level agreements
182.
seven-level multilevel
183.
skin conductance level
184.
software level TMR
185.
steel-level bureaucracy
186.
strategic level decision makers
187.
system level hazards
188.
system level test
189.
system planning level
190.
system-level analysis
191.
system-level evaluation
192.
task-level uninterrupted presence
193.
Tool Confidence Level
194.
top-level domain
195.
transaction-level modeling
196.
treatment level
197.
undergraduate level
198.
water level
199.
water level fluctuation
200.
water level measurements
201.
water level reconstruction
202.
water-level changes
203.
voltage level
204.
voltage level optimisation
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