Electrical magnetic hybrid power quality compensation system for V/V traction power supply system (English)
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- New search for: Chen, Baichao
- New search for: Zhang, Chenmeng
- New search for: Zeng, Wenjun
- New search for: Xue, Gang
- New search for: Tian, Cuihua
- New search for: Yuan, Jiaxin
- New search for: Chen, Baichao
- New search for: Zhang, Chenmeng
- New search for: Zeng, Wenjun
- New search for: Xue, Gang
- New search for: Tian, Cuihua
- New search for: Yuan, Jiaxin
In:
IET Power Electronics
;
9
, 1
;
62-70
;
2016
- Article (Journal) / Electronic Resource
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Title:Electrical magnetic hybrid power quality compensation system for V/V traction power supply system
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Contributors:Chen, Baichao ( author ) / Zhang, Chenmeng ( author ) / Zeng, Wenjun ( author ) / Xue, Gang ( author ) / Tian, Cuihua ( author ) / Yuan, Jiaxin ( author )
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Published in:IET Power Electronics ; 9, 1 ; 62-70
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Publisher:
- New search for: The Institution of Engineering and Technology
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Publication date:2016-01-20
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Size:9 pages
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ISSN:
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DOI:
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Type of media:Article (Journal)
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Type of material:Electronic Resource
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Language:English
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Keywords:electric current control , reactive power compensation , reactive current compensation , harmonics suppression , reactive power control , traction power supplies , electrical magnetic hybrid power quality compensation system , air conditioning , collaborative control strategy , harmonic current compensation , V-V traction power supply system , 3rd harmonic current suppression , voltage control , static VAr compensators , 5th harmonic current suppression , RPC DC link voltage , railway power conditioner , MSVC , negative current compensation , power supply quality , magnetic static VAr compensator , active power transfer , hybrid power systems
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Source:
Metadata by IET is licensed under CC BY 3.0
Table of contents – Volume 9, Issue 1
The tables of contents are generated automatically and are based on the data records of the individual contributions available in the index of the TIB portal. The display of the Tables of Contents may therefore be incomplete.
- 1
-
Controllers for eliminating the ac components in the circulating current of modular multilevel convertersDarus, Rosheila / Pou, Josep / Konstantinou, Georgios / Ceballos, Salvador / Agelidis, Vassilios Georgios et al. | 2016
- 9
-
Structure for multi‐input multi‐output dc–dc boost converterBabaei, Ebrahim / Abbasi, Okhtay et al. | 2016
- 20
-
Fault diagnosis scheme for open-circuit faults in switched reluctance motor drives using fast Fourier transform algorithm with bus current detectionGan, Chun / Wu, Jianhua / Yang, Shiyou / Hu, Yihua / Cao, Wenping / Si, Jikai et al. | 2016
- 31
-
Discontinuous conduction/current mode analysis of dual interleaved buck and boost converters with interphase transformerWu, Ding / Calderon-Lopez, Gerardo / Forsyth, Andrew John et al. | 2016
- 42
-
Real‐time simulation of modular multilevel converters for controller hardware‐in‐the‐loop testingMatar, Mahmoud / Paradis, Dominic / Iravani, Reza et al. | 2016
- 51
-
Modular symmetric and asymmetric reduced count switch multilevel current source inverterNajmi, Ebrahim Seifi / Ajami, Ali et al. | 2016
- 62
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Electrical magnetic hybrid power quality compensation system for V/V traction power supply systemChen, Baichao / Zhang, Chenmeng / Zeng, Wenjun / Xue, Gang / Tian, Cuihua / Yuan, Jiaxin et al. | 2016
- 71
-
Parallel resultant elimination algorithm to solve the selective harmonic elimination problemYang, Kehu / Chen, Liangyu / Zhang, Jianjun / Hao, Jun / Yu, Wensheng et al. | 2016
- 81
-
Space‐vector pulse‐width modulation for multiphase voltage source inverters considering reference orderChen, Keng‐Yuan et al. | 2016
- 95
-
Selective harmonic elimination strategy for cascaded H-bridge five-level inverter with arbitrary power sharing among the cellsHajizadeh, Mehdi / Fathi, Seyed Hamid et al. | 2016
- 102
-
Five-level inverter for solar system and its self-adaptive pulse-width modulation strategyWang, Fei / Wang, Yong / Hang, Lijun / Wang, Chengmin et al. | 2016
- 111
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Design of self-oscillating resonant converters based on a variable structure systems approachBonache-Samaniego, Ricardo / Olalla, Carlos / Martínez-Salamero, Luís / Valderrama-Blavi, Hugo et al. | 2016
- 120
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Fast and robust voltage control of DC–DC boost converter by using fast terminal sliding mode controllerYazici, İrfan / Yaylaci, Ersagun Kürşat et al. | 2016
- 126
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Zero voltage switching interleaved coupled inductor synchronous buck converter operating at boundary conditionMarvi, Fahimeh / Adib, Ehsan / Farzanehfard, Hosein et al. | 2016
- 132
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Flexible-structured phase-shifted multiple-full-bridge DC–DC power supply with wide range outputZhang, Di / Zhang, Donglai et al. | 2016